Use of Therapeutic RNAs to Accelerate Wound Healing in Diabetic Rabbit Wounds.

IF 5.8 3区 医学 Q1 DERMATOLOGY
Advances in wound care Pub Date : 2024-09-01 Epub Date: 2024-03-01 DOI:10.1089/wound.2023.0056
Brandon J Sumpio, Anne Dallas, Adam G Berger, Zhuqing Li, Enya Wang, Ikram Mezghani, Mauricio Contreras, Georgios Theocharidis, Heini Ilves, Paula T Hammond, Brian H Johnston, Aristidis Veves
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引用次数: 0

Abstract

Introduction: Diabetes mellitus (DM) affects over 422 million people globally. Patients with DM are subject to a myriad of complications, of which diabetic foot ulcers (DFUs) are the most common with ∼25% chance of developing these wounds throughout their lifetime. Innovation: Currently there are no therapeutic RNAs approved for use in DFUs. Use of dressings containing novel layer-by-layer (LbL)-formulated therapeutic RNAs that inhibit PHD2 and miR-210 can significantly improve diabetic wound healing. These dressings provide sustained release of therapeutic RNAs to the wounds locally without systemic side effects. Clinical Problem Addressed: Diabetic foot wounds are difficult to heal and often result in significant patient morbidity and mortality. Materials and Methods: We used the diabetic neuroischemic rabbit model of impaired wound healing. Diabetes was induced in the rabbits with alloxan, and neuroischemia was induced by ligating the central neurovascular bundle of each ear. Four 6-mm full-thickness wounds were created on each ear. A LbL technique was used to conformally coat the wound dressings with chemically modified RNAs, including an antisense oligonucleotide (antimiR) targeting microRNA-210 (miR-210), an short synthetic hairpin RNA (sshRNA) targeting PHD2, or both. Results: Wound healing was improved by the antimiR-210 but not the PHD2-sshRNA. Specific knockdown of miR-210 in tissue as measured by RT-qPCR was ∼8 Ct greater than nonspecific controls, and this apparent level of knockdown (>99%) suggests that delivery to the tissue is highly efficient at the administered dose. Discussion: Healing of ischemic/neuropathic wounds in diabetic rabbits was accelerated upon inhibition of miR-210 by LbL delivery to the wound bed. miR-210 inhibition was achieved using a chemically modified antisense RNA.

利用治疗性 RNA 加速糖尿病兔伤口愈合。
目的评估逐层(LbL)配制的抑制 PHD2 和 microRNA-210 (miR-210) 的治疗性 RNA 对改善受损的糖尿病伤口愈合的疗效:我们采用了糖尿病神经缺血兔伤口愈合受损模型。方法:我们采用了糖尿病神经缺血家兔伤口愈合受损模型。用阿脲诱导家兔患糖尿病,并通过结扎每只耳朵的中央神经血管束诱导神经缺血。每只耳朵上都有四个 6 毫米的全厚伤口。采用逐层(LbL)技术将针对 miR-210 的化学修饰反义 RNA(antimiR)和针对 PHD2 的 sshRNA 包覆在伤口敷料上:结果:antimiR-210能改善伤口愈合,但PHD2-sshRNA不能。通过 RT-qPCR 测定,组织中 miR-210 的特异性基因敲除量比非特异性对照组高出约 8Ct,这种明显的基因敲除水平(>99%)表明,在给药剂量下,向组织的递送是高效的:创新:使用新型治疗 RNA 和 LbL 系统将其输送到糖尿病伤口:结论:将针对 miR-210 的化学修饰反义 RNA 以 LbL 方式递送至伤口床,抑制 miR-210,可加速糖尿病兔缺血/神经病变伤口的愈合。
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来源期刊
Advances in wound care
Advances in wound care Medicine-Emergency Medicine
CiteScore
12.10
自引率
4.10%
发文量
62
期刊介绍: Advances in Wound Care rapidly shares research from bench to bedside, with wound care applications for burns, major trauma, blast injuries, surgery, and diabetic ulcers. The Journal provides a critical, peer-reviewed forum for the field of tissue injury and repair, with an emphasis on acute and chronic wounds. Advances in Wound Care explores novel research approaches and practices to deliver the latest scientific discoveries and developments. Advances in Wound Care coverage includes: Skin bioengineering, Skin and tissue regeneration, Acute, chronic, and complex wounds, Dressings, Anti-scar strategies, Inflammation, Burns and healing, Biofilm, Oxygen and angiogenesis, Critical limb ischemia, Military wound care, New devices and technologies.
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