Luo Yaoyao, Li Jingjing, Hu Yichen, Gao Fei, Pak-Heng Leung George, Geng Funeng, Fu Chaomei, Zhang Jinming
College of Pharmacy, Chengdu University of Traditional Chinese Medicine, Chengdu 611137, China.
Department of Pharmacology and Pharmacy, University of Hong Kong, HongKong 999077, China.
Acta Pharm Sin B. 2020 Nov;10(11):2227-2245. doi: 10.1016/j.apsb.2020.05.011. Epub 2020 Jun 20.
The clinical application of triptolide (TPL) in tumor therapy has been greatly limited by its toxicity and inefficient delivery. Herein, a localized and sustained-release thermo-sensitive hydrogel was developed for the intra-tumor administration of TPL. Based on the amphiphilic structure of poly (-isopropylacrylamideacrylic acid)--F68 copolymer, it was able to form nano-micelles to efficiently encapsulate TPL, and then turn into a hydrogel at 37 °C. TPL@nano-gel exhibited a sustained drug release profile and a stronger anticancer effect caused by "two strikes". The "first strike" was its enhanced cytotoxicity compared to free TPL, due to the enhanced pro-apoptosis effect observed in both MDA-MB-231 and MCF-7 cells caused by the regulation of endogenous mitochondrial pathways. Furthermore, TPL@nano-gel exhibited a "second-strike" through its anti-angiogenesis capabilities mediated through VEGFR-2 signaling inhibition. As expected, after intra-tumoral injection at a 0.45 mg/kg TPL-equivalent dose three times over 14 days in 4T1 tumor-bearing mice, TPL@nano-gel led to lower systemic toxicity and higher antitumor efficacy compared to multiple injections of TPL. In this regard, these findings indicate that this injectable thermo-responsive hydrogel carries great potential for TPL as a safe and effective cancer therapy.
雷公藤甲素(TPL)在肿瘤治疗中的临床应用因毒性和递送效率低而受到极大限制。在此,开发了一种用于肿瘤内注射TPL的局部缓释热敏水凝胶。基于聚(-异丙基丙烯酰胺-丙烯酸)-F68共聚物的两亲结构,它能够形成纳米胶束以有效包封TPL,然后在37℃转变为水凝胶。TPL@纳米凝胶呈现出持续的药物释放曲线,并因“两次打击”而具有更强的抗癌效果。“第一次打击”是与游离TPL相比其增强的细胞毒性,这是由于在MDA-MB-231和MCF-7细胞中通过内源性线粒体途径的调节观察到的促凋亡作用增强。此外,TPL@纳米凝胶通过抑制VEGFR-2信号介导的抗血管生成能力表现出“第二次打击”。正如预期的那样,在4T1荷瘤小鼠中于14天内分三次以0.45mg/kg TPL等效剂量进行瘤内注射后,与多次注射TPL相比,TPL@纳米凝胶导致更低的全身毒性和更高的抗肿瘤疗效。在这方面,这些发现表明这种可注射的热响应水凝胶作为一种安全有效的癌症治疗方法对TPL具有巨大潜力。