The School of Pharmacy, Fujian Medical University, Fuzhou, 350122, Fujian, People's Republic of China.
Fujian Key Laboratory of Drug Target Discovery and Structural and Functional Research, The School of Pharmacy, Fujian Medical University, Fuzhou, 350122, Fujian, People's Republic of China.
J Nanobiotechnology. 2021 Dec 20;19(1):439. doi: 10.1186/s12951-021-01195-7.
Cancer is one of the devastating diseases in the world. The development of nanocarrier provides a promising perspective for improving cancer therapeutic efficacy. However, the issues with potential toxicity, quantity production, and excessive costs limit their further applications in clinical practice.
Herein, we proposed a nanocarrier obtained from aloe with stability and leak-proofness. We isolated nanovesicles from the gel and rind of aloe (gADNVs and rADNVs) with higher quality and yield by controlling the final centrifugation time within 20 min, and modulating the viscosity at 2.98 mPa S and 1.57 mPa S respectively. The gADNVs showed great structure and storage stability, antioxidant and antidetergent capacity. They could be efficiently taken up by melanoma cells, and with no toxicity in vitro or in vivo. Indocyanine green (ICG) loaded in gADNVs (ICG/gADNVs) showed great stability in both heating system and in serum, and its retention rate exceeded 90% after 30 days stored in gADNVs. ICG/gADNVs stored 30 days could still effectively damage melanoma cells and inhibit melanoma growth, outperforming free ICG and ICG liposomes. Interestingly, gADNVs showed prominent penetrability to mice skin which might be beneficial to noninvasive transdermal administration.
Our research was designed to simplify the preparation of drug carrier, and reduce production cost, which provided an alternative for the development of economic and safe drug delivery system.
癌症是世界上具有破坏性的疾病之一。纳米载体的发展为提高癌症治疗效果提供了有前景的视角。然而,潜在毒性、大量生产和过高成本等问题限制了它们在临床实践中的进一步应用。
在此,我们提出了一种由芦荟制成的纳米载体,具有稳定性和防泄漏性。我们通过控制最终离心时间在 20 分钟内,并分别将粘度调节至 2.98 mPa·s 和 1.57 mPa·s,从芦荟凝胶和外皮中分离出高质量和高产率的纳米囊泡(gADNVs 和 rADNVs)。gADNVs 具有很好的结构和储存稳定性、抗氧化和抗去污能力。它们可以被黑色素瘤细胞有效摄取,并且在体外和体内均无毒性。装载在 gADNVs 中的吲哚菁绿(ICG)在加热系统和血清中均表现出很好的稳定性,在 gADNVs 中储存 30 天后其保留率超过 90%。储存 30 天的 ICG/gADNVs 仍然可以有效地损伤黑色素瘤细胞并抑制黑色素瘤生长,优于游离 ICG 和 ICG 脂质体。有趣的是,gADNVs 对小鼠皮肤具有明显的穿透性,这可能有利于非侵入性透皮给药。
我们的研究旨在简化药物载体的制备,降低生产成本,为开发经济、安全的药物输送系统提供了一种替代方法。