透明质酸
纳米材料
药物输送
透明质酸酶
纳米技术
材料科学
CD44细胞
药品
靶向给药
药理学
化学
医学
生物化学
酶
解剖
细胞
作者
Ki Young Choi,Hwa Seung Han,Eun Sook Lee,Jung Min Shin,Benjamin D. Almquist,Doo Sung Lee,Jae Hyung Park
标识
DOI:10.1002/adma.201803549
摘要
Abstract There is a rapidly increasing interest in developing stimuli‐responsive nanomaterials for treating a variety of diseases. By enabling the activation of function locally at the sites of interest, it is possible to increase therapeutic efficacy significantly while simultaneously reducing adverse side effects. While there are many sophisticated nanomaterials available, they are often highly complex and not easily transferrable to industrial scales and clinical settings. However, nanomaterials based on hyaluronic acid offer a compelling strategy for reducing their complexity while retaining several desirable benefits such as active targeting and stimuli‐responsive degradation. Herein, the basic properties of hyaluronic acid, its binding partners, and natural routes for degradation by hyaluronidases—hyaluronic‐acid‐degrading enzymes—and oxidative stresses are discussed. Recent advances in designing hyaluronic acid–based, actively targeted, hyaluronidase‐ or reactive‐oxygen‐species‐responsive nanomaterials for both diagnostic imaging and therapeutic delivery, which go beyond merely the classical targeting of CD44, are summarized.
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