Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/9761
Title: Sarcopenia in a type 2 diabetic state: Reviewing literature on the pathological consequences of oxidative stress and inflammation beyond the neutralizing effect of intracellular antioxidants
Authors: Muvhulawa, Ndivhuwo 
Mazibuko-Mbeje, Sithandiwe E. 
Ndwandwe, Duduzile Edith 
Silvestri, Sonia 
Ziqubu, Khanyisani 
Moetlediwa, Marakiya T. 
Mthembu, Sinenhlanhla X.H. 
Marnewick, Jeanine L 
Van Der Westhuizen, Francois H. 
Nkambule, Bongani Brian 
Basson, Albertus Kotze 
Tiano, Luca 
Dludla, Phiwayinkosi Vusi 
Keywords: Sarcopenia;Muscle wasting;Type 2 diabetes;Oxidative stress;Inflammation;Therapeutics
Issue Date: 2023
Publisher: Elsevier
Source: Muvhulawa, N. et al. 2023. Sarcopenia in a type 2 diabetic state: Reviewing literature on the pathological consequences of oxidative stress and inflammation beyond the neutralizing effect of intracellular antioxidants. Life Sciences, 332:1-11. [https://doi.org/10.1016/j.lfs.2023.122125]
Journal: Life Sciences 
Abstract: Sarcopenia remains one of the major pathological features of type 2 diabetes (T2D), especially in older individuals. This condition describes gradual loss of muscle mass, strength, and function that reduces the overall vitality and fitness, leading to increased hospitalizations and even fatalities to those affected. Preclinical evidence indicates that dysregulated mitochondrial dynamics, together with impaired activity of the NADPH oxidase system, are the major sources of oxidative stress that drive skeletal muscle damage in T2D. While patients with T2D also display relatively higher levels of circulating inflammatory markers in the serum, including high sensitivity-C-reactive protein, interleukin-6, and tumor necrosis factor-α that are independently linked with the deterioration of muscle function and sarcopenia in T2D. In fact, beyond reporting on the pathological consequences of both oxidative stress and inflammation, the current review highlights the importance of strengthening intracellular antioxidant systems to preserve muscle mass, strength, and function in individuals with T2D.
URI: http://hdl.handle.net/11189/9761
ISSN: 0024-3205
1879-0631 (Online)
DOI: doi.org/10.1016/j.lfs.2023.122125
Appears in Collections:HWSci - Journal Articles (DHET subsidised)

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