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參考文獻(xiàn)

[1] 肖小河, 蘇中武, 喬傳卓, 等. 姜黃屬藥用植物研究進(jìn)展[J]. 中草藥, 1997, 28(2): 114-119.

[2] Govindarajan V S. Turmeric-chemistry, technology and quanlity [J]. Critical Reviews in Food Science and Nutrition, 1980, 12(3): 199-301.

[3] 曠春桃. 姜黃素的包合、結(jié)構(gòu)修飾及姜黃飼料添加劑研究[D]. 長(zhǎng)沙: 中南林業(yè)科技大學(xué), 2012.

[4] 韓剛, 霍文, 李秋影, 等. 姜黃素的穩(wěn)定性研究[J]. 中成藥, 2007, 29(2): 291-293.

[5] Natarajan C P, Lewis Y S. Technology of Ginger and Turmeric-In Status Papers and Abstracts[C].National Seminar on Ginger and Turmeric, Central Plantation Crops Research Institute, Calicut, India, 1980, 8: 83-89.

[6] 湯敏燕, 汪洪武, 孫凌峰. 中藥姜黃揮發(fā)油化學(xué)成分研究[J]. 江西師范大學(xué)學(xué)報(bào)(自然科學(xué)版), 2000, 24(3): 274-276.

[7] 杭太俊, 張正行, 相秉仁, 等. 姜黃揮發(fā)油毛細(xì)管氣相色譜指紋譜的標(biāo)準(zhǔn)化和數(shù)字化研究[J]. 中草藥, 2003, 34(9): 793-797.

[8] 李瑞敏. 鮮姜黃中姜黃素的提取分離及純化工藝研究[D]. 長(zhǎng)沙: 中南林業(yè)科技大學(xué), 2013.

[9] Ramachandraiah O S, Azeemoddin G, Charyulu J K, et al. Isolation, characteristics, chemical composition andmicrobial activity of turmeric(Curcuma longa Syn. C. domestica valeton) leaf oil[J]. Indian Perfumer, 2002, 46(3): 211-216.

[10] Singh R, Chandra R, Bose M, et al. Antibacterial activity of Curcuma longa rhizome extract on pathogenic bacteria [J]. Curr Sci, 2002 , 83(6): 737-740.

[11] Giang T S. Study on chemical components and separation of curcumin from rhizome Curcuma longa [J]. Tap Chi Duoc Hoc, 2002, 1: 15-17.

[12] Apisariyakul A, Vanittanakom N, Buddhasukh D. Antifungal activity of turmeric oil extractedfrom Curcuma longa(Zingiberaceae)[J]. J Ethnopharmacol, 1995, 49: 163-169.

[13] Singh G, OmPrakash Maurya S. Chemical and biocidal investigations on essential oils of some Indian Curcuma species [J]. Progress in Crystal Growth and Characterization of Materials, 2002,45(1-2): 75-81.

[14] Chandra D, Gupta S S. Anti-inflammatory and antiarthritic activity of volatile oil of Curcuma longa(Haldi) [J]. Indian J Med Res, 1972 , 60: 138-142.

[15] 石雪蓉, 顧健, 譚睿. 姜黃揮發(fā)油抗腫瘤作用機(jī)制研究[J]. 中藥藥理與臨床, 2003, 19(6): 15-16.

[16] Tawatsin A, Wratten S D, Scott R R, et al. Repellency of volatile oils from plants against three mosquito vectors [J]. J Vector Ecol, 2001, 26: 76-82.

[17] Tripathi A K, Prajapati V, Verma N, et al. Bioactivities of the leaf essential oil of Curcuma Longa(var. Ch-66) on three stored-product beetles(Coleoptera) [J]. J Economic Entomology,2002, 95(1): 183-189.

[18] 趙澤貞, 溫登瑰, 魏麗珍, 等. 姜黃油抗突變作用機(jī)理進(jìn)一步試驗(yàn)研究[J]. 癌變·畸變·突變, 1999, 11(2): 75-77.

[19] 李誠(chéng)秀, 李玲, 羅俊, 等. 姜黃揮發(fā)油對(duì)呼吸道作用的研究[J]. 中國(guó)中藥雜志, 1998, 23(10): 624-626.

[20] 凌關(guān)庭. 抗氧化食品與健康[M]. 北京:化學(xué)工業(yè)出版社, 2004: 22-23.

