Back Florence, Barras Alexandre, Nyam-Erdene Ariunjargal, Yang Jen-Chang, Melinte Sorin, Rumipamba José, Burnouf Thierry, Boukherroub Rabah, Szunerits Sabine, Chuang Er-Yuan
Université de Lille, CNRS, Université Polytechnique Hauts-de-France, UMR 8520 - IEMN, Lille, F-59000, France.
International Ph.D. Program in Biomedical Engineering, College of Biomedical Engineering, Taipei Medical University, Shuang-Ho Campus, New Taipei City, 23561, Taiwan.
Adv Healthc Mater. 2025 Jan;14(1):e2401914. doi: 10.1002/adhm.202401914. Epub 2024 Oct 25.
Platelet extracellular vesicles (pEVs) isolated from clinical-grade human platelet concentrates are attracting attention as a promising agent for wound healing therapies. Although pEVs have shown potential for skin regeneration, their incorporation into wound bandages has remained limitedly explored. Herein, gelatine-based hydrogel (PAH-G) foams for pEVs loading and release are formulated by crosslinking gelatine with poly(allylamine) hydrochloride (PAH) in the presence of glutaraldehyde and sodium bicarbonate. The optimized PAH-G hydrogel foam, PAHG, displayed an elastic modulus G' = 8.5 kPa at 37 °C and retained a rubbery state at elevated temperatures. The excellent swelling properties of PAHG allowed to easily absorb pEVs at high concentration (1 × 10 particles mL). The therapeutic effect of pEVs was evaluated in vivo on a chronic wound rat model. These studies demonstrated full wound closure after 14 days upon treatment with PAHG@pEVs. The maintenance of a reduced-inflammatory environment from the onset of treatment promoted a quicker transition to skin remodeling. Promotion of follicle activation and angiogenesis as well as M1-M2 macrophage modulation are evidenced. Altogether, the multifunctional properties of PAHG@pEVs addressed the complex challenges associated with chronic diabetic wounds, representing a significant advance toward personalized treatment regimens for these conditions.
从临床级人血小板浓缩物中分离出的血小板细胞外囊泡(pEVs)作为一种有前景的伤口愈合治疗剂正受到关注。尽管pEVs已显示出皮肤再生的潜力,但其在伤口绷带中的应用仍有待深入探索。在此,通过在戊二醛和碳酸氢钠存在下将明胶与聚烯丙胺盐酸盐(PAH)交联,制备了用于pEVs负载和释放的明胶基水凝胶(PAH-G)泡沫。优化后的PAH-G水凝胶泡沫PAHG在37°C时的弹性模量G' = 8.5 kPa,在高温下保持橡胶态。PAHG优异的溶胀性能使其能够轻松吸收高浓度(1×10颗粒/mL)的pEVs。在慢性伤口大鼠模型上对pEVs的治疗效果进行了体内评估。这些研究表明,用PAHG@pEVs治疗14天后伤口完全闭合。从治疗开始就维持炎症减轻的环境促进了更快地向皮肤重塑的转变。证实了毛囊激活、血管生成以及M1-M2巨噬细胞调节的促进作用。总之,PAHG@pEVs的多功能特性解决了与慢性糖尿病伤口相关的复杂挑战,代表了针对这些病症的个性化治疗方案的重大进展。