簡易檢索 / 詳目顯示

研究生: 顏妙容
Miao-Jung Yen
論文名稱: 數種天然食材對ApoE剔除鼠代謝症候群與動脈硬化的影響
The effects of some natural food materials on metabolic syndrome and atherosclerosis
指導教授: 吳文惠
Wu, Wen-Huey
學位類別: 碩士
Master
系所名稱: 人類發展與家庭學系
Department of Human Development and Family Studies
論文出版年: 2010
畢業學年度: 98
語文別: 中文
論文頁數: 146
中文關鍵詞: 苜蓿芽茉莉苦瓜代謝症候群動脈粥狀硬化ApoE剔除鼠
英文關鍵詞: alfalfa, jasmine, bitter gourd, metabolic syndrome, atherosclerosis, ApoE knockout mice
論文種類: 學術論文
相關次數: 點閱:171下載:6
分享至:
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報
  • 女性停經後因雌激素缺乏,代謝症候群與心血管疾病風險激增,已知苜蓿芽乙酸乙酯與茉莉甲醇萃物含植物性雌激素,本研究探討此兩種萃物對卵巢摘除之ApoE剔除母鼠代謝症候群與動脈粥狀硬化的影響。苦瓜乙酸乙酯萃物含PPAR活化劑,本實驗室過去發現苦瓜乙酸乙酯萃物可降低ApoE剔除公鼠的動脈粥狀硬化,本研究進一步探討此萃物對頭臂動脈斑塊穩定度與代謝症候群的影響。
    實驗一、8~12週齡ApoE剔除母鼠,接受卵巢摘除或假手術後,依年齡及體重分為四組,假手術組 (Sham, n=9) 與去卵巢組 (OVX, n=12) 餵予高脂飼料(20%fat);去卵巢苜蓿組 (OVX+A, n=12) 與去卵巢茉莉組 (OVX+J, n=11) 分別給予添加1%苜蓿芽乙酸乙酯萃物或茉莉甲醇萃物的高脂飼料,15週後犧牲。結果OVX+A組體重及心臟重量顯著低於OVX組 ( p<0.05),腎臟重量顯著低於其他三組 ( p<0.05);OVX+J組子宮周脂和肝臟重量顯著低於OVX組 ( p<0.05);血液TG、FFA、glucose、insulin、adiponectin、leptin各組間無顯著差異,但OVX+A組於第8週時TC濃度低於OVX組 (p=0.061),於第15週時顯著低於Sham組 ( p<0.05)。OVX+A組肝臟膽固醇濃度顯著低於OVX+J組及OVX組;OVX+A組及OVX+J組肝臟TG濃度顯著低於OVX組 ( p<0.05),與肝切片脂質染色結果一致。OVX+A組及OVX+J組脂肪細胞體積顯著比OVX組小 ( p<0.05)。OVX+A組主動脈縱切脂肪堆積較其他組輕,但無顯著差異;頭臂動脈橫切新生內層及中層面積比值(I/M, intima/media ratio) OVX+A組略有降低趨勢 (p=0.063),且下降頭臂動脈病灶處MMP-9及IL-1之免疫染色,增加TM之染色。胸主動脈促發炎因子蛋白質MMP-9及IL-1表現量則是各組無顯著差異。
    實驗二、19週齡ApoE剔除公鼠依年齡及體重分為兩組,餵予高脂飼料 (20%fat) (HF, n=8),或高脂飼料加1%山苦瓜乙酸乙酯萃物 (HF+BEA, n=9),12週後犧牲。結果兩組間體重、組織重量及血液生化值、頭臂動脈I/M ratio皆無顯著差異。頭臂動脈免疫染色分析顯示HF+BEA組不能降低MMP-9、IL-1β表現,但可顯著增加保護因子TM及HO-1的表現。胸主動脈發炎因子IL-1β蛋白質表現量中,HF+BEA組顯著減少。
    總結:於卵巢摘除之ApoE剔除母鼠,苜蓿芽乙酸乙酯萃物可顯著改善體重、腹腔脂肪細胞體積、血膽固醇、肝膽固醇及脂肪濃度,使頭臂動脈病灶處MMP-9及IL-1表現下降、TM表現增加,可能具改善代謝症候群與增進動脈硬化斑塊穩定度之效用;茉莉甲醇萃物可顯著改善腹腔與肝臟脂肪堆積,脂肪細胞體積大小。苦瓜乙酸乙酯萃物於ApoE剔除公鼠中,可增加頭臂動脈TM及HO-1的表現,下降胸主動脈IL-1β表現,對動脈硬化可能有改善效果。

    The risks of metabolic syndrome and cardiovascular disease increase in postmenopausal women due to estrogen deficiency. The ethyl acetate extract (EAE) of alfalfa sprouts and the methanol extract of Jasminum have been found to contain phytoestrogens. We therefore investigated the effects of both extracts on metabolic syndrome and atherosclerosis in ovariectomized (OVX) apoE-/- mice. The bitter gourd EAE contains PPAR activator. Our previous studies have found the atherosclerosis reducing effect of bitter gourd EAE in male apoE-/- mice. This study further explored its impact on the stability of plague in brachiocephalic artery and metabolic syndrome in male apoE-/- mice.
    In experiment 1, 8~12-wk-old female apoE-/- mice after ovariectomy or sham, were randomly divided into 4 groups. Sham (n = 9) and OVX groups (n =12) were fed high fat diets; OVX+A (n = 11) and OVX+J groups (n = 12) were fed high fat diets supplemented with 1% EAE of alfalfa sprouts, and 1% methanol extract of jasminum, respectively. After 15 wk of feeding, the mice were sacrificed. The results showed that the OVX + A group had significantly lower body weight and heart weight, and the OVX+J group had a significantly lower parametrial fat weight than the OVX group (p <0.05). Levels of serum TG, FFA, glucose, insulin, adiponectin were not significantly different among the four groups. The OVX + A group had lower serum TC level than OVX group (p = 0.061) at 8 week, and significantly lower level of hepatic TC than the OVX and OVX+J groups. Level of hepatic TG and size of abdominal adipocytes in the OVX+A and OVX+J groups were significantly lower than those in the OVX group. From the observation of brachiocephalic artery, the OVX+A group had a slightly lower ratio of artery intima/media area (I/M) (p = 0.063), a reduced expressions of matrix metalloproteinases-9 (MMP-9) and Interleukin-1IL-1 and an increased expression of thrombomodulin (TM) by immunohistochemical analysis. But, the protein expressions of MMP-9 and Il-1 in thoracic aorta analyzed by western blotting were not significantly different among groups.
    In experiment 2, 19-wk-old apoE-/- male mice were randomly divided into 2 groups, fed the high fat (20%fat) diet (HF, n = 8) or the high fat diet supplemented with 1% EAE of bitter gourd (HF+BEA, n = 9). After 12 wk of feeding, the mice were sacrificed. No significant difference was found in body weight, blood biochemical parameters, and brachiocephalic artery I/M ratio between the two groups. HF + BEA Group significantly increased the expression of TM and
    Hemoxygenase-1(HO-1), but did not affect those of MMP-9 and IL-1β in the section of brachiocephalic artery analyzed by immunohistochemical methods. In addition, the protein expression of IL-1 in thoracic aorta analyzed by western blotting was significantly lower in HF + BEA than in HF group.
    To sum up, in OVX apoE-/- mice, the EAE of alfalfa sprouts can improve metabolic syndrome by reducing body weight, adipocyte size of abdominal fat, serum cholesterol, and hepatic cholesterol and triglyceride. It may also improve atherosclerosis by reducing MMP-9 and IL-1, and increasing TM expression on brachiocephalic artery. The methanol extract of jasminum can improve metabolic syndrome by reducing liver weight, hepatic triglyceride, abdominal fat pad and the adipocyte size. In male apoE-/- mice, the bitter gourd EAE may stabilize atherosclerotic plagues by increasing the expression of TM and HO-1 on brachiocephalic artery and decreasing the protein expression of Il-1 in thoracic aorta.

