Sericin/Dextran Injectable Hydrogel as an Optically Trackable Drug Delivery System for Malignant Melanoma Treatment

自愈水凝胶 药物输送 体内 材料科学 丝胶 右旋糖酐 药品 阿霉素 生物医学工程 纳米技术 药理学 化疗 化学 丝绸 医学 有机化学 外科 高分子化学 生物技术 复合材料 生物
作者
Jia Liu,Chao Qi,Kaixiong Tao,Jinxiang Zhang,Jian Zhang,Luming Xu,Xulin Jiang,Yunti Zhang,Lei Huang,Qilin Li,Hongjian Xie,Jinbo Gao,Xiaoming Shuai,Guobin Wang,Zheng Wang,Lin Wang
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:8 (10): 6411-6422 被引量:160
标识
DOI:10.1021/acsami.6b00959
摘要

Severe side effects of cancer chemotherapy prompt developing better drug delivery systems. Injectable hydrogels are an effective site-target system. For most of injectable hydrogels, once delivered in vivo, some properties including drug release and degradation, which are critical to chemotherapeutic effects and safety, are challenging to monitor. Developing a drug delivery system for effective cancer therapy with in vivo real-time noninvasive trackability is highly desired. Although fluorescence dyes are used for imaging hydrogels, the cytotoxicity limits their applications. By using sericin, a natural photoluminescent protein from silk, we successfully synthesized a hydrazone cross-linked sericin/dextran injectable hydrogel. This hydrogel is biodegradable and biocompatible. It achieves efficient drug loading and controlled release of both macromolecular and small molecular drugs. Notably, sericin's photoluminescence from this hydrogel is directly and stably correlated with its degradation, enabling long-term in vivo imaging and real-time monitoring of the remaining drug. The hydrogel loaded with Doxorubicin significantly suppresses tumor growth. Together, the work demonstrates the efficacy of this drug delivery system, and the in vivo effectiveness of this sericin-based optical monitoring strategy, providing a potential approach for improving hydrogel design toward optimal efficiency and safety of chemotherapies, which may be widely applicable to other drug delivery systems.
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