Expression of Caspase-3 in Circulating Innate Lymphoid Cells Subtypes Is Altered by Treatment with Metformin and Fluvastatin in High-Fat Diet Fed C57BL/6 Mice.
Vuyolwethu MxinwaBongani B NkambuleTawanda Maurice NyambuyaPhiwayinkosi Vusi DludlaPublished in: Cells (2022)
The current study aimed to determine the expression levels of caspase-3 in circulating innate lymphoid cell subtypes (ILCs) in a high-fat diet (HFD)-induced prediabetes mouse model. Another critical point was to assess the therapeutic effects of metformin and fluvastatin in modulating caspase-3 activation in ILCs within these HFD-fed mice. Prominent results showed that mice exposed to HFD for 14 weeks displayed impaired glucose tolerance that was accompanied by elevated levels of low-density lipoprotein cholesterol (LDL-c) and altered haematological profile as characterised by significantly increased concentrations of red blood cell count, white cell count and lymphocytes when compared to those fed a low-fat diet (LFD). Moreover, the expression of caspase-3 in ILC1 and ILC3 was significantly increased in the HFD groups in comparison to the LFD-fed group. Notably, six-week treatment with metformin and fluvastatin reduced the caspase-3 activation in ILC subtypes. The reduced caspase-3 activation in ILC1 was inversely associated with HDL-c levels following metformin treatment. Interestingly, the reduced caspase-3 activation in ILC3 was associated with lower total cholesterol following fluvastatin treatment in these HFD-fed mice. However, there were no differences in activation of caspase-3 on ILC2 or any association between caspase-3 activation and changes in body weight or fasting blood glucose. Thus, while HFD-feeding clearly modulates ILCs, potentially leading to pro-apoptotic mechanisms, metformin and fluvastatin may play a major role in protecting against such metabolic disturbances.
Keyphrases
- high fat diet
- cell death
- induced apoptosis
- insulin resistance
- adipose tissue
- blood glucose
- high fat diet induced
- poor prognosis
- endoplasmic reticulum stress
- mouse model
- body weight
- metabolic syndrome
- signaling pathway
- red blood cell
- stem cells
- peripheral blood
- clinical trial
- randomized controlled trial
- cell therapy
- nk cells
- type diabetes
- blood pressure
- combination therapy
- mesenchymal stem cells
- physical activity
- weight loss
- replacement therapy
- fatty acid
- pi k akt
- gestational age