    目錄 圖目錄 VIII 表目錄 IX 第一章 緒論 1 第二章 文獻回顧 4 第一節 雌激素與代謝症候群 4 壹、代謝症候群定義及診斷標準 4 (一) 代謝症候群定義 4 (二)代謝症候群診斷標準 4 貳、代謝症候群相關病理研究 8 叁、更年期婦女雌激素缺乏與代謝症候群相關性 9 第二節 雌激素與動脈硬化 10 壹、動脈硬化 10 (一) 動脈硬化相關之危險因子 10 (二) 動脈硬化致病機轉 13 (三) 動脈硬化相關因子 16 (四) 應用於動脈硬化研究之動物模式 20 貳、更年期婦女雌激素缺乏與動脈硬化相關性 21 第三節 植物性雌激素(Phytoestrogens) 21 壹、植物性雌激素生理功能及分類 21 貳、植物性雌激素與停經後婦女代謝症候群之相關性 22 参、植物性雌激素對心血管疾病的影響及作用機制 23 肆、植物性雌激素活性材料 24 (一)苜蓿芽 24 (二)茉莉 25 第四節 苦瓜 26 壹、苦瓜介紹 26 貳、苦瓜生理效用及相關研究 26 (一)苦瓜與動脈硬化 26 (二)苦瓜與降血脂作用 27 (三)苦瓜與降血糖作用 28 第三章 植物性雌激素活性材料對卵巢切除 ApoE剔除小鼠抗代謝症候群與 動脈粥狀硬化之效應 32 第一節 前言 32 第二節 材料與方法 34 壹、實驗設計及流程 34 貳、實驗動物飼養及手術 35I (一)實驗動物飼養 35 (二)假手術及卵巢切除方法 35 参、飼料 35 (一)苜蓿芽凍乾粉末 35 (二)茉莉花草粉末 36 (三)苜蓿芽乙酸乙酯萃取物 36 (四)茉莉甲醇萃取物 36 (五)實驗飼料組成及配製 36 肆、動物犧牲與樣本收集 38 伍、樣本前處理及儲存 38 (一)血液: 38 (二)血管: 38 (三)肝臟、腎臟、脂肪: 38 陸、血液及血清分析 38 (一)葡萄糖分析 38 (二)膽固醇分析 39 (三)三酸甘油酯分析 39 (四)游離脂肪酸分析 40 (五)胰島素分析 40 (六)Adiponectin分析 41 (七) leptin分析 41 柒、肝脂分析 42 (一)藥品配製 42 (二)肝脂萃取液製備 42 (三)肝臟三酸甘油酯含量測定 43 (四)肝臟膽固醇含量測定 43 捌、血管、肝臟組織染色切片 43 (一)藥品配製 43 (二)實驗流程 43 玖、腎臟periodic acid-Shiff (PAS)染色 45 (一)藥品配製 45 (二)實驗流程 45 拾、脂肪堆積染色 46 (一)藥品配製 46 (二)實驗流程 46 拾壹、免疫組織染色 47 (一)各抗體使用濃度 47 (二)實驗流程 48 拾貳、組織蛋白質萃取 48 (一)藥品配製 48 (二)實驗流程 49 拾参、西方墨點法(Western Blotting)分析血管組織蛋白質表現 49 (一) 藥品配製 49 (二)實驗流程 50 拾肆、胰島素抗性指標HOMA-IR index計算 52 第三節 結果 53 壹、體重變化生長情形 53 貳、攝食量及攝食效應 53 参、組織器官相對及絕對重量 53 肆、血液脂質濃度 53 (一) 血清總膽固醇濃度 53 (二) 血清三酸甘油酯濃度 54 (三) 血清游離脂肪酸濃度 54 伍、血液glucose濃度 54 陸、血液insulin濃度及HOMA-IR 54 柒、血液adiponectin濃度 54 捌、血液leptin濃度 54 玖、肝臟脂質濃度 54 (一) 總膽固醇濃度 54 (二) 三酸甘油酯濃度 55 拾、肝臟切片 55 拾壹、腎臟脂質濃度 55 (一) 總膽固醇濃度 55 (二) 三酸甘油酯濃度 55 拾貳、腎臟切片periodic acid-Shiff (PAS)染色 55 拾参、頭臂動脈I/M值計算及切片 56 拾肆、血管縱切脂肪堆積 56 拾伍、脂肪切片及脂肪細胞大小定量 56 拾陸、免疫組織染色 56 拾柒、血管組織內蛋白質表現 57 第四節 討論與結論 84 壹、卵巢剔除誘發更年期後引起之代謝症候群動物模式 84 貳、苜蓿芽乙酸乙酯萃物對去卵巢ApoE剔除鼠生理之相關影響 85 (一) 苜蓿芽乙酸乙酯萃物對肥胖之相關影響 85 (二) 苜蓿芽乙酸乙酯萃物對血糖及胰島素之相關影響 87 (三) 苜蓿芽乙酸乙酯萃物對血脂及心血管疾病之相關影響 88 (四) 苜蓿芽乙酸乙酯萃物對肝脂之相關影響 91 参、茉莉甲醇萃物對去卵巢ApoE剔除鼠生理之相關影響 92 (一) 茉莉甲醇萃物對肥胖之相關影響 92 (二) 茉莉甲醇萃物對血糖及胰島素之相關影響 92 (三) 茉莉甲醇萃物對血脂及心血管疾病之相關影響 92 (四) 茉莉甲醇萃物對肝脂之相關影響 94 肆、結論 94 第四章 山苦瓜乙酸乙酯萃物對 ApoE剔除鼠抗動脈粥狀硬化之效應 95 第一節 前言 95 第二節 材料與方法 97 壹、實驗設計及流程 97 貳、實驗動物飼養 98 参、飼料 98 (一)山苦瓜凍乾粉末 98 (二)山苦瓜乙酸乙酯萃取物 98 (三)實驗飼料組成及配製 98 肆、動物犧牲與樣本收集 100 伍、樣本前處理及儲存 100 陸、血液分析 100 (一)膽固醇分析 100 (二)三酸甘油酯分析 100 (三)游離脂肪酸分析 100 柒、肝脂分析 100 捌、血管、肝臟組織染色切片 100 玖、腎臟periodic acid-Shiff (PAS)染色 100 拾、脂肪堆積染色 100 拾壹、免疫組織染色 100 拾貳、組織蛋白質萃取 101 拾参、西方墨點法分析血管組織內蛋白質表現 101 第三節 結果 102 壹、體重變化生長情形 102 貳、攝食量及攝食效應 102 参、組織器官相對及絕對重量 102 肆、血液脂質濃度 102 (一) 血清總膽固醇濃度 102 (二) 血清三酸甘油酯濃度 102 (三) 血清游離脂肪酸濃度 103 伍、肝臟切片 103 陸、腎臟periodic acid-Shiff (PAS)染色 103 柒、頭臂動脈I/M值計算及切片 103 捌、血管縱切脂肪堆積 103 玖、免疫組織染色 103 拾、血管組織內蛋白質表現 104 第四節 討論與結論 122 壹、苦瓜乙酸乙酯萃物對ApoE剔除鼠動脈硬化相關之影響 122 貳、山苦瓜乙酸乙酯對ApoE剔除鼠其他生理之影響 128 叁、結論 129 第五章 參考文獻 132 圖目錄 圖3-12 假手術或卵巢切除之ApoE剔除鼠餵食實驗飼料15週後蘇木精-伊紅染 色之肝臟切片 73 圖3-13 假手術或卵巢切除之ApoE剔除鼠餵食實驗飼料15週後periodic ACID-SHIFF (PAS)染色染色之腎臟切片 74 圖3-14假手術或卵巢切除之ApoE剔除鼠餵食實驗飼料15週後頭臂動脈血管 切片(蘇木精-伊紅染色) 75 圖3-15 假手術或卵巢切除之ApoE剔除鼠餵食實驗飼料15週後主動脈損傷情形 