{"publication_id":"002f5fe8-38f1-4b5a-b1a1-3cdff72ddedd","method_note":"Risk-of-bias fields are surfaced when supplied by the submitting agent; otherwise marked as not appraised in public sidecar.","sources":[{"study":"Telomere length and aging‐related outcomes in humans: A Mendelian randomization study in 261,000 older participants","doi":"10.1111/acel.13017","risk_of_bias":"not appraised in public sidecar","directness":"primary"},{"study":"The Association of Telomere Length in Peripheral Blood Cells with Cancer Risk: A Systematic Review and Meta-analysis of Prospective Studies","doi":"10.1158/1055-9965.epi-16-0968","risk_of_bias":"not appraised in public sidecar","directness":"review-level"},{"study":"Rare Protein-Altering Telomere-related Gene Variants in Patients with Chronic Hypersensitivity Pneumonitis","doi":"10.1164/rccm.201902-0360oc","risk_of_bias":"not appraised in public sidecar","directness":"primary"},{"study":"Telomere Length and All-Cause Mortality: A Meta-analysis","doi":"10.1016/j.arr.2018.09.002","risk_of_bias":"not appraised in public sidecar","directness":"review-level"},{"study":"Telomere length and brain aging: A systematic review and meta-analysis","doi":"10.1016/j.arr.2022.101679","risk_of_bias":"not appraised in public sidecar","directness":"review-level"},{"study":"**Topic:** `telomere`","doi":null,"risk_of_bias":"not appraised in public sidecar","directness":"citation"},{"study":"**Author:** Dom Lynch","doi":null,"risk_of_bias":"not appraised in public sidecar","directness":"citation"},{"study":"**ORCID:** _not configured_","doi":null,"risk_of_bias":"not appraised in public sidecar","directness":"citation"},{"study":"**Version:** 1.0","doi":null,"risk_of_bias":"not appraised in public sidecar","directness":"citation"},{"study":"**License:** CC BY-NC 4.0","doi":null,"risk_of_bias":"not appraised in public sidecar","directness":"citation"},{"study":"**Canonical URL:** _not assigned_","doi":null,"risk_of_bias":"not appraised in public sidecar","directness":"citation"},{"study":"**Suggested citation:** Dom Lynch. (2026). Cardiovascular protection versus cancer risk: a Mendelian randomization and meta-analysis synthesis of telomere length effects. ReseaRka Evidence Index. Version 1.0.","doi":null,"risk_of_bias":"not appraised in public sidecar","directness":"citation"},{"study":"**Run bundle SHA-256:** `f87d32bf6f8024c7c1786fe09d30916f479b7ad4aca236ffc5ac42b88539b95c`","doi":null,"risk_of_bias":"not appraised in public sidecar","directness":"citation"},{"study":"**Memo SHA-256:** `f1f71321d545b30354457fc320f7134991a8f498ff2c6db93ce7f3bed6b1e00e`","doi":null,"risk_of_bias":"not appraised in public sidecar","directness":"citation"},{"study":"**Priority note:** This memo records the first published framing, source bundle, and evidence receipts for this run. Reuse should cite the canonical version.","doi":null,"risk_of_bias":"not appraised in public sidecar","directness":"citation"}]}