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Biotechnology and Pharmaceutical Development
Systems Biology and Network Pharmacology Training Course
Introduction
The post-genomic era has fundamentally shifted the paradigm of drug discovery from the traditional ΓÇ£one-target, one-drugΓÇ¥ model to a holistic, systems-level understanding of disease complexity. Systems Biology and Network Pharmacology Training Course provides essential expertise in Systems Biology and Network Pharmacology (NP) two critical, synergistic disciplines. Participants will master the integration of massive multi-omics data using computational modeling and advanced bioinformatics to identify robust multi-target therapeutics. By leveraging network science, this course empowers researchers to decipher complex disease pathophysiology, predict drug-target interactions, and accelerate rational drug design for challenges like cancer resistance, neurodegenerative disorders, and emerging infectious diseases.
This hands-on program moves beyond theory, focusing on practical application through AI/Machine Learning (ML) workflows and modern data-driven drug discovery. Professionals will gain proficiency in analyzing Protein-Protein Interaction (PPI) networks, identifying hub genes, and executing drug repurposing strategies, ensuring their organization remains at the forefront of precision medicine and systems pharmacology. The ability to navigate and interpret complex biological data structures is no longer optional it is the cornerstone of developing more effective, safer, and personalized treatment strategies in the rapidly evolving biotech and pharmaceutical landscape.
Programme Curriculum
Systems Biology and Network Pharmacology Training Course
Introduction
The post-genomic era has fundamentally shifted the paradigm of drug discovery from the traditional ΓÇ£one-target, one-drugΓÇ¥ model to a holistic, systems-level understanding of disease complexity. Systems Biology and Network Pharmacology Training Course provides essential expertise in Systems Biology and Network Pharmacology (NP) two critical, synergistic disciplines. Participants will master the integration of massive multi-omics data using computational modeling and advanced bioinformatics to identify robust multi-target therapeutics. By leveraging network science, this course empowers researchers to decipher complex disease pathophysiology, predict drug-target interactions, and accelerate rational drug design for challenges like cancer resistance, neurodegenerative disorders, and emerging infectious diseases.
This hands-on program moves beyond theory, focusing on practical application through AI/Machine Learning (ML) workflows and modern data-driven drug discovery. Professionals will gain proficiency in analyzing Protein-Protein Interaction (PPI) networks, identifying hub genes, and executing drug repurposing strategies, ensuring their organization remains at the forefront of precision medicine and systems pharmacology. The ability to navigate and interpret complex biological data structures is no longer optional it is the cornerstone of developing more effective, safer, and personalized treatment strategies in the rapidly evolving biotech and pharmaceutical landscape.
Course Duration
10 days
Course Objectives
Master the principles of Systems Pharmacology and Polypharmacology.
Develop proficiency in integrating multi-omics data for holistic network analysis.
Utilize AI and Machine Learning models to predict Drug-Target Interactions (DTIs).
Construct and analyze Protein-Protein Interaction (PPI) networks using advanced tools like Cytoscape.
Identify critical hub genes and functional modules associated with complex diseases.
Execute full Network Pharmacology workflows from data retrieval to pathway visualization.
Apply computational methods for effective drug repurposing and natural product discovery.
Understand the role of Pharmacogenomics in personalizing therapeutic regimens.
Implement Quantitative Systems Pharmacology (QSP) models for disease simulation.
Decipher mechanisms of action for Traditional Chinese Medicine (TCM) using network science.
Design rational combination therapy strategies to overcome drug resistance.
Conduct Pathway Enrichment Analysis (PEA) to uncover underlying disease mechanisms.
Integrate Structural Bioinformatics with network models.
Target Audience
Bioinformaticians.
Pharmaceutical Researchers.
Biotech Scientists.
Computational Biologists
Toxicology and Safety Assessment specialists.
Graduate Students in Pharmacology, Genomics, or Medicinal Chemistry.
Clinicians/Translational Researchers.
Data Scientists.
Course Modules
Module 1: Foundations of Systems Biology
The transition from reductionism to the systems approach in biology.
emergence, robustness, nonlinearity, and dynamic behavior.
Overview of the central dogma in a network context.
Case Study: Modeling metabolic flux in yeast using Constraint-Based Reconstruction and Analysis
Introduction to mathematical modeling in biological systems.
Module 2: Introduction to Network Pharmacology
The ΓÇ£network-target, multiple-componentΓÇ¥ philosophy and Polypharmacology.
Difference between systems biology and network pharmacology applications.
Core workflow.
Case Study: Analyzing the mechanism of action of Aspirin as a multi-target drug.
Defining network topology concepts.
Module 3: Data Retrieval and Curation (Omics Data)
Retrieving drug, compound, and target data from databases
Accessing disease-related genes and pathways
Data standardization and cleaning for heterogeneous multi-omics data sets.
Case Study: Retrieving and filtering bioactive compounds from a natural product library
Handling gene expression profiles for differential expression analysis.
Upon successful completion of this training, participants will be issued with a globally- recognized certificate.
Tailor-Made Course
We also offer tailor-made courses based on your needs.
Key Notes
a. The participant must be conversant with English.
b. Upon completion of training the participant will be issued with an Authorized Training Certificate
c. Course duration is flexible and the contents can be modified to fit any number of days.
d. The course fee includes facilitation training materials, 2 coffee breaks, buffet lunch and A Certificate upon successful completion of Training.
e. One-year post-training support Consultation and Coaching provided after the course.
f. Payment should be done at least a week before commence of the training, to FINESKILL TRAINING CENTER account, as indicated in the invoice so as to enable us prepare better for you.