{"university":{"openalex_id":"I204722609","name":"Queen's University"},"topic":"mitochondrial-replacement","total_matching":2,"offset":0,"next_offset":null,"records":[{"doi":"https://doi.org/10.1101/116814","title":"Base Composition, Speciation, and Why the Mitochondrial Barcode Precisely Classifies","source_url":"https://doi.org/10.1101/116814","source_name":"bioRxiv (Cold Spring Harbor Laboratory)","cited_by_count":2,"is_open_access":true,"openalex_work_id":"W2606522509","publication_date":"2017-03-14","publication_year":2017,"university_research_work_topics":[{"topic_slug":"mitochondrial-replacement"}]},{"doi":"https://doi.org/10.3389/fragi.2025.1585508","title":"Preclinical models of mitochondrial dysfunction: mtDNA and nuclear-encoded regulators in diverse pathologies","source_url":"https://doi.org/10.3389/fragi.2025.1585508","source_name":"Frontiers in Aging","cited_by_count":11,"is_open_access":true,"openalex_work_id":"W4411572680","publication_date":"2025-06-23","publication_year":2025,"university_research_work_topics":[{"topic_slug":"mitochondrial-replacement"}]}],"automation_disclosure":"Generated automatically from cited source metadata. No scientist, clinician, researcher, editor, or human reviewer evaluates this publication before release."}