沃顿果冻衍生干细胞播种/硼负载细胞支架对大鼠模型全厚烧伤创面愈合的影响。

Sadeneh Nikzad, Saeideh Same, Saeid Safiri, Sanam Dolati, Babak Roushangar Zineh, Shahla Meshgi, Leila Roshangar, Fikrettin Şahin
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引用次数: 0

摘要

烧伤是最具破坏性和最复杂的皮肤或下层软组织损伤类型,因长期炎症反应而恶化。目前已开发出几种基于细胞的治疗系统,通过在改良支架上培养强效干细胞来应对烧伤愈合的挑战。在此背景下,我们设计了一种基于富含硼(B)细胞的羊小肠粘膜下层(AOSIS)支架的新型再生平台,并将其用作从沃顿果冻中提取的间充质干细胞(WJMSCs)的载体,旨在促进烧伤诱导的大鼠模型的组织愈合。随后,96 只三度烧伤的 Wistar 雄性大鼠被分为 4 组。未接受任何治疗的动物被视为 A 组(对照组)。然后,B 组只接受 AOSIS 支架治疗,C 组接受细胞播种 AOSIS 支架(hWJMSCs-AOSIS),D 组覆盖富含硼的细胞-AOSIS 支架(B/hWJMSCs-AOSIS)。在伤口愈合后 5、14 和 21 天评估炎症因子、组织病理学参数以及上皮细胞生成蛋白和血管生成蛋白的表达水平。在烧伤后第 21 天,在全厚皮肤烧伤伤口上应用 B/hWJMSCs-AOSIS 能显著减少中性粒细胞和淋巴细胞的数量,而此时成纤维细胞和血管的数量有所增加。此外,随着时间的推移对伤口进行的分子和组织学分析进一步证实,硼的添加促进了伤口愈合,减少了炎症因子,刺激了血管生成,加速了再上皮化,并提高了上皮生成基因的表达水平。此外,硼的加入还通过增加胶原蛋白的沉积、成纤维细胞的数量和活性来扩大伤口的闭合。因此,这种新制造的 hWJMSCs/B 负载支架可作为一种有前途的系统,通过炎症调节和血管生成刺激加速烧伤创面的重建。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of Wharton's jelly-derived stem cells seeded/boron-loaded acellular scaffolds on the healing of full-thickness burn wounds in the rat model.

Burn wounds are the most destructive and complicated type of skin or underlying soft tissue injury that are exacerbated by a prolonged inflammatory response. Several cell-based therapeutic systems through the culturing of potent stem cells on modified scaffolds have been developed to direct the burn healing challenges. In this context, a new regenerative platform based on boron (B) enriched-acellular sheep small intestine submucosa (AOSIS) scaffold was designed and used as a carrier for mesenchymal stem cells derived from Wharton's jelly (WJMSCs) aiming to promote the tissue healing in burn-induced rat models. hWJMSCs have been extracted from human extra-embryonic umbilical cord tissue. Thereafter, 96 third-degree burned Wistar male rats were divided into 4 groups. The animals that did not receive any treatment were considered as group A (control). Then, group B was treated just by AOSIS scaffold, group C was received cell-seeded AOSIS scaffold (hWJMSCs-AOSIS), and group D was covered by boron enriched-cell-AOSIS scaffold (B/hWJMSCs-AOSIS). Inflammatory factors, histopathological parameters, and the expression levels of epitheliogenic and angiogenic proteins were assessed on 5, 14 and 21 d post-wounding. Application of the B/hWJMSCs-AOSIS on full-thickness skin-burned wounds significantly reduced the volume of neutrophils and lymphocytes at day 21 post-burning, whilst the number of fibroblasts and blood vessels enhanced at this time. In addition, molecular and histological analysis of wounds over time further verified that the addition of boron promoted wound healing, with decreased inflammatory factors, stimulated vascularization, accelerated re-epithelialization, and enhanced expression levels of epitheliogenic genes. In addition, the boron incorporation amplified wound closure via increasing collagen deposition and fibroblast volume and activity. Therefore, this newly fabricated hWJMSCs/B-loaded scaffold can be used as a promising system to accelerate burn wound reconstruction through inflammatory regulation and angiogenesis stimulation.

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