OmniGenics

OmniGenics Contact information, map and directions, contact form, opening hours, services, ratings, photos, videos and announcements from OmniGenics, Biotechnology company, 6 october, Giza.

🧬OmniGenics bridges Biology, Technology & Research through practical education, bioinformatics solutions, and collaborative research opportunities. 🎓🔬 Empowering students, researchers & biotech professionals to turn knowledge into real-world impact.

🧬 A look inside our CADD journey!Last week, we officially started our Computer-Aided Drug Design (CADD) Course and here’...
27/08/2026

🧬 A look inside our CADD journey!

Last week, we officially started our Computer-Aided Drug Design (CADD) Course and here’s a little glimpse from our first session.🔬💻
We’re excited to see how our participants will turn what they’re learning into real projects and practical applications throughout the course. 🚀
✨The learning has started now we’re looking forward to seeing what YOU will create!

Can’t wait to see the projects, ideas, and discoveries from our participants.🧬💻

🧬 Gene Editing Series | Lesson 2From Random Mutations to Precise Gene EditingGene editing didn’t start with CRISPR.Befor...
26/08/2026

🧬 Gene Editing Series | Lesson 2

From Random Mutations to Precise Gene Editing

Gene editing didn’t start with CRISPR.

Before CRISPR-Cas9 became the dominant gene-editing technology, scientists developed several approaches to modify DNA — each generation becoming more specific, programmable, and efficient.

🔬 1. Homologous Recombination
One of the early approaches for making targeted genetic changes, relying on DNA sequence similarity to introduce modifications.

🧬 2. Zinc Finger Nucleases (ZFNs)
Engineered DNA-binding proteins were coupled to a nuclease domain to create targeted DNA breaks.

🎯 3. TALENs
TALENs improved targeting flexibility by using customizable DNA-binding domains linked to a nuclease.

⚡ 4. CRISPR-Cas9
Then came CRISPR — transforming gene editing by making targeting largely programmable through a guide RNA.

The evolution can be summarized as:

Homologous Recombination → ZFNs → TALENs → CRISPR

Each technology solved limitations of the previous approaches and brought us closer to precise, accessible, and programmable genome editing.

And that’s where CRISPR changed the game. 🧬

Next lesson: ZFNs — How did the first generation of programmable nucleases work?

🧬 Why Should You Learn About the Pangenome?For years, we relied on a single reference genome to study human genetics.But...
24/08/2026

🧬 Why Should You Learn About the Pangenome?
For years, we relied on a single reference genome to study human genetics.

But here’s the problem:
One genome cannot represent everyone.🌍
The human pangenome gives us a broader view by representing genomic sequences and variation across multiple individuals and populations.

Why does that matter?
🔬 Better variant detection
🌍 More representative genomics
🧬 A deeper understanding of genetic diversity
🧪 Improved disease research
💊 New opportunities for precision medicine
🤖 New challenges and opportunities for bioinformatics & AI

The future of genomics isn't just about having a better reference.
It’s about having a more complete picture of human genetic diversity.

And that’s why pangenomics matters. 🚀
Would you like to learn more about the Human Pangenome?

🧬 JOIN OUR PANGENOME COURSE
Learn the Human Pangenome from fundamentals to applications
🎓 Certified by the University of Konstanz

📩 Registration is now open :
https://lnkd.in/e6E3zc2A

🧬 **LESSON 1 | Gene Editing & DNA Repair**What if we could edit DNA like correcting a typo? 👀That’s the basic idea behin...
24/08/2026

🧬 **LESSON 1 | Gene Editing & DNA Repair**

What if we could edit DNA like correcting a typo? 👀

That’s the basic idea behind gene editing but there’s a fascinating part that often gets overlooked:

👉 After DNA is cut, the cell has to repair it.

And that repair process can completely change the outcome.

🔬 Here’s the simple concept:

1️⃣ Target the DNA
Gene-editing tools such as **CRISPR-Cas9** are designed to recognize a specific DNA sequence.

