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用于治疗慢性皮肤损伤的纳米技术医疗设备:从研究到临床

Nanotechnology-Based Medical Devices for the Treatment of Chronic Skin Lesions: From Research to the Clinic.

作者信息

Ruggeri Marco, Bianchi Eleonora, Rossi Silvia, Vigani Barbara, Bonferoni Maria Cristina, Caramella Carla, Sandri Giuseppina, Ferrari Franca

机构信息

Department of Drug Sciences, University of Pavia, Viale Taramelli 12, 27100 Pavia, Italy.

出版信息

Pharmaceutics. 2020 Aug 27;12(9):815. doi: 10.3390/pharmaceutics12090815.

Abstract

Chronic wounds, such as pressure ulcers, diabetic ulcers, venous ulcers and arterial insufficiency ulcers, are lesions that fail to proceed through the normal healing process within a period of 12 weeks. The treatment of skin chronic wounds still represents a great challenge. Wound medical devices (MDs) range from conventional and advanced dressings, up to skin grafts, but none of these are generally recognized as a gold standard. Based on recent developments, this paper reviews nanotechnology-based medical devices intended as skin substitutes. In particular, nanofibrous scaffolds are promising platforms for wound healing, especially due to their similarity to the extracellular matrix (ECM) and their capability to promote cell adhesion and proliferation, and to restore skin integrity, when grafted into the wound site. Nanotechnology-based scaffolds are emphasized here. The discussion will be focused on the definition of critical quality attributes (chemical and physical characterization, stability, particle size, surface properties, release of nanoparticles from MDs, sterility and apyrogenicity), the preclinical evaluation (biocompatibility testing, alternative tests for irritation and sensitization, wound healing test and animal wound models), the clinical evaluation and the CE (European Conformity) marking of nanotechnology-based MDs.

摘要

慢性伤口,如压疮、糖尿病溃疡、静脉性溃疡和动脉供血不足性溃疡,是指在12周内未能经历正常愈合过程的损伤。皮肤慢性伤口的治疗仍然是一个巨大的挑战。伤口医疗设备(MDs)范围从传统敷料和先进敷料到皮肤移植,但这些都未被普遍认可为金标准。基于最近的发展,本文综述了作为皮肤替代物的基于纳米技术的医疗设备。特别是,纳米纤维支架是伤口愈合很有前景的平台,尤其是因为它们与细胞外基质(ECM)相似,并且当移植到伤口部位时,具有促进细胞黏附和增殖以及恢复皮肤完整性的能力。本文重点强调基于纳米技术的支架。讨论将集中在关键质量属性的定义(化学和物理表征、稳定性、粒径、表面性质、纳米颗粒从MDs中的释放、无菌性和无热原性)、临床前评估(生物相容性测试、刺激性和致敏性的替代测试、伤口愈合测试和动物伤口模型)、临床评估以及基于纳米技术的MDs的CE(欧洲合格认证)标志。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a89/7559814/602ed476827f/pharmaceutics-12-00815-g001.jpg

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