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Article

Expression Profile of CD157 Reveals Functional Heterogeneity of Capillaries in Human Dermal Skin

by
Katarzyna Michalak-Micka
1,2,3,†,
Dominic Rütsche
1,2,3,†,
Lukas Johner
1,2,3,
Ueli Moehrlen
1,2,3,4,
Thomas Biedermann
1,2,3 and
Agnes S. Klar
1,2,3,*
1
Tissue Biology Research Unit, Department of Surgery, University Children’s Hospital Zurich, 8032 Zurich, Switzerland
2
Children’s Research Center, University Children’s Hospital Zurich, 8032 Zurich, Switzerland
3
University of Zurich, 8006 Zurich, Switzerland
4
Department of Surgery, University Children’s Hospital Zurich, 8032 Zurich, Switzerland
*
Author to whom correspondence should be addressed.
These authors contributed equally to this work.
Biomedicines 2022, 10(3), 676; https://doi.org/10.3390/biomedicines10030676
Submission received: 20 January 2022 / Revised: 8 March 2022 / Accepted: 11 March 2022 / Published: 15 March 2022

Abstract

CD157 acts as a receptor, regulating leukocyte trafficking and the binding of extracellular matrix components. However, the expression pattern and the role of CD157 in human blood (BEC) and the lymphatic endothelial cells (LEC) of human dermal microvascular cells (HDMEC), remain elusive. We demonstrated constitutive expression of CD157 on BEC and LEC, in fetal and juvenile/adult skin, in situ, as well as in isolated HDMEC. Interestingly, CD157 epitopes were mostly localized on BEC, co-expressing high levels of CD31 (CD31High), as compared to CD31Low BEC, whereas the podoplanin expression level on LEC did not affect CD157. Cultured HDMEC exhibited significantly higher numbers of CD157-positive LEC, as compared to BEC. Interestingly, separated CD157 and CD157+ HDMEC demonstrated no significant differences in clonal expansion in vitro, but they showed distinct expression levels of cell adhesion molecules, before and after cytokine stimulation in vitro. In particular, we proved the enhanced and specific adherence of CD11b-expressing human blood myeloid cells to CD157+ HDMEC fraction, using an in vitro immune-binding assay. Indeed, CD157 was also involved in chemotaxis and adhesion of CD11b/c monocytes/neutrophils in prevascularized dermo–epidermal skin substitutes (vascDESS) in vivo. Thus, our data attribute specific roles to endothelial CD157, in the regulation of innate immunity during inflammation.
Keywords: CD157; CD157 receptor; immune cell adhesion; vascular network formation; blood capillaries; lymphatic capillaries; angiogenesis; myeloid cells; microvascular endothelial cells; skin bio-engineering CD157; CD157 receptor; immune cell adhesion; vascular network formation; blood capillaries; lymphatic capillaries; angiogenesis; myeloid cells; microvascular endothelial cells; skin bio-engineering

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MDPI and ACS Style

Michalak-Micka, K.; Rütsche, D.; Johner, L.; Moehrlen, U.; Biedermann, T.; Klar, A.S. Expression Profile of CD157 Reveals Functional Heterogeneity of Capillaries in Human Dermal Skin. Biomedicines 2022, 10, 676. https://doi.org/10.3390/biomedicines10030676

AMA Style

Michalak-Micka K, Rütsche D, Johner L, Moehrlen U, Biedermann T, Klar AS. Expression Profile of CD157 Reveals Functional Heterogeneity of Capillaries in Human Dermal Skin. Biomedicines. 2022; 10(3):676. https://doi.org/10.3390/biomedicines10030676

Chicago/Turabian Style

Michalak-Micka, Katarzyna, Dominic Rütsche, Lukas Johner, Ueli Moehrlen, Thomas Biedermann, and Agnes S. Klar. 2022. "Expression Profile of CD157 Reveals Functional Heterogeneity of Capillaries in Human Dermal Skin" Biomedicines 10, no. 3: 676. https://doi.org/10.3390/biomedicines10030676

APA Style

Michalak-Micka, K., Rütsche, D., Johner, L., Moehrlen, U., Biedermann, T., & Klar, A. S. (2022). Expression Profile of CD157 Reveals Functional Heterogeneity of Capillaries in Human Dermal Skin. Biomedicines, 10(3), 676. https://doi.org/10.3390/biomedicines10030676

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