[21] Mara M Braga, Patriaciaf Leal, Joae Carvalho, et al. Comparison of Yield, Composition, and Antioxidant Activity of Turmeric(Curcuma longa L. ) Extracts Obtained Using Various Techniques [J]. J Agric Food Chem, 2003, 51: 6604-6611.

[22] Jeng-Leun Mau,Eric Y C Lai, Wang N P, et al. Composition and antioxidant activity of the essential oil from curcuma zedoaria[J]. Food Chem, 2003, 82(4): 583-591.

[23] 江琰, 陳訓(xùn). 四種植物揮發(fā)油對(duì)食用油脂抗氧化作用的研究[J]. 貴州科學(xué), 2006, 24(2): 20-23.

[24] Priyanka Rathore,Preeti Dohare,Saurabh Varma, et al. Curcuma Oil: Reduces Early Accumulation of Oxidative Product and is Anti-apoptogenic in Transient Focal Ischemia in Rat Brain [J]. Neurochem Res, 2008 , 33(11) : 2376.

[25] 趙心宇, 孟秀香, 賈莉, 等. 姜黃素抗腫瘤機(jī)制實(shí)用藥物與臨床[J]. 2006, 9(1): 51-52.

[26] Kuttan R, Bhanumathy P, Nirmala K, et al. Potential anticancer activity of turmeric(curcuma-longa) [J]. Cancer Letters, 1985, 29(2): 197-202.

[27] Kawamori T, Lubet R, Steele V E, et al. Chemopreventive effect of curcumin, a naturally occurring anti-inflammatory agent, during the promotion/progression stages of colon cancer [J]. Cancer Research, 1999, 59(3): 597-601.

[28] Rao T S, Basu N, Siddiqui H H. Anti-inflammatory activity of curcumin analogs [J]. Indian Journal of Medical Research, 1982, 75(4): 574-578.

[29] 趙保路, 馬學(xué)海. 氧自由基和天然抗氧化劑[M]. 北京: 科學(xué)出版社, 2002.

[30] Masuda T, Isobe J, Jitoe A, et al. Antioxidative curcuminoids from rhizomes of curcuma-xanthorrhiza [J]. Phytochemistry, 1992, 31(10): 3645-3647.

[31] Okada K, Wangpoengtrakul C, Tanaka T, et al. Curcumin and especially tetra-hydrocurcumin ameliorate oxidative stress-induced renal injury in mice [J]. Journal of Nutrition, 2001, 131(8): 2090-2095.

[32] Su H C F, Horvat R, Jilani G. Isolation, purification, and characterization of insect repellents from curcuma-longa l [J]. Journal of Agricultural and Food Chemistry, 1982, 30(2): 290-292.

[33] Jilani G, Su H C F. Laboratory studies on several plant materials as insect repellants for protection of cereal-grains [J]. Journal of Economic Entomology, 1983, 76(1): 154-157.

[34] 丁偉. 14種中藥植物殺蟲(chóng)活性的初步研究[J]. 西南農(nóng)業(yè)大學(xué)學(xué)報(bào)(自然科學(xué)版), 2003, 25(5): 417-420.

[35] 張永強(qiáng), 丁偉, 趙志模. 姜黃素類(lèi)化合物對(duì)朱砂葉螨的生物活性[J]. 昆蟲(chóng)學(xué)報(bào), 2007(12): 1304-1308.

[36] Kim M K, Choi G J, Lee H S. Fungicidal property of curcuma longa l. Rhizome-derived curcumin against phytopathogenic fungi in a greenhouse [J]. Journal of Agricultural and Food Chemistry, 2003, 51(6): 1578-1581.

[37] 楊幫. 美洲商陸和姜黃提取物抑菌活性的研究[J]. 西南農(nóng)業(yè)大學(xué)學(xué)報(bào)(自然科學(xué)版), 2005, 27(3): 297-300.

[38] Asai A, Miyazawa T. Dietary curcuminoids prevent high-fat diet-induced lipid accumulation in rat liver and epididymal adipose tissue [J]. Journal of Nutrition, 2001, 131(11): 2932-2935.

[39] Suresh Babu P, Srinivasan K. Influence of dietary curcumin and cholesterol on the progression of experimentally induced diabetes in albino rat [J]. Molecular and Cellular Biochemistry, 1995, 152(1): 13-21.

