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ОМ УМК на анг. языке 2012-2013 уч. год.doc
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2.4. Learning outcomes:

The student must:

generate knowledge and ideas:

- about molecular genetics basis and cellular mechanisms of functioning of body, structural and functional organization of hereditary material at molecular level (DNA).

- About direction and mechanisms of genetics information transmission in living systems, their role and importance in functioning of living organisms in normal and pathological conditions.

- About the molecular mechanisms realization of genetics information.

-On structural and functional organization of hereditary material in gene, chromosomal and genomic level;

-About reasons and mechanisms of genetics variation and their role in formation of human hereditary diseases and congenital malformations;

- About the nature of heredity, inheritance types of traits (diseases), controlled by genes, and their usagt in medical practice for recognition hereditary nature of disease .

- about basic molecular genetics and cellular mechanisms of hereditary polymorphisms resulting from organism reactions to medications.

-On synthesis molecular basis and drugs use .

- About the molecular biological and genetics terms in international language.

- about legal aspects hereditary diseases preventing problems and congenital malformations.

To form ability:

  • using knowledge of molecular and genetics processes to explain the mechanisms

development of disease;

  • to define the main, and most common hereditary disease in human;

  • differentiate between different types of chromosomes and recognize normal and abnormal human karyotypes ;

  • genealogical method used to determine the hereditary nature of disease;

  • to use a special background material, molecular biological and genetics terms, electronic genetics databases, etc.

Be skilled:

  • by Cognitive (knowledge), practical, communicative, legal and self-improvement.

2.5.Prerequisites and Postdetails.

Prerequisites: high-school general biology, chemistry, medical biophysics.

Postdetails: biochemistry, histology, microbiology, physiology, pathological anatomy and physiology, pharmacology, introduction to clinical medicine.

2.6. Summary of discipline:

The object and purpose, the main directions of molecular biology and medical genetics development. Place of Molecular Biology and Medical Genetics, among other biomedical disciplines. Molecular mechanisms of genetics information. The molecular principle structure of biological membranes and substances transport mechanisms through the membrane.

Cell cycle and its molecular mechanisms of regulation. Genetics variation. variability in recombination. Mutational variability. role mutations in hereditary diseases development and human genetics. Molecular-genetics research methods and their application in practical medicine. Electronic databases and biomedical sites.

molecular - genetics mechanisms of rises hereditary human diseases. Diagnosis Methods and prevention of hereditary diseases. Genetics mechanisms of individual development. Principles of population genetics. Fundamentals Ecogentic. Fundamentals of pharmacogenetics. Fundamentals of Oncogenetics.