
Biotechnology
Sequencing ToolsDatabasesData miningSpecialization in Biotechnology: trending topics for healthcare professionals.
Ementa
- 17 Sections
- 111 Lessons
- 10 semanas
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- 1.0 Basic Microbiology Module1.1 Genetics of microorganisms8
- 1.0The Divided Bacterial Genome – Structure, Function, and Evolution
- 1.1Bacterial genetics – past achievements, present state of the field, and future challenges
- 1.2Bacterial genetics and molecular pathogenesis in the age of high throughput DNA sequencing
- 1.3Evolution of microbial genomics – conceptual shifts over a quarter century
- 1.4Genetic variation – molecular mechanisms and impact on microbial evolution
- 1.5General and molecular microbiology and microbial genetics in the IM CAS
- 1.6How can microbial population genomics inform community ecology
- 1.7Microbial Genetics and Evolution
- 1.2 Main groups of microorganisms13
- 2.01 – Bactérias
- 2.1From Association to Causality the Role of the Gut Microbiota and Its Functional Products on Host Metabolism
- 2.2Mechanisms and consequences of bacterial resistance to antimicrobial peptides
- 2.3Metabolism of non-growing bacteria
- 2.4Physiology, genetics, and biochemistry of carbon metabolism in the alphaproteobacterium Sinorhizobium meliloti
- 2.52 – Fungi
- 2.6Exposure and Health Effects of Fungi on Humans
- 2.7Molecular Plant Pathology – The Top 10 fungal pathogens in molecular plant pathology
- 2.83 – Protozoa
- 2.9Some Aspects of Protozoan Infections in Immunocompromised Patients A Review
- 2.104 – Virus
- 2.11Electrochemical diagnostics of infectious viral diseases Trends and challenges
- 2.12Some Aspects of Protozoan Infections in Immunocompromised Patients A Review
- 1.3 Bacteriology bacterial growth curve3
- 1.4 Control of microorganisms3
- 4.0Control of vegetative micro-organisms in foods
- 4.1Innovative Biomedical and Technological Strategies for the Control of Bacterial Growth and Infections
- 4.2The Use of Ozone Technology to Control Microorganism Growth, Enhance Food Safety and Extend Shelf Life – A Promising Food Decontamination Technology
- 1.5 Test1
- 2.0 Genomics2.1 Genetics and Sequencing8
- 6.0The genetic basis of disease
- 6.1The genotype-phenotype link
- 6.2A comprehensive review of genetic association studies
- 6.3Genetics in Health Care – An Overview of Current and Emerging Models
- 6.4Molecular Genetics Testing
- 6.5Next-Generation Sequencing Technologies
- 6.6Review of genome sequencing technologies in molecular characterization of influenza A viruses in swine
- 6.7Sequencing technologies and genome sequencing
- 2.2 Functional Genomics6
- 7.0A Functional Genomics Review of Non-Small-Cell Lung Cancer in Never Smokers
- 7.1Clinical Functional Genomics
- 7.3Functional genomics approaches to improve pre‐clinical drug screening and biomarker discovery
- 7.4Functional genomics in autoimmune diseases
- 7.5Functional genomics in inborn errors of immunity
- 7.6Predicting preferential DNA vector insertion sites – implications for functional genomics and gene therapy
- 2.3 Proteomics4
- 2.4 Epigenetics14
- 9.0How epigenetics impacts on human diseases
- 9.1Neurodegeneration and epigenetics – A review
- 9.2Recent Advances in Epigenetic Biomarkers and Epigenetic Targeting in Prostate Cancer
- 9.3A Systematic Review of Progress toward Unlocking the Power of Epigenetics in NSCLC – Latest Updates and Perspectives
- 9.4An Overview of Epigenetics in Obesity – The Role of Lifestyle and Therapeutic Interventions
- 9.5An Update of Epigenetic Drugs for the Treatment of Cancers and Brain Diseases – A Comprehensive Review
- 9.6Cancer Epigenetics – A Brief Review
- 9.7Epigenetic biomarkers – Current strategies and future challenges for their use in the clinical laboratory
- 9.8Epigenetic regulation in metabolic diseases – mechanisms and advances in clinical study
- 9.9Epigenetics – Principles and Practice
- 9.10Epigenetics – Relevance and Implications for Public Health
- 9.11Epigenetics and Early Development
- 9.12Epigenetics in Precision Nutrition
- 9.13Genetics, Epigenetic Mechanism
- 2.5 Pharmacogenetics5
- 10.0A Systematic Review of Polygenic Models for Predicting Drug Outcomes
- 10.1Applications of Functional Genomics for Drug Discovery
