Submitted:
13 May 2025
Posted:
19 May 2025
You are already at the latest version
Abstract
Keywords:
1. Introduction
2. Mechanisms Underlying Stress-Induced Metabolic Disorders
2.1. Hormonal Imbalances via HPA Axis and SNS Activation
2.2. Glucocorticoid Resistance
2.3. Behavioral and Lifestyle Factors
2.4. Gut Dysbiosis
2.5. Epigenetic Changes
2.6. Oxidative Stress and Mitochondrial Dysfunction
2.7. Caveolar Dysfunction
3. Clinical Manifestations of Metabolic Diseases under Chronic Stress
3.1. Hyperglycemia and Diabetes
3.2. Obesity
3.3. Hypertension
3.4. Hyperuricemia
3.5. Bidirectional Relationship
4. Prospects
5. Conclusions
Funding
Conflicts of interest
References
- Shaw W, Labott-Smith S, Burg M, et al. Stress effects on the body. Am Psychol Assoc. 2018;12.
- Gunasekra KA, Perera BAKS. Defining occupational stress: A systematic literature review. FARU J. 2023;10(1). [CrossRef]
- Hanxiao Luo # 1 2, Linlin Xing # 3, Tongtong Fu 1, Shiqi Xiao # 4 LF# 5 6. Occupational stress trajectories and metabolic dysfunction-associated steatotic liver disease among female nurses: a prospective Cohort Study. MC Public Heal. 2024;16(24):3188. 10.1186/s12889-024-20742-z.
- Smith SM, Vale WW. The role of the hypothalamic-pituitary-adrenal axis in neuroendocrine responses to stress. Dialogues Clin Neurosci. 2006;8(4). [CrossRef]
- Gupta S, Bharatha A, Cohall D, Rahman S, Haque M, Azim Majumder MA. Aerobic Exercise and Endocannabinoids: A Narrative Review of Stress Regulation and Brain Reward Systems. Cureus. Published online 2024. [CrossRef]
- Volarić M, Šojat D, Majnarić LT, Vučić D. The Association between Functional Dyspepsia and Metabolic Syndrome—The State of the Art. Int J Environ Res Public Health. 2024;21(2). [CrossRef]
- Piątkowska-Chmiel I, Krawiec P, Ziętara KJ, et al. The Impact of Chronic Stress Related to COVID-19 on Eating Behaviors and the Risk of Obesity in Children and Adolescents. Nutrients. 2024;16(1). [CrossRef]
- McCollum SE, Shah YM. Stressing Out Cancer: Chronic Stress Induces Dysbiosis and Enhances Colon Cancer Growth. Cancer Res. 2024;84(5). [CrossRef]
- Shin HS, Lee SH, Moon HJ, et al. Prolonged stress response induced by chronic stress and corticosterone exposure causes adult neurogenesis inhibition and astrocyte loss in mouse hippocampus. Brain Res Bull. 2024;208. [CrossRef]
- Ma Y, Chen H. Relationship between life events and serum uric acid in patients with hyperuricemia. Chinese J Endocrinol Metab. 2020;36(2). [CrossRef]
- Ajibewa TA, Kershaw KN, Carr JJ, et al. Chronic Stress and Cardiovascular Events: Findings From the CARDIA Study. Am J Prev Med. 2024;67(1). [CrossRef]
- Wang T, Li L, Li S, et al. Clostridium butyricum relieve the visceral hypersensitivity in mice induced by Citrobacter rodentium infection with chronic stress. PeerJ. Published online 2021. [CrossRef]
- Nikolic A, Fahlbusch P, Riffelmann NK, et al. Chronic stress alters hepatic metabolism and thermodynamic respiratory efficiency affecting epigenetics in C57BL/6 mice. iScience. 2024;27(3). [CrossRef]
- Vyunytska L V., Yuzvenko TY, Dashuk TI, Nikonov V V., Vasyuk VL, Korotchuk N V. Stress-induced urgent conditions in endocrinology. Miznarodnij Endokrinol Z. 2024;20(1). [CrossRef]
