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用氧疗和衰老细胞溶解药物对糖尿病伤口进行建模治疗。

Modeling treatment of diabetic wounds with oxygen therapy and senolytic drug.

作者信息

Siewe Nourridine, Friedman Avner

机构信息

School of Mathematics and Statistics, Rochester Institute of Technology, Rochester, NY, USA.

Department of Mathematics, The Ohio State University, Columbus, OH, USA.

出版信息

Sci Rep. 2025 May 23;15(1):17944. doi: 10.1038/s41598-025-02852-9.

Abstract

Diabetic wounds are common in patients with type 2 diabetes; they are ischemic and inflammatory, and difficult to heal without intervention. Hyperbaric oxygen therapy (HBOT) is a standard treatment, but its effectiveness is limited to a subset of the aging population. Senescent fibroblasts, a hallmark of aging, impair wound healing, and senolytic drugs, like quercetin (Q), which target senescent cells, may improve healing. In this study, we developed a mathematical model that defines biological aging through two parameters, η and [Formula: see text], that decline with age. These parameters reflect the biological age of an individual, where η represents fibroblast proliferation and [Formula: see text] represents the production of the angiogenetic protein VEGF. Our model predicts that treatment with only HBOT achieves wound closure, within normal expectable time, for patients with a limited subset pairs of [Formula: see text], and this subset is increased to a larger subset by combining Q with HBOT. The two subsets of [Formula: see text] are determined explicitly by simulations of the model. To make these results applicable in clinical setting, one will have to relate the aging parameters η and [Formula: see text] to tangible marks of biological-aging factors.

摘要

糖尿病伤口在2型糖尿病患者中很常见;它们具有缺血性和炎症性,若不进行干预则难以愈合。高压氧疗法(HBOT)是一种标准治疗方法,但其有效性仅限于老年人群的一个子集。衰老的成纤维细胞是衰老的一个标志,会损害伤口愈合,而像槲皮素(Q)这样针对衰老细胞的衰老细胞溶解药物可能会促进愈合。在本研究中,我们开发了一个数学模型,该模型通过两个随年龄下降的参数η和[公式:见原文]来定义生物衰老。这些参数反映个体的生物年龄,其中η代表成纤维细胞增殖,[公式:见原文]代表血管生成蛋白VEGF的产生。我们的模型预测,仅用HBOT治疗,对于[公式:见原文]的有限子集对的患者,可在正常预期时间内实现伤口闭合,并且通过将Q与HBOT联合使用,该子集可增加到更大的子集。[公式:见原文]的这两个子集通过模型模拟明确确定。为了使这些结果适用于临床环境,必须将衰老参数η和[公式:见原文]与生物衰老因素的切实标志联系起来。

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