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Author Spotlight: Isolation and Identification of Mesenchymal Stem Cells Derived from Adipose Tissue of Sprague Dawley Rats
Published on: April 7, 2023
Systemic Factors During Metabolic Disease Progression Contribute to the Functional Decline of Adipose Tissue-Derived
Ascentia M Seboko1, M M Conradie1, M J Kruger1
1Division of Endocrinology, Department of Medicine, Faculty of Medicine and Health Sciences, Stellenbosch University, Cape Town, South Africa.
Abstract:
It is known that advanced metabolic disorders such as type 2 diabetes compromise the functional and regenerative capacity of endogenous adipose-tissue resident stem cells (ADSCs). It is, however, still unclear at which stage of disease progression ADSCs become compromised and whether systemic factors contribute to their functional decline. It was therefore hypothesized that inflammatory changes in the systemic microenvironment during distinct stages of disease progression negatively affect the functional capacity of ADSCs. A total of forty-seven (n = 47) black African reproductive aged females (32 ± 8 years; mean ± SD) were included in this study and subdivided into: (a) healthy lean (C; body mass index, BMI ≤ 25 kg/m2), (b) healthy overweight/obese (OB; BMI ≥ 25 kg/m2), (c) obese metabolic syndrome (MetS; BMI ≥ 30 kg/m2), and (d) type 2 diabetes mellitus (T2DM; previously diagnosed and on treatment) groups. Participants underwent anthropometric assessments and a DXA scan to determine their body composition and adipose indices. Each persons' systemic metabolic- (cholesterol, HDL, LDL, triglycerides, and blood glucose) and inflammatory profiles (CRP, SDF1α, TNFα, IL6, IL8, IL10, and IFNy) were also evaluated. Participant-derived serum was then used to treat an ADSC cell line in vitro and its effect on viability (MTT-based assay), proliferation (BrdU), migration (wound healing assay), and osteogenic differentiation assessed. When exposed to serum derived from overweight/obese individuals (with or without metabolic syndrome), both the proliferative and migratory responses of ADSCs were less pronounced than when exposed to healthy control serum. Serum IL6 concentrations were identified as a factor influencing the proliferation of ADSCs, suggesting that long-term disruption to the systemic cytokine balance can potentially disrupt the proliferative responses of ADSCs. Obese participant-derived serum (with and without metabolic syndrome) furthermore resulted in lipid accumulation during osteogenic differentiation. This study, therefore demonstrated that systemic factors in obese individuals, regardless of the presence of metabolic syndrome, can be detrimental to the multifunctional properties of ADSCs.
Insights
Systemic factors in obesity negatively impact adipose-derived stem cells (ADSCs), impairing their proliferation and differentiation. This highlights how metabolic changes affect stem cell function.
Area of Science:
- Stem Cell Biology
- Metabolic Disorders
- Immunology
Background:
- Metabolic disorders like type 2 diabetes impair adipose-derived stem cells (ADSCs).
- The specific disease stage and systemic factors affecting ADSC function remain unclear.
- Inflammatory changes in the systemic microenvironment may negatively impact ADSCs during disease progression.
Purpose of the Study:
- To investigate how systemic factors at different stages of metabolic disease affect ADSC function.
- To determine if inflammatory changes contribute to ADSC functional decline in obesity and type 2 diabetes.
- To assess the impact of participant-derived serum on ADSC viability, proliferation, migration, and osteogenic differentiation.
Main Methods:
- Recruited 47 Black African females across four groups: healthy lean, overweight/obese, obese with metabolic syndrome, and type 2 diabetes.
- Assessed anthropometrics, body composition (DXA), and systemic metabolic and inflammatory profiles.
- Treated an ADSC cell line *in vitro* with participant-derived serum, evaluating viability, proliferation, migration, and osteogenic differentiation.
Main Results:
- Serum from overweight/obese individuals (with or without metabolic syndrome) reduced ADSC proliferation and migration compared to healthy controls.
- Interleukin-6 (IL6) concentrations in serum correlated with reduced ADSC proliferation.
- Serum from obese individuals (with or without metabolic syndrome) induced lipid accumulation during ADSC osteogenic differentiation.
Conclusions:
- Systemic factors associated with obesity, irrespective of metabolic syndrome, detrimentally affect ADSC multifunctional properties.
- Inflammatory cytokine imbalances, such as elevated IL6, can disrupt ADSC proliferative capacity.
- Obesity-associated systemic changes impair the regenerative potential of ADSCs, impacting tissue repair and function.
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