76 圖3-16 假手術或卵巢切除之ApoE剔除鼠餵食實驗飼料15週後脂肪切片(蘇 木精-伊紅染色) 77 圖3-17 假手術或卵巢切除之ApoE剔除鼠餵食實驗飼料15週後對於頭臂動脈動 脈表現MMP-9之影響 78 圖3-18 假手術或卵巢切除之ApoE剔除鼠餵食實驗飼料15週後對於頭臂動脈動 脈表現IL-1之影響 79 圖3-19 假手術或卵巢切除之ApoE剔除鼠餵食實驗飼料15週後對於頭臂動脈動 脈表現TM之影響 80 圖3-20 假手術或卵巢切除之ApoE剔除鼠餵食實驗飼料15週後對於頭臂動脈動 脈表現HO-1之影響 81 圖3-21苜蓿芽乙酸乙酯萃物及茉莉甲醇萃物對ApoE剔除鼠胸主動脈中MMP-9 蛋白質表現量的影響 82 圖3-22苜蓿芽乙酸乙酯萃物及茉莉甲醇萃物對ApoE剔除鼠胸主動脈中IL-1 蛋白質表現量的影響 83 圖4-1 APOE剔除小鼠餵食實驗飼料12週生長曲線 109 圖4-2 APOE剔除鼠餵食實驗飼料第0至12週三酸甘油酯濃度 110 圖4-3 APOE剔除鼠餵食實驗飼料第0至12週血液膽固醇濃度 111 圖4-4 APOE剔除鼠餵食實驗飼料後血液NEFA濃度 112 圖4-5 APOE剔除鼠餵食實驗飼料後腎臟中膽固醇及三酸甘油酯濃度 113 圖4-6 APOE剔除鼠餵食實驗飼料12週後頭臂動脈I / M AREA RATIO 114 圖4-7 APOE剔除鼠餵食實驗飼料12週後主動脈損傷情形 115 圖4-8 APOE剔除鼠餵食實驗飼料12週後肝臟切片(蘇木精-伊紅染色) 116 圖4-9 APOE剔除鼠餵食實驗飼料12週後頭臂動脈血管切片(蘇木精-伊紅染色) 117 圖4-10 ApoE剔除鼠餵食實驗飼料12週後periodic acid-Shiff (PAS)染色染色之腎 臟切片 117 圖4-11 ApoE剔除鼠餵食實驗飼料12週後對於頭臂動脈動脈表現MMP-9之影響 118 圖4-12 ApoE剔除鼠餵食實驗飼料12週後對於頭臂動脈動脈表現IL-1之影響 118 圖4-13 ApoE剔除鼠餵食實驗飼料12週後對於頭臂動脈動脈表現HO-1之影響 119 圖4-14 ApoE剔除鼠餵食實驗飼料12週後對於頭臂動脈動脈表現TM之影響 119 圖4-15苦瓜乙酸乙酯萃物對ApoE剔除鼠胸主動脈中MMP-9蛋白質表現量的 影響 120 圖4-15苦瓜乙酸乙酯萃物對APOE剔除鼠胸主動脈中IL-1蛋白質表現量的影響 121 表目錄 表2-1代謝症候群診斷分類 6 表2-2行政院衛生署國民健康局公告代謝症候群臨床定義 7 表2-3動脈硬化及心血管疾病危險因子的分類 11 表3-1實驗期飼料之組成 ……37 表3-2 ApoE剔除去卵巢及假手術小鼠餵食實驗飼料15週體重增加量、平均 攝食量及攝食效應 58 表 3-3 ApoE剔除去卵巢及假手術小鼠餵食實驗飼料15週後組織絕對及相對 重量 59 表 3-4 ApoE剔除去卵巢及假手術小鼠餵食實驗飼料15週實驗期間禁食血液 生化值及犧牲後肝脂濃度 60 表 3-5 APOE剔除去卵巢及假手術小鼠餵食實驗飼料15週犧牲後肝脂濃度 61 表 3-6 APOE剔除去卵巢及假手術小鼠餵食實驗飼料15週後腎臟脂肪濃度 61 表 3-7 ApoE剔除去卵巢及假手術小鼠餵食實驗飼料15週後頭臂動脈橫切面 之新生內層及中層面積比率INTIMA/MEDIA RATIO 62 表 3-8 APOE剔除去卵巢及假手術小鼠餵食實驗飼料15週後脂肪細胞大小 62 表4-1實驗期飼料之組成 99 表4-2 APOE剔除小鼠餵食實驗飼料12週體重增加量、平均攝食及攝食效應..105 表4-3APOE剔除小鼠餵食實驗飼料12週後組織絕對及相對重量 106 表4-4APOE剔除小鼠餵食實驗飼料12週實驗期間禁食血液生化值及犧牲後腎臟 脂肪濃度 107 表4-5APOE剔除小鼠餵食實驗飼料12週頭臂動脈橫切面之新生內層及中層面積比率 INTIMA/MEDIA RATIO 108

    王雲章 (1989). 藥用花卉 實用生活叢書.園藝系列. 台北市: 渡假書局.
    全中和. (2005). 花蓮區農技報導─苦瓜新品種『花蓮一號』(福寶) (Vol. 63). 花蓮: 行政院農業委員會花蓮區農業改良場.
    沈 靈. (2008). 數種植物性雌激素對動脈硬化相關因子之影響. 國立台灣師範大學人類發展與家庭學系, 碩士論文
    明.李時珍. (1994). 重訂本草綱目. 台北市: 文化圖書公司.
    洪雅雯. (2006). 山苦瓜改善高油高糖餵食大鼠腹部體脂堆積及胰島素抗性 中國醫藥學院醫學研究所碩士論文.
    洪永瀚. (2008). 苜蓿芽乙酸乙酯萃取物改善MRL-lpr/lpr自體免疫鼠病程發展之探討. 國立臺灣大學, 博士論文
    莊佳穎. (2004). 山苦瓜活化過氧化體增殖劑活化受器 PPARs 之成分分離與鑑定. 國立台灣大學, 碩士論文
    高秋華. (2008). 數種植物性雌激素對代謝症候群之影響. 國立台灣師範大學人類發展與家庭學系, 碩士論文
    陳永如. (2007). 數種植物雌激素食材萃物對 PPAR、脂肪細胞生成及雌激素活性特質鑑定. 國立台灣大學, 碩士論文.
    許婉貞 (2009) 以卵巢剔除小鼠探討數種植物雌激素化合物/萃物之雌激素相關生理活性 國立台灣大學, 碩士論文.
    黃湘儒 (2007) 山苦瓜萃取物對巨噬細胞發炎反應的影響 國立台灣師範大學, 碩士論文.
    曾雅旻. (2006). 山苦瓜對ApoE剔除鼠脂質代謝的影響. 國立台灣師範大學人類發展與家庭學系, 碩士論文
    趙哲毅. (2003). 苦瓜活化過氧化體增殖劑活化受器及改變脂質代謝相關基因之表現. 國立臺灣大學, 博士論文
    詹鳳紋. (2006). 山苦瓜對ApoE剔除小鼠動脈硬化的影響. 國立台灣師範大學人類發展與家庭學系, 碩士論文
    謝婉郁. (2005). 山苦瓜改善血糖血脂代謝異常之效應探討. 國立台灣大學, 碩士
    論文
    蕭嘉羚. (2007). 山苦瓜萃取物對人類主動脈內皮細胞表現與分泌細胞黏著分子的影響. 國立台灣師範大學, 碩士論文

    Abd El Sattar El Batran, S., El-Gengaihi, S. E., & El Shabrawy, O. A. (2006). Some toxicological studies of Momordica charantia L. on albino rats in normal and alloxan diabetic rats. J Ethnopharmacol, 108(2), 236-242.
