细胞内蛋白质递送工具的机制见解

Jingwen Xie, Jiajia Xiang, Youqing Shen and Shiqun Shao*, 
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引用次数: 0

摘要

蛋白质是现代医学中一种重要的治疗方式。然而,它们固有的不能穿过细胞膜的特性限制了它们在细胞外靶标上的应用。细胞内蛋白质递送的最新进展使传统上“不可药物”的细胞内靶点得以实现,并为精确调节细胞功能铺平了道路。本文综述了促进功能蛋白跨细胞膜运输的关键机制和新兴技术。输送方法分为物理、化学和生物方法,每种方法都有其独特的优点和局限性。物理方法可以使蛋白质直接进入,但通常会带来与侵入性和技术复杂性相关的挑战。化学策略提供了可定制的解决方案,增强了对细胞靶向和摄取的控制,但可能面临细胞毒性和可扩展性的问题。生物方法利用自然发生的过程来实现有效的细胞内运输,尽管监管和生产一致性仍然是障碍。通过强调每种方法的最新进展、挑战和机遇,本综述强调了细胞内蛋白质递送技术在开启新的治疗途径和改变药物开发范式方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanistic Insights into the Tools for Intracellular Protein Delivery

Proteins are an important therapeutic modality in modern medicine. However, their inherent inability to traverse cell membranes essentially limits their application to extracellular targets. Recent advances in intracellular protein delivery have enabled access to traditionally “undruggable” intracellular targets and paved the way to precisely modulate cellular functions. This Review provides a comprehensive examination of the key mechanisms and emerging technologies that facilitate the transport of functional proteins across cellular membranes. Delivery methods are categorized into physical, chemical, and biological approaches, each with distinct advantages and limitations. Physical methods enable direct protein entry but often pose challenges related to invasiveness and technical complexity. Chemical strategies offer customizable solutions with enhanced control over cellular targeting and uptake, yet may face issues with cytotoxicity and scalability. Biological approaches leverage naturally occurring processes to achieve efficient intracellular transport, though regulatory and production consistency remain hurdles. By highlighting recent advancements, challenges, and opportunities within each approach, this review underscores the potential of intracellular protein delivery technologies to unlock new therapeutic pathways and transform drug development paradigms.

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