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In-Silico Vaccine Design Certification Course

Learn to Design Vaccines Using Real Bioinformatics Tools — No Lab or Coding Required

A beginner-friendly, self-paced course designed for students and professionals in biotechnology, microbiology, pharmacy, and life sciences.

Ratings:

Students Enrolled: 1173

Created By: Dr. Prekshi Garg

Price:

Original price was: ₹6,990.Current price is: ₹999.
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This Online Course Includes

Why This Course Matters

In-silico vaccine design is transforming how vaccines are discovered — faster, cheaper, and without lab limitations.

By mastering it, you’ll gain:

About The Course

The In-Silico Vaccine Design Certification Course teaches you how to design vaccines using reverse vaccinology, bioinformatics databases, and immune epitope prediction — all without needing a lab or prior coding knowledge.

You’ll learn to:

Format: Fully online, self-paced & beginner-friendly.
🎓 Includes a verifiable certificate upon completion.

What You’ll Be Able To Do

By the end of this course, you will:

Who Is This For

This course is ideal for:

✅ No programming experience or lab setup required.

Course Content Overview

Certification

You’ll receive a professional, verifiable certificate with your name, date, and course name. Perfect for academic portfolios, job applications, and higher studies.

Get Certified in Vaccine Design — No Lab or Coding Needed
🎓 Learn in-demand skills, build your career, and get certified today.

🕒 Limited Seats Left |💡 Instant access | 🔒 Secure checkout

Course Content

    • Overview 00:09:08
    • 1.1 Introduction to In-Silico Vaccine Design 00:11:20
    • 1.2 B-Lymphocytes 00:07:35
    • 1.3 T-Lymphocytes 00:16:38
    • 1.4 Natural Killer Cells & Macrophages 00:09:08
    • Overview 00:10:30
    • 2.1 Organs involved in Immune Response 00:14:30
    • 2.2 Spleen, Lymph Nodes and MALT 00:06:49
    • 2.3 Secondary Lymphoid Organs 00:20:01
    • Overview 00:04:58
    • 3.1 Immunology and Immunity 00:13:27
    • 3.2 Elements of Innate Immunity 00:15:09
    • 3.3 Chemical Barriers 00:17:28
    • Overview 00:06:43
    • 4.1 Cellular Defences 00:17:23
    • 4.2 Inflammatory Barriers 00:16:42
    • 4.3 Guide to Innate Immunity and Its Elements 00:13:08
    • Overview 00:05:13
    • 5.1 Adaptive Immunity and Its Features 00:22:27
    • 5.2 Active and Passive Immunity 00:21:43
    • 5.3 Immune Response to Adaptive Immunity 00:12:12
    • Overview 00:05:47
    • 6.1 Interreletionship Between Innate and Adaptive Immune Response 00:20:02
    • 6.2 Difference Between Innate and Adaptive Immune Response 00:19:11
    • 6.3 Antigens 00:14:13
    • Overview 00:03:56
    • 7.1 Antigens and Immunogens 00:12:49
    • 7.2 Requirements for Immunogenecity 00:23:32
    • 7.3 Haptens 00:16:03
    • Overview 00:05:12
    • 8.1 Adjuvant 00:14:49
    • 8.2 Antigen-Antibody Interactions 00:14:53
    • 8.3 Affinity and Avidity 00:13:51
    • Overview 00:04:48
    • 9.1 Cross Reactivity 00:14:09
    • 9.2 Factors Affecting Ag-Ab Reactions 00:19:23
    • 9.3 Antigen Recognition in T-Cells vs B-Cells 00:15:36
    • Overview 00:05:26
    • 10.1 T-dependent Antigens 00:14:00
    • 10.2 T-independent Antigens 00:14:45
    • 10.3 T-dependent vs T-independent Antigens 00:16:35
    • Overview 00:05:53
    • 11.1 Introduction to Major Histocompatibility Complex (MHC) 00:05:09
    • 11.2 MHC-I Genes 00:20:26
    • Overview 00:04:27
    • 12.1 Class II MHC Genes 00:14:00
    • 12.2 Difference Between Class-I and Class-II MHC 00:12:25
    • 12.3 Class III MHC Genes 00:16:39
    • Overview 00:06:36
    • 13.1 Important Aspects About MHC 00:11:58
    • 13.2 Antigen Presentation by MHC 00:16:21
    • 13.3 Antigen Processing and Presentation 00:30:27
    • Overview 00:03:52
    • 14.1 Introduction to Bioinformatics 00:18:42
    • 14.2 Application of Bioinformatics 00:19:04
    • 14.3 Databases in Bioinformatics 00:18:08
    • Overview 00:02:18
    • 15.1 Databases in Bioinformatics 00:17:22
    • 15.2 File Formatcs in Bioinformatics 00:16:48
    • 15.3 National Center for Biotechnology Information 00:19:11
    • Overview 00:02:07
    • 16.1 Uniprot 00:22:46
    • 16.2 Protien Data Bank (PDB) 00:22:09
    • Overview 00:04:22
    • 17.1 Introduction to In-silico Vaccine Design 00:16:16
    • 17.2 Real Life Examples of In-silico Vaccine Design 00:15:33
    • 17.3 In-silico Methods in Vaccine Design 00:17:39
    • Overview 00:04:12
    • 18.1 What is Data Retrieval? 00:16:34
    • 18.2 How to Do Literature Study 00:16:16
    • 18.3 Downloading Protien Sequence in Fasta Format 00:15:03
    • Overview 00:04:54
    • 19.1 What is Antigenicity Prediction? 00:14:17
    • 19.2 Vaxijen 2.0 00:15:33
    • 19.3 ANTIGENpro 00:16:12
    • Overview 00:05:06
    • 20.1 What is Allergenicity Prediction 00:16:05
    • 20.2 AllerTop and AllerFP 00:17:26
    • 20.3 AllerCatPro 00:17:09
    • Overview 00:03:33
    • 21.1 What is Toxicity Prediction 00:24:31
    • 21.2 ToxinPred 00:24:17
    • Overview 00:03:30
    • 22.1 Introduction to Epitope prediction 00:12:35
    • 22.2 Bepipred Linear Epitope Prediction and Chou Fasman Beta Turn Prediction 00:14:17
    • 22.3 Emini Surface accessibility scale and Karplus and Schulz Flexibility Scale 00:21:25
    • Overview 00:04:12
    • 23.1 Kolaskar and Tongaonkar Antigenicity Scale and Parker Hydrophilicity 00:16:24
    • 23.2 T-Cell Epitope Prediction 00:16:21
    • 23.3 IEDB and NetCTL 00:12:22
    • Overview 00:03:24
    • 24.1 Bepipred and Chou and Fasman Method 00:21:10
    • 24.2 Kolaskar and Tangaonkar, Parker Hydrophilicity, Emini Prediction Method 00:22:18
    • Overview 00:04:07
    • 25.1 Prediction of T-Cell epitopes using IEDB 00:20:29
    • 25.2 Prediction of T-Cell epitopes using NeCTL 1.2 00:19:23
    • Overview 00:06:32
    • 26.1 Overlapping Epitopes selection, Antigenicity, Allergenicity and Toxicity Screening 00:12:06
    • 26.2 Construction of Vaccine Primary Structure 00:30:00
    • Overview 00:05:00
    • 27.1 Physicochemical Properties of Vaccine Construct 00:17:00
    • 27.2 Protparam and SOLpro Tool 00:26:13
    • Overview 00:03:30
    • 28.1 Construction of Vaccine Secondary Structure 00:23:06
    • 28.2 PSIPRED Result Analysis 00:11:04
    • 28.3 Tertiary Structure Prediction and Validation 00:13:27
    • 28.4 Analyzing Molecular Docking Results 00:17:14
    • Overview 00:04:17
    • 29.1 Introduction to Molecular Docking 00:14:18
    • 29.2 Receptor Preparation 00:15:12
    • 29.3 Active Site Prediction and Molecular Docking 00:27:27
    • 29.4 Analyzing Molecular Docking Results 00:09:18