[40] Reddy A C P, Lokesh B R. Effect of curcumin and eugenol on iron-induced hepatic toxicity in rats[J]. Toxicology, 1996, 107(1): 39-45.

[41] Oetari S, Sudibyo M, Commandeur J N M, et al. Effects of curcumin on cytochrome p450 and glutathione s-transferase activities in rat liver[J]. Biochemical Pharmacology, 1996, 51(1): 39-45.

[42] 劉永剛, 陳厚昌, 蔣毅萍. 姜黃素抗肝纖維化的實(shí)驗(yàn)研究[J]. 時(shí)珍國(guó)醫(yī)國(guó)藥, 2002(5): 273-275.

[43] 楊偉峰, 陳厚昌. 聯(lián)用阿米洛利與姜黃素預(yù)防大鼠肝纖維化的實(shí)驗(yàn)研究[J]. 胃腸病學(xué)和肝病學(xué)雜志, 2003(05): 424-426.

[44] 楊偉峰, 陳厚昌, 蔣毅萍. 姜黃素與阿米洛利聯(lián)用對(duì)大鼠肝星狀細(xì)胞氧應(yīng)激所致纖維化的抑制作用[J]. 中藥材, 2003(11): 795-798.

[45] 胡小軍. 正交法優(yōu)化姜黃油提取工藝的研究[J]. 食品與藥品, 2007, 9(5): 4-6.

[46] 葛發(fā)歡, 史慶龍, 譚曉華, 等. 超臨界CO2萃取姜黃油的工藝研究[J]. 中藥, 1997, 20(7): 345-350.

[47] 李湘洲, 張炎強(qiáng). 超臨界CO2靜動(dòng)態(tài)結(jié)合萃取姜黃油的工藝[J]. 北京理工大學(xué)學(xué)報(bào), 2007, 27(4): 366-369.

[48] 劉樹(shù)興, 胡小軍. 超臨界二氧化碳萃取姜黃油的工藝研究[J]. 中國(guó)油脂, 2004, 29(4): 18-20.

[49] 冉啟良, 周顯榮. 姜黃素制取新工藝的研究[J]. 食品科學(xué), 1988, (5): 12-15.

[50] 熊?chē)?guó)華, 李穩(wěn)宏. 食用天然色素姜黃素的提取[J]. 精細(xì)化工, 1991, 8(5): 26.

[51] 王賢純. 姜黃的綜合利用[J]. 食品研究與開(kāi)發(fā), 1992, (3): 1-6, 17.

[52] 董海麗, 縱偉. 酶法提取姜黃素的研究[J]. 純堿工業(yè), 2000, (6): 55-57.

[53] 張有林, 韓軍岐, 盧琛慧, 等. 姜黃色素提取及防腐效果研究[J]. 農(nóng)業(yè)工程學(xué)報(bào), 2005, 21(2): 144 -148.

[54] 唐課文, 易健民, 李立. 微波萃取吸附分離法提取姜黃素的研究[J]. 化工進(jìn)展, 2005, 24(6): 647-650.

[55] 張炎強(qiáng). 姜黃活性成分的提取、分離純化及鑒定分析[D]. 長(zhǎng)沙: 中南林業(yè)科技大學(xué), 2007.

[56] 李湘洲, 張炎強(qiáng), 劉艷華, 等. 不同方法提取姜黃色素的研究[J]. 林產(chǎn)化學(xué)與工業(yè), 2006, 26(4): 83-86.

[57] 秦?zé)槪?鄭濤, 原永輝. 超聲場(chǎng)對(duì)姜黃素提取過(guò)程的強(qiáng)化[J]. 清華大學(xué)學(xué)報(bào)(自然科學(xué)版), 1998, 38(6): 46-48.

[58] 劉樹(shù)興, 胡小軍, 張薇, 等. 超聲強(qiáng)化提取姜黃色素的研究[J]. 食品科學(xué), 2004, (2): 53-55.

[59] 宿樹(shù)蘭, 吳啟南, 歐陽(yáng)臻, 等. 超臨界CO2萃取測(cè)定姜黃中姜黃素的實(shí)驗(yàn)研究[J]. 中國(guó)中藥雜志, 2004, 29(9): 857-860.

[60] 彭永芳, 馬銀海, 李維莉. 水溶性姜黃色素提取工藝的優(yōu)化[J]. 食品科學(xué), 2001, 22(9): 40-42.

