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Zn-MOF 封装的抗菌和可降解微针阵列促进伤口愈合。

Zn-MOF Encapsulated Antibacterial and Degradable Microneedles Array for Promoting Wound Healing.

机构信息

State Key Laboratory of Toxicology and Medical Countermeasures, Institute of Pharmacology and Toxicology, Academy of Military Medical Sciences, Beijing, 100850, China.

Department of Rheumatology and Immunology, Institute of Translational Medicine, The Affiliated Drum Tower Hospital of Nanjing University Medical School, Nanjing, 210008, China.

出版信息

Adv Healthc Mater. 2021 Jun;10(12):e2100056. doi: 10.1002/adhm.202100056. Epub 2021 May 3.

Abstract

An infected skin wound caused by external injury remains a serious challenge in clinical practice. Wound dressings with the properties of antibacterial activity and potent regeneration capacity are highly desirable for wound healing. In this paper, a degradable, ductile, and wound-friendly Zn-MOF encapsulated methacrylated hyaluronic acid (MeHA) microneedles (MNs) array is fabricated through the molding method for promoting wound healing. Due to the damage capability against the bacteria capsule and oxidative stress of the zinc ion released from the Zn-MOF, such MNs array presents excellent antibacterial activity, as well as considerable biocompatibility. Besides, the degradable MNs array composed of photo-crosslinked MeHA possesses the superior capabilities to continuously and steadily release the loaded active ingredients and avoid secondary damage to the wound. Moreover, the low molecular weight hyaluronic acid (HA) generated by hydrolysis of MeHA is also conducive to tissue regeneration. Benefiting from these features, it has been demonstrated that the Zn-MOF encapsulated degradable MNs array can dramatically accelerate epithelial regeneration and neovascularization. These results indicate that the combination of MOFs and degradable MNs array is of great value for promoting wound healing.

摘要

由外伤引起的感染性皮肤伤口仍然是临床实践中的一个严重挑战。具有抗菌活性和强大再生能力的伤口敷料非常适合伤口愈合。本文通过模压法制备了一种可降解、柔韧且对伤口友好的 Zn-MOF 封装的甲基丙烯酰化透明质酸(MeHA)微针(MN)阵列,以促进伤口愈合。由于 Zn-MOF 释放的锌离子对细菌胶囊的破坏能力和氧化应激,这种 MN 阵列表现出优异的抗菌活性和相当好的生物相容性。此外,由光交联 MeHA 组成的可降解 MN 阵列具有持续稳定释放负载活性成分的优异能力,并避免对伤口的二次损伤。此外,MeHA 水解生成的低分子量透明质酸(HA)也有利于组织再生。得益于这些特性,已经证明 Zn-MOF 封装的可降解 MN 阵列可以显著加速上皮再生和新血管形成。这些结果表明,MOFs 和可降解 MN 阵列的结合对于促进伤口愈合具有重要价值。

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