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  • In situ sprayed NIR-respons...
    Ouyang, Jiang; Ji, Xiaoyuan; Zhang, Xingcai; Feng, Chan; Tang, Zhongmin; Kong, Na; Xie, Angel; Wang, Junqing; Sui, Xinbing; Deng, Liu; Liu, Younian; Kim, Jong Seung; Cao, Yihai; Tao, Wei

    Proceedings of the National Academy of Sciences - PNAS, 11/2020, Letnik: 117, Številka: 46
    Journal Article

    The treatment of diabetic ulcer (DU) remains a major clinical challenge due to the complex wound-healing milieu that features chronic wounds, impaired angiogenesis, persistent pain, bacterial infection, and exacerbated inflammation. A strategy that effectively targets all these issues has proven elusive. Herein, we use a smart black phosphorus (BP)-based gel with the characteristics of rapid formation and near-infrared light (NIR) responsiveness to address these problems. The in situ sprayed BP-based gel could act as 1) a temporary, biomimetic “skin” to temporarily shield the tissue from the external environment and accelerate chronic wound healing by promoting the proliferation of endothelial cells, vascularization, and angiogenesis and 2) a drug “reservoir” to store therapeutic BP and pain-relieving lidocaine hydrochloride (Lid). Within several minutes of NIR laser irradiation, the BP-based gel generates local heat to accelerate microcirculatory blood flow, mediate the release of loaded Lid for “on-demand” pain relief, eliminate bacteria, and reduce inflammation. Therefore, our study not only introduces a concept of in situ sprayed, NIR-responsive pain relief gel targeting the challengingwound-healing milieu in diabetes but also provides a proof-of-concept application of BP-based materials in DU treatment.