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Extracellular matrix mediates moruloid-blastuloid morphodynamics in malignant ovarian spheroids

Ovarian cancer metastasizes into peritoneum through dissemination of transformed epithelia as multicellular spheroids. Harvested from the malignant ascites of patients, spheroids exhibit startling features of organization typical to homeostatic glandular tissues: lumen surrounded by smoothly contour...

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Detalles Bibliográficos
Autores principales: Langthasa, Jimpi, Sarkar, Purba, Narayanan, Shruthi, Bhagat, Rahul, Vadaparty, Annapurna, Bhat, Ramray
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8358442/
https://www.ncbi.nlm.nih.gov/pubmed/34376568
http://dx.doi.org/10.26508/lsa.202000942
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author Langthasa, Jimpi
Sarkar, Purba
Narayanan, Shruthi
Bhagat, Rahul
Vadaparty, Annapurna
Bhat, Ramray
author_facet Langthasa, Jimpi
Sarkar, Purba
Narayanan, Shruthi
Bhagat, Rahul
Vadaparty, Annapurna
Bhat, Ramray
author_sort Langthasa, Jimpi
collection PubMed
description Ovarian cancer metastasizes into peritoneum through dissemination of transformed epithelia as multicellular spheroids. Harvested from the malignant ascites of patients, spheroids exhibit startling features of organization typical to homeostatic glandular tissues: lumen surrounded by smoothly contoured and adhered epithelia. Herein, we demonstrate that cells of specific ovarian cancer lines in suspension, aggregate into dysmorphic solid “moruloid” clusters that permit intercellular movement, cell penetration, and interspheroidal coalescence. Moruloid clusters subsequently mature into “blastuloid” spheroids with smooth contours, a temporally dynamic lumen and immotile cells. Blastuloid spheroids neither coalesce nor allow cell penetration. Ultrastructural examination reveals a basement membrane-like extracellular matrix coat on the surface of blastuloid, but not moruloid, spheroids. Quantitative proteomics reveals down-regulation in ECM protein Fibronectin-1 associated with the moruloid-blastuloid transition; immunocytochemistry also confirms the relocalization of basement membrane ECM proteins: collagen IV and laminin to the surface of blastuloid spheroids. Fibronectin depletion accelerates, and enzymatic basement membrane debridement impairs, lumen formation, respectively. The regulation by ECM dynamics of the morphogenesis of cancer spheroids potentially influences the progression of the disease.
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spelling pubmed-83584422021-08-24 Extracellular matrix mediates moruloid-blastuloid morphodynamics in malignant ovarian spheroids Langthasa, Jimpi Sarkar, Purba Narayanan, Shruthi Bhagat, Rahul Vadaparty, Annapurna Bhat, Ramray Life Sci Alliance Research Articles Ovarian cancer metastasizes into peritoneum through dissemination of transformed epithelia as multicellular spheroids. Harvested from the malignant ascites of patients, spheroids exhibit startling features of organization typical to homeostatic glandular tissues: lumen surrounded by smoothly contoured and adhered epithelia. Herein, we demonstrate that cells of specific ovarian cancer lines in suspension, aggregate into dysmorphic solid “moruloid” clusters that permit intercellular movement, cell penetration, and interspheroidal coalescence. Moruloid clusters subsequently mature into “blastuloid” spheroids with smooth contours, a temporally dynamic lumen and immotile cells. Blastuloid spheroids neither coalesce nor allow cell penetration. Ultrastructural examination reveals a basement membrane-like extracellular matrix coat on the surface of blastuloid, but not moruloid, spheroids. Quantitative proteomics reveals down-regulation in ECM protein Fibronectin-1 associated with the moruloid-blastuloid transition; immunocytochemistry also confirms the relocalization of basement membrane ECM proteins: collagen IV and laminin to the surface of blastuloid spheroids. Fibronectin depletion accelerates, and enzymatic basement membrane debridement impairs, lumen formation, respectively. The regulation by ECM dynamics of the morphogenesis of cancer spheroids potentially influences the progression of the disease. Life Science Alliance LLC 2021-08-10 /pmc/articles/PMC8358442/ /pubmed/34376568 http://dx.doi.org/10.26508/lsa.202000942 Text en © 2021 Langthasa et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Langthasa, Jimpi
Sarkar, Purba
Narayanan, Shruthi
Bhagat, Rahul
Vadaparty, Annapurna
Bhat, Ramray
Extracellular matrix mediates moruloid-blastuloid morphodynamics in malignant ovarian spheroids
title Extracellular matrix mediates moruloid-blastuloid morphodynamics in malignant ovarian spheroids
title_full Extracellular matrix mediates moruloid-blastuloid morphodynamics in malignant ovarian spheroids
title_fullStr Extracellular matrix mediates moruloid-blastuloid morphodynamics in malignant ovarian spheroids
title_full_unstemmed Extracellular matrix mediates moruloid-blastuloid morphodynamics in malignant ovarian spheroids
title_short Extracellular matrix mediates moruloid-blastuloid morphodynamics in malignant ovarian spheroids
title_sort extracellular matrix mediates moruloid-blastuloid morphodynamics in malignant ovarian spheroids
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8358442/
https://www.ncbi.nlm.nih.gov/pubmed/34376568
http://dx.doi.org/10.26508/lsa.202000942
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