Department of Biology and Anatomical Sciences, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran 1985717443, Iran.
Molecular and Cell Biology Research Center, Department of Anatomy, Faculty of Medicine, Mazandaran University of Medical Sciences, Sari 4815733971, Iran.
J Biosci Bioeng. 2022 May;133(5):489-501. doi: 10.1016/j.jbiosc.2022.01.012. Epub 2022 Mar 2.
Based on its multifactorial nature, successful treatment of diabetic wounds requires combinatorial approach. In this regard, we hypothesized that engraftment of a bioengineered micro-porous three-dimensional human amniotic membrane-scaffold (HAMS) loaded by SDF-1α (SHAMS) in combination with hyperbaric oxygen (HBO), throughout mobilization and recruitment of endothelial progenitor cells (EPCs), could accelerate wound healing in rats with type 1 diabetes mellitus. To test this hypothesis, 30 days after inducting diabetes, an ischemic wound was created in rat skin and treatments were performed for 21 days. In addition to wounded non-diabetic (ND) group, diabetic animals were randomly divided into non-treated (NT-D), HBO-treated (HBO-D), HBO-treated plus HAMS transplantation (HBO+HAMS-D) or HBO-treated in combination with SHAMS transplantation (HBO+SHAMS-D) groups. Our results on post-wounding days 7, 14 and 21 showed that the wound closure, volume of new dermis and epidermis, numerical density of basal cells of epidermis, fibroblasts and blood vessels, number of proliferating cells, deposition of collagen and biomechanical properties of healed wound were considerably higher in both HBO+HAMS-D and HBO+SHAMS-D groups in comparison to those of the NT-D and HBO-D groups, and were the highest in HBO+SHAMS-D ones. The transcripts for Vegf, bFgf, and Tgf-β genes were significantly upregulated in all treatment regimens compared to NT-D group and were the highest for HBO+SHAMS-D group. This is while expression of Tnf-α and Il-1β as well as cell density of neutrophil and macrophage decreased more significantly in HBO+SHAMS-D group as compared with NT-D or HBO-D groups. Overall, it was found that using both HAMS transplantation and HBO treatment has more impact on diabetic wound healing. Moreover, SDF-1α loading on HAMS could transiently improve the wound healing process, as compared with the HBO+HAMS-D group on day 7 only.
基于其多因素性质,糖尿病创面的成功治疗需要综合治疗方法。在这方面,我们假设,通过动员和募集内皮祖细胞 (EPC),将负载 SDF-1α 的生物工程微孔三维人羊膜支架 (SHAMS) 移植到 HAMS 中,结合高压氧 (HBO),可以加速 1 型糖尿病大鼠的创面愈合。为了验证这一假设,在诱导糖尿病 30 天后,在大鼠皮肤中创建缺血性创面,并进行 21 天的治疗。除了未受伤的非糖尿病 (ND) 组外,糖尿病动物还被随机分为未治疗 (NT-D)、HBO 治疗 (HBO-D)、HBO 治疗加 HAMS 移植 (HBO+HAMS-D) 或 HBO 治疗联合 SHAMS 移植 (HBO+SHAMS-D) 组。我们在伤后第 7、14 和 21 天的结果表明,与 NT-D 和 HBO-D 组相比,HBO+HAMS-D 和 HBO+SHAMS-D 组的伤口闭合、新真皮和表皮体积、表皮基底层细胞、成纤维细胞和血管的数量、增殖细胞数量、胶原蛋白沉积和愈合伤口的生物力学特性都显著增加,其中 HBO+SHAMS-D 组最高。与 NT-D 组相比,所有治疗方案中 Vegf、bFgf 和 Tgf-β 基因的转录物均显著上调,而 HBO+SHAMS-D 组最高。与此同时,与 NT-D 或 HBO-D 组相比,HBO+SHAMS-D 组 TNF-α 和 IL-1β 的表达以及中性粒细胞和巨噬细胞的细胞密度下降更为显著。总的来说,发现同时使用 HAMS 移植和 HBO 治疗对糖尿病创面愈合的影响更大。此外,与仅在第 7 天的 HBO+HAMS-D 组相比,SDF-1α 负载在 HAMS 上可以暂时改善创面愈合过程。