2️⃣ Make the cut
Cas9 creates a targeted break in the DNA.

3️⃣ Let the cell repair it
The cell activates its natural DNA repair machinery.

And this is where things get interesting…

🧩 NHEJ can quickly repair the break but may introduce small changes.

🎯 Homology-directed repair (HDR) can use a template to make a more precise change.

So remember:

CRISPR makes the cut.
DNA repair determines the outcome. 🧬

This connection between gene editing + DNA repair is fundamental to understanding modern genome engineering, gene therapy, and many emerging cancer applications.

📚 Lesson 1 is just the beginning.

What should we explore next?

👇 CRISPR mechanisms, DNA repair pathways, or gene editing applications in cancer?

🚀 We’re Hiring | Sales SpecialistKnow someone who’s passionate about Technology, Engineering, or Web Development and has...
19/08/2026

🚀 We’re Hiring | Sales Specialist

Know someone who’s passionate about Technology, Engineering, or Web Development and has a talent for communication and sales?

Omnigenics is expanding! We’re looking for a motivated Sales Specialist to join our growing team.

💻 Who can apply?
Students or graduates from:

* Computer Science
* Web Development
* Software Engineering
* Engineering & related fields

✨ What we’re looking for:
🤝 Strong communication & negotiation skills
📈 Ability to build client relationships and achieve sales targets
🎯 Self-motivated, organized, and results-driven
🌍 Good command of English
💡 Interest in technology, education, and digital solutions

💼 Position: Sales Specialist
⏱️ Type: Part-time
💰 Payment: Commission-based
🌍 Location: Remote

If you’re confident, communicative, and excited about connecting people with innovative technology solutions, we’d love to hear from you!

📩 To apply, send your CV to: [email protected]

Join Omnigenics and grow with us! 🚀

🧬 3 Practical Courses. 3 Paths. One Bioinformatics Journey. 🚀مهتم بـ Bioinformatics, Drug Discovery, Genomics,أو Computa...
18/08/2026

🧬 3 Practical Courses. 3 Paths. One Bioinformatics Journey. 🚀

مهتم بـ Bioinformatics, Drug Discovery, Genomics,أو Computational Biology ؟
اختار الـpath اللي يناسب هدفك وابدأ تطور مهاراتك بشكل عملي 👇

💊 01 | CADD – Computer-Aided Drug Design
• Molecular Docking
• PyMOL
• Pharmacophore Modeling
• Homology Modeling

👨‍🏫 **Instructor: Dr. Mazen Soliman**
Biochemist, Academic Researcher & M.Sc. Scholar at the Egypt-Japan University of Science and Technology (E-JUST).

🧬 02 | RNA-Seq Data Analysis
• RNA-Seq Analysis
• Quality Control
• Differential Expression
• DESeq2
• Data Visualization

👨‍🏫 **Instructor: Dr. Abeer Ali**
Academic Researcher at the National Research Center

🔬 03 | Pangenome & Genomics
• Pangenomes
• Genome Variation
• Structural Variants
• Graph-based Genomes
• Population-scale Analysis

👩‍🔬 **Instructor: Dr. Omnia A. Elnasser**
Bioinformatics Specialist, Researcher & Teaching Assistant, with experience in genomics, bioinformatics, and research.

🎓 Certificate
يحصل المشاركون في الكورسات الثلاثة على**شهادة معتمدة من Omnigenics (Germany) in collaboration with Universität Konstanz.

🎁 Group Discount

👥 **Register 3 or more people**
→ الشخص الذي يجمع المجموعة يحصل على **20% OFF**
→ وكل فرد من الأربعة يحصل على **10% OFF**

📩 Interested?
ابعتلنا اسم الكورس اللي مهتم بيه، وهنبعتلك:
📚 المحتوى الكامل
💰 السعر
📝 تفاصيل التسجيل

🤍Choose your path. Build your skills. Advance your research.