    Adlercreutz, H., & Mazur, W. (1997). Phyto-oestrogens and Western diseases. Ann Med, 29(2), 95-120.
    Ahmed, I., Lakhani, M. S., Gillett, M., John, A., & Raza, H. (2001). Hypotriglyceridemic and hypocholesterolemic effects of anti-diabetic Momordica charantia (karela) fruit extract in streptozotocin-induced diabetic rats. Diabetes Res Clin Pract, 51(3), 155-161.
    Arita, Y., Kihara, S., Ouchi, N., Takahashi, M., Maeda, K., Miyagawa, J., et al. (1999). Paradoxical decrease of an adipose-specific protein, adiponectin, in obesity. Biochem Biophys Res Commun, 257(1), 79-83.
    Asgary, S., Moshtaghian, J., Hosseini, M., & Siadat, H. (2008). Effects of alfalfa on lipoproteins and fatty streak formation in hypercholesterolemic rabbits. Pak J Pharm Sci, 21(4), 460-464.
    Asija, A., Peterson, S. J., Stec, D. E., & Abraham, N. G. (2007). Targeting endothelial cells with heme oxygenase-1 gene using VE-cadherin promoter attenuates hyperglycemia-mediated cell injury and apoptosis. Antioxid Redox Signal, 9(12), 2065-2074.
    Atta, A. H., & Alkofahi, A. (1998). Anti-nociceptive and anti-inflammatory effects of some Jordanian medicinal plant extracts. J Ethnopharmacol, 60(2), 117-124.
    Balla, J., Vercellotti, G. M., Jeney, V., Yachie, A., Varga, Z., Jacob, H. S., et al. (2007). Heme, heme oxygenase, and ferritin: how the vascular endothelium survives (and dies) in an iron-rich environment. Antioxid Redox Signal, 9(12), 2119-2137.
    Beltowski, J. (2003). Adiponectin and resistin--new hormones of white adipose tissue. Med Sci Monit, 9(2), RA55-61.
    Bennett, M. R., Evan, G. I., & Schwartz, S. M. (1995). Apoptosis of human vascular smooth muscle cells derived from normal vessels and coronary atherosclerotic plaques. J Clin Invest, 95(5), 2266-2274.
    Berg, A. H., & Scherer, P. E. (2005). Adipose tissue, inflammation, and cardiovascular disease. Circ Res, 96(9), 939-949.
    Biscetti, F., Gaetani, E., Flex, A., Aprahamian, T., Hopkins, T., Straface, G., et al. (2008). Selective activation of peroxisome proliferator-activated receptor (PPAR)alpha and PPAR gamma induces neoangiogenesis through a vascular endothelial growth factor-dependent mechanism. Diabetes, 57(5), 1394-1404.
    Bourgeois, F., Alexiu, A., & Lemonnier, D. (1983). Dietary-induced obesity: effect of dietary fats on adipose tissue cellularity in mice. Br J Nutr, 49(1), 17-26.
    Califano, F., Giovanniello, T., Pantone, P., Campana, E., Parlapiano, C., Alegiani, F., et al. (2000). Clinical importance of thrombomodulin serum levels. Eur Rev Med Pharmacol Sci, 4(3), 59-66.
    Cerretti, D. P., Kozlosky, C. J., Mosley, B., Nelson, N., Van Ness, K., Greenstreet, T. A., et al. (1992). Molecular cloning of the interleukin-1 beta converting enzyme. Science, 256(5053), 97-100.
    Chao, C. Y., & Huang, C. J. (2003). Bitter gourd (Momordica charantia) extract activates peroxisome proliferator-activated receptors and upregulates the expression of the acyl CoA oxidase gene in H4IIEC3 hepatoma cells. J Biomed Sci, 10(6 Pt 2), 782-791.
    Chaput, E., Saladin, R., Silvestre, M., & Edgar, A. D. (2000). Fenofibrate and rosiglitazone lower serum triglycerides with opposing effects on body weight. Biochem Biophys Res Commun, 271(2), 445-450.
    Chaturvedi, P. (2005). Role of Momordica charantia in maintaining the normal levels of lipids and glucose in diabetic rats fed a high-fat and low-carbohydrate diet. Br J Biomed Sci, 62(3), 124-126.
    Chaturvedi, P., George, S., Milinganyo, M., & Tripathi, Y. B. (2004). Effect of Momordica charantia on lipid profile and oral glucose tolerance in diabetic rats. Phytother Res, 18(11), 954-956.
    Chen, J., Muntner, P., Hamm, L. L., Jones, D. W., Batuman, V., Fonseca, V., et al. (2004). The metabolic syndrome and chronic kidney disease in U.S. adults. Ann Intern Med, 140(3), 167-174.
    Chen, Q., Chan, L. L., & Li, E. T. (2003). Bitter melon (Momordica charantia) reduces adiposity, lowers serum insulin and normalizes glucose tolerance in rats fed a high fat diet. J Nutr, 133(4), 1088-1093.
    Choi, J. S., & Song, J. (2009). Effect of genistein on insulin resistance, renal lipid metabolism, and antioxidative activities in ovariectomized rats. Nutrition, 25(6), 676-685.
    Clarke, M. C., Figg, N., Maguire, J. J., Davenport, A. P., Goddard, M., Littlewood, T. D., et al. (2006). Apoptosis of vascular smooth muscle cells induces features of plaque vulnerability in atherosclerosis. Nat Med, 12(9), 1075-1080.
    Clarkson, T. B., Anthony, M. S., & Klein, K. P. (1996). Hormone replacement therapy and coronary artery atherosclerosis: the monkey model. Br J Obstet Gynaecol, 103 Suppl 13, 53-57; discussion 57-58.
    Combs, T. P., Berg, A. H., Rajala, M. W., Klebanov, S., Iyengar, P., Jimenez-Chillaron, J. C., et al. (2003). Sexual differentiation, pregnancy, calorie restriction, and aging affect the adipocyte-specific secretory protein adiponectin. Diabetes, 52(2), 268-276.
    Cornier, M. A., Dabelea, D., Hernandez, T. L., Lindstrom, R. C., Steig, A. J., Stob, N. R., et al. (2008). The metabolic syndrome. Endocr Rev, 29(7), 777-822.
    Cornwell, T., Cohick, W., & Raskin, I. (2004). Dietary phytoestrogens and health. Phytochemistry, 65(8), 995-1016.
    Costet, P., Legendre, C., More, J., Edgar, A., Galtier, P., & Pineau, T. (1998). Peroxisome proliferator-activated receptor alpha-isoform deficiency leads to progressive dyslipidemia with sexually dimorphic obesity and steatosis. J Biol Chem, 273(45), 29577-29585.
    Crawford, S. E., & Borensztajn, J. (1999). Plasma clearance and liver uptake of chylomicron remnants generated by hepatic lipase lipolysis: evidence for a lactoferrin-sensitive and apolipoprotein E-independent pathway. J Lipid Res, 40(5), 797-805.
    Day, C., Cartwright, T., Provost, J., & Bailey, C. J. (1990). Hypoglycaemic effect of Momordica charantia extracts. Planta Med, 56(5), 426-429.
    de Kleijn, M. J., van der Schouw, Y. T., Wilson, P. W., Grobbee, D. E., & Jacques, P. F. (2002). Dietary intake of phytoestrogens is associated with a favorable metabolic cardiovascular risk profile in postmenopausal U.S.women: the Framingham study. J Nutr, 132(2), 276-282.
    Declercq, V., Yeganeh, B., Moshtaghi-Kashanian, G. R., Khademi, H., Bahadori, B., & Moghadasian, M. H. (2005). Paradoxical effects of fenofibrate and nicotinic acid in apo E-deficient mice. J Cardiovasc Pharmacol, 46(1), 18-24.
    Dinarello, C. A., & Wolff, S. M. (1993). The role of interleukin-1 in disease. N Engl J Med, 328(2), 106-113.
