Explore relationships stated by the original sources. Each number opens its exact collection—not a count of extra papers or proven treatments.
Research ↔ organizationDecember 12, 2025
The role of lipid metabolism in neuronal senescence
Organization linked by OpenAIRE · University of Crete
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationDecember 12, 2025
The role of lipid metabolism in neuronal senescence
Organization linked by OpenAIRE · FORTH Institute of Molecular Biology and Biotechnology
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationDecember 12, 2025
The role of lipid metabolism in neuronal senescence
Organization linked by OpenAIRE · Foundation for Research and Technology Hellas
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationNovember 16, 2025
CD4⁺ T cells confer transplantable rejuvenation via Rivers of telomeres
Organization linked by OpenAIRE · Kennedy Institute of Rheumatology
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationNovember 16, 2025
CD4⁺ T cells confer transplantable rejuvenation via Rivers of telomeres
Organization linked by OpenAIRE · University College London
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationNovember 16, 2025
CD4⁺ T cells confer transplantable rejuvenation via Rivers of telomeres
Organization linked by OpenAIRE · University of Oxford
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationNovember 1, 2025
Aging-related, senescence-associated secretory phenotype and allogeneic hematopoietic cell transplantation outcomes in older patients
Organization linked by OpenAIRE · FOUNDATION MEDICINE INC
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationNovember 1, 2025
Aging-related, senescence-associated secretory phenotype and allogeneic hematopoietic cell transplantation outcomes in older patients
Organization linked by OpenAIRE · Memorial Sloan Kettering Cancer Center
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationNovember 1, 2025
Proteolysis targeting chimeras as senolytics: An emerging senotherapy for combating aging
Organization linked by OpenAIRE · BIO5 Institute
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationNovember 1, 2025
Proteolysis targeting chimeras as senolytics: An emerging senotherapy for combating aging
Organization linked by OpenAIRE · University of Arizona
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationNovember 1, 2025
Proteolysis targeting chimeras as senolytics: An emerging senotherapy for combating aging
Organization linked by OpenAIRE · University of Arizona Cancer Center
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 31, 2025
Core Activation Program and Selective Regional Responsiveness of Microglia in Aging and Parabiosis
Organization linked by OpenAIRE · Stanford University
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 31, 2025
Core Activation Program and Selective Regional Responsiveness of Microglia in Aging and Parabiosis
Organization linked by OpenAIRE · University of Mary
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ projectOctober 31, 2025
1H NMR metabolomics and lipidomics analysis of neutrophils reveals biomarkers of ageing, inflammageing and frailty
Project linked by OpenAIRE · MICA: Applying innovative technologies to improve benefit-risk ratio of drugs: developing a national resource underpinned by the MRC Centre for CDSS
OpenAIRE links this research record to a project. This is not a claim that the project funded every part of the work.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 31, 2025
1H NMR metabolomics and lipidomics analysis of neutrophils reveals biomarkers of ageing, inflammageing and frailty
Organization linked by OpenAIRE · University of Western Australia
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 31, 2025
1H NMR metabolomics and lipidomics analysis of neutrophils reveals biomarkers of ageing, inflammageing and frailty
Organization linked by OpenAIRE · University of Liverpool
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 6, 2025
Translating cellular senescence research into clinical practice for metabolic disease
Organization linked by OpenAIRE · Cedars-Sinai Medical Center
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 6, 2025
Translating cellular senescence research into clinical practice for metabolic disease
Organization linked by OpenAIRE · Mayo Clinic
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 1, 2025
Senolytic therapies for cardiovascular aging: tackling fibrosis and metabolic dysfunction
Organization linked by OpenAIRE · Istituti Clinici Scientifici Maugeri IRCCS
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 1, 2025
Senolytic therapies for cardiovascular aging: tackling fibrosis and metabolic dysfunction
Organization linked by OpenAIRE · Istituti di Ricovero e Cura a Carattere Scientifico
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 1, 2025
Senolytic therapies for cardiovascular aging: tackling fibrosis and metabolic dysfunction
Organization linked by OpenAIRE · National Research Council
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 1, 2025
Senolytic therapies for cardiovascular aging: tackling fibrosis and metabolic dysfunction
Organization linked by OpenAIRE · Istituto di Analisi dei Sistemi ed Informatica Antonio Ruberti
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 1, 2025
Mitochondrial DNA-driven senescence-associated secretory phenotype promotes the development of bronchopulmonary dysplasia
Organization linked by OpenAIRE · Tongren Hospital
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
Inspect the source record →Research ↔ organizationOctober 1, 2025
Mitochondrial DNA-driven senescence-associated secretory phenotype promotes the development of bronchopulmonary dysplasia
Organization linked by OpenAIRE · Shanghai Jiao Tong University
An organization relationship stated by OpenAIRE, identified by ROR. This is not an institutional ranking.
Source: OpenAIRE Graph, CC BY 4.0. Fields selected and filtered by immortal.life; no endorsement implied. Licence
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