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Hamster β€” Hypercholesterolaemia (hereditary; OMIA-verified species predisposition)

companion_species_health_omia_4226_hamster

Other Compilations derived_from_dataset companion-species-health

Hamster β€” Hypercholesterolaemia (hereditary; OMIA-verified species predisposition)

Source: first-hand OMIA (University of Sydney) species-specific hereditary-disorder record, saved verbatim to source_file; every claim below is a C1 byte-substring of it.

Claims

  • Species: Mesocricetus auratus / Phodopus spp. (hamster)
  • Disorder:
  • Summary: Guo et al. (2018) "generated Ldlr-ablated hamsters using CRISPR/Cas9 technology". Thus these animals are genetically-modified organisms (GMO).
  • Defect: yes

Associated gene(s)

Derived from OMIA database dump (omia.xml, local); structured field, not verbatim prose. First-hand values below are verbatim substrings of the topic's pdf-raw/omia/<phene_id>.txt source file.

  • Gene: Entrez Gene ID 392710827 (no symbol in OMIA GeneSynonym) β€” OMIA Phene_Gene

Evidence (references)

Derived from OMIA database dump (omia.xml, local); structured field, not verbatim prose. First-hand values below are verbatim substrings of the topic's pdf-raw/omia/<phene_id>.txt source file.

  • 2019. Dietary cholesterol is highly associated with severity of hyperlipidemia and atherosclerotic lesions in heterozygous LDLR-deficient hamsters. Int J Mol Sci β€” PubMed:PMID31323736 | DOI:10.3390/ijms20143515 β€” OMIA Phene_Article / Article
  • 2018. LDL receptor gene-ablated hamsters: A rodent model of familial hypercholesterolemia with dominant inheritance and diet-induced coronary atherosclerosis. EBioMedicine β€” PubMed:PMID29289533 | DOI:10.1016/j.ebiom.2017.12.013 β€” OMIA Phene_Article / Article
  • 2021. Dietary-induced elevations of triglyceride-rich lipoproteins promote atherosclerosis in the low-density lipoprotein receptor knockout Syrian golden hamster. Front Cardiovasc Med β€” PubMed:PMID34796210 | DOI:10.3389/fcvm.2021.738060 β€” OMIA Phene_Article / Article
  • 2023. LDLR heterozygous deletion reduces hamster testicular cholesterol toxicity via AMPK/Sirt1/PGC-1Ξ± pathway. Toxicol Lett β€” PubMed:PMID37459939 | DOI:10.1016/j.toxlet.2023.07.009 β€” OMIA Phene_Article / Article
  • 2025. ApoL1 risk allele accelerates high-fat diet-induced atherosclerosis in LDLR-/- hamsters. Genes Dis β€” PubMed:PMID39669548 | DOI:10.1016/j.gendis.2024.101379 β€” OMIA Phene_Article / Article
  • 2025. Fat-1 ameliorates metabolic dysfunction-associated fatty liver disease and atherosclerosis through promoting the nuclear localization of PPARΞ± in hamsters. Research (Wash D C) β€” PubMed:PMID40052160 | DOI:10.34133/research.0577 β€” OMIA Phene_Article / Article
  • 2024. Development of a hamster model of spontaneous hypertriglyceridemia in diabetes. Animal Model Exp Med β€” PubMed:PMID39529532 | DOI:10.1002/ame2.12490 β€” OMIA Phene_Article / Article
  • 2026. SiRNA-based inactivation of Angptl3 alleviates high-fat diet-induced MAFLD and atherosclerosis in LDLR-deficient hamsters. Lipids Health Dis β€” PubMed:PMID41787476 | DOI:10.1186/s12944-026-02916-3 β€” OMIA Phene_Article / Article

Comparative medicine (human OMIM)

Derived from OMIA database dump (omia.xml, local); structured field, not verbatim prose. First-hand values below are verbatim substrings of the topic's pdf-raw/omia/<phene_id>.txt source file.

  • OMIM:143890 (type: trait) β€” OMIA Group_OMIM (via OMIA_ID)
  • OMIM:606945 (type: gene) β€” OMIA Group_OMIM (via OMIA_ID)