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

血管活性肠肽 胶束 两亲性 生物物理学 化学 分泌物 生物相容性 细胞生物学 神经肽 生物化学 生物 受体 共聚物 水溶液 有机化学 聚合物
作者
Xiaofei Wang,Rui Zhang,Bryce D. Lindaman,Caitlin N. Leeper,Adam G. Schrum,Bret D. Ulery
出处
期刊:ACS applied bio materials [American Chemical Society]
卷期号:5 (4): 1464-1475 被引量:8
标识
DOI:10.1021/acsabm.1c00981
摘要

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)4-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.

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