[61] 張建超, 肖琪, 程光明, 等. 分離純化姜黃素的大孔樹(shù)脂篩選[J]. 湖北中醫(yī)雜志, 2009, 31(4): 56-58.

[62] 劉碩謙, 劉仲華, 田娜, 等. 柱色譜法分離制備姜黃素的研究[J]. 色譜, 2004, 22(4): 457-458.

[63] 張玉領(lǐng), 陳培, 王季茹, 等. 姜黃素提取條件的正交設(shè)計(jì)及硅膠柱色譜純化的研究[J]. 價(jià)值工程, 2010, 29(16): 241-242.

[64] 王賢純. 活性炭柱層析法分離姜黃素[J]. 生物學(xué)雜志, 2000, 17(5): 8-10.

[65] 段正康, 曾志丁, 羅愛(ài)文, 等. 活性白土柱層析法分離提純姜黃素[J]. 湘潭大學(xué)學(xué)報(bào)(自然科學(xué)版), 2011,33(1): 78-83.

[66] 戴漢松, 單堂云, 高艷,等. 姜黃素的提取及其甲基化研究[J]. 天然產(chǎn)物研究與開(kāi)發(fā), 2008(20): 254-256.

[67] 袁利佳. 姜黃素靜脈注射乳劑的制備[D]. 長(zhǎng)春:吉林大學(xué), 2007.

[68] 劉保啟, 胡孝忠, 王玉春, 等. 姜黃素的提取、分離和測(cè)定[J]. 中華國(guó)際醫(yī)學(xué)雜志, 2003, 3(2): 183-184.

[69] T?nnesen H H, Karlsen J. Studies on curcumin and curcuminoids. Ⅵ. Kinetics of curcumin degradation in aqueous solution [J]. Z Lebensm-Unters Forsch,1985, 180(5): 402-404.

[70] T?nnesen H H, Karlsen J. Studies on curcumin and curcuminoids. Ⅴ. Alkaline degradation of curcumin [J]. Z Lebensm-Unters Forsch, 1985, 180(2): 132-134.

[71] T?nnesen H H, Karlsen J, Beijersbergen van Henegouwen G. Studies on curcumin and curcuminoids. Ⅷ. Photochemical stability of curcumin [J]. Z Lebensm-Unters Forsch, 1986, 183(2): 116-122.

[72] Sharma R A, Mc Lelland H R, Hill K A, et al. Pharmacodynamic and pharmacokinetic study of oral Curcuma extract in patients with colorectal cancer[J]. Clinical Cancer Research, 2001, 7(7): 1894-1900.

[73] 高振珅, 王蘭. 姜黃素-羥丙基-β-環(huán)糊精包合物的制備及其理化性質(zhì)研究[J]. 中國(guó)藥房, 2007, 18(13): 999-1000.

[74] 李劍明. 水溶性姜黃色素的制備及其抗肺癌轉(zhuǎn)移作用的實(shí)驗(yàn)研究[D]. 重慶: 第三軍醫(yī)大學(xué)西南醫(yī)院, 2005.

[75] 李劍明, 楊和平, 白中紅, 等. 姜黃素可溶性制劑對(duì)小鼠結(jié)腸癌C26細(xì)胞在體誘導(dǎo)血管生成的抑制作用[J]. 中國(guó)腫瘤生物治療雜志, 2008, 15(1): 56-59.

[76] 李香, 林秀麗. β-環(huán)糊精及其衍生物對(duì)姜黃素的增溶和熒光增強(qiáng)作用[J]. 中國(guó)醫(yī)藥工業(yè)雜志, 2008, 39(3): 194-198.

[77] 許東暉, 王勝, 梅雪婷, 等. 聚乙烯吡咯烷酮K30對(duì)姜黃素的增溶作用研究[J]. 中藥材, 2008, 31(3): 438-442.

[78] 黃秀旺, 許建華, 吳國(guó)華, 等. 姜黃素固體分散體的制備及體外溶出特性[J]. 福建中醫(yī)學(xué)院學(xué)報(bào), 2008, 18(5): 30-33.

[79] 劉鈺, 欒立標(biāo). 姜黃素固體分散體的制備及體外溶出度測(cè)定[J]. 藥學(xué)進(jìn)展, 2006, 30(1): 40-42.