    Dixon, R. A., & Ferreira, D. (2002). Genistein. Phytochemistry, 60(3), 205-211.
    Dodge, J. A., Glasebrook, A. L., Magee, D. E., Phillips, D. L., Sato, M., Short, L. L., et al. (1996). Environmental estrogens: effects on cholesterol lowering and bone in the ovariectomized rat. J Steroid Biochem Mol Biol, 59(2), 155-161.
    Eberhardt, W., Schulze, M., Engels, C., Klasmeier, E., & Pfeilschifter, J. (2002). Glucocorticoid-mediated suppression of cytokine-induced matrix metalloproteinase-9 expression in rat mesangial cells: involvement of nuclear factor-kappaB and Ets transcription factors. Mol Endocrinol, 16(8), 1752-1766.
    Eckel, R. H., Grundy, S. M., & Zimmet, P. Z. (2005). The metabolic syndrome. Lancet, 365(9468), 1415-1428.
    Enmark, E., & Gustafsson, J. A. (1999). Oestrogen receptors - an overview. J Intern Med, 246(2), 133-138.
    Executive Summary of The Third Report of The National Cholesterol Education Program (NCEP) Expert Panel on Detection, Evaluation, And Treatment of High Blood Cholesterol In Adults (Adult Treatment Panel III). (2001). JAMA, 285(19), 2486-2497.
    Falk, E., Shah, P. K., & Fuster, V. (1995). Coronary plaque disruption. Circulation, 92(3), 657-671.
    Fernandes, N. P., Lagishetty, C. V., Panda, V. S., & Naik, S. R. (2007). An experimental evaluation of the antidiabetic and antilipidemic properties of a standardized Momordica charantia fruit extract. BMC Complement Altern Med, 7, 29.
    Ford, E. S., & Giles, W. H. (2003). A comparison of the prevalence of the metabolic syndrome using two proposed definitions. Diabetes Care, 26(3), 575-581.
    Franke, A. A., Custer, L. J., Cerna, C. M., & Narala, K. (1995). Rapid HPLC analysis of dietary phytoestrogens from legumes and from human urine. Proc Soc Exp Biol Med, 208(1), 18-26.
    Fu, T., Kashireddy, P., & Borensztajn, J. (2003). The peroxisome-proliferator-activated receptor alpha agonist ciprofibrate severely aggravates hypercholesterolaemia and accelerates the development of atherosclerosis in mice lacking apolipoprotein E. Biochem J, 373(Pt 3), 941-947.
    Fujita, T., Toda, K., Karimova, A., Yan, S. F., Naka, Y., Yet, S. F., et al. (2001). Paradoxical rescue from ischemic lung injury by inhaled carbon monoxide driven by derepression of fibrinolysis. Nat Med, 7(5), 598-604.
    Fulop, T., Tessier, D., & Carpentier, A. (2006). The metabolic syndrome. Pathol Biol (Paris), 54(7), 375-386.
    Gastaldelli, A., Sironi, A. M., Ciociaro, D., Positano, V., Buzzigoli, E., Giannessi, D., et al. (2005). Visceral fat and beta cell function in non-diabetic humans. Diabetologia, 48(10), 2090-2096.
    Gehm, B. D., McAndrews, J. M., Chien, P. Y., & Jameson, J. L. (1997). Resveratrol, a polyphenolic compound found in grapes and wine, is an agonist for the estrogen receptor. Proc Natl Acad Sci U S A, 94(25), 14138-14143.
    Geng, Y. J., & Libby, P. (1995). Evidence for apoptosis in advanced human atheroma. Colocalization with interleukin-1 beta-converting enzyme. Am J Pathol, 147(2), 251-266.
    Gimeno, R. E., & Klaman, L. D. (2005). Adipose tissue as an active endocrine organ: recent advances. Curr Opin Pharmacol, 5(2), 122-128.
    Glass, C. K., & Witztum, J. L. (2001). Atherosclerosis. the road ahead. Cell, 104(4), 503-516.
    Grover, J. K., & Yadav, S. P. (2004). Pharmacological actions and potential uses of Momordica charantia: a review. J Ethnopharmacol, 93(1), 123-132.
    Grundy, S. M. (2004). What is the contribution of obesity to the metabolic syndrome? Endocrinol Metab Clin North Am, 33(2), 267-282, table of contents.
    Halvorsen, B., Otterdal, K., Dahl, T. B., Skjelland, M., Gullestad, L., Oie, E., et al. (2008). Atherosclerotic plaque stability--what determines the fate of a plaque? Prog Cardiovasc Dis, 51(3), 183-194.
    Hamilton, B. S., Paglia, D., Kwan, A. Y., & Deitel, M. (1995). Increased obese mRNA expression in omental fat cells from massively obese humans. Nat Med, 1(9), 953-956.
    Hamosh, M., & Hamosh, P. (1975). The effect of estrogen on the lipoprotein lipase activity of rat adipose tissue. J Clin Invest, 55(5), 1132-1135.
    Harmon, A. W., & Harp, J. B. (2001). Differential effects of flavonoids on 3T3-L1 adipogenesis and lipolysis. Am J Physiol Cell Physiol, 280(4), C807-813.
    Hirose, N., Inoue, T., Nishihara, K., Sugano, M., Akimoto, K., Shimizu, S., et al. (1991). Inhibition of cholesterol absorption and synthesis in rats by sesamin. J Lipid Res, 32(4), 629-638.
    Hodgson, J. M., Puddey, I. B., Beilin, L. J., Mori, T. A., & Croft, K. D. (1998). Supplementation with isoflavonoid phytoestrogens does not alter serum lipid concentrations: a randomized controlled trial in humans. J Nutr, 128(4), 728-732.
    Hotta, K., Funahashi, T., Arita, Y., Takahashi, M., Matsuda, M., Okamoto, Y., et al. (2000). Plasma concentrations of a novel, adipose-specific protein, adiponectin, in type 2 diabetic patients. Arterioscler Thromb Vasc Biol, 20(6), 1595-1599.
    Houseknecht, K. L., Baile, C. A., Matteri, R. L., & Spurlock, M. E. (1998). The biology of leptin: a review. J Anim Sci, 76(5), 1405-1420.
    Idriss, N. K., Blann, A. D., & Lip, G. Y. (2008). Hemoxygenase-1 in cardiovascular disease. J Am Coll Cardiol, 52(12), 971-978.
    Iida, S., & Komiyama, N. (2009). Balance between interleukin-1beta and interleukin-1 receptor antagonist in the development of atherosclerosis. A polymorphism in the interleukin-1 receptor antagonist. Circ J, 73(8), 1401-1402.
    Iritani, N., Sugimoto, T., Fukuda, H., Komiya, M., & Ikeda, H. (1997). Dietary soybean protein increases insulin receptor gene expression in Wistar fatty rats when dietary polyunsaturated fatty acid level is low. J Nutr, 127(6), 1077-1083.
    Jayasooriya, A. P., Sakono, M., Yukizaki, C., Kawano, M., Yamamoto, K., & Fukuda, N. (2000). Effects of Momordica charantia powder on serum glucose levels and various lipid parameters in rats fed with cholesterol-free and cholesterol-enriched diets. J Ethnopharmacol, 72(1-2), 331-336.
    Jiang, T., Wang, Z., Proctor, G., Moskowitz, S., Liebman, S. E., Rogers, T., et al. (2005). Diet-induced obesity in C57BL/6J mice causes increased renal lipid accumulation and glomerulosclerosis via a sterol regulatory element-binding protein-1c-dependent pathway. J Biol Chem, 280(37), 32317-32325.
    Jurimae, J., & Jurimae, T. (2007). Plasma adiponectin concentration in healthy pre- and postmenopausal women: relationship with body composition, bone mineral, and metabolic variables. Am J Physiol Endocrinol Metab, 293(1), E42-47.
    Kahn, B. B., & Flier, J. S. (2000). Obesity and insulin resistance. J Clin Invest, 106(4), 473-481.
