Molecular Biology and biotechnology principles

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Last updated on January 16, 2025 5:39 am
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Learn about molecular biology and biotechnology principles in this comprehensive course. Topics covered include recombinant DNA technology, hybridization and blotting techniques, principles of chromatography and electrophoresis, and more. Perfect for students in the field of molecular biology, biotechnology, and those interested in research.

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What you’ll learn

  • Recombinant DNA Technology or Cloning
  • Polymerase Chain Reaction
  • Hybridisation and Blotting Techniques
  • Principles of Chromatography and Electrophoresis
  • Principles of electrophoresis

In this course students will learn about molecular biology and biotechnology principles.

1.  Unit 1

Topics covered in : Lecture 1 , 2 and 3

  • Recombinant DNA technology

  • Tools used in Recombinant DNA technology

  • Isolation of vector gene

  • Isolation of desired gene

  • Methods to transfer foreign gene into bacterial cell

  • Discuss about Restriction enzymes

  • And about ligases

  • Vectors like cosmid, plasmid

  • Production of insulin gene

  • Applications of recombinant DNA technology

2. Unit 2

Topics covered in Lecture 4

Molecular biology Techniques

Southern blotting technique used for DNA samples

Northern blotting used for RNA samples 

3. Unit 3

Topics covered in Lecture 5

  • Hybridisation technique

  • Polymerase chain reaction used to amplify the DNA in the sample

  • Radio immuno Assay – Antigen and antibody specific

  • Electrophoresis

  • zone electrophoresis

  • Gel electrophoresis

  • Polyacrylamide gel electrophoresis.

  • Paper electrophoresis.

  • Principle of electrophoresis.

  • Used to separate the DNA depending on the size and charge on the molecule.

  • Gel electrophoresis – is used to separate DNA or RNA.

  • SDS page used to separate proteins and amino acids

4. Unit 4

Topics covered in Lecture 6 and 7

  • chromatography

  • column chromatography

  • Affinity chromatography.- based on affinity towards ligand and protein .

  • Ion exchange chromatography.

  • Cat-ionic exchanger and anionic exchanger

  • Separation is based on ions present in the protein sample

  • Gas liquid chromatography. Gas acts as a mobile phase and liquid acts as a stationary phase .gases like inert gases are used and liquid of high boiling point is used in gas liquid chromatography

  • Paper chromatography . Paper is used and reagent are used to identify the compound present in the sample

  • principle of chromatography

  • separation of molecules based on size, charge and molecular weight

  • Separation of macro molecules based on antigen and antibody interaction

  • Enzyme and ligand interaction as there is a specific interaction between the antigen and antibody interaction

    Summary of the course

Add-on

  • Course would be added/enhanced based on Q&A form students in to form of additional information

Who this course is for:

  • Students who are in the field of Molecular Biology ,Biotechnology and students interested in Research Field

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