Scarring Alopecia

Scarring alopecia is a group of hair-loss disorders in which inflammation permanently destroys hair follicles and replaces them with scar tissue, making early recognition clinically important. The process may involve immune-mediated attack, infection, trauma, or other injury that damages the follicular stem-cell region and prevents regrowth; affected scalp often shows redness, scaling, pustules, pain, or itching. In medicine, evaluation combines history, scalp examination, dermoscopy, and sometimes a biopsy to distinguish scarring from nonscarring alopecia and identify its cause. Treatment aims to suppress inflammation and preserve remaining follicles through condition-specific medications, while surgical restoration may be considered only after disease activity is controlled.

Scarring Alopecia - Related Videos

Research

JoVE Journal - Biology

Visualizing Scar Development Using SCAD Assay - An Ex-situ Skin Scarring Assay

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2022

This protocol describes the generation of a skin-fascia explant termed "SCar like tissue in A Dish" or SCAD. This model allows unprecedented visualization of single fibroblasts during scar formation.

Mechanical and Controlled PRP Injections in Patients Affected by Androgenetic Alopecia

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Cited by 54 •

2018

This paper aims to describe the interfollicular autologous platelet-rich plasma injections (0.20 mL x cm2) in the scalp of 23 patients affected by androgenetic alopecia at a depth of 5 mm using a medical injector gun equipped with a 30 gauge needle, in three sessions.

A Mouse Model of Mechanotransduction-driven, Human-like Hypertrophic Scarring

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Cited by 3 •

2024

This protocol will explain how to establish a hypertrophic scarring murine model that increases mechanotransduction signaling to simulate human-like scarring. This method involves increasing mechanical tension across a healing incision in a mouse and using a specialized device to create reproducible, excessive scar tissue for detailed histological and bioinformatic analyses.

In Vitro Model of Human Cutaneous Hypertrophic Scarring using Macromolecular Crowding

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Cited by 8 •

2020

This protocol describes the use of macromolecular crowding to create an in vitro human hypertrophic scar tissue model that resembles in vivo conditions. When cultivated in a crowded macromolecular environment, human skin fibroblasts exhibit phenotypes, biochemistry, physiology, and functional characteristics resembling scar tissue.

Frailty Assessment in an Aging Mouse Model

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2025

The goal of the present protocol is to provide instructions and guidelines for assessing physical frailty in C57Bl/6x129J laboratory mice. Specific details regarding each measure used in the physical frailty index are explained. Several methods for reporting frailty results are also presented.

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