Get Certified in Vaccine Design — No Lab or Coding Needed
🎓 Learn in-demand skills, build your career, and get certified today.

🕒 Limited Seats Left |💡 Instant access | 🔒 Secure checkout

I had a fantastic experience with the In-Silico Vaccine Design Certification Course! It was a perfect blend of theory and hands-on practice, allowing me to deepen my understanding of computational vaccine design. The course covered everything from basic immunoinformatics to advanced techniques. The step-by-step guidance and real-world examples helped me apply the concepts effectively. 

Navdeep Kaur

Shoolini University

Reviews

5

5
8 ratings
  • 5 stars8
  • 4 stars0
  • 3 stars0
  • 2 stars0
  • 1 stars0
  1. Vaccine Designing
    5

    Highly resourceful information provided regarding all the tools available online for vaccine designing. Will be of great use in research as well as in academics

  2. Great course
    5

    Its a great course for beginners

  3. Jonata Savio A SangmaMay 22, 2025 at 12:45 PM
    In-Silico Vaccine Design
    5

    Very Informative and precise

  4. Excellent Explanation and hands on.
    5

    Thanks for the valuable knowledge that has been provided to me. This course and the mentor is excellent in the serve the knowledge and hands on for the vaccine development and design.

  5. Explanation
    5

    Good explanation and easy to understanding, concepts and tools are also easy to use

  6. Excellent
    5

    The contents of the course were excellent. It covered different aspects of immunology and immunoinformatics.

  7. In silicon vaccine design
    5

    Very informative

  8. Excellent Course, Perfect Blend of Theory and Hands-On Practice
    5

    I had a fantastic experience with the In-Silico Vaccine Design Certification Course! It was a perfect blend of theory and hands-on practice, allowing me to deepen my understanding of computational vaccine design. The course covered everything from basic immunoinformatics to advanced techniques. The step-by-step guidance and real-world examples helped me apply the concepts effectively. Highly recommended for anyone looking to advance their skills in bioinformatics and vaccine development!

FAQs

Is the certificate valid?

Yes — issued by BioGrademy with your name, date, and program title.

Can I get support during the course?

Yes. You can reach out to our team via WhatsApp or email if you have questions about course content or access.

How long do I get access to the course?

Lifetime access. You can learn at your own pace and return anytime.

How do I access the course after I enroll?

You’ll get instant access via email after payment. The course is hosted online and available 24/7 on mobile or desktop.

What if I don’t finish the course right away?

No problem! You get lifetime access, so you can learn at your own pace and return anytime — even months later.

Do I need any lab setup or coding experience?

Nope! The course is fully online and beginner-friendly.

Is this course recognized by universities or companies?

BioGrademy is a recognized education provider. Students have used our certificates to strengthen academic applications and job interviews.

Is this course suitable for absolute beginners in bioinformatics?

Yes. You don’t need prior experience with coding, lab work, or bioinformatics. The course is beginner-friendly and walks you through every concept step-by-step.

I had a fantastic experience with the In-Silico Vaccine Design Certification Course! It was a perfect blend of theory and hands-on practice, allowing me to deepen my understanding of computational vaccine design.

Navdeep Kaur

Shoolini University

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