Studying at the University of Verona
Here you can find information on the organisational aspects of the Programme, lecture timetables, learning activities and useful contact details for your time at the University, from enrolment to graduation.
Study Plan
The Study Plan includes all modules, teaching and learning activities that each student will need to undertake during their time at the University.
Please select your Study Plan based on your enrollment year.
1° Year
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2° Year activated in the A.Y. 2013/2014
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3° Year activated in the A.Y. 2014/2015
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Legend | Type of training activity (TTA)
TAF (Type of Educational Activity) All courses and activities are classified into different types of educational activities, indicated by a letter.
Diagnostic methodologies for Biochemistry and Molecular Biology (2014/2015)
The teaching is organized as follows:
Learning outcomes
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MM: METODI E TECNICHE DI GENETICA E BIOLOGIA MOLECOLARE
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MM: BIOTECNOLOGIE RICOMBINANTI
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The course aims to exercise the student to discuss the critical aspects in the execution of molecular analysis protocols; familiarize the student with modern genomic analysis techniques and biomedical applications of recombinant biotechnology.
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MM: BIOLOGIA MOLECOLARE
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MM: BIOCHIMICA E CHIMICA DELL'INQUINAMENTO AMBIENTALE
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MM: METODOLOGIA DIAGNOSTICA MOLECOLARE
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The course aims to make students understand the role of genetic testing in the clinical course of the patient. The course also aims to provide students who have no medical training the basic knowledge on the clinical aspects concerning the genetic basis of diseases. The course aims to provide an updated view of molecular biology techniques that are used in a clinical setting.
Program
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MM: METODI E TECNICHE DI GENETICA E BIOLOGIA MOLECOLARE
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MM: BIOTECNOLOGIE RICOMBINANTI
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DNA analysis by restriction and modification enzymes, chain polymerization, hybridization with molecular probes; use of genotheques and cDNAteche. • Determination of nucleic acid sequences, automatic sequencing; interpretation of sequence data. Biomedical applications of sequence analysis. • Use of databases and analysis systems for homology: how to navigate the computer network for access to sites for updating and analyzing gene sequences. • Gene cloning strategies and gene expression analysis. • Applications in the biomedical field of recombinant DNA technologies. • Techniques applied to genomic, transcriptomic and proteomic analysis.
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MM: BIOLOGIA MOLECOLARE
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MM: BIOCHIMICA E CHIMICA DELL'INQUINAMENTO AMBIENTALE
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MM: METODOLOGIA DIAGNOSTICA MOLECOLARE
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• Introduction and organization of the molecular biology laboratory • Extraction of nucleic acids • Electrophoresis of nucleic acids • Hybridization dot/blot and reverse dot/blot • Microarrays • PCR e Real-time PCR • Sequencing and next generation sequencing • Main methods of proteomics (chromatography, spettrometry..) • FISH and Array-CGH
Bibliography
Author | Title | Publishing house | Year | ISBN | Notes |
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Reed et al. | Metodologie di base per le scienze biomolecolari | Zanichelli | 2002 |
Examination Methods
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MM: METODI E TECNICHE DI GENETICA E BIOLOGIA MOLECOLARE
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MM: BIOTECNOLOGIE RICOMBINANTI
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Written exam in the form of an experimental protocol document discussed during the course and oral interview.
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MM: BIOLOGIA MOLECOLARE
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MM: BIOCHIMICA E CHIMICA DELL'INQUINAMENTO AMBIENTALE
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MM: METODOLOGIA DIAGNOSTICA MOLECOLARE
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Written test.