Kim Ji Hyun, Green Denethia S, Ju Young Min, Harrison Mollie, Vaughan J William, Atala Anthony, Lee Sang Jin, Jackson John D, Nykiforuk Cory, Yoo James J
Wake Forest Institute for Regenerative Medicine, Wake Forest School of Medicine, Winston-Salem, NC, United States.
Emergent BioSolutions, Winnipeg, MB, Canada.
Front Bioeng Biotechnol. 2022 Jul 22;10:954682. doi: 10.3389/fbioe.2022.954682. eCollection 2022.
Stem cells have been introduced as a promising therapy for acute and chronic wounds, including burn injuries. The effects of stem cell-based wound therapies are believed to result from the secreted bioactive molecules produced by stem cells. Therefore, treatments using stem cell-derived conditioned medium (CM) (referred to as secretome) have been proposed as an alternative option for wound care. However, safety and regulatory concerns exist due to the uncharacterized biochemical content and variability across different batches of CM samples. This study presents an alternative treatment strategy to mitigate these concerns by using fully characterized recombinant proteins identified by the CM analysis to promote pro-regenerative healing. This study analyzed the secretome profile generated from human placental stem cell (hPSC) cultures and identified nine predominantly expressed proteins (ANG-1, FGF-7, Follistatin, HGF, IL-6, Insulin, TGFβ-1, uPAR, and VEGF) that are known to contribute to wound healing and angiogenesis. These proteins, referred to as s (CMFs), were used in combination to test the effects on human dermal fibroblasts (HDFs). Our results showed that CMF treatment increased the HDF growth and accelerated cell migration and wound closure, similar to stem cell and CM treatments. In addition, the CMF treatment promoted angiogenesis by enhancing new vessel formation. These findings suggest that the defined CMF identified by the CM proteomic analysis could be an effective therapeutic solution for wound healing applications. Our strategy eliminates the regulatory concerns present with stem cell-derived secretomes and could be developed as an off-the-shelf product for immediate wound care and accelerating healing.
干细胞已被引入作为治疗急性和慢性伤口(包括烧伤)的一种有前景的疗法。基于干细胞的伤口治疗效果被认为源于干细胞分泌的生物活性分子。因此,有人提出使用干细胞来源的条件培养基(CM,也称为分泌组)进行治疗作为伤口护理的一种替代选择。然而,由于CM样品不同批次之间生化成分未明确且存在变异性,存在安全性和监管方面的担忧。本研究提出了一种替代治疗策略,通过使用CM分析鉴定出的完全表征的重组蛋白来促进促再生愈合,以减轻这些担忧。本研究分析了人胎盘干细胞(hPSC)培养物产生的分泌组图谱,并鉴定出九种主要表达的蛋白(ANG-1、FGF-7、卵泡抑素、HGF、IL-6、胰岛素、TGFβ-1、uPAR和VEGF),已知这些蛋白有助于伤口愈合和血管生成。这些蛋白被称为s(CMFs),联合使用以测试对人真皮成纤维细胞(HDFs)的影响。我们的结果表明,CMF处理增加了HDF的生长,加速了细胞迁移和伤口闭合,类似于干细胞和CM处理。此外,CMF处理通过增强新血管形成促进了血管生成。这些发现表明,通过CM蛋白质组分析鉴定出的确定的CMF可能是伤口愈合应用的一种有效治疗方案。我们的策略消除了干细胞来源的分泌组存在的监管担忧,并且可以开发成一种现成的产品用于即时伤口护理和加速愈合。