Topological balance of cell distributions in plane monolayers

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Hauptverfasser: Roshal, Daria S., Fedorenko, Kirill K., Martin, Marianne, Baghdiguian, Stephen, Rochal, Sergei B.
Format: Preprint
Veröffentlicht: 2024
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author Roshal, Daria S.
Fedorenko, Kirill K.
Martin, Marianne
Baghdiguian, Stephen
Rochal, Sergei B.
author_facet Roshal, Daria S.
Fedorenko, Kirill K.
Martin, Marianne
Baghdiguian, Stephen
Rochal, Sergei B.
contents Most of normal proliferative epithelia of plants and metazoans are topologically invariant and characterized by similar cell distributions according to the number of cell neighbors (DCNs). Here we study peculiarities of these distributions and explain why the DCN obtained from the location of intercellular boundaries and that based on the Voronoi tessellation with nodes located on cell nuclei may differ from each other. As we demonstrate, special microdomains where four or more intercellular boundaries converge are topologically charged. Using this fact, we deduce a new equation describing the topological balance of the DCNs. The developed theory is applied for a series of microphotographs of non-tumoral epithelial cells of the human cervix (HCerEpiC) to improve the image processing near the edges of microphotographs and reveal the topological invariance of the examined monolayers. Special contact microdomains may be present in epithelia of various natures, however, considering the well-known vertex model of epithelium, we show that such contacts are absent in the usual solid-like state of the model and appear only in the liquid-like cancer state. Also, we discuss a possible biological role of special contacts in context of proliferative epithelium dynamics and tissue morphogenesis.
format Preprint
id arxiv_https___arxiv_org_abs_2403_03079
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Topological balance of cell distributions in plane monolayers
Roshal, Daria S.
Fedorenko, Kirill K.
Martin, Marianne
Baghdiguian, Stephen
Rochal, Sergei B.
Soft Condensed Matter
Biological Physics
Most of normal proliferative epithelia of plants and metazoans are topologically invariant and characterized by similar cell distributions according to the number of cell neighbors (DCNs). Here we study peculiarities of these distributions and explain why the DCN obtained from the location of intercellular boundaries and that based on the Voronoi tessellation with nodes located on cell nuclei may differ from each other. As we demonstrate, special microdomains where four or more intercellular boundaries converge are topologically charged. Using this fact, we deduce a new equation describing the topological balance of the DCNs. The developed theory is applied for a series of microphotographs of non-tumoral epithelial cells of the human cervix (HCerEpiC) to improve the image processing near the edges of microphotographs and reveal the topological invariance of the examined monolayers. Special contact microdomains may be present in epithelia of various natures, however, considering the well-known vertex model of epithelium, we show that such contacts are absent in the usual solid-like state of the model and appear only in the liquid-like cancer state. Also, we discuss a possible biological role of special contacts in context of proliferative epithelium dynamics and tissue morphogenesis.
title Topological balance of cell distributions in plane monolayers
topic Soft Condensed Matter
Biological Physics
url https://arxiv.org/abs/2403.03079