- Pisaruk A, Asanov E, Naskalova S, et al. Effects of war-related stress on the cardiovascular system, metabolism and the rate of ageing in women. Ageing Longev. 2024;(1 2024). [CrossRef]
- Zhang S, Liu B, Huang L, Zhang R, An L, Liu Z. Metabolomics reveals that chronic restraint stress alleviates carbon tetrachloride-induced hepatic fibrosis through the INSR/PI3K/AKT/AMPK pathway. J Mol Med. 2024;102(1). [CrossRef]
- Zhao L, Hou X, Feng Y, et al. A chronic stress-induced microbiome perturbation, highly enriched in Ruminococcaceae_UCG-014, promotes colorectal cancer growth and metastasis. Int J Med Sci. 2024;21(5). [CrossRef]
- Lu C, Xu J, Li K, et al. Chronic Stress Blocks the Endometriosis Immune Response by Metabolic Reprogramming. Int J Mol Sci. 2024;25(1). [CrossRef]
- Pace SA, Myers B. Hindbrain Adrenergic/Noradrenergic Control of Integrated Endocrine and Autonomic Stress Responses. Endocrinol (United States). 2024;165(1). [CrossRef]
- Kuo T, McQueen A, Chen TC, Wang JC. Regulation of glucose homeostasis by glucocorticoids. Adv Exp Med Biol. 2015;872. [CrossRef]
- Petrák O, Krátká Z, Holaj R, et al. Cardiovascular Complications in Pheochromocytoma and Paraganglioma: Does Phenotype Matter? Hypertension. 2024;81(3). [CrossRef]
- Sarwar H, Rafiqi SI, Ahmad S, et al. Hyperinsulinemia Associated Depression. Clin Med Insights Endocrinol Diabetes. 2022;15. [CrossRef]
- Khani S, Tayek JA. Cortisol increases gluconeogenesis in humans: Its role in the metabolic syndrome. Clin Sci. 2001;101(6). [CrossRef]
- Lee WH, Larsson SC, Wood A, et al. Genetically predicted plasma cortisol and common chronic diseases: A Mendelian randomization study. Clin Endocrinol (Oxf). 2024;100(3). [CrossRef]
- Acevedo AM, Fortier MA, Campos B, Brown YC, Riis J. Salivary uric acid reactivity and baseline associations with physiological stress response. Psychoneuroendocrinology. 2022;146. [CrossRef]
- Nedosugova L V. Role of the endocrine system in maintaining glucose homeostasis in health and disease. Russ Med Inq. 2021;5(9). [CrossRef]
- Hu Y, Bao J, Gao Z, Ye L, Wang L. Sodium–Glucose Cotransporter Protein 2 Inhibitors: Novel Application for the Treatment of Obesity-Associated Hypertension. Diabetes, Metab Syndr Obes. 2024;17. [CrossRef]
- Yonetani Y, Ishii M, Ogawa Y. Catecholamine-induced hyperuricemia : Potentiation of catecholamine action in DOCA-treated animals. Jpn J Pharmacol. 1977;27. [CrossRef]
- Careaga MBL, Wu TJ. Chronically stressed male and female mice show a similar peripheral and central pro-inflammatory profile after an immune challenge. PLoS One. 2024;19(2 February). [CrossRef]
- Shively CA, Register TC, Clarkson TB. Social stress, visceral obesity, and coronary artery atherosclerosis in female primates. Obesity. 2009;17(8). [CrossRef]
- Shibutani Y, Ueo T, Takahashi S, Moriwaki Y, Yamamoto T. Effect of ACTH on renal excretion of purine bases in a patient with isolated ACTH deficiency. Clin Chim Acta. 2000;294(1-2). [CrossRef]
- Ruijters EJB, Haenen GRMM, Willemsen M, Weseler AR, Bast A. Food-derived bioactives can protect the anti-inflammatory activity of cortisol with antioxidant-dependent and -independent mechanisms. Int J Mol Sci. 2016;17(2). [CrossRef]