[80] 關(guān)輝, 歐陽(yáng)梅, 梁嬌旸, 等. 姜黃素固體分散體的制備和溶出度考察[J]. 沈陽(yáng)藥科大學(xué)學(xué)報(bào), 2009, 26(12): 945-950.

[81] 劉延敏, 王傳勝, 韓剛, 等. 姜黃素固體分散體的制備及體外溶出度測(cè)定[J]. 哈爾濱醫(yī)科大學(xué)學(xué)報(bào), 2006, 40(4): 327-328.

[82] 韓剛, 孫廣利, 孔晶晶, 等. 姜黃素增溶方法的比較研究[J]. 時(shí)珍國(guó)醫(yī)國(guó)藥, 2009, 20(2): 416-417.

[83] 高群玉, 黃立新, 周俊俠, 等. 姜黃色素及其微膠囊化的應(yīng)用研究[J]. 食品科技, 2000, (3): 35-37.

[84] 許漢林, 孫蕓, 邵繼征, 等. 姜黃素脂質(zhì)體在大鼠體內(nèi)藥代動(dòng)力學(xué)研究[J]. 湖北中醫(yī)學(xué)院學(xué)報(bào), 2007, 9(1): 42-43.

[85] 許漢林, 孫蕓, 邵繼征, 等. 不同方法制備姜黃素脂質(zhì)體的研究[J]. 中國(guó)中醫(yī)藥信息雜志, 2006, 13(7): 51-52.

[86] 孫蕓. 姜黃素脂質(zhì)體的制備及其藥代動(dòng)力學(xué)研究[D]. 武漢: 湖北中醫(yī)學(xué)院, 2006.

[87] 許漢林, 張念, 程光明, 等. 姜黃素脂質(zhì)體制備工藝的研究[J]. 湖北中醫(yī)學(xué)院學(xué)報(bào), 2009, 11(1): 36-39.

[88] 王云紅, 汪圣華, 楊榮平, 等. 姜黃素自乳化制劑的設(shè)計(jì)、優(yōu)化及質(zhì)量評(píng)價(jià)[J]. 中藥材, 2010, 33(12): 1933-1937.

[89] 吳雪梅. 姜黃素新劑型:自乳化和亞微乳給藥系統(tǒng)的研究[D]. 福州: 福建醫(yī)科大學(xué), 2010.

[90] 吳雪梅, 張晶, 許建華, 等. 姜黃素自微乳化給藥系統(tǒng)的體內(nèi)外評(píng)價(jià)[J]. 福建醫(yī)科大學(xué)學(xué)報(bào), 2010, 44(3): 172-177.

[91] Conover C D, Zhao H, Longley C B, et al. Utility of poly(ethylene glycol) conjugation to create prodrugs of amphotericin B[J]. Bioconjugate Chemistry, 2003, 14(3): 661-666.

[92] Conover C D, Greenwald R B, Pendri A, et al. Camptothecin delivery systems: enhanced efficacy and tumor accumulation of camptothecin following its conjugation to polyethylene glycol via a glycine linker[J]. Cancer Chemotherapy and Pharmacology, 1998, 42(5): 407-414.

[93] Karen M, Caroline M P. Oseltamivir: a review of its use in in-fluenza [J]. Drugs, 2001, 61(2): 263-283.

[94] 厲鳳霞, 李曉麗, 李斌. 葡萄糖-聚乙二醇-姜黃素的合成及其對(duì)姜黃素性能的改善[J]. 合成化學(xué), 2011, 19(1): 15-18.

[95] 劉占軍, 韓剛, 于九皋, 等. 姜黃素納米粒的制備和釋藥性能[J]. 中藥材, 2009, 32(2): 277-279.

[96] 陳德, 劉意, 范凱燕, 等. 姜黃素微球中藥物存在形式與釋藥行為的關(guān)系研究[J]. 藥學(xué)學(xué)報(bào), 2016, 51(1): 140-146.

[97] Majhi A, Rahman G M, Panchal S, et al. Binding of curcumin and its long chain derivatives to the activator binding domain of novel protein kinase[J]. Bioorganic & Medicinal Chemistry, 2010, 18(4): 1591-1598.

[98] Tanaka R, Tsujii H, Yamada T, et al. Novel 3α-methoxyserrat-14-en-21β-ol(pj-1) and 3β-methoxyserrat-14-en-21β-ol(pj-2)-curcumin, kojic acid, quercetin, and baicalein conjugates as hiv agents [J]. Bioorganic & Medicinal Chemistry, 2009, 17(14): 5238-5246.

