Lipid Metabolic Disorders: a Pivotal Driver in Type 2 Diabetes Mellitus Pathogenesis.
J, W., H, W., M, F., M, Z., G, Z., & B, Y. (2026). Lipid Metabolic Disorders: a Pivotal Driver in Type 2 Diabetes Mellitus Pathogenesis.. Current obesity reports. https://doi.org/10.1007/s13679-026-00732-5
J W, H W, M F, M Z, G Z, B Y. Lipid Metabolic Disorders: a Pivotal Driver in Type 2 Diabetes Mellitus Pathogenesis.. Current obesity reports. 2026; doi: 10.1007/s13679-026-00732-5
J W, H W, M F, et al. Lipid Metabolic Disorders: a Pivotal Driver in Type 2 Diabetes Mellitus Pathogenesis.[J]. Current obesity reports. 2026. DOI: 10.1007/s13679-026-00732-5.
@article{j2026,
author = {Wu J and Wang H and Fu M and Zhang M and Zhao G and Yu B},
title = {Lipid Metabolic Disorders: a Pivotal Driver in Type 2 Diabetes Mellitus Pathogenesis.},
journal = {Current obesity reports},
year = {2026},
doi = {10.1007/s13679-026-00732-5},
note = {PMID: 42366306},
}
TY - JOUR AU - Wu J AU - Wang H AU - Fu M AU - Zhang M AU - Zhao G AU - Yu B TI - Lipid Metabolic Disorders: a Pivotal Driver in Type 2 Diabetes Mellitus Pathogenesis. T2 - Current obesity reports PY - 2026 DO - 10.1007/s13679-026-00732-5 AN - PMID:42366306 ER -
PURPOSE OF REVIEW: This review aims to synthesize recent evidence to clarify the causal and mechanistic roles of lipid metabolism disorders as core drivers of type 2 diabetes mellitus (T2DM), and to summarize emerging therapeutic advances targeting key nodes within pathophysiological cascade, thereby providing an integrated, translational framework for the precision management of T2DM. RECENT FINDINGS: Normoglycemic obese individuals with insulin resistance (IR) frequently exhibit elevated plasma free fatty acids (FFAs), triglycerides (TGs), and low-density lipoprotein cholesterol (LDL-C), alongside reduced high-density lipoprotein cholesterol (HDL-C). These observations indicate that dyslipidemia is not merely a comorbidity but an important early driver of T2DM progression. Lipid metabolism disorders initiate a unifying pathological cascade: ectopic lipid spillover induces systemic IR in the liver and skeletal muscle; lipotoxic stress directly compromises pancreatic β-cell function; and progressive disruption of inter-organ axes, including the gut-adipose-liver axis and brain-periphery axis, further exacerbates systemic metabolic deterioration. Recent evidence supports emerging therapeutic strategies, including traditional medicine-based approaches and interventions targeting lipotoxicity and the gut-brain-liver-fat axis to restore metabolic health. Lipid metabolism disorders are not merely complications of T2DM, but critical drivers of disease progression. Adipose dysfunction acts as the initiating event, triggering a pathological cascade that induces systemic IR, impairs pancreatic β-cell function via lipotoxic intermediates, and disrupts inter-organ communication networks. Targeted interventions along this axis therefore represent a promising strategy for precision therapy.