Topically-applied collagen-binding serum albumin-fused interleukin-4 modulates wound microenvironment in non-healing wounds.

IF 6.4 1区 医学 Q1 CELL & TISSUE ENGINEERING
Abigail L Lauterbach, Rachel P Wallace, Aaron T Alpar, Kirsten C Refvik, Joseph W Reda, Ako Ishihara, Taryn N Beckman, Anna J Slezak, Yukari Mizukami, Aslan Mansurov, Suzana Gomes, Jun Ishihara, Jeffrey A Hubbell
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引用次数: 0

Abstract

Non-healing wounds have a negative impact on quality of life and account for many cases of amputation and even early death among patients. Diabetic patients are the predominate population affected by these non-healing wounds. Despite the significant clinical demand, treatment with biologics has not broadly impacted clinical care. Interleukin-4 (IL-4) is a potent modulator of the immune system, capable of skewing macrophages towards a pro-regeneration phenotype (M2) and promoting angiogenesis, but can be toxic after frequent administration and is limited by its short half-life and low bioavailability. Here, we demonstrate the design and characterization of an engineered recombinant interleukin-4 construct. We utilize this collagen-binding, serum albumin-fused IL-4 variant (CBD-SA-IL-4) delivered in a hyaluronic acid (HA)-based gel for localized application of IL-4 to dermal wounds in a type 2 diabetic mouse model known for poor healing as proof-of-concept for improved tissue repair. Our studies indicate that CBD-SA-IL-4 is retained within the wound and can modulate the wound microenvironment through induction of M2 macrophages and angiogenesis. CBD-SA-IL-4 treatment significantly accelerated wound healing compared to native IL-4 and HA vehicle treatment without inducing systemic side effects. This CBD-SA-IL-4 construct can address the underlying immune dysfunction present in the non-healing wound, leading to more effective tissue healing in the clinic.

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局部应用胶原结合血清白蛋白融合白细胞介素-4调节未愈合伤口的伤口微环境。
不愈合的伤口对生活质量有负面影响,导致许多患者截肢甚至早逝。糖尿病患者是受这些不愈合伤口影响的主要人群。尽管临床需求巨大,但生物制剂治疗并没有广泛影响临床护理。白细胞介素-4(IL-4)是免疫系统的有效调节剂,能够使巨噬细胞向促再生表型(M2)倾斜并促进血管生成,但在频繁给药后可能有毒,并且受到其半衰期短和生物利用度低的限制。在此,我们展示了一种工程化重组白细胞介素-4构建体的设计和表征。我们利用这种在透明质酸(HA)基凝胶中递送的胶原结合、血清白蛋白融合的IL-4变体(CBD-SA-IL-4),将IL-4局部应用于2型糖尿病小鼠模型的真皮伤口,该模型以愈合不良而闻名,作为改善组织修复的概念证明。我们的研究表明,CBD-SA-IL-4保留在伤口内,可以通过诱导M2巨噬细胞和血管生成来调节伤口微环境。与天然IL-4和HA载体治疗相比,CBD-SA-IL-4治疗显著加速伤口愈合,而不会诱导全身副作用。这种CBD-SA-IL-4构建体可以解决未愈合伤口中存在的潜在免疫功能障碍,从而在临床上实现更有效的组织愈合。
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来源期刊
npj Regenerative Medicine
npj Regenerative Medicine Engineering-Biomedical Engineering
CiteScore
10.00
自引率
1.40%
发文量
71
审稿时长
12 weeks
期刊介绍: Regenerative Medicine, an innovative online-only journal, aims to advance research in the field of repairing and regenerating damaged tissues and organs within the human body. As a part of the prestigious Nature Partner Journals series and in partnership with ARMI, this high-quality, open access journal serves as a platform for scientists to explore effective therapies that harness the body's natural regenerative capabilities. With a focus on understanding the fundamental mechanisms of tissue damage and regeneration, npj Regenerative Medicine actively encourages studies that bridge the gap between basic research and clinical tissue repair strategies.
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