- Lee MJ, Pramyothin P, Karastergiou K, Fried SK. Deconstructing the roles of glucocorticoids in adipose tissue biology and the development of central obesity. Biochim Biophys Acta - Mol Basis Dis. 2014;1842(3). [CrossRef]
- Omran F, Christian M. Inflammatory Signaling and Brown Fat Activity. Front Endocrinol (Lausanne). 2020;11. [CrossRef]
- Onyango AN. Excessive gluconeogenesis causes the hepatic insulin resistance paradox and its sequelae. Heliyon. 2022;8(12). [CrossRef]
- Ko SY, Wang SE, Lee HK, et al. Transient receptor potential melastatin 2 governs stress-induced depressive-like behaviors. Proc Natl Acad Sci U S A. 2019;116(5). [CrossRef]
- Chang LY, Chao YL, Chiu CC, Chen PL, Lin HYH. Mitochondrial Signaling, the Mechanisms of AKI-to-CKD Transition and Potential Treatment Targets. Int J Mol Sci. 2024;25(3). [CrossRef]
- Calcaterra V, Rossi V, Magenes VC, et al. Dietary habits, depression and obesity: an intricate relationship to explore in pediatric preventive strategies. Front Pediatr. 2024;12. [CrossRef]
- Kullik L, Stork M, Kiel A, Kellmann M, Jakowski S. The prevalence of menstrual cycle symptoms and their association with mental health and sleep in German exercising women and athletes. J Sci Med Sport. 2024;27(6). [CrossRef]
- Ricart W, Crujeiras AB, Mateos A, Castells-Nobau A, Fernández-Real JM. Is obesity the next step in evolution through brain changes? Neurosci Appl. 2024;3. [CrossRef]
- Yiming Zhang, Xiaoang Li, Siqi Lu, Huaizhu Guo, Zhuangyi Zhang, Haonan Zheng, Cunzheng Zhang, Jindong Zhang, Kun Wang FP& LD. Stress triggers gut dysbiosis via CRH-CRHR1-mitochondria pathway. npj Biofilms Microbiomes. 2024;10(93). doi.org/10.1038/s41522-024-00571-z.
- Sun L, Ni C, Zhao J, Wang G, Chen W. Probiotics, bioactive compounds and dietary patterns for the effective management of hyperuricemia: a review. Crit Rev Food Sci Nutr. 2024;64(7). [CrossRef]
- Rodrigues e-Lacerda R, Fang H, Robin N, Bhatwa A, Marko DM, Schertzer JD. Microbiota and Nod-like receptors balance inflammation and metabolism during obesity and diabetes. Biomed J. 2023;46(5). [CrossRef]
- Zhang Wei zheng. Hyperuricemia: Current State and Prospects. Explor Res Hypothesis Med. 2025;10(1):49-55. 10.14218/ERHM.2024.00199.
- Arzate-Mejia RG, Carullo NVN, Mansuy IM. The epigenome under pressure: On regulatory adaptation to chronic stress in the brain. Curr Opin Neurobiol. 2024;84. [CrossRef]
- Marsland AL, Walsh C, Lockwood K, John-Henderson NA. The effects of acute psychological stress on circulating and stimulated inflammatory markers: A systematic review and meta-analysis. Brain Behav Immun. 2017;64. [CrossRef]
- Picard M, Juster RP, McEwen BS. Mitochondrial allostatic load puts the “gluc” back in glucocorticoids. Nat Rev Endocrinol. 2014;10(5). [CrossRef]
- Shu Y, Jin S. Caveolin-1 in endothelial cells: A potential therapeutic target for atherosclerosis. Heliyon. 2023;9(8). [CrossRef]
- Zhang Wei zheng. An association of metabolic syndrome constellation with cellular membrane caveolae. Pathobiol Aging Age-related Dis. 2014;4(1). [CrossRef]
- Wei-zheng Zhang. Pharmacologically targeting caveolae in metabolic diseases. In: Pharmacology Targets in Metabolic Diseases, Accepted for Publication. Elsevier Academic Press. Elsevier Academic Press.; 2025.
