BIOLOGICAL MODELS AND TOOLS
Our catalog of cellular and animal models and other biological tools for research includes:
• ANIMAL MODELS:
| Code | Model | Field and Pathology | Description |
|---|---|---|---|
| UCA | Murine APP/PS1 transgenic (B6.Cg-Tg(APPswe,PSEN1dE9)) | Neurology. Alzheimer's Disease | Service provision using this model for in vivo studies: microgliosis, astrogliosis, amyloid deposition, and cognitive impairment. |
| UCA | Murine APP/PS1Xdb/db mouse [(B6.Cg-Tg(APPswe,PSEN1dE9)X db/db)] | Neurology. Alzheimer's Disease and Type 2 Diabetes | Service provision using this model for in vivo studies: synergistic microgliosis, astrogliosis, amyloid deposition, brain vascular damage, cognitive impairment, insulin resistance, hyperglycemia, and obesity. |
| UCA | Functional leptin knockout (db/db) | Endocrinology and Metabolism. Type 2 Diabetes and Obesity | Provision of services using this model for in vivo studies: obesity, insulin resistance, hyperglycemia, and cognitive impairment. |
CODE: UCA
MODEL: Murine APP/PS1 tg (B6.Cg-Tg(APPswe,PSEN1dE9))
FIELD AND DISEASE: Neurology. Alzheimer's disease
DESCRIPTION: Provision of services using this model for in vivo studies: microgliosis, astrogliosis, amyloid deposition, and cognitive impairment.
CODE: UCA
MODEL: Murine APP/PS1Xdb/db mouse [(B6.Cg-Tg(APPswe,PSEN1dE9)X db/db)]
FIELD AND DISEASE: Neurology. Alzheimer's disease and type 2 diabetes
DESCRIPTION: Provision of services using this model for in vivo studies: synergistic microgliosis, astrogliosis, amyloid deposition, brain vascular damage, cognitive impairment, insulin resistance, hyperglycemia, and obesity.
CODE: UCA
MODEL: Functional leptin knockout (db/db)
FIELD AND DISEASE: Endocrinology and Metabolism. Type 2 diabetes and obesity
DESCRIPTION: Provision of services using this model for in vivo studies: obesity, insulin resistance, hyperglycemia, and cognitive impairment.
| Code | Title | Type | Description | PDF – Technology Offerings |
|---|---|---|---|---|
| FCAD-23011 | A humanized animal model of bipolar disorder derived from human olfactory neuroepithelium | Research Model | A humanized mouse model of bipolar disorder that replicates the patient's symptoms and response to lithium by implanting human neural precursors into the brains of rodents. |
Spanish English |
| FCAD-23018 | DISASSEMBLABLE ANATOMICAL MODEL OF THE ANKLE AND TARSUS FOR TEACHING | Research Model | A disassemblable anatomical model of the foot and ankle that reproduces all the bones, which are numbered and color-coded, and features a simple assembly system using pegs, facilitating practical and interactive study of anatomy and joints. |
Spanish English |
CODE: FCAD-23011
Title: A humanized animal model of bipolar disorder based on the human olfactory neuroepithelium
TYPE: Research model
DESCRIPTION: A humanized mouse model of bipolar disorder that replicates the patient's symptoms and response to lithium by implanting human neural precursors into the brains of rodents.
CODE: FCAD-23018
Title: DISASSEMBLABLE ANATOMICAL MODEL OF THE ANKLE AND TARSUS FOR TEACHING
TYPE: Research model
DESCRIPTION: A disassemblable anatomical model of the foot and ankle that reproduces all the bones, which are numbered and color-coded, and features a simple assembly system using pegs, facilitating practical and interactive study of anatomy and joints.
If you have any trouble downloading the file mentioned above, you can access it via the following link.