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via Udemy |
Go to Course: https://www.udemy.com/course/ucancrispr-online-master-class/
Are you interested in one of the most revolutionary advancements in modern genetics and biotechnology? If so, I highly recommend checking out the comprehensive CRISPR/Cas9 course available on Coursera. Visit our platform page in my bio to access exclusive free live classes, a discount code for this course, and more valuable resources. This college-level course provides an in-depth exploration of CRISPR/Cas9 technology, covering both fundamental principles and cutting-edge developments. What sets this course apart is its extensive coverage of the latest scientific literature, making it the most comprehensive resource available for understanding CRISPR — all at a fraction of the cost of traditional college programs. **Course Highlights:** - **Broad and Detailed Content:** The course is divided into four major sections: 1. **Basics of CRISPR and Cas9:** Learn about the natural components and functions of CRISPR's adaptive immune system in bacteria and archaea, and how these systems have evolved into various functional variants. 2. **Applications and Techniques:** Discover how CRISPR is used for gene disruption, genome editing, and other modifications, including screening procedures to identify genetic changes. 3. **Implications and Ethical Considerations:** Explore the impact of rapid scientific advancements, such as engineering Cas9 with protein structure models, and discuss potential consequences of widespread CRISPR use. 4. **Design and Implementation:** Gain practical skills in designing CRISPR systems for various applications, including in vivo expression and production of customized guide RNAs, with demonstration videos to guide your process. **Learning Objectives:** - Develop a solid understanding of CRISPR as a natural biological phenomenon. - Understand and evaluate diverse biotechnological applications built on the CRISPR platform. - Assess experimental approaches across different organisms. - Learn how to design and produce custom guide RNAs tailored to your research or application needs. **Why Take This Course?** This course offers a rare opportunity to learn CRISPR from an authoritative perspective, emphasizing the latest research and engineering innovations. Whether you're a student, researcher, or biotech enthusiast, this program offers practical knowledge and skills that can advance your understanding and capabilities in genetic engineering. **Preview the Course!** Several preview lectures are available, giving you a glimpse of the engaging content and teaching style. This will help you determine if this course aligns with your educational goals. Don't miss your chance to learn from a top-tier, cost-effective course that covers more ground than many university programs. Head to my bio and visit our platform page for exclusive offers, free live classes, and additional resources. Embark on your CRISPR journey today and unlock the future of genetic engineering!
Visit our platform page in my bio to get information on free live classes, a discount code for this course, and more.This is a college level course for a fraction of the cost. There is no other course that covers the breadth of CRISPR and the latest developments. There are several lectures for preview that will give you a good idea if this course is for you.This course will be an in-depth study of CRISPR/Cas9 as a natural phenomenon, applications, and implications, this course is unique in covering the latest understanding and engineering of CRISPR reported in scientific literature. Four sections to cover the major areas of CRISPR include:1. Introduction of the basic components and function of the most widely utilized CRISPR system, Cas9. The CRISPR adaptive immune system protects bacteria and archaea from pathogenic DNA, and has evolved from from several interesting genes into a number of variants. 2. An exploration of the applications of this technology. You will learn about gene disruption by targeted nucleases, and applications of modified non-cutting systems for making other types of modifications. The section starts by introducing the major types of screening procedures used to identify changes made by CRISPR.3. Implications of the rapid developments and deeper understanding of CRISPR currently taking place. Starting with using protein structure models to engineer the Cas9 protein. CRISPR can store new sequence in a genome and respond to alterations in cell state in novel ways. Since this technology is becoming very widely available the ramifications of different use cases will be considered. 4. A final section will discuss designing CRISPR systems for different use cases, including in vivo expression and use of purified complexes. Two demonstrations of identifying target sites in genes of interest, with methods to produce the customized sgRNA are made.Learning objectives:Develop understanding of CRISPR as a natural phenomenon.Learn the different technologies built on the CRISPR platform.Be able to assess approaches to different CRISPR experiments in a variety of host organisms.Use the knowledge to design custom guide RNAs and determine how to obtain the materials.