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Engineering pharmaceutical nanocarriers for photodynamic therapy on wound healing: Review

机译:用于伤口愈合光动力疗法的工程药物纳米载体:综述

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摘要

In the present scenario, promising efforts have been improved by the researchers towards the development of nanocarriers that can be challenge fundamental tasks in photodynamic therapy (PDT) for wound management. In the past few years, nanotechnology-based therapy has attracted good attention with the advancement of nanotechnology such as PDT, chemotherapy, photothermal therapy. PDT has emerged as a promising clinical treatment method for wound healing. In this respect, great effort has been made towards the development of nanocarriers for targeted PDT in wound management. Nowadays, attention is concentrated on the advancement of nanomaterials using innovative methods in wound care for treating wounds with the faster healing effect. In this review, we present and discuss how nanocarriers have arisen as an interesting delivery nanoplatform for effective and consistent PDT. They can be easily delivered photodynamically and can demonstrate healing mechanisms for achieving target wound tissue/cells; therefore, PDT can be used in wound treatment to target cells specifically through release on demand, target-specific delivery, and in vivo labelling imaging. In addition, we also highlighted that the future goal for researchers is the development of biocompatible and biodegradable nanomaterials for all the phases of wound healing.
机译:在目前的情况下,研究人员已经朝着开发纳米载体的方向进行了有前途的努力,这些纳米载体可以挑战光动力疗法(PDT)中用于伤口处理的基本任务。在过去的几年中,基于纳米技术的疗法随着诸如PDT,化学疗法,光热疗法等纳米技术的发展而受到了广泛的关注。 PDT已经成为伤口愈合的有前途的临床治疗方法。在这方面,在开发用于伤口处理中的靶向PDT的纳米载体方面已经做出了巨大的努力。如今,注意力集中在使用创新方法在伤口护理中以更快的愈合速度治疗伤口的纳米材料上。在这篇综述中,我们提出并讨论了纳米载体如何作为有效而一致的PDT的有趣的传递纳米平台而出现。它们可以很容易地通过光动力传递,并可以证明实现目标伤口组织/细胞的愈合机制;因此,PDT可用于伤口治疗中,特别是通过按需释放,靶标特异性递送和体内标记成像来靶向靶细胞。此外,我们还强调指出,研究人员的未来目标是在伤口愈合的所有阶段开发生物相容性和可生物降解的纳米材料。

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