Overview of Animal Models
Animal models serve as the primary in vivo bridge between molecular hypotheses and clinical translation, and commercial offerings increasingly favor purpose-built, disease-specific systems over generic backgrounds. Current platforms span humanized models engineered to express human targets for direct pharmacological testing, immunodeficient models that support engraftment of human tumors or immune cells, and genetically modified lines that recapitulate metabolic, cardiovascular, neurodegenerative, or autoimmune disease phenotypes. Standard inbred and outbred lines remain in use as baseline platforms for toxicology and mechanistic studies where a defined genetic background matters more than a humanized target. Together, these options reflect a shift toward modular systems that can be combined with additional humanization, gene edits, or engraftment to address a specific research question.
Considerations for Model Selection
Model selection should begin with matching the genetic architecture of the model to the biological question, since a full gene knockout answers a different question than a targeted knock-in designed for species cross-reactivity. Immune status is a second key variable, as immunodeficient platforms enable efficient human cell engraftment but sacrifice the immune components needed to study immunotherapy mechanisms, while immunocompetent humanized models preserve endogenous immunity at some cost to engraftment efficiency. Investigators should also weigh the strength of available validation data, prioritizing models benchmarked against approved or clinical-stage therapeutics, since this evidence is often the best proxy for translational relevance. Finally, practical factors such as disease onset timing, breeding requirements, and husbandry burden should inform selection, particularly for chronic disease models where study timelines and cost are directly affected.
Your search returned 95 Animal Models across 3 suppliers.
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Creative Biolabs
- This model achieves the goal of MHC-I knockout and GvHD reduction in hu-PBL mice (mice treated with ...
- Human-specific infectious diseases, Antibody-based immune ...
- Immune Animal Model
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- This model achieves the effect of damaging the liver of mice to promote the engraftment of human ...
- Human-specific infectious diseases, Antibody-based immune ...
- Immune Animal Model
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- In this model, Tslp is expressed through K14 pramoter, thereby achieving lymph node development in ...
- Human-specific infectious diseases, Antibody-based immune ...
- Immune Animal Model
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- This model helps to study adoptive cellular immunity in solid tumors by overexpressing hIL2
- Human-specific infectious diseases, Antibody-based immune ...
- Immune Animal Model
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- This model improves human myeloid cell development in hu-HSC (CD34⁺ HSCs treatment mice) mice ...
- Human-specific infectious diseases, Antibody-based immune ...
- Immune Animal Model
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GemPharmatech
- A/JGpt is an inbred mouse strain susceptible to spontaneous lung adenomas and carcinogen-induced ...
- Studies of lung cancer, hearing loss, craniofacial ...
- Basic Strains
- Mouse
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- APC-min mice carry a targeted stop codon at amino acid 850 of the Apc gene, resulting in premature ...
- Studies of colorectal cancer pathogenesis and preclinical ...
- Disease Models
- Mouse
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- Apoe knockout mice are a spontaneous atherosclerosis model that develops atherosclerotic lesions ...
- Cardiovascular disease research
- Disease Models
- Mouse
- B10-Dmd-KO is a dystrophin-deficient mouse generated by targeting exon 4 of the Dmd gene on the B10 ...
- Studies of Duchenne muscular dystrophy pathophysiology and ...
- Disease Models
- Mouse
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- B6-Alms1-del(c.3802-3812) is an Alms1 deletion mouse on the C57BL/6J background that spontaneously ...
- Metabolic disease research and therapeutic evaluation
- Disease Models
- Mouse
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Biorbyt
- An animal model of human disease is an experimental system established in medical research that ...
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