- Boyd NL, Park H, Yi H, et al. Chronic shear induces caveolae formation and alters ERK and Akt responses in endothelial cells. Am J Physiol - Hear Circ Physiol. 2003;285(3 54-3). [CrossRef]
- Del Pozo MA, Lolo FN, Echarri A. Caveolae: Mechanosensing and mechanotransduction devices linking membrane trafficking to mechanoadaptation. Curr Opin Cell Biol. 2021;68. [CrossRef]
- Hnasko R, Lisanti MP. The biology of caveolae: lessons from caveolin knockout mice and implications for human disease. Mol Interv. 2003;3(8). [CrossRef]
- Mineo C, Shaul PW. Regulation of eNOS in caveolae. Adv Exp Med Biol. 2012;729. [CrossRef]
- Wu Y, Lim YW, Stroud DA, et al. Caveolae sense oxidative stress through membrane lipid peroxidation and cytosolic release of CAVIN1 to regulate NRF2. Dev Cell. 2023;58(5). [CrossRef]
- Higuchi Y, Ogata T, Nakanishi N, et al. Requirement of Cavin-2 for the expression and stability of IRβ in adequate adipocyte differentiation. Mol Metab. 2022;55. [CrossRef]
- Zhang W zheng. Uric acid en route to gout. In: Advances in Clinical Chemistry. ; 2023. [CrossRef]
- Lian X, Matthaeus C, Kaßmann M, Daumke O, Gollasch M. Pathophysiological Role of Caveolae in Hypertension. Front Med. 2019;6. [CrossRef]
- Ji S, Chen Y, Zhou Y, et al. Association between anxiety and metabolic syndrome: An updated systematic review and meta-analysis. Front Psychiatry. 2023;14. [CrossRef]
- N SRSSMSFM. Stress hyperglycemia in acute pancreatitis: From mechanisms to prognostic implications. Diabetes Care. 1992;15(10):1413. 10.2337/diacare.15.10.1413.
- Yajurvedi H. Stress and Glucose metabolism: A Review. Imaging J Clin Med Sci. Published online 2018. [CrossRef]
- Hetz C, Zhang K, Kaufman RJ. Mechanisms, regulation and functions of the unfolded protein response. Nat Rev Mol Cell Biol. 2020;21(8). [CrossRef]
- Kulkarni A, Muralidharan C, May SC, Tersey SA, Mirmira RG. Inside the β Cell: Molecular Stress Response Pathways in Diabetes Pathogenesis. Endocrinol (United States). 2023;164(1). [CrossRef]
- Vidrio-Huerta B, Plötz T, Lortz S. Oxidative and ER stress by elevated insulin biosynthesis and palmitic acid in insulin-producing cells. J Mol Endocrinol. 2024;72(2). [CrossRef]
- Xourafa G, Korbmacher M, Roden M. Inter-organ crosstalk during development and progression of type 2 diabetes mellitus. Nat Rev Endocrinol. 2024;20(1). [CrossRef]
- Sharma K, Akre S, Chakole S, Wanjari MB. Stress-Induced Diabetes: A Review. Cureus. Published online 2022. [CrossRef]
- Meng Z, Yu Y, Zhang Y, et al. Highly bioavailable berberine formulation improves glucocorticoid receptor-mediated insulin resistance via reduction in association of the glucocorticoid receptor with phosphatidylinositol-3-kinase. Int J Biol Sci. 2020;16(14). [CrossRef]
- Mir N, Chin SA, Riddell MC, Beaudry JL. Genomic and non-genomic actions of glucocorticoids on adipose tissue lipid metabolism. Int J Mol Sci. 2021;22(16). [CrossRef]
- Campbell JE, Newgard CB. Mechanisms controlling pancreatic islet cell function in insulin secretion. Nat Rev Mol Cell Biol. 2021;22(2). [CrossRef]
- 1 YG, GL, FT, C XW, D JS, G QH. Stress hyperglycemia in acute pancreatitis: From mechanisms to prognostic implications. Life Sci. 2025;365:123469. 10.1016/j.lfs.2025.123469.
