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工程化的递送策略增强了生长因子在创伤愈合中的活性控制。

Engineered delivery strategies for enhanced control of growth factor activities in wound healing.

机构信息

State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences, University of Macau, Avenida da Universidade, Macau SAR, China.

State Key Laboratory of Natural Medicines, Department of Pharmaceutical Analysis, China Pharmaceutical University, Nanjing 210009, China.

出版信息

Adv Drug Deliv Rev. 2019 Jun;146:190-208. doi: 10.1016/j.addr.2018.06.002. Epub 2018 Jun 5.

Abstract

Growth factors (GFs) are versatile signalling molecules that orchestrate the dynamic, multi-stage process of wound healing. Delivery of exogenous GFs to the wound milieu to mediate healing in an active, physiologically-relevant manner has shown great promise in laboratories; however, the inherent instability of GFs, accompanied with numerous safety, efficacy and cost concerns, has hindered the clinical success of GF delivery. In this article, we highlight that the key to overcoming these challenges is to enhance the control of the activities of GFs throughout the delivering process. We summarise the recent strategies based on biomaterials matrices and molecular engineering, which aim to improve the conditions of GFs for delivery (at the 'supply' end of the delivery), increase the stability and functions of GFs in extracellular matrix (in transportation to target cells), as well as enhance the GFs/receptor interaction on the cell membrane (at the 'destination' end of the delivery). Many of these investigations have led to encouraging outcomes in various in vitro and in vivo regenerative models with considerable translational potential.

摘要

生长因子 (GFs) 是多功能信号分子,可协调创伤愈合的动态、多阶段过程。将外源性 GFs 递送至创伤微环境中,以主动、生理相关的方式介导愈合,在实验室中显示出巨大的潜力;然而,GFs 的固有不稳定性,伴随着许多安全性、有效性和成本问题,阻碍了 GF 递送的临床成功。在本文中,我们强调克服这些挑战的关键是增强对整个递送过程中 GFs 活性的控制。我们总结了基于生物材料基质和分子工程的最新策略,这些策略旨在改善 GFs 的递送条件(在递送的“供应”端),提高细胞外基质中 GFs 的稳定性和功能(在向靶细胞的运输过程中),并增强细胞膜上 GFs/受体的相互作用(在递送的“目的地”端)。这些研究中的许多研究在各种具有相当转化潜力的体外和体内再生模型中取得了令人鼓舞的结果。

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