    Kai, H., Ikeda, H., Yasukawa, H., Kai, M., Seki, Y., Kuwahara, F., et al. (1998). Peripheral blood levels of matrix metalloproteases-2 and -9 are elevated in patients with acute coronary syndromes. J Am Coll Cardiol, 32(2), 368-372.
    Khanna, P., Jain, S. C., Panagariya, A., & Dixit, V. P. (1981). Hypoglycemic activity of polypeptide-p from a plant source. J Nat Prod, 44(6), 648-655.
    Kimmelstiel, P., & Wilson, C. (1936). Intercapillary Lesions in the Glomeruli of the Kidney. Am J Pathol, 12(1), 83-98 87.
    Kirii, H., Niwa, T., Yamada, Y., Wada, H., Saito, K., Iwakura, Y., et al. (2003). Lack of interleukin-1beta decreases the severity of atherosclerosis in ApoE-deficient mice. Arterioscler Thromb Vasc Biol, 23(4), 656-660.
    Knight, D. C., & Eden, J. A. (1996). A review of the clinical effects of phytoestrogens. Obstet Gynecol, 87(5 Pt 2), 897-904.
    Knuckles, B. E., deFremery, D., & Kohler, G. O. (1976). Coumestrol content of fractions obtained during wet processing of alfalfa. J Agric Food Chem, 24(6), 1177-1180.
    Kobori, M., Nakayama, H., Fukushima, K., Ohnishi-Kameyama, M., Ono, H., Fukushima, T., et al. (2008). Bitter gourd suppresses lipopolysaccharide-induced inflammatory responses. J Agric Food Chem, 56(11), 4004-4011.
    Kolanjiappan, K., & Manoharan, S. (2005). Chemopreventive efficacy and anti-lipid peroxidative potential of Jasminum grandiflorum Linn. on 7,12-dimethylbenz(a)anthracene-induced rat mammary carcinogenesis. Fundam Clin Pharmacol, 19(6), 687-693.
    Kubota, N., Terauchi, Y., Yamauchi, T., Kubota, T., Moroi, M., Matsui, J., et al. (2002). Disruption of adiponectin causes insulin resistance and neointimal formation. J Biol Chem, 277(29), 25863-25866.
    Kuiper, G. G., Lemmen, J. G., Carlsson, B., Corton, J. C., Safe, S. H., van der Saag, P. T., et al. (1998). Interaction of estrogenic chemicals and phytoestrogens with estrogen receptor beta. Endocrinology, 139(10), 4252-4263.
    Kunte, H., Amberger, N., Busch, M. A., Ruckert, R. I., Meiners, S., & Harms, L. (2008). Markers of instability in high-risk carotid plaques are reduced by statins. J Vasc Surg, 47(3), 513-522.
    Landolfi, R., Mower, R. L., & Steiner, M. (1984). Modification of platelet function and arachidonic acid metabolism by bioflavonoids. Structure-activity relations. Biochem Pharmacol, 33(9), 1525-1530.
    Lara-Castro, C., Fu, Y., Chung, B. H., & Garvey, W. T. (2007). Adiponectin and the metabolic syndrome: mechanisms mediating risk for metabolic and cardiovascular disease. Curr Opin Lipidol, 18(3), 263-270.
    Lau, D. C., Dhillon, B., Yan, H., Szmitko, P. E., & Verma, S. (2005). Adipokines: molecular links between obesity and atheroslcerosis. Am J Physiol Heart Circ Physiol, 288(5), H2031-2041.
    Lee, I. S., Shin, G., & Choue, R. (2009). Shifts in Diet from High Fat to High Carbohydrate Improved Levels of Adipokines and Pro-inflammatory Cytokines in Mice Fed a High-fat Diet. Endocr J.
    Lemieux, C., Picard, F., Labrie, F., Richard, D., & Deshaies, Y. (2003). The estrogen antagonist EM-652 and dehydroepiandrosterone prevent diet- and ovariectomy-induced obesity. Obes Res, 11(3), 477-490.
    Li, A. C., & Glass, C. K. (2004). PPAR- and LXR-dependent pathways controlling lipid metabolism and the development of atherosclerosis. J Lipid Res, 45(12), 2161-2173.
    Li, C. J., Sun, H. W., Zhu, F. L., Chen, L., Rong, Y. Y., Zhang, Y., et al. (2007). Local adiponectin treatment reduces atherosclerotic plaque size in rabbits. J Endocrinol, 193(1), 137-145.
    Liang, C. P., & Tall, A. R. (2001). Transcriptional profiling reveals global defects in energy metabolism, lipoprotein, and bile acid synthesis and transport with reversal by leptin treatment in ob/ob mouse liver. J Biol Chem, 276(52), 49066-49076.
    Liapis, C. D., Avgerinos, E. D., Kadoglou, N. P., & Kakisis, J. D. (2009). What a vascular surgeon should know and do about atherosclerotic risk factors. J Vasc Surg, 49(5), 1348-1354.
    Lii, C. K., Chen, H. W., Yun, W. T., & Liu, K. L. (2009). Suppressive effects of wild bitter gourd (Momordica charantia Linn. var. abbreviata ser.) fruit extracts on inflammatory responses in RAW264.7 macrophages. J Ethnopharmacol, 122(2), 227-233.
    Lin, C. H., Chou, C. Y., Lin, C. C., Huang, C. C., Liu, C. S., & Lai, S. W. (2007). Waist-to-height ratio is the best index of obesity in association with chronic kidney disease. Nutrition, 23(11-12), 788-793.
    Lin, S. J., Lee, I. T., Chen, Y. H., Lin, F. Y., Sheu, L. M., Ku, H. H., et al. (2007). Salvianolic acid B attenuates MMP-2 and MMP-9 expression in vivo in apolipoprotein-E-deficient mouse aorta and in vitro in LPS-treated human aortic smooth muscle cells. J Cell Biochem, 100(2), 372-384.
    Liu, X. M., Chapman, G. B., Peyton, K. J., Schafer, A. I., & Durante, W. (2002). Carbon monoxide inhibits apoptosis in vascular smooth muscle cells. Cardiovasc Res, 55(2), 396-405.
    Loftus, I. M., Naylor, A. R., Goodall, S., Crowther, M., Jones, L., Bell, P. R., et al. (2000). Increased matrix metalloproteinase-9 activity in unstable carotid plaques. A potential role in acute plaque disruption. Stroke, 31(1), 40-47.
    Luttun, A., Lutgens, E., Manderveld, A., Maris, K., Collen, D., Carmeliet, P., et al. (2004). Loss of matrix metalloproteinase-9 or matrix metalloproteinase-12 protects apolipoprotein E-deficient mice against atherosclerotic media destruction but differentially affects plaque growth. Circulation, 109(11), 1408-1414.
    Mardones, P., Pilon, A., Bouly, M., Duran, D., Nishimoto, T., Arai, H., et al. (2003). Fibrates down-regulate hepatic scavenger receptor class B type I protein expression in mice. J Biol Chem, 278(10), 7884-7890.
    Matsuda, H., Li, Y., Murakami, T., Matsumura, N., Yamahara, J., & Yoshikawa, M. (1998). Antidiabetic principles of natural medicines. III. Structure-related inhibitory activity and action mode of oleanolic acid glycosides on hypoglycemic activity. Chem Pharm Bull (Tokyo), 46(9), 1399-1403.
    Mazur, W. M., Wahala, K., Rasku, S., Salakka, A., Hase, T., & Adlercreutz, H. (1998). Lignan and isoflavonoid concentrations in tea and coffee. Br J Nutr, 79(1), 37-45.
    Meir, K. S., & Leitersdorf, E. (2004). Atherosclerosis in the apolipoprotein-E-deficient mouse: a decade of progress. Arterioscler Thromb Vasc Biol, 24(6), 1006-1014.
