Javascript must be enabled to continue!
The presence of mast cells in lichen planopilaris and discoid lupus erythematosus of the scalp: A quantitative study
View through CrossRef
AbstractBackgroundHistopathologic differentiation of lichen planopilaris (LPP) and discoid lupus erythematosus (DLE) as two common causes of primary cicatricial alopecias remains challenging.MethodWe performed a histopathologic study on a case series of LPP and DLE specimens to investigate the number, distribution, and morphology of mast cells as indices for differentiation of these two entities. H&E investigation and Giemsa staining for the detection of mast cells was performed.ResultA total of 74 cases comprising 50 cases of LPP and 24 cases of DLE were assessed. The mean mast cell count and percentage were significantly higher in LPP group (p < 0.001). Mean degranulated mast cell count and the mean intact mast cell count were also significantly higher in LPP patients (p < 0.001). Most of the specimens, 58 (78.4%), showed both perifollicular and perivascular distribution of mast cells without significant difference between two groups. The morphology of mast cells was predominantly round‐oval in 85.5%, predominantly fusiform in 13.5% with more frequent fusiform morphology in DLE group.ConclusionThe mast cell count detected by Giemsa staining could assist pathologists in distinguishing between LPP and DLE.
Title: The presence of mast cells in lichen planopilaris and discoid lupus erythematosus of the scalp: A quantitative study
Description:
AbstractBackgroundHistopathologic differentiation of lichen planopilaris (LPP) and discoid lupus erythematosus (DLE) as two common causes of primary cicatricial alopecias remains challenging.
MethodWe performed a histopathologic study on a case series of LPP and DLE specimens to investigate the number, distribution, and morphology of mast cells as indices for differentiation of these two entities.
H&E investigation and Giemsa staining for the detection of mast cells was performed.
ResultA total of 74 cases comprising 50 cases of LPP and 24 cases of DLE were assessed.
The mean mast cell count and percentage were significantly higher in LPP group (p < 0.
001).
Mean degranulated mast cell count and the mean intact mast cell count were also significantly higher in LPP patients (p < 0.
001).
Most of the specimens, 58 (78.
4%), showed both perifollicular and perivascular distribution of mast cells without significant difference between two groups.
The morphology of mast cells was predominantly round‐oval in 85.
5%, predominantly fusiform in 13.
5% with more frequent fusiform morphology in DLE group.
ConclusionThe mast cell count detected by Giemsa staining could assist pathologists in distinguishing between LPP and DLE.
Related Results
Human mast cells express functional TrkA and are a source of nerve growth factor
Human mast cells express functional TrkA and are a source of nerve growth factor
AbstractMast cells are the principal effector cells in IgE‐dependent hypersensitivity reactions. Despite reports that rodent mast cells proliferate in the presence of nerve growth ...
Human skin–derived mast cells can proliferate while retaining their characteristic functional and protease phenotypes
Human skin–derived mast cells can proliferate while retaining their characteristic functional and protease phenotypes
AbstractHuman mast cells in adult tissues have been thought to have limited, if any, proliferative potential. The current study examined mast cells obtained from adult skin and cul...
Abstract B089: Intratumoral expression analysis of mast cells in high grade serous ovarian cancer
Abstract B089: Intratumoral expression analysis of mast cells in high grade serous ovarian cancer
Abstract
Objective: The goal of this study is to examine intratumoral expression and phenotypic changes in mast cells following neoadjuvant chemotherapy (NACT) expos...
Mast cells in the kidney
Mast cells in the kidney
SUMMARY: Mast cells have become a recent concern in the nephrological world. The development of antibodies to mast cell‐specific enzymes, tryptase and chymase, has facilitated the ...
Crucial Role of Foxp3 Gene Expression and Mutation in Systemic Lupus Erythematosus, Inferred from Computational and Experimental Approaches
Crucial Role of Foxp3 Gene Expression and Mutation in Systemic Lupus Erythematosus, Inferred from Computational and Experimental Approaches
The impaired suppressive function of regulatory T cells is well-understood in systemic lupus erythematosus. This is likely due to changes in Foxp3 expression that are crucial for r...
Lichen Biodiversity Index (LBI) for the Assessment of Air Quality in an Industrial City in Pahang, Malaysia
Lichen Biodiversity Index (LBI) for the Assessment of Air Quality in an Industrial City in Pahang, Malaysia
Lichen is a well-documented useful biological indicator for monitoring air pollution using various methods such as the biodiversity of lichens. However, the use of lichen biodivers...
Lichen planus sialadenitis: a mucosal analog of lichen planopilaris and lichen planoporitis
Lichen planus sialadenitis: a mucosal analog of lichen planopilaris and lichen planoporitis
Lichen planus (LP) is the most prevalent dermatological disorder with oral manifestation. Oral lesions comprise a broad spectrum of clinical presentations. We report the case of a ...
Precision medicine and patient perspectives in systemic lupus erythematosus
Precision medicine and patient perspectives in systemic lupus erythematosus
<p dir="ltr">Systemic lupus erythematosus (SLE) is an autoimmune disease (AID) with diverse clinical presentations and complex immunopathogenesis. Its chronic and variable co...

