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Translating Lipoprotein Genetics Into New Therapies.

Translating Lipoprotein Genetics Into New Therapies.

期刊: Circulation research 日期: 2026-06-05 PMID: 42241509 DOI: 10.1161/CIRCRESAHA.126.328828 浏览: 38
作者: Hegele RA
RA, H. (2026). Translating Lipoprotein Genetics Into New Therapies.. Circulation research. https://doi.org/10.1161/CIRCRESAHA.126.328828
RA H. Translating Lipoprotein Genetics Into New Therapies.. Circulation research. 2026; doi: 10.1161/CIRCRESAHA.126.328828
RA H. Translating Lipoprotein Genetics Into New Therapies.[J]. Circulation research. 2026. DOI: 10.1161/CIRCRESAHA.126.328828.
@article{ra2026,
  author = {Hegele RA},
  title = {Translating Lipoprotein Genetics Into New Therapies.},
  journal = {Circulation research},
  year = {2026},
  doi = {10.1161/CIRCRESAHA.126.328828},
  note = {PMID: 42241509},
}
TY  - JOUR
AU  - Hegele RA
TI  - Translating Lipoprotein Genetics Into New Therapies.
T2  - Circulation research
PY  - 2026
DO  - 10.1161/CIRCRESAHA.126.328828
AN  - PMID:42241509
ER  - 

摘要

Human genetics has become the primary engine for identifying lipid-lowering drug targets and predicting therapeutic success or failure. Monogenic family studies and population-based sequencing identify individuals with lifelong loss-of-function variants in lipoprotein-regulatory genes who are simultaneously healthier and inadvertent proof-of-concept trial participants-the human knockout paradigm. This approach has driven approvals across multiple mechanistic classes targeting PCSK9 (proprotein convertase subtilisin/kexin type 9; low-density lipoprotein cholesterol lowering with demonstrated cardiovascular benefit), APOC3 (apolipoprotein C-III; olezarsen and plozasiran, both approved for triglyceride lowering in familial chylomicronemia syndrome), and ANGPTL3 (angiopoietin-like protein 3, evinacumab, approved for homozygous familial hypercholesterolemia), while Mendelian randomization prospectively identified HDL (high-density lipoprotein) cholesterol as a noncausal biomarker, predicting the failure of HDL-raising therapy in outcomes trials. RNA-based pharmacology-N-acetylgalactosamine-conjugated small interfering RNAs and antisense oligonucleotides-has emerged as a pragmatic platform for translating genetic target validation into durable, infrequently dosed therapies. Cardiovascular outcomes trials of these RNA-based agents are pending or have not yet been announced. Gene-editing approaches now extend this logic toward potentially permanent intervention. Genome-wide association studies and polygenic risk scores have expanded the landscape of candidate targets but have yet to achieve translational yield comparable to rare-variant genetics.

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