Home
GSC Advanced Research and Reviews
Peer-reviewed | Multidisciplinary Journal | Impact factor 8.3 | ISSN: 2582-4597 | Crossref DOI

Main navigation

  • Home
    • Journal Information
    • Editorial Board Members
    • Reviewer Panel
    • Abstracting and Indexing
    • Journal Policies
    • Our CrossMark Policy
    • Publication Ethics
    • Issue in Progress
    • Current Issue
    • Past Issues
    • Instructions for Authors
    • Article processing fee
    • Track Manuscript Status
    • Get Publication Certificate
    • Join Editorial Board
    • Join Reviewer Panel
  • Contact us
  • Downloads

Balancing Benefit and Risk: Molecular Mechanisms Underlying Physiologic and Pharmacologic Glucocorticoid Effects

Breadcrumb

  • Home
  • Balancing Benefit and Risk: Molecular Mechanisms Underlying Physiologic and Pharmacologic Glucocorticoid Effects
  • Balancing Benefit and Risk: Molecular Mechanisms Underlying Physiologic and Pharmacologic Glucocorticoid Effects

Ashraf T Soliman 1, *, Fawzia Alyafei 1, Noor Hamed 1, Nada Alaaraj 1, Shayma Ahmed 1, Shyma Elsayed 2, Dina Fawzy 2 and Ahmed Elawwa 2

1 Department of Paediatrics, Hamad General Hospital, Doha, Qatar.
2 Department of Paediatrics, University of Alexandria Children's Hospital, Alexandria, Egypt.
 
Research Article
GSC Advanced Research and Reviews, 2025, 25(01), 195-211.
Article DOI: 10.30574/gscarr.2025.25.1.0325
DOI url: https://doi.org/10.30574/gscarr.2025.25.1.0325
Received on 19 September 2025; revised on 25 October 2025; accepted on 27 October 2025
 
Background: Glucocorticoids exert pleiotropic physiological actions essential for homeostasis, stress adaptation, and immune modulation. However, when administered at pharmacological or supraphysiologic levels, these same hormones induce profound metabolic, cardiovascular, skeletal, and neuropsychiatric side effects. Understanding the molecular and cellular mechanisms that distinguish physiological from pharmacological steroid effects is essential to guide safer clinical use, optimize therapeutic timing, and minimize systemic toxicity.
Objectives: This review aimed to (1) delineate the molecular, genomic, and non-genomic mechanisms of glucocorticoid action under physiological and pharmacological conditions; (2) integrate evidence from cell, animal, and clinical studies that characterize receptor signaling, tissue specificity, and circadian regulation; and (3) evaluate the clinical consequences of chronic steroid exposure, including metabolic, skeletal, immune, and neuropsychiatric outcomes, in order to identify strategies that balance efficacy with safety.
Methods: A structured literature search was conducted in PubMed, Scopus, and EMBASE databases covering publications from 2000 to 2025. Search terms included “glucocorticoid receptor,” “cortisol physiology,” “pharmacologic steroids,” “molecular mechanisms,” “immune modulation,” and “chronotherapy.” Inclusion criteria encompassed peer-reviewed experimental, translational, and clinical studies addressing both physiological cortisol levels and pharmacological glucocorticoid exposure. Duplicates, non-English papers, and studies lacking mechanistic or quantitative data were excluded. After screening 235 records, 42 studies met the eligibility criteria and were included for qualitative and quantitative synthesis. Study quality was assessed using standardized appraisal tools, and data were summarized using random-effects models.
Results: Molecular analyses revealed that physiological cortisol maintains adaptive homeostasis through selective genomic activation, balanced NF-κB/AP-1 trans repression, and rhythmic circadian GR signaling. In contrast, pharmacologic exposure induces GR overactivation, histone deacetylation, mitochondrial dysfunction, and GRβ-mediated resistance. Cellular studies confirmed dose-dependent suppression of immune, skeletal, and neuronal pathways, correlating with increased risk of diabetes, osteoporosis, myopathy, and mood disorders. The pooled standardized mean difference (SMD) between pharmacologic and physiologic effects was 0.54 [95% CI 0.49–0.60], with significant heterogeneity (I² ≈ 94%). Funnel plot analysis demonstrated minimal publication bias.
Conclusion: Glucocorticoid effects are dose-, duration-, and context-dependent, transitioning from homeostatic to pathologic beyond physiological thresholds. Precision strategies—such as receptor-selective agents, circadian-aligned dosing, and individualized hydrocortisone modeling—offer promising avenues to retain therapeutic benefits while minimizing adverse outcomes.
 
Glucocorticoids; Cortisol; Pharmacological steroids; Molecular mechanisms; Chronotherapy; Systemic effects
 
https://gscarr.gsconlinepress.com/sites/default/files/fulltext_pdf/GSCARR-2025-…

Preview Article PDF

Ashraf T Soliman, Fawzia Alyafei, Noor Hamed, Nada Alaaraj, Shayma Ahmed, Shyma Elsayed, Dina Fawzy and Ahmed Elawwa. Balancing Benefit and Risk: Molecular Mechanisms Underlying Physiologic and Pharmacologic Glucocorticoid Effects. GSC Advanced Research and Reviews, 2025, 25(1), 195-211. Article DOI: https://doi.org/10.30574/gscarr.2025.25.1.0325

Copyright © Author(s). All rights reserved. This article is published under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits use, sharing, adaptation, distribution, and reproduction in any medium or format, as long as appropriate credit is given to the original author(s) and source, a link to the license is provided, and any changes made are indicated.


All statements, opinions, and data contained in this publication are solely those of the individual author(s) and contributor(s). The journal, editors, reviewers, and publisher disclaim any responsibility or liability for the content, including accuracy, completeness, or any consequences arising from its use.

Get Certificates

Get Publication Certificate

Download LoA

Check Corssref DOI details

Issue details

Issue Cover Page

Editorial Board

Table of content

Copyright © 2026 GSC Advanced Research and Reviews - All rights reserved

Developed & Designed by VS Infosolution