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ɑβ 靶向脂质体药物递送系统,通过线性五肽降低免疫原性,用于神经胶质瘤治疗。

ɑβ-targeted liposomal drug delivery system with attenuated immunogenicity enabled by linear pentapeptide for glioma therapy.

机构信息

Department of Pharmaceutics, School of Pharmacy, Fudan University & Key Laboratory of Smart Drug Delivery (Fudan University), Ministry of Education and PLA, Shanghai 201203, China.

Department of Pharmaceutics, School of Pharmacy, Fudan University & Key Laboratory of Smart Drug Delivery (Fudan University), Ministry of Education and PLA, Shanghai 201203, China; State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, Institutes of Brain Science, Fudan University, Shanghai 200032, China; Zhongshan Hospital and Institute of Fudan-Minghang Academic Health System, Minghang Hospital, Fudan University, Shanghai 201199, China; The Institutes of Integrative Medicine of Fudan University, Shanghai 200041, China.

出版信息

J Control Release. 2020 Jun 10;322:542-554. doi: 10.1016/j.jconrel.2020.04.009. Epub 2020 Apr 8.

Abstract

Owing to the binding capacity to ɑβ integrin overexpressed on glioma, vasculogenic mimicry and neovasculature, the peptide c(RGDyK) has been exploited pervasively to functionalize nanocarriers for targeted delivery of bioactives. The former study in our group substantiated the immunotoxicity of c(RGDyK)-modified liposome, and this unfavorable immunogenicity is known to compromise blood circulation, targeting efficacy and therapeutic outcome. Therefore, we need to find a superior alternative ligand in order to evade the exquisite immuno-sensitization. We developed mn by structure-guided peptide design and retro-inverso isomerization technique, which was experimentally substantiated to have exceptional binding affinity to ɑβ integrin. Besides mn does not have affinity toward normal liver cells and kidney cells, which c(RGDyK) possesses in a certain degree. Warranting that mn and c(RGDyK) anchored ɑβ, we formulated peptide-tethered liposomes and investigated in vivo bio-fate. Compared with c(RGDyK)-modified liposome, mn-modified liposome presented longer blood circulation and reduced ingestion by Kupffer cells with decreased retention in liver accordingly, benefitting from attenuated anti-liposome IgG and IgM response elicited by multiple sequential doses. Those merits strengthened the anti-glioma efficacy of ɑβ-targeted doxorubicin-loaded liposomes, proving the importance of immunocompatibility in process of targeted drug delivery.

摘要

由于肽 c(RGDyK) 对胶质瘤过度表达的 αβ 整联蛋白、血管生成拟态和新生血管具有结合能力,因此它被广泛用于功能化纳米载体,以实现生物活性物质的靶向递送。我们小组之前的研究证实了 c(RGDyK)修饰的脂质体具有免疫毒性,这种不利的免疫原性已知会影响血液循环、靶向效果和治疗效果。因此,我们需要找到一种更好的替代配体,以避免过度的免疫致敏。我们通过结构导向的肽设计和反向异构化技术开发了 mn,实验证实它对 αβ 整联蛋白具有特殊的结合亲和力。此外,mn 对正常肝细胞和肾细胞没有亲和力,而 c(RGDyK)在一定程度上具有这种亲和力。mn 和 c(RGDyK)都能锚定 αβ,我们构建了肽连接的脂质体,并研究了其体内的生物命运。与 c(RGDyK)修饰的脂质体相比,mn 修饰的脂质体具有更长的血液循环时间,并且减少了被库普弗细胞摄取,相应地在肝脏中的保留减少,这得益于多次连续给药引起的抗脂质体 IgG 和 IgM 反应减弱。这些优点增强了 αβ 靶向阿霉素载药脂质体的抗胶质瘤疗效,证明了免疫相容性在靶向药物递送过程中的重要性。

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