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Departamento Gestión de Conocimiento, Monitoreo y Prospección
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Mitochondrial transfer balances cell redox, energy and metabolic homeostasis in the osteoarthritic chondrocyte preserving cartilage integrity
Indexado
Scopus SCOPUS_ID:85206545189
DOI 10.7150/THNO.96723
Año 2024
Tipo

Citas Totales

Autores Afiliación Chile

Instituciones Chile

% Participación
Internacional

Autores
Afiliación Extranjera

Instituciones
Extranjeras


Abstract



Osteoarthrosis (OA) is a leading cause of disability and early mortality, with no disease modifying treatment. Mitochondrial (MT) dysfunction and changes in energy metabolism, leading to oxidative stress and apoptosis, are main drivers of disease. In reaction to stress, mesenchymal stromal/stem cells (MSCs) donate their MT to damaged tissues. Methods: To evaluate the capacity of clinically validated MSCs to spontaneously transfer their MT to human OA chondrocytes (OA-Ch), primary cultured Ch isolated from the articular cartilage of OA patients were co-cultured with MT-labeled MSCs. MT transfer (MitoT) was evidenced by flow cytometry and confocal microscopy of MitoTracker-stained and YFP-tagged MT protein. MT persistence and metabolic analysis on target cells were assessed by direct transfer of MSC-derived MT to OA-Chs (Mitoception), through SNP-qPCR analysis, ATP measurements and Seahorse technology. The effects of MitoT on MT dynamics, oxidative stress and cell viability were gauged by western blot of fusion/fission proteins, confocal image analysis, ROS levels, Annexin V/7AAD and TUNEL assays. Intra-articular injection of MSC-derived MT was tested in a collagenase-induced murine model of OA. Results: Dose-dependent cell-to-cell MitoT from MSCs to cultured OA-Chs was detected starting at 4 hours of co-culture, with increasing MT-fluorescence levels at higher MSC:Ch ratios. PCR analysis confirmed the presence of exogenous MSC-MT within MitoT+ OA-Chs up to 9 days post Mitoception. MitoT from MSCs to OA-Ch restores energetic status, with a higher ATP production and metabolic OXPHOS/Glycolisis ratio. Significant changes in the expression of MT network regulators, increased MFN2 and decreased p-DRP1, reveal that MitoT promotes MT fusion restoring the MT dynamics in the OA-Ch. Additionally, MitoT increases SOD2 transcripts, protein, and activity levels, and reduces ROS levels, confering resistance to oxidative stress and enhancing resistance to apoptosis. Intra-articular injection of MSC-derived MT improves histologic scores and bone density of the affected joints in the OA mouse model, demonstrating a protective effect of MT transplantation on cartilage degradation. Conclusion: The Mitochondria transfer of MSC-derived MT induced reversal of the metabolic dysfunction by restoring the energetic status and mitochondrial dynamics in the OA chondrocyte, while conferring resistance to oxidative stress and apoptosis. Intra-articular injection of MT improved the disease in collagenase-induced OA mouse model. The restoration of the cellular homeostasis and the preclinical benefit of the intra-articular MT treatment offer a new approach for the treatment of OA.

Revista



Revista ISSN
Theranostics 1838-7640

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Disciplinas de Investigación



WOS
Medicine, Research & Experimental
Scopus
Sin Disciplinas
SciELO
Sin Disciplinas

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Publicaciones WoS (Ediciones: ISSHP, ISTP, AHCI, SSCI, SCI), Scopus, SciELO Chile.

