

Biology Lab Equipment
DNA Model
DNA Model: s are representations of the molecular geometry and topology of deoxyribonucleic acid (DNA)
- Price
- On request, by quantity and destination
- Tender documents
- Specification sheet and quotation on request
- Category
- Biology Lab Equipment
Product details
DNA models are representations of the molecular geometry and topology of deoxyribonucleic acid (DNA). Such models have multiple scientific and technological applications, including molecular dynamics simulations. DNA is an enormous biopolymer composed of repetitive units called nucleotides of four different basic types connected by sugar/phosphate backbones that make its modeling especially complex due to interactions with water, ions, proteins/enzymes, etc.
DNA models serve as powerful tools in education and research by providing:
- Tangible Representation of Complex Structure: They allow for a hands-on exploration of DNA's intricate double helix, aiding comprehension beyond textbook descriptions.
- Base Pairing made clear: The particular A - T and G - C pairings are displayed by DNA Models, which are the basis of genetic code.
- Interactive demonstration of replication: It visualizes how DNA replication happens to create new complementary strands.
- Visualizing mutations: This is done using models that show varying mutations along with their possible effects on genetic information.
- Aid in Research and Communication: They assist researchers in understanding molecular interactions and facilitate the clear presentation of scientific findings.
LabExports is known for its wide variety of DNA models that include:
- Basic Structure Models: Ideal for introductory biology, showcasing the double helix and base pairing.
- Advanced Structure Models: Explore DNA's complexities, like grooves and helical turns, which are suitable for advanced learning.
- Replication Models: Demonstrate the process of DNA replication and the creation of new strands.
- Transcription and Translation Models: Depict the flow of genetic information from DNA to RNA to protein.
- Gene expression and regulation models: Illustrate mechanisms controlling gene activation and deactivation.
- Mutation and Repair Models: Show various DNA mutations and repair processes.
- Chromatin And Chromosome models: Depict DNA's higher-order organization in the cell nucleus.