- Shields GS, Sazma MA, Yonelinas AP. The effects of acute stress on core executive functions: A meta-analysis and comparison with cortisol. Neurosci Biobehav Rev. 2016;68. [CrossRef]
- Goens D, Virzi NE, Jung SE, Rutledge TR, Zarrinpar A. Obesity, Chronic Stress, and Stress Reduction. Gastroenterol Clin North Am. 2023;52(2). [CrossRef]
- Papatriantafyllou E, Efthymiou D, Zoumbaneas E, Popescu CA, Vassilopoulou E. Sleep Deprivation: Effects on Weight Loss and Weight Loss Maintenance. Nutrients. 2022;14(8). [CrossRef]
- Novick AM, Levandowski ML, Laumann LE, Philip NS, Price LH, Tyrka AR. The effects of early life stress on reward processing. J Psychiatr Res. 2018;101. [CrossRef]
- Desiree R. Delgadillo, Jessica L. Borelli, Emeran A. Mayer, Jennifer S. Labus MPC& SDP. Biological, environmental, and psychological stress and the human gut microbiome in healthy adults. Sci Rep. 2025;15(262). [CrossRef]
- Huang Y, Lin X, Lin S. Neuropeptide Y and Metabolism Syndrome: An Update on Perspectives of Clinical Therapeutic Intervention Strategies. Front Cell Dev Biol. 2021;9. [CrossRef]
- Yamada C. Involvement of ghrelin dynamics in stress-induced eating disorder: Effects of sex and aging. Int J Mol Sci. 2021;22(21). [CrossRef]
- A. Janet Tomiyama. Stress and Obesity. Annu Rev Psychol. 2019;70:703-718. [CrossRef]
- Chida Y, Steptoe A. Cortisol awakening response and psychosocial factors: A systematic review and meta-analysis. Biol Psychol. 2009;80(3). [CrossRef]
- Zhang H, Shao MM, Lin X Da, et al. A cross-sectional survey on occupational stress and associated dyslipidemia among medical staff in tertiary public hospitals in Wenzhou, China. Brain Behav. 2021;11(3). [CrossRef]
- Ayada C, Toru, Korkut Y. The relationship of stress and blood pressure effectors. Hippokratia. 2015;19(2).
- Bos-Roubos AG, Wingbermühle E, Giesen M, Kersseboom R, De Graaff LCG, Egger JIM. Hypertension with hidden causes: the cognitive and behavioral profile of an adult female with chronic stress and 16p11.2 microdeletion. J Hypertens. 2024;42(1). [CrossRef]
- Kim JH, Almuwaqqat Z, Hammadah M, et al. Peripheral Vasoconstriction During Mental Stress and Adverse Cardiovascular Outcomes in Patients With Coronary Artery Disease. Circ Res. 2019;125(10). [CrossRef]
- Bauer CM, Oranges MA, Firempong G, Romero LM. Corticosterone Alters Body Weight, but Not Metabolites, during Chronic Stress. Physiol Biochem Zool. 2022;95(6). [CrossRef]
- Yisireyili M, Hayashi M, Wu H, et al. Xanthine oxidase inhibition by febuxostat attenuates stress-induced hyperuricemia, glucose dysmetabolism, and prothrombotic state in mice. Sci Rep. 2017;7(1). [CrossRef]
- Bao R, Chen B, Pan J, et al. Pseudohypoadrenalism, a subclinical cortisol metabolism disorder in hyperuricemia. Front Endocrinol (Lausanne). 2023;14. [CrossRef]
- Molenaar N, Bijkerk RM, Beishuizen A, et al. Steroidogenesis in the adrenal dysfunction of critical illness: Impact of etomidate. Crit Care. 2012;16(4). [CrossRef]
- Janssen JAMJL. New Insights into the Role of Insulin and Hypothalamic-Pituitary-Adrenal (HPA) Axis in the Metabolic Syndrome. Int J Mol Sci. 2022;23(15). [CrossRef]
- Zhang M, Liu B, Ke W, et al. Correlation analysis between occupational stress and metabolic syndrome in workers of a petrochemical enterprise: based on two assessment models of occupational stress. BMC Public Health. 2024;24(1). [CrossRef]
- Chico-Barba G, Jiménez-Limas K, Sánchez-Jiménez B, et al. Burnout and metabolic syndrome in female nurses: An observational study. Int J Environ Res Public Health. 2019;16(11). [CrossRef]
- Aleksandar Sic, Kiana Cvetkovic, Eshanika Manchanda 1 NNK. Neurobiological Implications of Chronic Stress and Metabolic Dysregulation in Inflammatory Bowel Diseases. Diseases. 2024;18(12):22. 10.3390/diseases12090220.
