The Power of CRISPR (for 5 classes) Kit Manufacturer,Supplier and Exporter in India

Product Code : SCL-EK-11116

The Power of CRISPR for 5 Classes explores gene editing's potential to treat diseases (sickle cell, cancer), modify crops, control pests (malaria mosquitoes), and even resurrect extinct species.

The "Power of CRISPR" module is an immersive, multi-week curriculum designed to bridge the gap between theoretical genetics and applied biotechnology. This module investigates the mechanisms of CRISPR-Cas9 (Clustered Regularly Interspaced Short Palindromic Repeats) and its therapeutic potential for treating hereditary conditions such as Sickle Cell Disease.

·         Molecular Mechanisms: Students investigate how the Cas9 enzyme acts as "molecular scissors," guided by RNA to specific genomic sequences to facilitate targeted DNA modification. (Reference: CRISPR Gene Editing - Wikipedia)

·         Genotype-to-Phenotype Relationships: Through hands-on bacterial gene editing, learners explore the fundamental link between DNA sequences, protein synthesis, and observable traits. (Reference: Applications of CRISPR in Genomic Research - Google Scholar)

·         Bioethics and Risk Assessment: The curriculum addresses the societal implications of genomic intervention, evaluating the risks, benefits, and ethical frameworks of gene therapy.


Structured Instructional Sequence

This comprehensive module is organized into a cohesive pedagogical flow, allowing for deep conceptual mastery over one to two weeks of laboratory instruction.

·         Introduction to Pathophysiology: Students analyze the genetic basis of sickle cell disease and the role of proteins in determining organismal health.

·         Laboratory Investigations: A three-part lab sequence where students conduct active gene editing, utilizing precision instruments to manipulate bacterial DNA.

·         Modeling and Simulation: Students solidify their understanding by "acting out" the molecular mechanism and creating models to demonstrate the CRISPR pathway.

·         Ethical Discourse: A final evaluation of the risks and benefits of gene editing across different biological and social circumstances.


Scalable STEM Infrastructure for High-Throughput Classrooms

We specialize in providing high-volume equipment solutions designed to meet the rigorous demands of large-scale science departments. This module is engineered for seamless rotation across multiple class periods.

Package Capacity & Logistics:

·         Institutional Scope: Sufficient specialized consumables and hardware for 5 full classes.

·         Student Organization: Optimized for 32 students per class, structured into 8 collaborative groups of 4.

·         Material Integrity: Every reaction vessel and measurement tool is manufactured in our ISO-certified facilities, ensuring they are free from biological contaminants.


The Factory-Direct Advantage: Quality Control at Source

In biotechnology, the precision of your equipment is the difference between a successful trial and a contaminated result. Because we own the production line, we offer:

1.      Strict Purity Protocols: Our laboratory plastic ware and Borosilicate 3.3 glassware are produced under cleanroom conditions to ensure chemical neutrality and biological inertness.

2.      Unmatched Value: By exporting directly from our factory to your laboratory, we eliminate middleman markups, making elite-level biotechnology kits accessible to all districts.

3.      Collaborative Development: This module features a foreword by Nobel Laureate Jennifer Doudna and was developed in collaboration with the Innovative Genomics Institute and the Lawrence Hall of Science.

Technical Kit Specifications

Component

Technical Specification

Educational Purpose

Reaction Micro-vessels

DNA/RNA-Free Autoclavable Polymer

Managing sensitive bacterial samples

Measurement Labware

Precision Liquid Handling Tools

Developing foundational molecular techniques

Incubation Vessels

ISO 3585 Borosilicate Glass

Safe thermal management of biochemical assays

Analysis Trays

High-Clarity UV-Transparent Materials

Visualizing simulated genetic modification patterns

 

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Office Address

Works:

[email protected]

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