1 Southwest Research Institute, Department of Pharmaceuticals and Bioengineering, San Antonio, TX, USA.
2 University of Texas at San Antonio, Department of Biomedical Engineering, San Antonio, TX, USA.
J Biomater Appl. 2018 Oct;33(4):553-565. doi: 10.1177/0885328218803754.
Chronic wounds complicated by diabetes are a significant clinical issue, and their occurrence is expected to continue to rise due to an increased prevalence of diabetes mellitus, especially type 2 diabetes. Diabetic wounds frequently lead to nonhealing ulcers, and often eventually result in limb amputation due to the high risk of infection of the chronic wound. Here, we present a tissue-engineered treatment that combines a novel electrochemically deposited collagen wound matrix and human adipose-derived stem cells. The matrix fabrication process is optimized for voltage and time, and the final collagen biomaterial is thoroughly characterized. This collagen material possesses high tensile strength, high porosity, and excellent biocompatibility and cellular proliferation capabilities. Human adipose-derived stem cells were seeded onto the collagen wound matrix and this construct is investigated in a full thickness excisional wound in a mouse model of type 2 diabetes. This novel treatment is shown to stimulate excellent healing and tissue regeneration, resulting in increased granulation tissue formation, epidermal thickness, and overall higher quality tissue reformation. Both the collagen wound matrix alone and collagen wound matrix in combination with adipose derived stem cells appeared to be excellent treatments for diabetic skin wounds, and in the future can also be optimized to treat other injuries such as burns, blast injuries, surgical incisions, and other traumatic injuries.
糖尿病并发的慢性伤口是一个重大的临床问题,由于糖尿病(尤其是 2 型糖尿病)的患病率不断上升,预计其发病率将持续上升。糖尿病伤口常导致难以愈合的溃疡,而且由于慢性伤口感染风险高,最终往往导致截肢。在这里,我们提出了一种组织工程治疗方法,该方法结合了新型电化学沉积胶原蛋白伤口基质和人脂肪源性干细胞。优化了电压和时间来制备基质,并且对最终的胶原蛋白生物材料进行了全面的特性分析。这种胶原蛋白材料具有高拉伸强度、高孔隙率以及出色的生物相容性和细胞增殖能力。将人脂肪源性干细胞接种到胶原蛋白伤口基质上,并在 2 型糖尿病小鼠的全层切除性伤口模型中对该构建体进行了研究。结果表明,这种新型治疗方法可刺激伤口的良好愈合和组织再生,从而增加肉芽组织形成、表皮厚度,并整体形成更高质量的组织重构。胶原蛋白伤口基质单独使用和与脂肪源性干细胞联合使用均对糖尿病皮肤伤口具有良好的治疗效果,在未来也可以进一步优化,用于治疗烧伤、爆炸伤、手术切口和其他创伤性损伤等其他损伤。