Cai Lu, Horowitz Michael, Islam Md Shahidul
Pediatric Research Institute, Department of Pediatrics, University of Louisville, Louisville, KY 40202, United States.
Department of Medicine, University of Adelaide, Adelaide 5005, Australia.
World J Diabetes. 2023 Dec 15;14(12):1717-1720. doi: 10.4239/wjd.v14.i12.1717.
Uncontrolled hyperglycemia or poorly managed disease increases the propensity for a number of diabetes-related complications targeting major organs including the heart, eyes, and kidney. Although the mechanisms by which diabetes induces cardiovascular diseases include oxidative stress and inflammation, when insulin resistance remains the key to the pathogenesis, as implicated in the two reviews in this issue. This editorial mainly comments on the potential preventive application of glycyrrhetinic acid (or 18β-GA) in relation to diabetic nephropathy. The thera-peutic or preventive effects of 18β-GA, as a hydrolytic product of glycyrrhizic acid that is a component of licorice, have been appreciated in other disorders, but have received much less attention in relation to diabetic complications. A study in this issue has identified 18β-GA as a therapeutic for preventing diabetic nephropathy and provides evidence to support efficacy in cultured human renal tubule cells . Although it represents a pilot study, the observations support a new therapeutic approach that warrants further ex-ploration.
血糖控制不佳或疾病管理不善会增加发生多种糖尿病相关并发症的倾向,这些并发症会累及包括心脏、眼睛和肾脏在内的主要器官。尽管糖尿病诱发心血管疾病的机制包括氧化应激和炎症,但胰岛素抵抗仍是发病机制的关键,本期的两篇综述都涉及到这一点。这篇社论主要评论了甘草次酸(或18β - GA)在糖尿病肾病潜在预防应用方面的情况。18β - GA作为甘草的成分甘草酸的水解产物,其治疗或预防作用在其他疾病中已得到认可,但在糖尿病并发症方面受到的关注较少。本期的一项研究已确定18β - GA可作为预防糖尿病肾病的治疗药物,并提供了在培养的人肾小管细胞中具有疗效的证据。尽管这只是一项初步研究,但这些观察结果支持了一种值得进一步探索的新治疗方法。