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Patient-Derived Bone Marrow Spheroids Reveal Leukemia-Initiating Cells Supported by Mesenchymal Hypoxic Niches in Pediatric B-ALL

B-cell acute lymphoblastic leukemia (B-ALL) results from the expansion of malignant lymphoid precursors within the bone marrow (BM), where hematopoietic niches and microenvironmental signals provide leukemia-initiating cells (LICs) the conditions to survive, proliferate, initiate disease, and relaps...

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Autores principales: Balandrán, Juan Carlos, Dávila-Velderrain, José, Sandoval-Cabrera, Antonio, Zamora-Herrera, Gabriela, Terán-Cerqueda, Vanessa, García-Stivalet, Lilia Adela, Limón-Flores, José Alejandro, Armenta-Castro, Erick, Rodríguez-Martínez, Aurora, Leon-Chavez, Bertha Alicia, Vallejo-Ruiz, Verónica, Hassane, Duane C., Pérez-Tapia, Sonia Mayra, Ortiz-Navarrete, Vianney, Guzman, Monica L., Pelayo, Rosana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8561951/
https://www.ncbi.nlm.nih.gov/pubmed/34737747
http://dx.doi.org/10.3389/fimmu.2021.746492
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author Balandrán, Juan Carlos
Dávila-Velderrain, José
Sandoval-Cabrera, Antonio
Zamora-Herrera, Gabriela
Terán-Cerqueda, Vanessa
García-Stivalet, Lilia Adela
Limón-Flores, José Alejandro
Armenta-Castro, Erick
Rodríguez-Martínez, Aurora
Leon-Chavez, Bertha Alicia
Vallejo-Ruiz, Verónica
Hassane, Duane C.
Pérez-Tapia, Sonia Mayra
Ortiz-Navarrete, Vianney
Guzman, Monica L.
Pelayo, Rosana
author_facet Balandrán, Juan Carlos
Dávila-Velderrain, José
Sandoval-Cabrera, Antonio
Zamora-Herrera, Gabriela
Terán-Cerqueda, Vanessa
García-Stivalet, Lilia Adela
Limón-Flores, José Alejandro
Armenta-Castro, Erick
Rodríguez-Martínez, Aurora
Leon-Chavez, Bertha Alicia
Vallejo-Ruiz, Verónica
Hassane, Duane C.
Pérez-Tapia, Sonia Mayra
Ortiz-Navarrete, Vianney
Guzman, Monica L.
Pelayo, Rosana
author_sort Balandrán, Juan Carlos
collection PubMed
description B-cell acute lymphoblastic leukemia (B-ALL) results from the expansion of malignant lymphoid precursors within the bone marrow (BM), where hematopoietic niches and microenvironmental signals provide leukemia-initiating cells (LICs) the conditions to survive, proliferate, initiate disease, and relapse. Normal and malignant lymphopoiesis are highly dependent on the BM microenvironment, particularly on CXCL12-abundant Reticular (CAR) cells, which provide a niche for maintenance of primitive cells. During B-ALL, leukemic cells hijack BM niches, creating a proinflammatory milieu incompetent to support normal hematopoiesis but favoring leukemic proliferation. Although the lack of a phenotypic stem cell hierarchy is apparent in B-ALL, LICs are a rare and quiescent population potentially responsible for chemoresistance and relapse. Here, we developed novel patient-derived leukemia spheroids (PDLS), an ex vivo avatar model, from mesenchymal stromal cells (MSCs) and primary B-ALL cells, to mimic specialized niche structures and cell-to-cell intercommunication promoting normal and malignant hematopoiesis in pediatric B-ALL. 3D MSC spheroids can recapitulate CAR niche-like hypoxic structures that produce high levels of CXCL10 and CXCL11. We found that PDLS were preferentially enriched with leukemia cells displaying functional properties of LICs, such as quiescence, low reactive oxygen species, drug resistance, high engraftment in immunodeficient mice, and long-term leukemogenesis. Moreover, the combination of PDLS and patient-derived xenografts confirmed a microenvironment-driven hierarchy in their leukemic potential. Importantly, transcriptional profiles of MSC derived from primary patient samples revealed two unique signatures (1), a CXCL12(low) inflammatory and leukemia expansion (ILE)-like niche, that likely supports leukemic burden, and (2) a CXCL11(hi) immune-suppressive and leukemia-initiating cell (SLIC)-like niche, where LICs are likely sustained. Interestingly, the CXCL11(+) hypoxic zones were recapitulated within the PDLS that are capable of supporting LIC functions. Taken together, we have implemented a novel PDLS system that enriches and supports leukemia cells with stem cell features driven by CXCL11(+) MSCs within hypoxic microenvironments capable of recapitulating key features, such as tumor reemergence after exposure to chemotherapy and tumor initiation. This system represents a unique opportunity for designing ex vivo personalized avatars for B-ALL patients to evaluate their own LIC pathobiology and drug sensitivity in the context of the tumor microenvironment.
