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基于水溶性、无毒且高稳定性核壳型聚(氨基酸)纳米复合物构建的被动靶向和长效保留治疗性纳米平台。

Constructing a passive targeting and long retention therapeutic nanoplatform based on water-soluble, non-toxic and highly-stable core-shell poly(amino acid) nanocomplexes.

机构信息

State Key Laboratory of Organ Failure Research, National Clinical Research Center for Kidney Disease, Guangdong Provincial Key Laboratory of Renal Failure Research, Nanfang Hospital, Southern Medical University, Guangzhou, 510515, China.

Nanobiological Medicine Center, Key Lab of Fuel Cell Technology of Guangdong Province, School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, 510640, China.

出版信息

Biomater Sci. 2021 Oct 26;9(21):7065-7075. doi: 10.1039/d1bm01246k.

Abstract

Drug delivery nanoplatforms have been applied in bioimaging, medical diagnosis, drug delivery and medical therapy. However, insolubility, toxicity, instability, nonspecific targeting and short retention of many hydrophobic drugs limit their extensive applications. Herein, we have constructed a passive targeting and long retention therapeutic nanoplatform of core-shell gefitinib/poly (ethylene glycol)-polytyrosine nanocomplexes (Gef-PY NCs). The Gef-PY NCs have good water-solubility, non-toxicity (correspond to 1/10 dosage of effective gefitinib (hydrochloride) (Gef·HCl) (normal drug administration and slow-release) and high stability (120 days, 80% drug retention at 4 or 25 °C). The core-shell Gef-PY NCs present unexpected kidney targeting and drug slow-release capacity ( 72 h). The good water-solubility, non-toxicity and high stability of Gef-PY NCs effectively solve the bottleneck question that Gef-based therapy could be used only in intraperitoneal injection due to its insolubility and severe toxicity. Such excellent properties (, water-solubility, non-toxicity, high stability, kidney targeting and long retention) of Gef-PY NCs create their prominent anti-fibrosis capabilities, such as decreasing approximately 40% tubulointerstitial fibrosis area and 68% expression of collagen I within 7 days. This therapeutic efficacy is well-matched with that of 10 times the dosage of toxic Gef·HCl. It is very hopeful that Gef-PY NCs could realize clinical applications and such a strategy offers an effective route to design high-efficiency treatments for kidney- and tumor-related diseases.

摘要

药物递送纳米平台已被应用于生物成像、医学诊断、药物递送和医学治疗。然而,许多疏水性药物的不溶性、毒性、不稳定性、非特异性靶向和短保留时间限制了它们的广泛应用。在此,我们构建了一种具有被动靶向和长效治疗功能的核壳型吉非替尼/聚乙二醇-聚酪氨酸纳米复合物(Gef-PY NCs)。Gef-PY NCs 具有良好的水溶性、低毒性(对应于有效吉非替尼(盐酸盐)(Gef·HCl)剂量的 1/10(常规给药和缓释)和高稳定性(在 4 或 25°C 时,120 天内保持 80%的药物保留率)。核壳型 Gef-PY NCs 表现出意想不到的肾脏靶向和药物缓释能力(72 h)。Gef-PY NCs 的良好水溶性、低毒性和高稳定性有效解决了吉非替尼因不溶性和严重毒性而只能用于腹腔注射的治疗瓶颈问题。Gef-PY NCs 的这些优异性能(水溶性、低毒性、高稳定性、肾脏靶向和长效)使其具有显著的抗纤维化能力,例如在 7 天内可使肾小管间质纤维化面积减少约 40%,胶原 I 表达减少 68%。这种治疗效果与毒性 Gef·HCl 剂量的 10 倍相当。非常有希望 Gef-PY NCs 能够实现临床应用,并且这种策略为设计针对肾脏和肿瘤相关疾病的高效治疗方法提供了一条有效途径。

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