📲 WhatsApp Community:
https://chat.whatsapp.com/IygVlMzHL2x6UljRBJ2HYV?s=cl&p=i&ilr=4&amv=1

📘 Facebook:
https://www.facebook.com/share/1BVTSJFPA4/?mibextid=wwXIfr

💻 BUILD. CODE. CREATE.Join our Front-End Web Development Course and learn how to build modern, responsive, and user-frie...
18/08/2026

💻 BUILD. CODE. CREATE.

Join our Front-End Web Development Course and learn how to build modern, responsive, and user-friendly websites from the ground up through hands-on practice and real-world projects. 🚀

✨ What you’ll learn:
* HTML & CSS
* JavaScript
* Responsive Web Design
* React.js & Angular
* Tailwind CSS
* Interactive Web Interfaces
* Git & GitHub
* Practical Front-End Projects

👨‍💻 Instructor: Ahmed Abdelnasser
Web Developer

🎯 Target Students: Engineering students, including Computer Science and related engineering majors, who are interested in Web Development.

💻 Suitable for: Beginners and students looking to build practical Front-End skills and become job-ready for entry-level opportunities in Web Development.

🎓 Accredited by the University of Konstanz, Germany.

📅 Starts: 15 September

🚀 Build your skills. Create real projects. Start your journey in Web Development.

📩 Registration is open secure your spot now!
https://forms.gle/PhuSr3pzp4unzxdx8

🚀 Register Now & Don’t Miss Out!Join our **Pangenome Graphs Course** and earn a **certificate from the University of Kon...
18/08/2026

🚀 Register Now & Don’t Miss Out!

Join our **Pangenome Graphs Course** and earn a **certificate from the University of Konstanz** 🎓🧬

📅 Starting **5 September**
🔥 Limited seats available!

Secure your spot and take your bioinformatics skills to the next level.

🧬 Pangenome Graphs

Explore the next generation of genome representation and learn how pangenome graphs capture genetic diversity beyond the limitations of a single reference genome.

🔬 Course Highlights
• Fundamentals of pangenomes and graph-based genomes
• Genome variation and structural variants
• Graph-based sequence alignment and mapping
• Pangenome graph construction and analysis
• Population-scale genomic analysis
• Practical applications in genomics and bioinformatics

👩‍🔬 Instructor: Dr. Omnia Abdelnasser
📅 Starts: 5 September
📚 Duration: 6 Sessions
💵 Fees for Egyptians : 1200 LE
💴 Fees for Non -Egyptians: 30$

Take your genomics skills beyond the linear reference genome and explore how pangenome graphs are shaping modern genomic analysis.

📩 Registration is now open :
https://lnkd.in/e6E3zc2A

Secure your spot now before all seats are taken! 🧬

🧬 CRISPR: MYTH vs. REALITYThink you already know CRISPR?Let’s test that. 👀❌ MYTH: CRISPR simply “cuts DNA.”✅ REALITY: CR...
15/08/2026

🧬 CRISPR: MYTH vs. REALITY

Think you already know CRISPR?
Let’s test that. 👀

❌ MYTH: CRISPR simply “cuts DNA.”

✅ REALITY: CRISPR systems can do much more than create DNA breaks — modern approaches can edit individual bases, rewrite sequences, or regulate gene expression.

❌ MYTH: Cas9 can target any DNA sequence.

✅ REALITY: Target selection depends on factors such as the guide sequence, PAM requirements, and genomic context.

❌ MYTH: Designing the guide RNA is the whole experiment.

✅ REALITY: Successful gene editing also depends on delivery, cellular repair, editing efficiency, specificity, and validation.

❌ MYTH: CRISPR is one single technology.

✅ REALITY: CRISPR is an expanding toolbox that includes Cas9, Cas12a, base editors, prime editors, CRISPRi, and CRISPRa.

🧬 The future of gene editing isn't just about cutting DNA.
It's about making precise, controlled, and meaningful changes to the genome.

Want to learn CRISPR from the fundamentals to modern gene-editing technologies?

Follow Omnigenics and stay tuned for the next lessons.

Address

6 October
Giza

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