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DSTC-01263 Online (e-LMS) Advanced Postgrad

Advanced Drug Designing: Traditional and In Silico

by - DSTC

Master Advanced Drug Designing: Traditional and In Silico in 4 weeks through hands-on, project-based online training with DSTC.

β˜…β˜…β˜…β˜…β˜… Be the first to review β€’ 4 Weeks Β· 40 hrs β€’ e-Certificate Included
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From β‚Ή7,500 + GST

Programme Parameters

Educational Level:
Advanced Postgrad
Duration & Workload:
4 Weeks (40 Hrs)
Delivery Mode:
Online (e-LMS)
Prerequisites:
β€’ Prior working knowledge of the field and comfort with core tools and quantitative reasoning.
β€’ A laptop or desktop with a stable internet connection.
β€’ Willingness to complete assignments and the capstone project.

About This Course

Drug Designing: Traditional and In Silico program offer a comprehensive exploration of the multifaceted process of drug discovery and development. These program blend traditional methods of drug design, involving chemical synthesis and experimental testing, with state-of-the-art computational approaches. Students delve into fundamental concepts of medicinal chemistry, pharmacology, and molecular biology, gaining insight into the principles governing drug-target interactions and structure-activity relationships. Every participant receives a verified e-Certificate and e-Marksheet from the Deep Science & Technology Consortium.

🎯 Program Aim

Drug Designing: Traditional and In Silico program offer a comprehensive exploration of the multifaceted process of drug discovery and development. These program blend traditional methods of drug design, involving chemical synthesis and experimental testing, with state-of-the-art computational approaches. Students delve into fundamental concepts of medicinal chemistry, pharmacology, and molecular biology, gaining insight into the principles governing drug-target interactions and structure-activity relationships.

πŸ“‹ Course Objectives

1. Put biotechnology techniques to work on real datasets and case studies.
2. Assemble a documented case study that evidences your applied capability.

πŸ‘₯ Who Should Enroll?

β€’ Master's and senior undergraduate students specializing in biotechnology
β€’ R&D engineers and working professionals applying biotechnology in industry
β€’ Academics and educators building research or teaching capacity in biotechnology

πŸš€ Key Learning Outcomes

β€’ Tangible, reproducible biotechnology work to show supervisors or employers.
β€’ A verified e-Certificate of competency and e-Marksheet from the Deep Science & Technology Consortium.

πŸ’Ž What You'll Gain

πŸŽ₯

Live & Recorded Sessions

Lifetime access to class recordings
πŸŽ“

e-Certificate on Completion

Cryptographically verified credential
πŸ’¬

Post-Programme Support

Direct access to mentors & council
πŸ’»

Hands-On Experience

Notebooks, real-world code & datasets

Curriculum Outline

Module 1 Medicinal Chemistry

Foundations of Rational Design

β€’ Structure-activity relationships and bioisosteric replacement
β€’ Lipinski and beyond: property-based design and ligand efficiency metrics
β€’ Hit, lead and candidate stages and the decisions at each gate

Module 2 Structure-Based

Target Structure and Docking

β€’ Target preparation, protonation states and binding-site definition
β€’ Molecular docking, scoring function limitations and pose plausibility
β€’ Structure-based optimisation guided by interaction analysis

Module 3 Ligand-Based

When No Structure Is Available

β€’ Pharmacophore modelling and shape-based screening
β€’ QSAR with a defined applicability domain
β€’ Similarity searching and scaffold hopping

Module 4 Dynamics

Simulation and Binding Energetics

β€’ Molecular dynamics for stability and induced fit
β€’ Binding free energy estimation and its cost-accuracy trade-off
β€’ Interpreting simulation results without overclaiming

Module 5 ADMET

Developability and Attrition

β€’ ADMET prediction and the endpoints where models remain unreliable
β€’ Toxicity alerts, off-target liabilities and hERG risk
β€’ Why compounds fail late, and what earlier analysis could have caught

Technical Specifications

ParameterRequirement
Covered Tool / PlatformAutoDock Vina
Covered Tool / PlatformPyRx
Covered Tool / PlatformSchrΓΆdinger Suite
Covered Tool / PlatformGROMACS
Covered Tool / PlatformChemDraw
Covered Tool / PlatformDiscovery Studio
Covered Tool / PlatformADMET Predictor

Frequently Asked Questions

This is an Online (e-LMS) course delivered via our e-LMS platform. You will have access to pre-recorded video lectures, reading materials, assignments, quizzes, and hands-on projects that you can complete at your own pace.

Yes! Upon successful completion of all modules, assignments, and assessments, you will receive an e-Certification along with an e-Marksheet from DSTC (DSTC) that you can showcase on your CV and LinkedIn profile.

Learners should have a foundational understanding of Drug Discovery & Design concepts. Familiarity with basic tools and programming is recommended.

You will have access to all course materials for the duration of 1 Month. The self-paced format allows you to learn according to your own schedule through our online learning management system.

Yes, dedicated mentor support is available throughout the course. You can reach out for doubt-clearing sessions, project guidance, and career advice related to Drug Discovery & Design. Our mentors are industry experts and experienced professionals. Enroll in Advanced Drug Designing: Traditional and In Silico today and take the next step in your professional journey. With expert-curated content, practical projects, and industry-recognized certification, this course is your gateway to mastering Drug Discovery & Design skills that matter.

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The proforma invoice is emailed here as well as to you.
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