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血管活性肠肽两亲胶束化学结构和疏水区对免疫调节增强作用的影响。

Vasoactive Intestinal Peptide Amphiphile Micelle Chemical Structure and Hydrophobic Domain Influence Immunomodulatory Potentiation.

机构信息

Department of Biomedical, Biological, and Chemical Engineering, University of Missouri, Columbia, Missouri 65211, United States.

Departments of Molecular Microbiology & Immunology, Surgery, and Biomedical, Biological & Chemical Engineering, University of Missouri, Columbia, Missouri 65211, United States.

出版信息

ACS Appl Bio Mater. 2022 Apr 18;5(4):1464-1475. doi: 10.1021/acsabm.1c00981. Epub 2022 Mar 18.

Abstract

Vasoactive intestinal peptide (VIP) is a neuropeptide capable of downregulating innate immune responses in antigen presenting cells (APCs) by suppressing their pro-inflammatory cytokine secretion and cell surface marker expression. Though VIP's bioactivity could possibly be leveraged as a treatment for transplant tolerance, drug delivery innovation is required to overcome its intrinsically limited cellular delivery capacity. One option is to employ peptide amphiphiles (PAs) which are lipidated peptides capable of self-assembling into micelles in water that can enhance cellular association. With this approach in mind, a series of triblock VIP amphiphiles (VIPAs) has been synthesized to explore the influence of block arrangement and hydrophobicity on micelle biocompatibility and bioactivity. VIPA formulation has been found to influence the shape, size, and surface charge of VIPA micelles (VIPAMs) as well as their cytotoxicity and immunomodulatory effects. Specifically, the enclosed work provides strong evidence that cylindrical VIPAMs with aspect ratios of 1.5-150 and moderate positive surface charge are able to potentiate the bioactivity of VIP limiting TNF-α secretion and MHC II and CD86 surface expression on APCs. With these criteria, we have identified PalmK-(EK)-VIP as our lead formulation, which showed comparable or enhanced anti-inflammatory effects relative to the unmodified VIP at all dosages evaluated. Additionally, the relationships between peptide block location and lipid block size provide further information on the chemical structure-function relationships of PA micelles for the delivery of VIP as well as potentially for other peptides more broadly.

摘要

血管活性肠肽(VIP)是一种神经肽,能够通过抑制抗原呈递细胞(APCs)的促炎细胞因子分泌和细胞表面标志物表达来下调固有免疫反应。尽管 VIP 的生物活性可能被利用来治疗移植耐受,但需要药物输送创新来克服其内在的有限细胞输送能力。一种选择是使用肽两亲物(PAs),它是能够在水中自组装成胶束的脂质化肽,能够增强细胞的关联。考虑到这种方法,已经合成了一系列三嵌段 VIP 两亲物(VIPAs),以探索块排列和疏水性对胶束生物相容性和生物活性的影响。发现 VIPA 配方会影响 VIPA 胶束(VIPAMs)的形状、大小和表面电荷以及它们的细胞毒性和免疫调节作用。具体来说,这项工作提供了有力的证据表明,具有 1.5-150 的纵横比和适度正表面电荷的圆柱形 VIPAMs 能够增强 VIP 的生物活性,限制 TNF-α 的分泌以及 MHC II 和 CD86 在 APC 上的表面表达。根据这些标准,我们确定了 PalmK-(EK)-VIP 作为我们的主导配方,它在所有评估的剂量下显示出与未修饰的 VIP 相当或增强的抗炎作用。此外,肽块位置与脂质块大小之间的关系为 VIP 以及潜在的其他更广泛的肽的 PA 胶束的化学结构-功能关系提供了进一步的信息。

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