Putra Agung, Alif Iffan, Hamra Nurfitriani, Santosa Octyana, Kustiyah Azizah Retno, Muhar Adi Muradi, Lukman Kiki
Stem Cell And Cancer Research (SCCR), Medical Faculty, Universitas Islam Sultan Agung (UNISSULA), Semarang, Central Java, Indonesia.
Department of Postgraduate Biomedical Science, Medical Faculty, Universitas Islam Sultan Agung (UNISSULA), Semarang, Central Java, Indonesia.
J Stem Cells Regen Med. 2020 Dec 11;16(2):73-79. doi: 10.46582/jsrm.1602011. eCollection 2020.
: Wound healing without fibrosis remains a clinical challenge and a new strategy to promote the optimal wound healing is needed. Mesenchymal stem cells (MSCs) can completely regenerate tissue injury due to the robust MSCs ability in controlling inflammation niche leading to granulation tissue formation, particularly through a release of various growth factors including transforming growth factor-β (TGF-β). In response to TGF-β stimulation, fibroblasts differentiate into myofibroblast, marked by alpha-smooth muscle actin (α-SMA) that leads to wound healing acceleration. On the other hand, sustained activation of TGF-β in wound areas may contribute to fibrosis-associated scar formation. The aim of this study was to evaluate the α-SMA expression of myofibroblast induced by MSC-released TGF-β during wound healing process. : Twenty-four full-thickness excisional rat wound models were randomly divided into four groups: sham (Sh), Control (C), and MSCs treatment groups; topically treated by the MSCs at doses 2x10 cells (T1) and 1x10 cells (T2), respectively. While the control group was treated with NaCl. TGF-β level was determined using ELISA assay, α-SMA expression of myofibroblast was analyzed by immunofluorescence staining, and wound size measurement was calculated using a standard caliper. : This study showed a significant increase in TGF-β levels in all treatment groups on days 3 and 6. This finding was consistent with a significant increase of α-SMA expression of myofibroblast at day 6 and wound closure percentage, indicating that MSCs might promote an increase of wound closure. : MSCs regulated the release of TGF-β to induce α-SMA expression of myofibroblast for accelerating an optimal wound healing.
无纤维化的伤口愈合仍然是一项临床挑战,因此需要一种新的策略来促进最佳伤口愈合。间充质干细胞(MSCs)能够完全再生组织损伤,这归因于其强大的控制炎症微环境的能力,从而导致肉芽组织形成,特别是通过释放包括转化生长因子-β(TGF-β)在内的各种生长因子。响应TGF-β刺激,成纤维细胞分化为肌成纤维细胞,以α-平滑肌肌动蛋白(α-SMA)为标志,这会加速伤口愈合。另一方面,伤口区域中TGF-β的持续激活可能导致与纤维化相关的瘢痕形成。本研究的目的是评估伤口愈合过程中MSCs释放的TGF-β诱导的肌成纤维细胞的α-SMA表达。
24个全层切除大鼠伤口模型被随机分为四组:假手术组(Sh)、对照组(C)和MSCs治疗组;分别以2×10⁶细胞(T1)和1×10⁶细胞(T2)的剂量对伤口进行局部治疗。而对照组用氯化钠处理。使用ELISA测定法测定TGF-β水平,通过免疫荧光染色分析肌成纤维细胞的α-SMA表达,并使用标准卡尺计算伤口大小测量值。
本研究表明,在第3天和第6天,所有治疗组中的TGF-β水平均显著升高。这一发现与第6天肌成纤维细胞α-SMA表达的显著增加和伤口闭合百分比一致,表明MSCs可能促进伤口闭合增加。
MSCs调节TGF-β的释放,以诱导肌成纤维细胞的α-SMA表达,从而加速最佳伤口愈合。