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  • Faculty of Pharmacy
  • Course Structure Diagram with Credits
  • Pharmaceutical Biotechnology I
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  • Will Be Able to List the History of Pharmaceutical Biotechnology and Explain Its Scope.
  • Comment on distinction and relationship between pharmaceuticals, biologicals and biopharmaceuticals.
  • Defines biotechnology.
  • Explains the uses of biotechnology in various fields (food, medicine, plant, environment and genetics).
  • Explains the relationship between biopharmaceuticals and pharmaceutical biotechnology.
  • Defines Pharmaceutical Biotechnology.
  • Will Be Able to Explain the Production of Antibiotics and Vitamins by Fermentation.
  • Defines penicillin biosynthesis.
  • Defines vitamin biosynthesis.
  • Will Be Able to Recognize Recombinant DNA and Explain the Methods Used in Its Production.
  • Lists the areas of use of recombinant DNA technology.
  • Explains the building blocks of nucleic acids.
  • Defines the vectors used in recombinant DNA technology.
  • Recognize plasmids and explain their production.
  • Defines restriction endonucleases and explains their functions.
  • Classifies host cells.
  • Defines and classifies DNA sequencing analyses.
  • Explains Polymerase Chain Reaction (PCR).
  • Explains the use of laboratory devices used in recombinant DNA analysis.
  • Will Be Able to Explain the Laboratory Techniques Used in Recombinant DNA Technology.
  • Defines the clean room.
  • Lists the devices in the clean room.
  • Lists the types of sterile cabinets and their working principles.
  • Classify the devices used for genetic material (DNA/RNA) analysis.
  • Classify the types of electrophoresis.
  • Explains the purpose of using the horizontal gel electrophoresis method.
  • Will Be Able to Explain Gene Cloning.
  • Explain the steps of gene cloning.
  • Lists eukaryotic and prokaryotic gene transfer methods.
  • Explains colony selection of vectors carrying recombinant genes.
  • Explains the control of the obtained recombinant gene product.
  • Will Be Able to Explain Gene Therapy and its Construction Methods
  • Defines gene therapy.
  • Defines Ex-vivo and In-vivo gene therapy.
  • Recognizes vectors used in gene therapy.
  • Lists viral and non-viral vectors.
  • Relates gene therapy and diseases.
  • Will Be Able to Explain Antisense Technology.
  • Define antisense technology.
  • Classify antisense oligonucleotides.
  • Explain the intracellular working mechanisms of antisense oligonucleotides.
  • Interpret the synthesis of antisense oligonucleotides according to the target gene.
  • Illustrate the loading methods of antisense oligonucleotides onto carrier systems.
  • Will Be Able to Explain Aptamers.
  • Define aptamer.
  • Lists the areas of use of aptamers.
  • Explains the therapeutic applications of aptamers.
  • Will Be Able to Explain the Structures of Therapeutic Proteins
  • Classify therapeutic proteins according to their biological functions.
  • Recognize the structure of the target protein.
  • Discusses the stability and folding of the target protein.
  • Discuss the post-translational modifications of the target protein.
  • Will Be Able to Discuss the Analysis Performed on Therapeutic Proteins.
  • Explains the vertical gel electrophoresis method.
  • Interpret vertical gel electrophoresis results.
  • List chromatographic analysis methods of therapeutic proteins.

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