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June 3, 2026Cosmetics0 citationsOpen Access

Extracellular Matrix Remodeling and Dermal Microenvironment Modulation in Regenerative Facial Aesthetics: A Critical Review of Collagen Biostimulators, Fibroblast Senescence, and Cutaneous Aging

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PCPaola Tatiana Espinosa CruelCSCamila Pascoal Correia dos dos SantosDBDaniela Vieira Buchaim

Key Points

  • This review analyzes the role of biomaterials in modulating the dermal microenvironment during skin aging.
  • Reviewed multiple biomaterials used in regenerative aesthetics, including calcium hydroxyapatite and poly-L-lactic acid.
  • Focus on biological mechanisms related to collagen induction and fibroblast activity.
  • Highlighted methodological challenges and gaps in current literature.
  • Biomaterials stimulate dermal remodeling beyond just collagen induction.
  • Observed interactions between biomaterials and the cutaneous microenvironment.
  • Noted limitations in existing studies, such as methodological inconsistencies.

Abstract

Skin aging is a complex biological process characterized by progressive alterations in the dermal microenvironment, including extracellular matrix (ECM) disorganization, fibroblast dysfunction, and changes in the biomechanical properties of the tissue. In this context, biomaterials used in regenerative aesthetic medicine have been widely employed with the aim of stimulating dermal remodeling processes. This review aimed to analyze the main biomaterials currently used in clinical practice, including calcium hydroxyapatite, poly-L-lactic acid, polycaprolactone, polynucleotides, polydeoxyribonucleotide, and nano-hydroxyapatite, focusing on their biological mechanisms and interactions with the cutaneous microenvironment. The available literature suggests that the effects of these materials are not limited to collagen induction, but also involve modulation of fibroblast activity, extracellular matrix reorganization, and progressive tissue remodeling processes. However, relevant limitations remain in the scientific literature, including methodological heterogeneity among studies and the scarcity of evidence directly clarifying the cellular mechanisms involved. Therefore, advances in this field depend on the integration of experimental research, histological analysis, and well-controlled clinical investigation, as well as a deeper understanding of cellular biology and extracellular matrix dynamics.

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Cite This Study

Cruel et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc718dee9eb8c0dce7f04https://doi.org/10.3390/cosmetics13030139
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