A biomarker-guided therapeutic map for alopecia: in vivo evidence and clinical implications

Adniana Nareswari1,2,3, Didik Gunawan Tamtomo2, Harijono Kariosentono1,2

  • 1Department of Dermatology and Venereology, Faculty of Medicine, Dr. Moewardi General Hospital, Sebelas Maret University, Central Java, Indonesia.

Insights

Alopecia involves immune, oxidative, and regenerative pathway disruptions. This review maps key biomarkers like TNF-α and VEGF to guide targeted alopecia treatments for better outcomes.

Area of Science:

  • Hair follicle biology
  • Dermatology
  • Molecular medicine

Background:

  • Alopecia involves complex immune, oxidative, apoptotic, and regenerative pathway disruptions.
  • Current alopecia treatments show inconsistent clinical responses due to limited understanding of molecular targets.
  • Biomarker integration is crucial for clarifying alopecia mechanisms and guiding targeted interventions.

Purpose of the Study:

  • To synthesize in vivo animal evidence on six key alopecia biomarkers: TNF-α, IL-6, MDA, caspase-3, VEGF, and β-catenin.
  • To integrate biomarker data into a framework for understanding alopecia pathogenesis and therapeutic implications.
  • To explore how various therapeutic strategies impact these biomarkers in alopecia models.

Main Methods:

  • Systematic literature search of animal studies (2014-2024) focusing on the six selected biomarkers in alopecia models.
  • Analysis of biomarker levels (elevated inflammatory/apoptotic markers, suppressed regenerative markers) in alopecia.
  • Evaluation of therapeutic interventions' effects on these biomarkers.

Main Results:

  • Tumor necrosis factor-α (TNF-α) and interleukin (IL)-6 were elevated, indicating inflammation and immune-mediated damage.
  • Malondialdehyde (MDA) indicated oxidative stress, and caspase-3 activation marked apoptosis-driven follicular regression.
  • Vascular endothelial growth factor (VEGF) and β-catenin were suppressed but restored by effective treatments, supporting angiogenesis and regeneration.
  • Therapies including botanical extracts, finasteride, microneedling, and nanoparticles modulated biomarkers, reducing destructive and enhancing regenerative pathways.

Conclusions:

  • Alopecia represents an imbalance between degenerative and regenerative mechanisms within the hair follicle.
  • A biomarker-centered framework provides a translational map for developing precise, multitargeted alopecia treatments.
  • Understanding biomarker dynamics is key to advancing alopecia therapeutic strategies.