用于伤口愈合的脂基纳米系统。

Expert opinion on drug delivery Pub Date : 2024-08-01 Epub Date: 2024-09-11 DOI:10.1080/17425247.2024.2391473
Rita Cortesi, Maddalena Sguizzato, Francesca Ferrara
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引用次数: 0

摘要

导言:创伤、手术、烧伤或糖尿病造成的伤口是一个重要的医学问题,特别是考虑到伤口愈合是一个复杂的过程,需要较长的愈合时间和较高的医疗费用。纳米系统因其特性和在药物输送方面的广泛应用,已成为这一领域的前景看好的候选产品:介绍了用于伤口治疗的囊状或颗粒状脂质纳米系统,突出了它们与皮肤组织相互作用时的不同行为。综述了纳米系统在向皮肤输送大部分天然化合物方面的作用,以及提高其伤口愈合效率的技术和工程策略。最后,报告了体外、体外和体内研究:专家意见:与传统制剂相比,LBN 可提高伤口治疗药物的稳定性,从而提高疗效并减少不良反应,因此有望解决伤口愈合的难题。LBNs 参与伤口愈合过程中的炎症和增殖阶段,可通过多种方式改变伤口愈合。此外,三维生物打印和光生物调节等新技术的使用可能会在伤口愈合方面带来潜在的突破。这将为临床医生提供更有效的伤口愈合疗法。
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Lipid-based nanosystems for wound healing.

Introduction: Wounds, resulting from traumas, surgery, burns or diabetes, are important medical problems due to the complexity of wound healing process regarding healing times and healthcare costs. Nanosystems have emerged as promising candidates in this field thank to their properties and versatile applications in drugs delivery.

Areas covered: Lipid-based nanosystems (LBN) are described for wound treatment, highlighting their different behaviors when interacting with the cutaneous tissue. The role of nanosystems in delivering mostly natural compounds on skin as well as the technological and engineering strategies to increase their efficiency in wound healing effect are reviewed. Finally, in vitro, ex-vivo and in vivo studies are reported.

Expert opinion: LBN have shown promise in addressing the challenges of wound healing as they can improve the stability of drugs used in wound therapy, leading to higher efficacy and fewer adverse effects as compared to traditional formulations. LBNs being involved in the inflammatory and proliferation stages of the wound healing process, enable the modification of wound healing through multiple ways. In addition, the use of new technologies, including 3D bioprinting and photobiomodulation, may lead to potential breakthroughs in wound healing. This would provide clinicians with more potent forms of therapy for wound healing.

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