Therapeutic effect of N, N-Diphenyl-1,4-phenylenediamine and adipose-derived stem cells coadministration on diabetic cardiomyopathy in type 1 diabetes mellitus-rat model

Hany M. Abd El-lateef, Lashin S. Ali, Safa H. Qahl, Dalal N. Binjawhar, Eman Fayad, Maha A. Alghamdi, Sarah A. Altalhi, Fawziah A. Al-Salmi, El Shaimaa Shabana, Kholoud H. Radwan, Ibrahim Youssef, Saad Shaaban, Hanan M. Rashwan, Shady G. El-Sawah
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Abstract

Type 1 diabetes stem-cell-based treatment approach is among the leading therapeutic strategies for treating cardiac damage owing to the stem cells' regeneration capabilities. Mesenchymal stem cells derived from adipose tissue (AD-MSCs) have shown great potential in treating diabetic cardiomyopathy (DCM). Herein, we explored the antioxidant-supporting role of N, N′-diphenyl-1,4-phenylenediamine (DPPD) in enhancing the MSCs' therapeutic role in alleviating DCM complications in heart tissues of type 1 diabetic rats. Six male albinos Wistar rat groups have been designed into the control group, DPPD (250 mg/kg, i.p.) group, diabetic-untreated group, and three diabetic rat groups treated with either AD-MSCs (1 × 106 cell/rat, i.v.) or DPPD or both. Interestingly, all three treated diabetic groups exhibited a significant decrease in serum glucose, HbA1c, heart dysfunction markers (lactate dehydrogenase and CK-MP) levels, and lipid profile fractions (except for HDL-C), as well as some cardiac oxidative stress (OS) levels (MDA, AGEs, XO, and ROS). On the contrary, serum insulin, C-peptide, and various cardiac antioxidant levels (GSH, GST, CAT, SOD, TAC, and HO-1), beside viable cardiac cells (G0/G1%), were markedly elevated compared with the diabetic untreated group. In support of these findings, the histological assay reflected a marked enhancement in the cardiac tissues of all diabetic-treated groups, with obvious excellency of the AD-MSCs + DPPD diabetic-treated group. Such results strongly suggested the great therapeutic potentiality of either DPPD or AD-MSCs single injection in enhancing the cardiac function of diabetic rats, with a great noted enhancement superiority of DPPD and AD-MSCs coadministration.

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N,N-二苯基-1,4-苯二胺和脂肪源性干细胞联合应用对 1 型糖尿病大鼠模型糖尿病心肌病的治疗作用
由于干细胞具有再生能力,以1型糖尿病干细胞为基础的治疗方法是治疗心脏损伤的主要治疗策略之一。源自脂肪组织的间充质干细胞(AD-MSCs)在治疗糖尿病心肌病(DCM)方面显示出巨大潜力。在此,我们探讨了N, N′-二苯基-1,4-苯二胺(DPPD)在增强间充质干细胞缓解1型糖尿病大鼠心脏组织DCM并发症的治疗作用中的抗氧化支持作用。六只雄性白化Wistar大鼠被设计为对照组、DPPD(250 毫克/千克,静注)组、糖尿病未处理组,以及用AD-间充质干细胞(1×106 个细胞/只,静注)或DPPD或两者处理的三组糖尿病大鼠。有趣的是,所有三个糖尿病组的血清葡萄糖、HbA1c、心脏功能障碍标志物(乳酸脱氢酶和CK-MP)水平、血脂谱组分(HDL-C除外)以及部分心脏氧化应激(OS)水平(MDA、AGEs、XO和ROS)均显著下降。相反,与糖尿病未治疗组相比,血清胰岛素、C 肽、各种心脏抗氧化剂水平(GSH、GST、CAT、SOD、TAC 和 HO-1)以及有活力的心脏细胞(G0/G1%)均明显升高。组织学检测结果表明,所有糖尿病治疗组的心脏组织均有明显改善,其中 AD-MSCs + DPPD 糖尿病治疗组的心脏组织明显改善。这些结果有力地表明,无论是单次注射 DPPD 还是 AD-间充质干细胞,在增强糖尿病大鼠心脏功能方面都具有巨大的治疗潜力,而 DPPD 和 AD-MSCs 联合应用在增强糖尿病大鼠心脏功能方面则具有显著的优势。
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来源期刊
Journal of experimental zoology. Part A, Ecological and integrative physiology
Journal of experimental zoology. Part A, Ecological and integrative physiology Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
4.90
自引率
3.60%
发文量
0
期刊介绍: The Journal of Experimental Zoology – A publishes articles at the interface between Development, Physiology, Ecology and Evolution. Contributions that help to reveal how molecular, functional and ecological variation relate to one another are particularly welcome. The Journal publishes original research in the form of rapid communications or regular research articles, as well as perspectives and reviews on topics pertaining to the scope of the Journal. Acceptable articles are limited to studies on animals.
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