Division of Surgery, ICAR-Indian Veterinary Research Institute, Izatnagar, Bareilly, Uttar Pradesh, India.
Division of Pathology, ICAR-Indian Veterinary Research Institute, Izatnagar, Bareilly, Uttar Pradesh, India.
Cell Tissue Bank. 2024 Jun;25(2):493-508. doi: 10.1007/s10561-023-10105-0. Epub 2023 Aug 4.
Biomaterials capable of managing wounds should have essential features like providing a natural microenvironment for wound healing and as support material for stimulating tissue growth. Eggshell membrane (ESM) is a highly produced global waste due to increased egg consumption. The unique and fascinating properties of ESM allow their potential application in tissue regeneration. The wound healing capacity of bone marrow-derived mesenchymal stem cells (BM-MSCs), ESM, and their combination in rabbits with full-thickness skin defect (2 × 2 cm) was evaluated. Twenty-five clinically healthy New Zealand White rabbits were divided into five groups of five animals each, with group A receiving no treatment (control group), group B receiving only fibrin glue (FG), group C receiving FG and ESM as a dressing, group D receiving FG and BM-MSCs, and group E receiving a combination of FG, ESM, and BM-MSCs. Wound healing was assessed using clinical, macroscopical, photographic, histological, histochemical, hematological, and biochemical analysis. Macroscopic examination of wounds revealed that healing was exceptional in group E, followed by groups D and C, compared to the control group. Histopathological findings revealed improved quality and a faster rate of healing in group E compared to groups A and B. In addition, healing in group B treated with topical FG alone was nearly identical to that in control group A. However, groups C and D showed improved and faster recovery than control groups A and B. The macroscopic, photographic, histological, and histochemical evaluations revealed that the combined use of BM-MSCs, ESM, and FG had superior and faster healing than the other groups.
生物材料若要能处理伤口,就应该具备一些基本特性,比如为伤口愈合提供一个自然的微环境,并作为刺激组织生长的支撑材料。蛋壳膜(ESM)是一种由于鸡蛋消费增加而大量产生的全球性废物。ESM 具有独特而迷人的特性,允许它们在组织再生中得到潜在的应用。本研究评估了骨髓间充质干细胞(BM-MSCs)、ESM 及其在新西兰白兔全层皮肤缺损(2×2cm)中的组合对伤口愈合的能力。25 只临床健康的新西兰白兔被分为 5 组,每组 5 只动物,A 组不接受任何治疗(对照组),B 组仅接受纤维蛋白胶(FG),C 组接受 FG 和 ESM 作为敷料,D 组接受 FG 和 BM-MSCs,E 组接受 FG、ESM 和 BM-MSCs 的组合。通过临床、宏观、摄影、组织学、组织化学、血液学和生物化学分析评估伤口愈合情况。伤口的宏观检查显示,E 组的愈合情况极好,其次是 D 组和 C 组,与对照组相比。组织病理学检查结果显示,与 A 组和 B 组相比,E 组的愈合质量得到改善,愈合速度更快。此外,单独使用局部 FG 治疗的 B 组与 A 组对照组几乎相同。然而,C 组和 D 组的恢复情况比 A 组和 B 组对照组更好更快。宏观、摄影、组织学和组织化学评估显示,BM-MSCs、ESM 和 FG 的联合使用比其他组具有更好更快的愈合效果。