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spelling pubmed-85619512021-11-03 Patient-Derived Bone Marrow Spheroids Reveal Leukemia-Initiating Cells Supported by Mesenchymal Hypoxic Niches in Pediatric B-ALL Balandrán, Juan Carlos Dávila-Velderrain, José Sandoval-Cabrera, Antonio Zamora-Herrera, Gabriela Terán-Cerqueda, Vanessa García-Stivalet, Lilia Adela Limón-Flores, José Alejandro Armenta-Castro, Erick Rodríguez-Martínez, Aurora Leon-Chavez, Bertha Alicia Vallejo-Ruiz, Verónica Hassane, Duane C. Pérez-Tapia, Sonia Mayra Ortiz-Navarrete, Vianney Guzman, Monica L. Pelayo, Rosana Front Immunol Immunology B-cell acute lymphoblastic leukemia (B-ALL) results from the expansion of malignant lymphoid precursors within the bone marrow (BM), where hematopoietic niches and microenvironmental signals provide leukemia-initiating cells (LICs) the conditions to survive, proliferate, initiate disease, and relapse. Normal and malignant lymphopoiesis are highly dependent on the BM microenvironment, particularly on CXCL12-abundant Reticular (CAR) cells, which provide a niche for maintenance of primitive cells. During B-ALL, leukemic cells hijack BM niches, creating a proinflammatory milieu incompetent to support normal hematopoiesis but favoring leukemic proliferation. Although the lack of a phenotypic stem cell hierarchy is apparent in B-ALL, LICs are a rare and quiescent population potentially responsible for chemoresistance and relapse. Here, we developed novel patient-derived leukemia spheroids (PDLS), an ex vivo avatar model, from mesenchymal stromal cells (MSCs) and primary B-ALL cells, to mimic specialized niche structures and cell-to-cell intercommunication promoting normal and malignant hematopoiesis in pediatric B-ALL. 3D MSC spheroids can recapitulate CAR niche-like hypoxic structures that produce high levels of CXCL10 and CXCL11. We found that PDLS were preferentially enriched with leukemia cells displaying functional properties of LICs, such as quiescence, low reactive oxygen species, drug resistance, high engraftment in immunodeficient mice, and long-term leukemogenesis. Moreover, the combination of PDLS and patient-derived xenografts confirmed a microenvironment-driven hierarchy in their leukemic potential. Importantly, transcriptional profiles of MSC derived from primary patient samples revealed two unique signatures (1), a CXCL12(low) inflammatory and leukemia expansion (ILE)-like niche, that likely supports leukemic burden, and (2) a CXCL11(hi) immune-suppressive and leukemia-initiating cell (SLIC)-like niche, where LICs are likely sustained. Interestingly, the CXCL11(+) hypoxic zones were recapitulated within the PDLS that are capable of supporting LIC functions. Taken together, we have implemented a novel PDLS system that enriches and supports leukemia cells with stem cell features driven by CXCL11(+) MSCs within hypoxic microenvironments capable of recapitulating key features, such as tumor reemergence after exposure to chemotherapy and tumor initiation. This system represents a unique opportunity for designing ex vivo personalized avatars for B-ALL patients to evaluate their own LIC pathobiology and drug sensitivity in the context of the tumor microenvironment. Frontiers Media S.A. 2021-10-19 /pmc/articles/PMC8561951/ /pubmed/34737747 http://dx.doi.org/10.3389/fimmu.2021.746492 Text en Copyright © 2021 Balandrán, Dávila-Velderrain, Sandoval-Cabrera, Zamora-Herrera, Terán-Cerqueda, García-Stivalet, Limón-Flores, Armenta-Castro, Rodríguez-Martínez, Leon-Chavez, Vallejo-Ruiz, Hassane, Pérez-Tapia, Ortiz-Navarrete, Guzman and Pelayo https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Balandrán, Juan Carlos
Dávila-Velderrain, José
Sandoval-Cabrera, Antonio
Zamora-Herrera, Gabriela
Terán-Cerqueda, Vanessa
García-Stivalet, Lilia Adela
Limón-Flores, José Alejandro
Armenta-Castro, Erick
Rodríguez-Martínez, Aurora
Leon-Chavez, Bertha Alicia
Vallejo-Ruiz, Verónica
Hassane, Duane C.
Pérez-Tapia, Sonia Mayra
Ortiz-Navarrete, Vianney
Guzman, Monica L.
Pelayo, Rosana
Patient-Derived Bone Marrow Spheroids Reveal Leukemia-Initiating Cells Supported by Mesenchymal Hypoxic Niches in Pediatric B-ALL
title Patient-Derived Bone Marrow Spheroids Reveal Leukemia-Initiating Cells Supported by Mesenchymal Hypoxic Niches in Pediatric B-ALL
title_full Patient-Derived Bone Marrow Spheroids Reveal Leukemia-Initiating Cells Supported by Mesenchymal Hypoxic Niches in Pediatric B-ALL
title_fullStr Patient-Derived Bone Marrow Spheroids Reveal Leukemia-Initiating Cells Supported by Mesenchymal Hypoxic Niches in Pediatric B-ALL
title_full_unstemmed Patient-Derived Bone Marrow Spheroids Reveal Leukemia-Initiating Cells Supported by Mesenchymal Hypoxic Niches in Pediatric B-ALL
title_short Patient-Derived Bone Marrow Spheroids Reveal Leukemia-Initiating Cells Supported by Mesenchymal Hypoxic Niches in Pediatric B-ALL
title_sort patient-derived bone marrow spheroids reveal leukemia-initiating cells supported by mesenchymal hypoxic niches in pediatric b-all
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8561951/
https://www.ncbi.nlm.nih.gov/pubmed/34737747
http://dx.doi.org/10.3389/fimmu.2021.746492
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