Colaboración Institucional



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Autores - Afiliación



Ord. Autor Género Institución - País
1 Court, Angela C. - Cell for Cells - Chile
Universidad de Los Andes, Chile - Chile
Centro de Medicina Intervencional de Precisión y Terapia Celular Avanzada - Chile
2 Vega-Letter, Ana María - Universidad de Los Andes, Chile - Chile
Centro de Medicina Intervencional de Precisión y Terapia Celular Avanzada - Chile
3 Parra-Crisóstomo, Eliseo - Cell for Cells - Chile
Universidad de Los Andes, Chile - Chile
4 Velarde, Francesca - Universidad de Los Andes, Chile - Chile
Centro de Medicina Intervencional de Precisión y Terapia Celular Avanzada - Chile
5 García, Cynthia - Universidad de Los Andes, Chile - Chile
6 Ortloff, Alexander - Universidad Católica de Temuco - Chile
7 Vernal, Rolando - Universidad de Chile - Chile
8 Pradenas, Carolina - Universidad de Los Andes, Chile - Chile
9 Luz-Crawford, Patricia - Universidad de Los Andes, Chile - Chile
Centro de Medicina Intervencional de Precisión y Terapia Celular Avanzada - Chile
10 Khoury, Maroun - Cell for Cells - Chile
Universidad de Los Andes, Chile - Chile
Consorcio Regenero - Chile
Centro de Medicina Intervencional de Precisión y Terapia Celular Avanzada - Chile
11 Figueroa, Fernando E. - Universidad de Los Andes, Chile - Chile
Consorcio Regenero - Chile
Centro de Medicina Intervencional de Precisión y Terapia Celular Avanzada - Chile

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Financiamiento



Fuente
Universidad de Chile
ANID Fondecyt
Agencia Nacional de Investigación y Desarrollo
Javiera Ponce and Macarena Ocaña

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Agradecimientos



Agradecimiento
The authors would like to acknowledge the unvaluable contribution of Jos\u00E9 Fernando Matas M.D and Mat\u00EDas Salineros M.D., the orthopedic surgeons that have dealt with our patients and patient samples for this investigation and ongoing line of research. We are also grateful to Wilfredo Gonz\u00E1lez for his time and expertise in the assessment and quantification of the Masson\u2019s Trichrome staining, Yessia Hidalgo (C4C-Regenero Flow Cytometry Facility) for assistance with flow cytometry and cell sorting, Javiera Ponce and Macarena Oca\u00F1a (C4C-Regenero Animal Facility) for technical expertise and assistance in the in vivo experiments, Michelle Fern\u00E1ndez (CIIB Histology Facility) for assistance with mice knee joint samples processing for histology and stainings, Rocio Lorca (C4C-Universidad de los Andes) for technical support in manuscript writing, Jorge Toledo (Redeca, Universidad de Chile) for donating the mito-YFP plasmid, and to the members of the C4C lab for support and helpful discussion. This work was supported by grants from: The Agencia Nacional de Investigaci\u00F3n y Desarrollo \u2013 ANID FONDECYT regular #1201420; The Agencia Nacional de Investigaci\u00F3n y Desarrollo \u2013 ANID FONDECYT regular #1211749; The Agencia Nacional de Investigaci\u00F3n y Desarrollo \u2013 ANID FONDECYT regular #1211353. ANID-Basal Funding for Scientific and Technological Center of Excellence, IMPACT, #FB210024, Santiago, Chile.
The authors would like to acknowledge the unvaluable contribution of Jos\u00E9 Fernando Matas M.D and Mat\u00EDas Salineros M.D., the orthopedic surgeons that have dealt with our patients and patient samples for this investigation and ongoing line of research. We are also grateful to Wilfredo Gonz\u00E1lez for his time and expertise in the assessment and quantification of the Masson\u2019s Trichrome staining, Yessia Hidalgo (C4C-Regenero Flow Cytometry Facility) for assistance with flow cytometry and cell sorting, Javiera Ponce and Macarena Oca\u00F1a (C4C-Regenero Animal Facility) for technical expertise and assistance in the in vivo experiments, Michelle Fern\u00E1ndez (CIIB Histology Facility) for assistance with mice knee joint samples processing for histology and stainings, Rocio Lorca (C4C-Universidad de los Andes) for technical support in manuscript writing, Jorge Toledo (Redeca, Universidad de Chile) for donating the mito-YFP plasmid, and to the members of the C4C lab for support and helpful discussion. This work was supported by grants from: The Agencia Nacional de Investigaci\u00F3n y Desarrollo \u2013 ANID FONDECYT regular #1201420; The Agencia Nacional de Investigaci\u00F3n y Desarrollo \u2013 ANID FONDECYT regular #1211749; The Agencia Nacional de Investigaci\u00F3n y Desarrollo \u2013 ANID FONDECYT regular #1211353. ANID-Basal Funding for Scientific and Technological Center of Excellence, IMPACT, #FB210024, Santiago, Chile.

Muestra la fuente de financiamiento declarada en la publicación.