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February 8, 2026Cardiovascular Therapeutics0 citationsOpen Access

Hypermetabolism and Lipid Alterations Postburn: A Cardiovascular Perspective

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MAMohammed AbuBahaAAAmeer AwashraBABara Abubaha

Key Points

  • To explore the long-term cardiovascular effects of hypermetabolism and lipid alterations following severe burns.
  • Review of literature on burn-induced metabolic changes and cardiovascular effects.
  • Analysis of lipidomic and clinical data relating to cardiovascular risk.
  • Evaluation of current interventions like beta-blockers and omega-3 fatty acids.
  • Identification of chronic hypermetabolism leading to atherogenic dyslipidemia in burn survivors.
  • Increased cardiovascular risk linked to prolonged metabolic responses and lipid abnormalities.
  • Recognition of persistent vascular impairment and cardiac dysfunction years after injury.

Abstract

Severe thermal burns involving ≥ 20% of total body surface area (TBSA) initiate a distinct, prolonged physiological cascade extending well beyond the acute phase. This dysregulated response features chronic hypermetabolism, lipid remodeling, and sustained cardiovascular stress. While survival has improved with advances in acute care, the long‐term cardiometabolic effects, particularly the link between lipid abnormalities and cardiovascular risk, remain underexplored. This review highlights the complex pathophysiology of burn‐induced hypermetabolism, including elevated resting energy expenditure, catecholamine‐driven lipolysis, mitochondrial uncoupling, and maladaptive adipose browning. Even in metabolically healthy individuals, these mechanisms promote atherogenic dyslipidemia, characterized by hepatic steatosis, elevated small‐dense LDL, reduced HDL‐C, and persistent hypertriglyceridemia. Emerging lipidomic and clinical data correlate these changes with increased Framingham risk scores, systemic inflammation, and TBSA extent. Simultaneously, cardiovascular vulnerability increases due to myocardial remodeling, autonomic dysfunction, and vascular impairment, particularly in young survivors with prolonged metabolic responses. Imaging and metabolomics reveal endothelial injury, subclinical cardiac dysfunction, and elevated arrhythmogenic risk persisting years after healing. We evaluate current interventions, β ‐blockers, omega‐3 fatty acids, statins, anti‐inflammatory agents, and structured rehabilitation, within a multimodal framework. Additionally, we identify critical gaps, including the need for precision metabolic modulation, omics‐based monitoring, and tailored cardiovascular risk algorithms. Recognizing severe burns as systemic illnesses with delayed but measurable cardiovascular consequences requires a paradigm shift in long‐term care. This review advocates for proactive, multidisciplinary cardiometabolic surveillance as an essential component of postburn recovery. This review follows the TITAN 2025 guideline for transparency in research and reporting. 1

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Cite This Study

AbuBaha et al. (2026) studied this question.

synapsesocial.com/papers/698827a20fc35cd7a884673ehttps://doi.org/10.1155/cdr/5983391
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