Microvascular complications are responsible for a major proportion of the burden associated with diabetes contributing to substantial morbidity, mortality, and healthcare costs in people with diabetes. Retinopathy, nephropathy, and neuropathy constitute the leading causes of blindness, end-stage renal disease, and lower-extremity amputations, respectively. Since the efficacy of causal therapies of diabetic microvascular complications is limited, especially in type 2 diabetes, there is an unmet need for adjunct treatments which should be effective despite ongoing hyperglycemia. Experimental studies indicate that diabetic microvascular complications can be prevented or ameliorated by various biofactors in animal models by interfering with the pathophysiology of the underlying condition. Some of the findings related to biofactors like α-lipoic acid and benfotiamine could be translated into the clinical arena and confirmed in clinical trials, especially in those focusing on diabetic polyneuropathy. Given the micronutrient nature of these compounds, their safety profile is excellent. Thus, they have the potential to favorably modify the natural history of the underlying complication, but large long-term clinical trials are required to confirm this notion. Ultimately, biofactors should expand our therapeutic armamentarium against these common, debilitating, and even life-threatening sequelae of diabetes.

The Role of Biofactors in Diabetic Microvascular Complications

Porta, Massimo;Beltramo, Elena;Mazzeo, Aurora;Caccioppo, Andrea;Striglia, Elio;
2022-01-01

Abstract

Microvascular complications are responsible for a major proportion of the burden associated with diabetes contributing to substantial morbidity, mortality, and healthcare costs in people with diabetes. Retinopathy, nephropathy, and neuropathy constitute the leading causes of blindness, end-stage renal disease, and lower-extremity amputations, respectively. Since the efficacy of causal therapies of diabetic microvascular complications is limited, especially in type 2 diabetes, there is an unmet need for adjunct treatments which should be effective despite ongoing hyperglycemia. Experimental studies indicate that diabetic microvascular complications can be prevented or ameliorated by various biofactors in animal models by interfering with the pathophysiology of the underlying condition. Some of the findings related to biofactors like α-lipoic acid and benfotiamine could be translated into the clinical arena and confirmed in clinical trials, especially in those focusing on diabetic polyneuropathy. Given the micronutrient nature of these compounds, their safety profile is excellent. Thus, they have the potential to favorably modify the natural history of the underlying complication, but large long-term clinical trials are required to confirm this notion. Ultimately, biofactors should expand our therapeutic armamentarium against these common, debilitating, and even life-threatening sequelae of diabetes.
2022
17
1
26
https://www.eurekaselect.com/article/117483
biofactors; cardiovascular autonomic neuropathy; diabetic microvascular complications; diabetic nephropathy; diabetic retinopathy; diabetic sensorimotor polyneuropathy
Ziegler, Dan; Porta, Massimo; Papanas, Nikolaos; Mota, Maria; Jermendy, György; Beltramo, Elena; Mazzeo, Aurora; Caccioppo, Andrea; Striglia, Elio; Serhiyenko, Victoria; Serhiyenko, Alexandr; Rosta, László; Stirban, Ovidiu Alin; Putz, Zsuzsanna; Istenes, Ildikó; Horváth, Viktor; Kempler, Peter
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1831084
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