Home→Courses→Advanced Toxicology and Safety Pharmacology Training Course
Biotechnology and Pharmaceutical Development
Advanced Toxicology and Safety Pharmacology Training Course
Introduction
The escalating complexity of New Chemical Entities (NCEs) and biologics in the pharmaceutical pipeline necessitates a paradigm shift in preclinical safety assessment. Traditional toxicology models, while foundational, are being rapidly augmented and in some cases, replaced by advanced methodologies. This includes a heavy reliance on Computational Toxicology, particularly Quantitative Knowledge-Activity Relationships (QKARs), and sophisticated In Vitro Assays that align with the 3Rs principles. Mastering this advanced domain requires a deep understanding of mechanistic toxicology, the application of systems biology for adverse effect prediction, and the seamless integration of safety pharmacology studies as outlined in ICH S7A and S7B guidelines to de-risk drug candidates and accelerate the transition from preclinical discovery to successful First-in-Human (FIH) clinical trials.
Advanced Toxicology and Safety Pharmacology Training Course is engineered to bridge the knowledge gap between established toxicological principles and the cutting-edge technologies driving modern drug safety and risk assessment. Participants will gain expertise in designing integrated Investigational New Drug (IND)-enabling safety packages, interpreting complex multi-omics data, and deploying novel biomarkers for early detection of organ-specific toxicities, such as drug-induced liver injury (DILI) and cardiotoxicity. By emphasizing regulatory strategy, Good Laboratory Practice (GLP) compliance, and the critical role of Translational Safety, the course ensures professionals can perform evidence-based toxicology and provide definitive, high-impact safety decisions that are crucial for successful product development across the pharmaceutical and chemical industries.
Programme Curriculum
Advanced Toxicology and Safety Pharmacology Training Course
Introduction
The escalating complexity of New Chemical Entities (NCEs) and biologics in the pharmaceutical pipeline necessitates a paradigm shift in preclinical safety assessment. Traditional toxicology models, while foundational, are being rapidly augmented and in some cases, replaced by advanced methodologies. This includes a heavy reliance on Computational Toxicology, particularly Quantitative Knowledge-Activity Relationships (QKARs), and sophisticated In Vitro Assays that align with the 3Rs principles. Mastering this advanced domain requires a deep understanding of mechanistic toxicology, the application of systems biology for adverse effect prediction, and the seamless integration of safety pharmacology studies as outlined in ICH S7A and S7B guidelines to de-risk drug candidates and accelerate the transition from preclinical discovery to successful First-in-Human (FIH) clinical trials.
Advanced Toxicology and Safety Pharmacology Training Course is engineered to bridge the knowledge gap between established toxicological principles and the cutting-edge technologies driving modern drug safety and risk assessment. Participants will gain expertise in designing integrated Investigational New Drug (IND)-enabling safety packages, interpreting complex multi-omics data, and deploying novel biomarkers for early detection of organ-specific toxicities, such as drug-induced liver injury (DILI) and cardiotoxicity. By emphasizing regulatory strategy, Good Laboratory Practice (GLP) compliance, and the critical role of Translational Safety, the course ensures professionals can perform evidence-based toxicology and provide definitive, high-impact safety decisions that are crucial for successful product development across the pharmaceutical and chemical industries.
Course Duration
10 days
Course Objectives
Upon completion, participants will be able to:
Apply current ICH S7A/S7B Guidelines to design a comprehensive core battery of safety pharmacology studies.
Critically evaluate and implement In Vitro Cardiotoxicity Assays, including the hERG and ion channel assessments.
Design and interpret studies using Physiologically Based Pharmacokinetic modeling for Toxicokinetics and dose selection.
Master the application of High-Throughput Screening and In Silico Methods for early toxicity prediction.
Utilize Systems Biology and Toxicogenomics to elucidate the Molecular Mechanisms of Toxicity
Perform comprehensive Drug-Induced Liver Injury risk assessment using advanced biomarkers and mechanistic data.
Integrate Safety Pharmacology and General Toxicology assessments for efficiency and resource reduction.
Develop strategies for assessing Immunotoxicity and Immunosafety of NCEs and biologics.
Apply Next-Generation Risk Assessment (NGRA) strategies beyond traditional animal models
Navigate Global Regulatory Affairs requirements for preclinical safety reporting
Implement quality assurance and adherence to Good Laboratory Practice (GLP) and best practices.
Identify and mitigate risks associated with Reproductive and Developmental Toxicology
Leverage Computational Toxicology (QKARs) for robust prediction of adverse drug reactions
Target Audience
Toxicologists and Safety Scientists
Safety Pharmacologists and Cardiovascular Safety Experts
Drug Metabolism and Pharmacokinetics (DMPK) Scientists
Regulatory Affairs Specialists focused on preclinical data
Preclinical Research Managers and Study Directors
Bioanalytical and Biomarker Scientists
Senior Researchers in Pharmaceutical and Chemical R&D
Postdoctoral Researchers and Advanced Masters Students in related disciplines
Course Modules
Module 1: Foundations of Advanced Mechanistic Toxicology
Principles of ADME and clearance pathways in toxicology.
Advanced Toxicokinetics.
Mechanisms of cellular injury and repair
Role of Phase I and Phase II metabolism in bioactivation and toxicity.
Case Study: The mechanism of acetaminophen-induced DILI and the role of CYP450 enzymes.
Module 2: Regulatory Toxicology and Global Harmonization
Detailed review of ICH M3(R2) and country-specific regulatory requirements
Design and execution of IND-Enabling General Toxicity Studies
Mastering the requirements and documentation for Good Laboratory Practice
Strategies for waiver requests and justifications for non-standard studies.
Case Study: Analyzing a successful/failed IND application due to gaps in regulatory toxicology data.
Module 3: Advanced Safety Pharmacology
In-depth review of ICH S7A and S7B requirements.
CVS Core Battery.
Functional Observation Battery (FOB) and automated behavior assessment.
Respiratory Core Battery.
Case Study: Investigating a drug withdrawn due to QT prolongation and the role of hERG testing.
Module 4: Cardiotoxicity and Ion Channel Safety
Non-hERG ion channels and their contribution to arrhythmia risk.
Advanced In Vitro Cardiotoxicity models.
Translating preclinical CVS findings to clinical risk
Role of biomarkers in preclinical injury detection.
Case Study: Designing an integrated CVS safety package for a novel anti-cancer agent targeting kinase signaling.
Module 5: Computational and Predictive Toxicology
Fundamentals of Quantitative Structure-Activity Relationship modeling.
Introduction to Quantitative Knowledge-Activity Relationship approaches.
Utilizing Machine Learning and Deep Learning for toxicity endpoint prediction.
The use of public databases in read-across.
Case Study: Employing QSAR tools to predict genotoxicity for a chemical series.
Module 6: Genotoxicity and Carcinogenicity Assessment
The Genetic Toxicology Core Battery
Understanding the transition from Genotoxicity to Carcinogenicity risk.
Alternatives to the 2-year rodent bioassay.
Epigenetic mechanisms in carcinogenesis and their assessment.
Case Study: Resolving a positive in vitro genotoxicity result using mechanistic follow-up studies.
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.