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Isolation, Culture, and Characterization of Primary Dermal Fibroblasts from Human Keloid Tissue
Published on: July 28, 2023
Molecular dissection of abnormal wound healing processes resulting in keloid disease
Barbara Shih1, Elloise Garside, Duncan Angus McGrouther
1Plastic and Reconstructive Surgery Research, Manchester Interdisciplinary Biocentre, University of Manchester, Manchester, United Kingdom.
Abstract:
Keloids are locally aggressive scars that typically invade into healthy surrounding skin and cause both physical and psychosocial distress to the patient. These pathological scars occur following minimal skin trauma after a variety of causes including burns and trauma. Although the pathogenesis of keloid disease is not well understood, it is considered to be the end product of an abnormal healing process. The aim of this review was to investigate the molecular and cellular pathobiology of keloid disease in relation to the normal wound healing process. The molecular aberrances in keloids that correlate with the molecular mechanisms in normal wound healing can be categorized into three groups: (1) extracellular matrix proteins and their degradation, (2) cytokines and growth factors, and (3) apoptotic pathways. With respect to cellular involvements, fibroblasts are the most well-studied cell population. However, it is unclear whether the fibroblast is the causative cell; they are modulated by other cell populations in wound repair, such as keratinocytes and macrophages. This review presents a detailed account of individual phases of the healing process and how they may potentially be implicated in aberrant raised scar formation, which may help in clarifying the mechanisms involved in keloid disease pathogenesis.
Insights
Keloids are abnormal scars resulting from faulty wound healing. This review explores the molecular and cellular factors contributing to keloid formation, aiding in understanding this complex skin condition.
Area of Science:
- Dermatology
- Pathology
- Wound Healing Research
Background:
- Keloids are aggressive scars causing physical and psychosocial distress.
- They arise from abnormal wound healing after minor trauma.
- The exact pathogenesis of keloid disease remains unclear.
Purpose of the Study:
- To review the molecular and cellular pathobiology of keloid disease.
- To compare keloid mechanisms with normal wound healing.
- To elucidate the pathogenesis of aberrant scar formation.
Main Methods:
- Literature review of molecular and cellular mechanisms in keloid disease.
- Analysis of extracellular matrix proteins, cytokines, growth factors, and apoptotic pathways.
- Examination of cellular roles, including fibroblasts, keratinocytes, and macrophages.
Main Results:
- Keloid pathobiology involves aberrations in extracellular matrix, cytokines, growth factors, and apoptosis.
- Fibroblasts are key cells, but their role is modulated by keratinocytes and macrophages.
- Specific molecular and cellular events in wound healing phases are implicated in keloid formation.
Conclusions:
- Understanding keloid pathobiology requires examining molecular and cellular deviations from normal wound healing.
- Further research into cell-matrix interactions and signaling pathways is crucial.
- Clarifying these mechanisms may lead to improved keloid treatments.
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