- Barrea L, Verde L, Camajani E, et al. Effects of very low-calorie ketogenic diet on hypothalamic–pituitary–adrenal axis and renin–angiotensin–aldosterone system. J Endocrinol Invest. 2023;46(8). [CrossRef]
- Lin Z, Li LY, Chen L, et al. Lonicerin promotes wound healing in diabetic rats by enhancing blood vessel regeneration through Sirt1-mediated autophagy. Acta Pharmacol Sin. 2024;45(4). [CrossRef]
- Steptoe A, Frank P. Obesity and psychological distress. Philos Trans R Soc B Biol Sci. 2023;378(1888). [CrossRef]
- Jurgens SM, Prieto S, Hayes JP. Inflammatory biomarkers link perceived stress with metabolic dysregulation. Brain, Behav Immun - Heal. 2023;34. [CrossRef]
- Wu Y, Lim YW, Parton RG. Caveolae and the oxidative stress response. Biochem Soc Trans. 2023;51(3). [CrossRef]
- Ashwani, Anjali Sharma, Mayank Kumar Choudhary, Dalapathi Gugulothu, Deepti Pandita, Surajpal Verma, Lalitkumar K. Vora DKK& DG. Epigenetic and Mitochondrial Metabolic Dysfunction in Multiple Sclerosis: A Review of Herbal Drug Approaches and Current Clinical Trials. Mol Neurobiol. Published online 2025. [CrossRef]
- Pinge A, Sen APGGJJGG, Sen S. Detection and monitoring of stress using wearables: a systematic review. Front Comput Sci. 2024;6. [CrossRef]
- Sandra Cano, Claudio Cubillos, Rodrigo Alfaro, Andrés Romo 1, Matías García and Fernando Moreira O. Wearable Solutions Using Physiological Signals for Stress Monitoring on Individuals with Autism Spectrum Disorder (ASD): A Systematic Literature Review. Sensors. 2024;24(24):8137. [CrossRef]
- Saban KL, Collins EG, Mathews HL, et al. Impact of a Mindfulness-Based Stress Reduction Program on Psychological Well-Being, Cortisol, and Inflammation in Women Veterans. J Gen Intern Med. 2022;37. [CrossRef]
- Lindsay EK, Marsland AL, Cole SW, et al. Mindfulness-Based Stress Reduction Reduces Proinflammatory Gene Regulation but Not Systemic Inflammation among Older Adults: A Randomized Controlled Trial. Psychosom Med. 2024;86(5). [CrossRef]
- Jones ME, Lebonville CL, Barrus D, Lysle DT. The Role of Brain Interleukin-1 in Stress-Enhanced Fear Learning. Neuropsychopharmacology. 2015;40. [CrossRef]
- Yin W, Godbout JP, Sheridan JF. Interleukin-1 beta in psychosocial stress. In: Stress: Immunology and Inflammation: Handbook of Stress Series Volume 5. Vol 5. ; 2023. [CrossRef]
- Siroma TK, Machate DJ, Zorgetto-Pinheiro VA, et al. Polyphenols and ω-3 PUFAs: Beneficial Outcomes to Obesity and Its Related Metabolic Diseases. Front Nutr. 2022;8. [CrossRef]
- Pampel FC, Krueger PM, Denney JT. Socioeconomic disparities in health behaviors. Annu Rev Sociol. 2010;36. [CrossRef]
- Lead A. Reducing income inequality to advance health. (2018, January 18). American Public Health Association. https://www.apha.org/policy-and-advocacy/public-health-policy-briefs/policy-database/2018/01/18/reducing-income-inequality-to-advance-health.
- Akram M Eraky, Yashwanth Yerramalla, Adnan Khan, Yasser Mokhtar 3, Mostafa Alamrosy, Amr Farag, Alisha Wright, Matthew Grounds NMG. Beta-Blockers as an Immunologic and Autonomic Manipulator in Critically Ill Patients: A Review of the Recent Literature. Int J Mol Sci. 2024;25(15):8058. [CrossRef]
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