    Miura, T., Itoh, C., Iwamoto, N., Kato, M., Kawai, M., Park, S. R., et al. (2001). Hypoglycemic activity of the fruit of the Momordica charantia in type 2 diabetic mice. J Nutr Sci Vitaminol (Tokyo), 47(5), 340-344.
    Morita, T., & Kourembanas, S. (1995). Endothelial cell expression of vasoconstrictors and growth factors is regulated by smooth muscle cell-derived carbon monoxide. J Clin Invest, 96(6), 2676-2682.
    Muoio, D. M., & Lynis Dohm, G. (2002). Peripheral metabolic actions of leptin. Best Pract Res Clin Endocrinol Metab, 16(4), 653-666.
    Murray, C. J., & Lopez, A. D. (1997). Global mortality, disability, and the contribution of risk factors: Global Burden of Disease Study. Lancet, 349(9063), 1436-1442.
    Naaz, A., Yellayi, S., Zakroczymski, M. A., Bunick, D., Doerge, D. R., Lubahn, D. B., et al. (2003). The soy isoflavone genistein decreases adipose deposition in mice. Endocrinology, 144(8), 3315-3320.
    Nachman, R. L., Hajjar, K. A., Silverstein, R. L., & Dinarello, C. A. (1986). Interleukin 1 induces endothelial cell synthesis of plasminogen activator inhibitor. J Exp Med, 163(6), 1595-1600.
    Nakashima, Y., Plump, A. S., Raines, E. W., Breslow, J. L., & Ross, R. (1994). ApoE-deficient mice develop lesions of all phases of atherosclerosis throughout the arterial tree. Arterioscler Thromb, 14(1), 133-140.
    Nerurkar, P. V., Pearson, L., Efird, J. T., Adeli, K., Theriault, A. G., & Nerurkar, V. R. (2005). Microsomal triglyceride transfer protein gene expression and ApoB secretion are inhibited by bitter melon in HepG2 cells. J Nutr, 135(4), 702-706.
    Nestel, P. J., Yamashita, T., Sasahara, T., Pomeroy, S., Dart, A., Komesaroff, P., et al. (1997). Soy isoflavones improve systemic arterial compliance but not plasma lipids in menopausal and perimenopausal women. Arterioscler Thromb Vasc Biol, 17(12), 3392-3398.
    Neuzil, J., & Stocker, R. (1994). Free and albumin-bound bilirubin are efficient co-antioxidants for alpha-tocopherol, inhibiting plasma and low density lipoprotein lipid peroxidation. J Biol Chem, 269(24), 16712-16719.
    Nogowski, L., Nowak, K. W., & Mackowiak, P. (1992). Effect of phytooestrogen--coumestrol and oestrone on some aspects of carbohydrate metabolism in ovariectomized female rats. Arch Vet Pol, 32(3-4), 79-84.
    Noguchi, R., Yasui, Y., Suzuki, R., Hosokawa, M., Fukunaga, K., & Miyashita, K. (2001). Dietary effects of bitter gourd oil on blood and liver lipids of rats. Arch Biochem Biophys, 396(2), 207-212.
    Oak, M. H., El Bedoui, J., & Schini-Kerth, V. B. (2005). Antiangiogenic properties of natural polyphenols from red wine and green tea. J Nutr Biochem, 16(1), 1-8.
    Otabe, S., Yuan, X., Fukutani, T., Wada, N., Hashinaga, T., Nakayama, H., et al. (2007). Overexpression of human adiponectin in transgenic mice results in suppression of fat accumulation and prevention of premature death by high-calorie diet. Am J Physiol Endocrinol Metab, 293(1), E210-218.
    Ouchi, N., Kihara, S., Arita, Y., Maeda, K., Kuriyama, H., Okamoto, Y., et al. (1999). Novel modulator for endothelial adhesion molecules: adipocyte-derived plasma protein adiponectin. Circulation, 100(25), 2473-2476.
    Park, E. J., & Pezzuto, J. M. (2002). Botanicals in cancer chemoprevention. Cancer Metastasis Rev, 21(3-4), 231-255.
    Peluso, M. R. (2006). Flavonoids attenuate cardiovascular disease, inhibit phosphodiesterase, and modulate lipid homeostasis in adipose tissue and liver. Exp Biol Med (Maywood), 231(8), 1287-1299.
    Piedrahita, J. A., Zhang, S. H., Hagaman, J. R., Oliver, P. M., & Maeda, N. (1992). Generation of mice carrying a mutant apolipoprotein E gene inactivated by gene targeting in embryonic stem cells. Proc Natl Acad Sci U S A, 89(10), 4471-4475.
    Pischon, T., Girman, C. J., Hotamisligil, G. S., Rifai, N., Hu, F. B., & Rimm, E. B. (2004). Plasma adiponectin levels and risk of myocardial infarction in men. JAMA, 291(14), 1730-1737.
    Ponka, P. (1999). Cell biology of heme. Am J Med Sci, 318(4), 241-256.
    Rathi, S. S., Grover, J. K., Vikrant, V., & Biswas, N. R. (2002). Prevention of experimental diabetic cataract by Indian Ayurvedic plant extracts. Phytother Res, 16(8), 774-777.
    Rodriguez, J. A., Orbe, J., & Paramo, J. A. (2007). [Metalloproteases, vascular remodeling and atherothrombotic syndromes]. Rev Esp Cardiol, 60(9), 959-967.
    Rosenfeld, M. E., Polinsky, P., Virmani, R., Kauser, K., Rubanyi, G., & Schwartz, S. M. (2000). Advanced atherosclerotic lesions in the innominate artery of the ApoE knockout mouse. Arterioscler Thromb Vasc Biol, 20(12), 2587-2592.
    Ross, R. (1999). Atherosclerosis--an inflammatory disease. N Engl J Med, 340(2), 115-126.
    Ruggeri, Z. M. (2002). Platelets in atherothrombosis. Nat Med, 8(11), 1227-1234.
    Rushworth, S. A., & MacEwan, D. J. (2008). HO-1 underlies resistance of AML cells to TNF-induced apoptosis. Blood, 111(7), 3793-3801.
    Samman, S., Lyons Wall, P. M., Chan, G. S., Smith, S. J., & Petocz, P. (1999). The effect of supplementation with isoflavones on plasma lipids and oxidisability of low density lipoprotein in premenopausal women. Atherosclerosis, 147(2), 277-283.
    Sargeant, P., Farndale, R. W., & Sage, S. O. (1993). The tyrosine kinase inhibitors methyl 2,5-dihydroxycinnamate and genistein reduce thrombin-evoked tyrosine phosphorylation and Ca2+ entry in human platelets. FEBS Lett, 315(3), 242-246.
    Sass, G., Shembade, N. D., & Tiegs, G. (2005). Tumour necrosis factor alpha (TNF)-TNF receptor 1-inducible cytoprotective proteins in the mouse liver: relevance of suppressors of cytokine signalling. Biochem J, 385(Pt 2), 537-544.
    Sayegh, R. A., Kelly, L., Wurtman, J., Deitch, A., & Chelmow, D. (1999). Impact of hormone replacement therapy on the body mass and fat compositions of menopausal women: a cross-sectional study. Menopause, 6(4), 312-315.
    Schaub, F. J., Han, D. K., Liles, W. C., Adams, L. D., Coats, S. A., Ramachandran, R. K., et al. (2000). Fas/FADD-mediated activation of a specific program of inflammatory gene expression in vascular smooth muscle cells. Nat Med, 6(7), 790-796.
    Shaw, D. I., Hall, W. L., & Williams, C. M. (2005). Metabolic syndrome: what is it and what are the implications? Proc Nutr Soc, 64(3), 349-357.
    Shibib, B. A., Khan, L. A., & Rahman, R. (1993). Hypoglycaemic activity of Coccinia indica and Momordica charantia in diabetic rats: depression of the hepatic gluconeogenic enzymes glucose-6-phosphatase and fructose-1,6-bisphosphatase and elevation of both liver and red-cell shunt enzyme glucose-6-phosphate dehydrogenase. Biochem J, 292 ( Pt 1), 267-270.
