藤黄酸抗肿瘤作用机制及其纳米制剂的研究进展
作者:白皎皎;陈新棉;曾代文;汤明海;童荣生;蔡璐璐;
Author:
收稿日期: 年卷(期)页码:2018,33(06):-546-549
期刊名称:华西药学杂志
Journal Name:WEST CHINA JOURNAL OF PHARMACEUTICAL SCIENCES
关键字:藤黄酸;抗肿瘤;作用机制;纳米制剂;作用靶点;临床缺陷;靶向性;新方向;研究进展
Key words:
基金项目:四川省卫生和计划生育委员会科研课题普及应用项目(No.17PJ554);;
四川省人民医院临床研究及转化基金(No.2017LY08)
中文摘要
藤黄酸是从植物藤黄中提取的主要有效活性成分,近年来发现藤黄酸对多种肿瘤有明显疗效,其作用机制较多,作用靶点广泛。但藤黄酸自身仍具有一些缺点,限制了其在临床上的应用。新型纳米技术能够克服藤黄酸的这些缺点,为藤黄酸新制剂的研究与开发提供了一种新方向。文中综述了近5年来国内外有关藤黄酸抗肿瘤机制以及其纳米制剂方面的进展,可为藤黄酸的进一步深入研究提供参考。
参考文献
[1]陈金佩,汪珊珊,汪电雷,等.新藤黄酸大鼠在体肠吸收动力学研究[J].中国临床药理学与治疗学,2014,19(2):166-170.
[2] Jiang L,Li K,Lin Q,et al. Gambogic acid causes fin developmental defect in zebrafish embryo partially via retinoic acid signaling[J]. Reprod Toxicol,2016,63:161-168.
[3] Gao X,Feng F,Zhang X,et al. Toxicity assessment of 7anticancer compounds in zebrafish[J]. Int J Toxicology,2014,33(2):98-105.
[4] Yao J,Li Y,Sun X,et al. Nanoparticle delivery and combination therapy of gambogic acid and all-trans retinoic acid[J]. Int J Nanomedicine,2014,9:3313-3324.
[5] Kashyap D,Mondal R,Tuli H,et al. Molecular targets of gambogic acid in cancer:Recent trends and advancements[J].Tumor Biology,2016,37(10):12915-12925.
[6]李高扬,姜霁峰,刘传绪,等.藤黄酸抗NK/T细胞淋巴瘤作用的研究[J].上海交通大学学报:医学版,2017,37(6):739-743.
[7] Ishaq M,Ojha R,Sharma K,et al. Functional inhibition of Hsp70by Pifithrin-mu switches Gambogic acid induced caspase dependent cell death to caspase independent cell death in human bladder cancer cells[J]. Biochim Biophysi Acta,2016,1863(11):2560-2573.
[8]陆牡丹,陈钰,张婷,等.藤黄酸对人卵巢癌细胞株SKOV3生长抑制的研究[J].中国妇幼保健,2015,21:3691-3692.
[9] Wu L,Guo H,Sun H,et al. UNC119 mediates gambogic acidinduced cell-cycle dysregulation through the Gsk3/-catenin pathway in hepatocellular carcinoma cells[J]. Anti-Cancer Drugs,2016,27(10):988-1000.
[10] Yan X,Yang Y,He L,et al. Gambogic acid grafted low molecular weight heparin micelles for targeted treatment in a hepatocellular carcinoma model with an enhanced anti-angiogenesis effect[J].Int J Pharm,2017,522(1-2):110-118.
[11] Liu Y,Yoo S,Li L,et al. Formulation and characterization of boanmycin-loaded liposomes prepared by p H gradient experimental design[J]. Drug Delivery,2012,19(2):90-101.
[12]王鸣,冯煦,赵友谊,等.中药藤黄的研究和应用[J].中国野生植物资源,2013,22(1):1-4.
[13] Cai L,Qiu N,Xiang M,et al. Improving aqueous solubility and antitumor effects by nanosized gambogic acid-m PEG(2000)micelles[J]. Int J Nanomed,2014,9:243-255.
[14] Wang S,Yang Y,Wang Y,et al. Gambogic acid-loaded p Hsensitive mixed micelles for overcoming breast cancer resistance[J]. Int J Pharm,2015,495(2):840-848.
[15] Doddapaneni R,Patel K,Owaid I,et al. Tumor neovasculaturetargeted cationic PEGylated liposomes of gambogic acid for the treatment of triple-negative breast cancer[J]. Drug Deliv,2016,23(4):1232-1241.
[16] Yu F,Tang X. Novel long-circulating liposomes consisting of PEG modified beta-sitosterol for gambogic acid delivery[J]. J Nanosci Nanotechnol,2016,16(3):3115-3121.
[17] Tang W,Tang W,Szeitz A,et al. Systemic study of solventassisted active loading of gambogic acid into liposomes and its formulation optimization for improved delivery[J]. Biomaterials,2018,166:13-26.
[18] Liu L,Qi X,Zhong Z,et al. Nanomedicine-based combination of gambogic acid and retinoic acid chlorochalcone for enhanced anticancer efficacy in osteosarcoma[J]. Biomed Pharmacother,2016,83:79-84.
[19] YangY,Liu Y,Cheng C,et al. Rational design of go-modified Fe3O4/Si O2nanoparticles with combined rhenium-188 and gambogic acid for magnetic target therapy[J]. Acs Applied Materials Interfaces,2017,9(34):28195-28208.
[20] Dahmani F,Xiao Y,Zhang J,et al. Multifunctional polymeric nanosystems for dual-targeted combinatorial chemo/angiogenesis therapy of tumors[J]. Adv Healthc Mater,2016,5(12):1447-1461.
[21] He M,Ro L,Liu J,et al. Folate-decorated arginine-based poly(ester urea urethane)nanoparticles as carriers for gambogic acid and effect on cancer cells[J]. J Biomed Mater Res Part A,2017,105(2):475-490.
[22]谭灵莉,宋旭,张志荣.聚苯乙烯纳米粒对细胞活性氧的影响[J].华西药学杂志,2017,32(5):493-494.
[23]张宇,和心依,龚涛.替尼泊苷磷脂复合物白蛋白纳米粒的制备与表征[J].华西药学杂志,2017,32(1):13-15.
[24]万卓雅,张樊,杨瑞,等.三甲基壳聚糖分子量对载胰岛素纳米粒的影响[J].华西药学杂志,2016,31(3):227-229.
【关闭】