Application progress of fullerene and its derivatives in medicine

被引:0
作者
Liu Zeyuan [1 ]
Guo Liangliang [1 ]
Zhang Jing [1 ]
机构
[1] Zhengzhou Univ, Coll Chem Engn & Energy, Zhengzhou 450001, Henan, Peoples R China
基金
中国国家自然科学基金;
关键词
Applications; Derivatives; Fullerene; Medicine;
D O I
10.11665/j.issn.1000-5048.20180202
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Fullerene is an effective free radical scavenger and antioxidant. The fullerene derivatives obtained by chemical modification of fullerene have good water solubility and biological activities. Fullerene and its derivatives have many advantages in cell protection and antioxidant properties, antibacterial activity, antiviral activity, photodynamic activity, drug delivery and anti-tumor activities, playing an important role in the field of medicine. In recent years, great progress has been made in this field. In this review, we summarized the latest research progress and applications of fullerene and its derivatives in medicine field at home and abroad from four aspects of regulating tumor microenvironment, drug delivery, photodynamic therapy and anti-oxidative stress. At last, the future development and application of fullerene and its derivatives in the domain of medicine are prospected.
引用
收藏
页码:136 / 146
页数:11
相关论文
共 44 条
[1]  
Kroto H.W., Weath J.R., Curl K.F., Et al., C: Buckminster fullerene [J], Latere, 318, 6042, pp. 162-163, (1985)
[2]  
Du G.J., Shi X.Y., New approaches to cancer treatment: Targeting the tumor microenvironment [J], J Int Pharm Res, 38, 5, pp. 336-340, (2011)
[3]  
Nie X., Tang J.L., Liu Y., Et al., Fullerenol inhibits the cross-talk between bone marrow-derived mesenchymal stem cells and tumor cells by regulating mapk signaling [J], Nanomedicine, 13, 6, pp. 1879-1890, (2017)
[4]  
Meng H., Xing G.M., Blanco E., Et al., Gadolinium metallofullerenol nanoparticles inhibit cancer metastasis through matrix metallopro-teinase inhibition: Imprisoning instead of poisoning cancer cells [J], Nanomedicine, 9, 2, pp. 136-146, (2012)
[5]  
Sun C.D., Wang L.M., Gao D., Et al., Cgohj a potential histone deacetylase inhibitor with anti-angiogenic activityf j], Nanoscale, 8, 36, pp. 16332-16339, (2016)
[6]  
Zhen M.M., Shu C.Y., Li J., Et al., A highly efficient and tumor vascular-targeting therapeutic technique with size-expansible gad-ofullerene nanocrystals[J], Sci China Mater, 58, 10, pp. 799-810, (2015)
[7]  
Zhou Y., Deng R.J., Zhen M.M., Et al., Amino acid functionalized gadofullerene nanoparticles with superior antitumor activity via destruction of tumor vasculature in vivo [J], Biomaterials, 133, pp. 107-118, (2017)
[8]  
Chen Z.Y., Liu Y., Sun B.Y., Et al., Polyhydroxylated metallofullere-nols stimulate il-lf secretion of macrophage through tlrsl myd88lnf-kb pathway and nlrp3 inflammasome activation [J], Small, 10, 12, pp. 2362-2372, (2014)
[9]  
Tang J.L., Chen Z.Y., Sun B.Y., Et al., Polyhydroxylated fullerenols regulate macrophage for cancer adoptive immunotherapy and greatly inhibit the tumor metastasis[J], Nanomedicine, 12, 4, pp. 945-954, (2016)
[10]  
Lin M.S., Chen R.T., Yu N.Y., Et al., Fullerene-based amino acid ester chlorides self-assembled as spherical nano-vesicles for drug delayed release [J], Colloids SzwfB, 159, pp. 613-619, (2017)