Literature DB >> 16026267

Molecular targets of diabetic cardiovascular complications.

Fatima K Ahmad1, Zhiheng He, George L King.   

Abstract

Both the macro- and microvascular complications adversely affect the life quality of patients with diabetes and have been the leading cause of mortality and morbidity in this population. With the advancement of technologies in biomedical research, we have gained a great deal of understanding of the mechanisms underlying these complications. While euglycemic control still remains the best strategy, it is often difficult to maintain at a level that can completely prevent the vascular complications. Therefore, it is necessary to use the processes leading to vascular dysfunction as a framework for designing novel molecular therapeutic targets. Several of the mechanisms by which diabetes induces vascular complications include increased flux through the polyol pathway, increased oxidative stress, activation of protein kinase C (PKC), vascular inflammation, and abnormal expression and actions of cytokines in the vasculature. Many of the therapies that target these pathways have proven successful in experimental models of diabetic complications. However, clinical studies using these treatments have mainly yielded inconclusive results. The pathogenesis of diabetic vascular complications and results from animal studies and key clinical studies are reviewed here.

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Year:  2005        PMID: 16026267     DOI: 10.2174/1389450054021990

Source DB:  PubMed          Journal:  Curr Drug Targets        ISSN: 1389-4501            Impact factor:   3.465


  22 in total

Review 1.  Oxidative stress, insulin signaling, and diabetes.

Authors:  Justin L Rains; Sushil K Jain
Journal:  Free Radic Biol Med       Date:  2010-12-13       Impact factor: 7.376

2.  Radix Astragali lowers kidney oxidative stress in diabetic rats treated with insulin.

Authors:  Y Gao; R R Zhang; J H Li; M Ren; Z X Ren; J H Shi; Q Z Pan; S P Ren
Journal:  Endocrine       Date:  2012-04-20       Impact factor: 3.633

Review 3.  Cerebral neovascularization in diabetes: implications for stroke recovery and beyond.

Authors:  Adviye Ergul; Mohammed Abdelsaid; Abdelrahman Y Fouda; Susan C Fagan
Journal:  J Cereb Blood Flow Metab       Date:  2014-02-05       Impact factor: 6.200

4.  Glucose-6-phosphate dehydrogenase-deficient mice have increased renal oxidative stress and increased albuminuria.

Authors:  Yizhen Xu; Zhaoyun Zhang; Ji Hu; Isaac E Stillman; Jane A Leopold; Diane E Handy; Joseph Loscalzo; Robert C Stanton
Journal:  FASEB J       Date:  2009-10-05       Impact factor: 5.191

5.  THE EFFECT OF MELATONIN AGAINST GASTRIC OXIDATIVE STRESS AND DYSLIPIDEMIA IN STREPTOZOTOCIN-INDUCED DIABETIC RATS.

Authors:  M A R Hadjzadeh; V Alikhani; S Hosseinian; B Zarei; Z Keshavarzi
Journal:  Acta Endocrinol (Buchar)       Date:  2018 Oct-Dec       Impact factor: 0.877

6.  Differing endoplasmic reticulum stress response to excess lipogenesis versus lipid oversupply in relation to hepatic steatosis and insulin resistance.

Authors:  Lu-Ping Ren; Stanley M H Chan; Xiao-Yi Zeng; D Ross Laybutt; Tristan J Iseli; Ruo-Qiong Sun; Edward W Kraegen; Gregory J Cooney; Nigel Turner; Ji-Ming Ye
Journal:  PLoS One       Date:  2012-02-15       Impact factor: 3.240

7.  Mitochondria: redox metabolism and dysfunction.

Authors:  Jia Kang; Shazib Pervaiz
Journal:  Biochem Res Int       Date:  2012-04-24

Review 8.  Metabolic effects of the incretin mimetic exenatide in the treatment of type 2 diabetes.

Authors:  Catherine A Schnabel; Matthew Wintle; Orville Kolterman
Journal:  Vasc Health Risk Manag       Date:  2006

9.  Bilirubin: striking gold in diabetic vasculopathy?

Authors:  William Durante
Journal:  Diabetes       Date:  2015-05       Impact factor: 9.461

Review 10.  Diabetes Mellitus, Cognitive Impairment, and Traditional Chinese Medicine.

Authors:  S W Seto; G Y Yang; H Kiat; A Bensoussan; Y W Kwan; D Chang
Journal:  Int J Endocrinol       Date:  2015-04-28       Impact factor: 3.257

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