    Singh, N., Tyagi, S. D., & Agarwal, S. C. (1989). Effects of long term feeding of acetone extract of Momordica charantia (whole fruit powder) on alloxan diabetic albino rats. Indian J Physiol Pharmacol, 33(2), 97-100.
    Sirtori, C. R., Lovati, M. R., Manzoni, C., Monetti, M., Pazzucconi, F., & Gatti, E. (1995). Soy and cholesterol reduction: clinical experience. J Nutr, 125(3 Suppl), 598S-605S.
    Sivitz, W. I., Walsh, S. A., Morgan, D. A., Thomas, M. J., & Haynes, W. G. (1997). Effects of leptin on insulin sensitivity in normal rats. Endocrinology, 138(8), 3395-3401.
    Soler, J. T., Folsom, A. R., Kaye, S. A., & Prineas, R. J. (1989). Associations of abdominal adiposity, fasting insulin, sex hormone binding globulin, and estrone with lipids and lipoproteins in post-menopausal women. Atherosclerosis, 79(1), 21-27.
    Srivastava, Y., Venkatakrishna-Bhatt, H., & Verma, Y. (1988). Effect of Momordica charantia Linn. pomous aqueous extract on cataractogenesis in murrin alloxan diabetics. Pharmacol Res Commun, 20(3), 201-209.
    Stocker, R., Yamamoto, Y., McDonagh, A. F., Glazer, A. N., & Ames, B. N. (1987). Bilirubin is an antioxidant of possible physiological importance. Science, 235(4792), 1043-1046.
    Sumner, L. W., Mendes, P., & Dixon, R. A. (2003). Plant metabolomics: large-scale phytochemistry in the functional genomics era. Phytochemistry, 62(6), 817-836.
    Taslim, S., & Tai, E. S. (2009). The relevance of the metabolic syndrome. Ann Acad Med Singapore, 38(1), 29-25.
    Tenhunen, R., Marver, H. S., & Schmid, R. (1968). The enzymatic conversion of heme to bilirubin by microsomal heme oxygenase. Proc Natl Acad Sci U S A, 61(2), 748-755.
    Tham, D. M., Gardner, C. D., & Haskell, W. L. (1998). Clinical review 97: Potential health benefits of dietary phytoestrogens: a review of the clinical, epidemiological, and mechanistic evidence. J Clin Endocrinol Metab, 83(7), 2223-2235.
    Tikkanen, M. J., Wahala, K., Ojala, S., Vihma, V., & Adlercreutz, H. (1998). Effect of soybean phytoestrogen intake on low density lipoprotein oxidation resistance. Proc Natl Acad Sci U S A, 95(6), 3106-3110.
    Tritos, N. A., & Mantzoros, C. S. (1997). Leptin: its role in obesity and beyond. Diabetologia, 40(12), 1371-1379.
    Umamaheswari, M., Asokkumar, K., Rathidevi, R., Sivashanmugam, A. T., Subhadradevi, V., & Ravi, T. K. (2007). Antiulcer and in vitro antioxidant activities of Jasminum grandiflorum L. J Ethnopharmacol, 110(3), 464-470.
    Virdi, J., Sivakami, S., Shahani, S., Suthar, A. C., Banavalikar, M. M., & Biyani, M. K. (2003). Antihyperglycemic effects of three extracts from Momordica charantia. J Ethnopharmacol, 88(1), 107-111.
    Wakatsuki, A., Ikenoue, N., Shinohara, K., Watanabe, K., & Fukaya, T. (2004). Effect of lower dosage of oral conjugated equine estrogen on inflammatory markers and endothelial function in healthy postmenopausal women. Arterioscler Thromb Vasc Biol, 24(3), 571-576.
    Walsh, K., Smith, R. C., & Kim, H. S. (2000). Vascular cell apoptosis in remodeling, restenosis, and plaque rupture. Circ Res, 87(3), 184-188.
    Wang, T. T., Sathyamoorthy, N., & Phang, J. M. (1996). Molecular effects of genistein on estrogen receptor mediated pathways. Carcinogenesis, 17(2), 271-275.
    Waugh, J. M., Li-Hawkins, J., Yuksel, E., Kuo, M. D., Cifra, P. N., Hilfiker, P. R., et al. (2000). Thrombomodulin overexpression to limit neointima formation. Circulation, 102(3), 332-337.
    Williams, H., Johnson, J. L., Carson, K. G., & Jackson, C. L. (2002). Characteristics of intact and ruptured atherosclerotic plaques in brachiocephalic arteries of apolipoprotein E knockout mice. Arterioscler Thromb Vasc Biol, 22(5), 788-792.
    Wing, R. R., Matthews, K. A., Kuller, L. H., Meilahn, E. N., & Plantinga, P. L. (1991). Weight gain at the time of menopause. Arch Intern Med, 151(1), 97-102.
    Wiseman, H., O'Reilly, J. D., Adlercreutz, H., Mallet, A. I., Bowey, E. A., Rowland, I. R., et al. (2000). Isoflavone phytoestrogens consumed in soy decrease F(2)-isoprostane concentrations and increase resistance of low-density lipoprotein to oxidation in humans. Am J Clin Nutr, 72(2), 395-400.
    Wolk, R., Berger, P., Lennon, R. J., Brilakis, E. S., Johnson, B. D., & Somers, V. K. (2004). Plasma leptin and prognosis in patients with established coronary atherosclerosis. J Am Coll Cardiol, 44(9), 1819-1824.
    Wu, J., Wang, X., Chiba, H., Higuchi, M., Nakatani, T., Ezaki, O., et al. (2004). Combined intervention of soy isoflavone and moderate exercise prevents body fat elevation and bone loss in ovariectomized mice. Metabolism, 53(7), 942-948.
    Yadav, U. C., Moorthy, K., & Baquer, N. Z. (2005). Combined treatment of sodium orthovanadate and Momordica charantia fruit extract prevents alterations in lipid profile and lipogenic enzymes in alloxan diabetic rats. Mol Cell Biochem, 268(1-2), 111-120.
    Yet, S. F., Perrella, M. A., Layne, M. D., Hsieh, C. M., Maemura, K., Kobzik, L., et al. (1999). Hypoxia induces severe right ventricular dilatation and infarction in heme oxygenase-1 null mice. J Clin Invest, 103(8), R23-29.
    Yokoo, T., & Kitamura, M. (1996). Dual regulation of IL-1 beta-mediated matrix metalloproteinase-9 expression in mesangial cells by NF-kappa B and AP-1. Am J Physiol, 270(1 Pt 2), F123-130.
    Yoon, M. (2009). The role of PPARalpha in lipid metabolism and obesity: focusing on the effects of estrogen on PPARalpha actions. Pharmacol Res, 60(3), 151-159.
    Zava, D. T., & Duwe, G. (1997). Estrogenic and antiproliferative properties of genistein and other flavonoids in human breast cancer cells in vitro. Nutr Cancer, 27(1), 31-40.
    Zhen-Wei, X., Jian-Le, S., Qi, Q., Wen-Wei, Z., Xue-Hong, Z., & Zi-Li, Z. (2007). Heme oxygenase-1 improves the survival of discordant cardiac xenograft through its anti-inflammatory and anti-apoptotic effects. Pediatr Transplant, 11(8), 850-859.
    Zhu, W., Everson, W. V., & Smart, E. J. (2004). Estrogen in cardiovascular disease. Curr Opin Lipidol, 15(5), 589-593.
    Zsila, F., Bikadi, Z., & Simonyi, M. (2003). Probing the binding of the flavonoid, quercetin to human serum albumin by circular dichroism, electronic absorption spectroscopy and molecular modelling methods. Biochem Pharmacol, 65(3), 447-456.

    下載圖示
    QR CODE