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Best Practices in Biopharma Manufacturing Best Practices in Clinical Research Biotechnology & Genetics Major Therapeutic Areas Pharmaceutical and Healthcare Codes of Conduct
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Anatomy and Physiology Bioinformatics BioPharma Cardiovascular System Central Nervous System (Neurology) Diabetes Gastrointestinal System Good Clinical Practice (GCP) Good Laboratory Practice (GLP) Good Manufacturing Practice (GMP) Immunology Infection IS/IT Series Marketing & Selling Medical Devices Musculoskeletal System Oncology Ophthalmology Pain Psychiatric Disorders Quality Control (QC) Respiratory System Urology Validation
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| | Microarrays Prerequisites include a working knowledge of recombinant DNA and molecular biology.
Duration: 2 Hours and 15 Minutes Certificate of Completion: Provided immediately upon successful completion. |
Ordering For Multiple Users (training 10 - 200 users, annually) see GeneEd's On Demand Training |
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Microarrays
Description: The microarrays course describes the various chip fabrication techniques, image and data analysis, and the uses of microarrays for re-sequencing, expression studies and genotyping.
Similar or Related Courses & Suites:
SUITE: Advanced Biopharmaceutical Technology: Five Course Suite Microarray Informatics Methods in Molecular Biology Bioinformatics: Advanced SNPs: Identification and Uses Microarrays
SUITE: Advanced Biopharmaceutical Technology: Four Course Suite (without Microarray Informatics) SNPs: Identification and Uses Bioinformatics: Advanced Methods in Molecular Biology Microarrays
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| Microarrays OUTLINE INTROUDUCTION
1. Course Description
2. Interface Tour
3. Historical Perspective
4. Course Overview
PROBES
5. Objectives
6. Types of Probes
7. Progress Check
ARRAY FABRICATION
8. Objectives
9. Photolithography
10. In Situ Oligonucleotides
11. Oligonucleotide Deposition
12. cDNA Preparation
13. DNA Arrays
14. Array Surfaces
15. Progress Check
TARGETS
16. Objectives
17. Types and Labeling
18. RNA Amplification
19. Progress Check
ASSAY
20. Objectives
21. Hybridization Conditions
22. Progress Check
READOUT
23. Objectives
24. Why Fluorescence?
25. Scanning Technology
26. Progress Check
IMAGE ANALYSIS
26. Objectives
27. Quantification
28. Normalization
29. Informatics
30. Cluster Analysis
31. Progress Check
USES/EXAMPLES
32. Objectives
33. Sequencing
34. Genotyping-HIV
35. Expression Analyses
36. Liquid Arrays-MPSS
37. Progress Check
CONCLUSION
39. Summary and Future Trends
| | Microarrays OBJECTIVES Students completing this course, Microarrays, should be able to:
Explain the relevance of microarray technology in genomics.
Describe how different kinds of microarrays are fabricated.
Describe how microarray experiments are performed.
Explain how microarrays are scanned, and how the fluorescent output is analyzed to generate quantitative data.
Explain how bioinformatics is used in microarray data analysis.
Understand how microarrays are currently used. |
BROWSE COURSES BY CATALOG:
| Best Practices in Biopharma Manufacturing | Best Practices in Clinical Research | Biotechnology & Genetics | Major Therapeutic Areas | Pharmaceutical and Healthcare Codes of Conduct |
BROWSE OTHER COURSES BY DISCIPLINE:
| Anatomy and Physiology | Bioinformatics | BioPharma | Cardiovascular System | Central Nervous System (Neurology) | Diabetes | Gastrointestinal System | Good Clinical Practice (GCP) | Good Laboratory Practice (GLP) | Good Manufacturing Practice (GMP) | Immunology | Infection | IS/IT Series | Marketing & Selling | Medical Devices | Musculoskeletal System | Oncology | Ophthalmology | Pain | Psychiatric Disorders | Quality Control (QC) | Respiratory System | Urology | Validation |
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