[99] Ligeret H, Barthelemy S, Doulakas G B, et al. Fluoride curcumin derivatives: New mitochondrial uncoupling agents [J]. FEBS Letters, 2004, 569(1-3): 37-42.

[100] Jankun J, Aleem A M, Malgorzewicz S, et al. Synthetic curcuminoids modulate the arachidonic acid metabolism of human platelet 12-lipoxygenase and reduce sprout formation of human endothelial cells [J]. Molecular cancer therapeutics, 2006, 5(5): 1371-1382.

[101] Fuchs J R, Pandit B, Bhasin D, et al. Structure-activity relationship studies of curcumin analogues[J]. Bioorganic & Medicinal Chemistry Letters, 2009, 19(7): 2065-2069.

[102] Tong Q S, Zheng L D, Lu P, et al. Apoptosis-inducing effects of curcumin derivatives in human bladder cancer cells [J]. Anti-Cancer Drugs, 2006, 17(3): 279-287.

[103] Dubey S K, Sharma A K, Narain U, et al. Design, synthesis and characterization of some bioactive conjugates of curcumin with glycine, glutamic acid, valine and demethylenated piperic acid and study of their antimicrobial and antiproliferative properties [J]. European Journal of Medicinal Chemistry, 2008, 43(9): 1837-1846.

[104] Singh R K, Rai D, Yadav D, et al. Synthesis, antibacterial and antiviral properties of curcumin bioconjugates bearing dipeptide, fatty acids and folic acid [J]. European Journal of Medicinal Chemistry, 2010, 45(3): 1078-1086.

[105] Shi W, Dolai S, Rizk S, et al. Synthesis of monofunctional curcumin derivatives, clicked curcumin dimer, and a pamam dendrimer curcumin conjugate for therapeutic applications [J]. Organic Letters, 2007, 9(26): 5461-5464.

[106] Changtam C, De Koning H P, Ibrahim H, et al. Curcuminoid analogs with potent activity against trypanosoma and leishmania species[J]. European Journal of Medicinal Chemistry, 2010, 45(3): 941-956.

[107] Simoni D, Rizzi M, Rondanin R, et al. Antitumor effects of curcumin and structurally [beta]-diketone modified analogs on multidrug resistant cancer cells[J]. Bioorganic & Medicinal Chemistry Letters, 2008, 18(2): 845-849.

[108] Kumar S, Narain U, Tripathi S, et al. Syntheses of curcumin bioconjugates and study of their antibacterial activities against beta-lactamase-producing microorganisms[J]. Bioconjugate Chemistry, 2001, 12(4): 464-469.

[109] Robinson T P, Hubbard R B, Ehlers T J, et al. Synthesis and biological evaluation of aromatic enones related to curcumin[J]. Bioorganic & Medicinal Chemistry, 2005, 13(12): 4007-4013.

[110] Woo H B, Shin W S, Lee S, et al. Synthesis of novel curcumin mimics with asymmetrical units and their anti-angiogenic activity[J]. Bioorganic & Medicinal Chemistry Letters, 2005, 15(16): 3782-3786.

[111] Ahn C M, Park B G, Woo H B, et al. Synthesis of sulfonyl curcumin mimics exerting a vasodilatation effect on the basilar artery of rabbits[J]. Bioorganic & Medicinal Chemistry Letters, 2009, 19(5): 1481-1483.

[112] 趙振坤, 王淑玲, 丁劉濤, 等. 中藥藥渣再利用研究進(jìn)展[J]. 杭州師范大學(xué)學(xué)報(bào)(自然科學(xué)版), 2012, 11(1): 38-42.

[113] 張旭, 蔣桂韜, 王向榮, 等. 姜黃渣對(duì)蛋雞生產(chǎn)性能、蛋品質(zhì)及蛋黃膽固醇和丙二醛含量的影響[J]. 動(dòng)物營(yíng)養(yǎng)學(xué)報(bào), 2016, 28(9): 2795-2801.

[114] Chen Y, Zhang Y F, Qian H C, et al. Supplementation with turmeric residue increased survival of the Chinese soft-shelled turtle(Pelodiscus sinensis) under high ambient temperatures[J]. Journal of Zhejiang University-SCIENCE B(Biomedicine & Biotechnology), 2018,19(3): 245-252.

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