- 10.2Pharmacogenetics – An Important Part of Drug Development with A Focus on Its Application
- 10.3Pharmacogenomic testing to support prescribing in primary care – a structured review of implementation models
- 10.4Pharmacogenomics – a systems approach
- 2.6 Test1
- 3.0 Bioinformatics3.1 Sequencing Tools17
- 12.0REViewer – haplotype-resolved visualization of read alignments in and around tandem repeats
- 12.1Statistical Analyses of Next Generation Sequence Data – A Partial Overview
- 12.2The role of pattern databases in sequence analysis
- 12.3Upcoming challenges for multiple sequence alignment methods in the high-throughput era
- 12.4A Review of Bioinformatics Tools for Bio-Prospecting from Metagenomic Sequence Data
- 12.5A review on multiple sequence alignment from the perspective of genetic algorithm
- 12.6A simple genetic algorithm for multiple sequence alignment
- 12.7A simple method to control over-alignment in the MAFFT multiple sequence alignment program
- 12.8An Overview of Bioinformatics Tools for DNA Meta-Barcoding Analysis of Microbial Communities of Bioaerosols – Digest for Microbiologists
- 12.9Analysis for free – Comparing programs for sequence analysis
- 12.10BLAST output visualization in the new sequencing era
- 12.11Developments in Algorithms for Sequence Alignment – A Review
- 12.12Evolution at the nucleotide level – the problem of multiple whole-genome alignment
- 12.13Illumina next generation sequencing data and expression microarrays data from retinoblastoma and medulloblastoma tissues
- 12.14Operationalizing Quality Assurance for Clinical Illumina Somatic Next-Generation Sequencing Pipelines
- 12.15Overview of Next Generation Sequencing Technologies
- 12.16Review of Current Methods, Applications, and Data Management for the Bioinformatics Analysis of Whole Exome Sequencing
- 3.2 Databases6
- 13.0Clinical Genomic Database
- 13.1General mutation databases – analysis and review
- 13.2Review on Databases and Bioinformatic Approaches on Pharmacogenomics of Adverse Drug Reactions
- 13.3A review of databases predicting the effects of SNPs in miRNA genes or miRNA-binding sites
- 13.4A review of genetic variant databases and machine learning tools for predicting the pathogenicity of breast cancer
- 13.5Bioinformatics tools and databases for analysis of next-generation sequence data
- 3.3 CRISPR7
- 14.0A Review on the Mechanism and Applications of CRISPR Cas9-Cas12-Cas13-Cas14 Proteins Utilized for Genome Engineering
- 14.1CRISPR-based functional genomics for neurological disease
- 14.2CRISPR-Cas System – The Current and Emerging Translational Landscape
- 14.3CRISPR-Cas systems – Overview, innovations and applications in human disease research and gene therapy
- 14.4Novel CRISPR-Cas Systems – An Updated Review of the Current Achievements, Applications, and Future Research Perspectives
- 14.5The CRISPR-Cas9 system for gene editing and its potential application in pain research
- 14.6Unintended CRISPR-Cas9 editing outcomes – a review of the detection and prevalence of structural variants generated by gene-editing in human cells
- 3.4 Data mining2
- 3.5 Bioinformática15
- 16.0Quantum Computing in the Next-Generation Computational Biology – Landscape From Protein Folding to Molecular Dynamics
- 16.1A review of bioinformatic pipeline frameworks
- 16.2A review on the application of bioinformatics tools in food microbiome studies
- 16.3A systematic review and functional bioinformatics analysis of genes associated with Crohn’s disease identify more than 120 related genes
- 16.4AMAS – a fast tool for alignment manipulation and computing of summary statistics
- 16.5Automated extraction of information in molecular biology
- 16.6Computational Biology – A New Frontier in Applied Biology
- 16.7Computational Biology and Machine Learning Approaches to Understand Mechanistic Microbiome-Host Interactions
- 16.8Computational Biology
- 16.9Computational molecular biology approaches to ligand-target interactions
- 16.10Computational Stem Cell Biology – open questions and guiding principles
- 16.11DAMBE7 – New and Improved Tools for Data Analysis in Molecular Biology and Evolution
- 16.12Genomics and computational molecular biology
- 16.13Handbook of Discrete and Combinatorial Mathematics – Chapter 20 – Mathematical Biology
- 16.14Molecular Computing and Bioinformatics
- 3.6 Test1