Publications

Publications, Books, Book Chapters and Reviews by Prof. Marcus Maurer, MD

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Neurotrophin-3 regulates mast cell functions in neonatal mouse skin

Filename 34. Metz, Neurotrophin3 reg. MC, ExpDerm.2004.pdf
Filesize 620.31 KB
Version o.034
Date added May 20, 2020
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Category Original Work
Authors Metz, M., Botchkarev, V. A., Botchkareva, N. V., Welker, P., Tobin, D., Knop, J., Maurer, M. and Paus, R
Citation Metz, M., Botchkarev, V. A., Botchkareva, N. V., Welker, P., Tobin, D., Knop, J., Maurer, M. and Paus, R.: Neurotrophin-3 regulates mast cell functions in neonatal mouse skin. Exp. Dermatol. 2004: 13; 273-281. IF: 1.7
Corresponding authors Maurer, M.
DocNum O.34
DocType PDF
Edition; Page 13; 273-281
IF 1.7
Publisher Exp. Dermatol.
ReleaseDate 2004

Nerve growth factor (NGF) has long been recognized as an important mast cell (MC) growth factor. To explore whether other neurotrophins (NTs) of the NGF family, which are widely expressed in mouse skin, affect the numbers and/or functions of MCs we examined the effects of NT-3 on neonatal skin MCs. We demonstrate that TrkC, the high affinity NT-3 receptor, is expressed by virtually all neonatal skin MCs in C57BL/6 mice, which indicates that MCs can respond to NT-3. Skin of neonatal and early postnatal NT-3-overexpressing mice (promoter: K14) displayed significantly and up to twofold increased numbers of MCs during the first 20 days after birth, as compared to wild-type mice. To check whether this increase in MC numbers in NT-3 transgenic mice reflects a higher rate of proliferation, we performed immunohistochemistry, which revealed that only 1–2% of all skin MCs both in NT-3-overexpressing and in wild-type controls showed Ki-67- positive nuclei, suggesting that the observed differences in the number of MCs do not reflect a higher rate of MC proliferation. Additionally, we show that the effect of NT-3 on the number of MCs is most likely to be stem cell factor (SCF)-independent, because NT-3 significantly downregulates secretion of SCF-protein in cultured dermal fibroblasts, as assessed by enzyme-linked immunosorbent assay. Numbers of skin MCs in neonatal TrkC-deficient mice were found to be modestly reduced, as compared to wild-type mice, indicating that NT-3 can modulate the number of MCs directly via TrkC, although TrkC does not seem to be essential for the number of basal MCs. To further analyze the effects of NT-3 on MCs, we stimulated skin organ culture of early postnatal C57BL/6 mouse skin with 5–50 ng/ml NT-3, which induced a significant increase in MC degranulation, as visualized by Giemsa staining. However, stimulation of isolated neonatal dermal skin MCs with NT-3 in vitro failed  to result in MC activation, as measured by serotonin release. Our data suggest a role for NT-3 in the maturation of MCs, such as a TrkC-mediated stimulation of the differentiation of pre-existing, less mature MCs and/or by enhancing the migration of circulating MC precursors into the skin.

 

(Last update: 12.2023)

Number of original publications in peer-reviewed journals:580
Number of reviews in peer-reviewed journals:210
Number of publications (original work and reviews) in peer-reviewed journals:790
Cumulative IF for original publications in peer-reviewed journals:4196.39
Cumulative IF for reviews in peer-reviewed journals:1409.32
Cumulative IF of publications (original work & reviews) in peer-reviewed journals:5605.71
Total number of citations: 36,836, h-index: 99 (Web of Science December 2023)36836

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