💚 We are really motivated to making the world more sustainable Our Director of Technical Development, Mercedes Diez Cocero, made a great pitch presentation at the Valencia Digital Summit #VDS last week and showed our solutions for biomolecule production. "Our factories are plants, They grow fast, they have low cost, and they are very easy to sacale up. Behind our plants it's our patented genetic techbology our plant virus-derived systems for protein expression, advanced #CRISPR gene editing for plant reprogramming, and artificial intelligence for protein sequence improvement." ____ Think Green. Make it in Plants VDS | Startup Valencia | Parc Científic de la Universitat de València | BIOVAL Clúster BIO Comunidad Valenciana | AgrotecUV
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Do you know that scientists have been able to clone monkeys? Beyond that, we're on the verge of completing eradicating diseases from a genetic level using biotechnology! CRISPR is a method used to manipulate the human genome; it uses cas-9 as scissors to cut and paste genes. Thanks to biotechnology we do not just have the solution to diabetes we can even accelerate of humans by cloning growth hormones. The possibilities of this emerging tech is boundless; from deciding the specific characteristics we want to see in our children, we can also solve hereditary diseases such as high blood pressure. Apart from it's application in health; biotech can furthermore help to reduce world hunger by helping in the preservation and multiplication of crops using biotechnological methods. Get to know more on Zoom, 24th June, 2024: https://lnkd.in/eQ-zq8EH Meeting ID: 728 402 7147 Passcode: An132V #CRISPR #Innovation2024 #Biotechnology #FortizoTechnologies
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Let’s connect and drive change together! 🚀 #Biotechnology #Innovation #FutureOfScience #AI 🌿 Biotechnology: Shaping the Future! 🌿 Biotechnology is indeed transforming various sectors, including healthcare, agriculture, and sustainability. The possibilities are vast, and the impact is already being felt. CRISPR gene editing, for instance, holds tremendous promise for treating genetic diseases, while bioengineering innovations are paving the way for novel therapeutics, sustainable biofuels, and eco-friendly agricultural practices.
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The journey through our competition, organized by us at #CEBioForum, has been a compelling experience! Delving into the topic "What excites me about biotechnology?" 🧬 has ignited lots of passionate answers, here are some of them: ✅ “I'm fascinated by discovering the secrets of nature, gene by gene.” ✅ “For me, the most fascinating thing is that I can create the future and influence people's health. To me, that's incredible.” ✅ “It fascinates me that what we do can help people.” ✅ “I love biology. Like my mother.” ✅ “For me, biosimilar medicines are magical.” What excites young minds the most is the profound impact biotechnology can have on shaping the future and improving human health. From unraveling genetic secrets to crafting life-saving medications, each step in this field feels like a leap towards bettering lives. Below, we attach a photo of our competition winners🏆 Congratulations 🎉 Together we can create the future of biotechnology and inspire each other! #CEBioForum #Biotechnology #Innovation #Healthcare #Competition
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Do you know that scientists have been able to clone monkeys? Beyond that, we're on the verge of completing eradicating diseases from a genetic level using biotechnology! CRISPR is a method used to manipulate the human genome; it uses cas-9 as scissors to cut and paste genes. Thanks to biotechnology we do not just have the solution to diabetes we can even accelerate of humans by cloning growth hormones. The possibilities of this emerging tech is boundless; from deciding the specific characteristics we want to see in our children, we can also solve heriditary diseases such as high blood pressue. Apart from it's application in health; biotech can furthermore help to reduce world hunger by helping in the preservation and multiplication of crops using biotechnological methods. Get to know more on Zoom, 24th June, 2024: https://lnkd.in/eQ-zq8EH Meeting ID: 728 402 7147 Passcode: An132V #CRISPR #Innovation2024 #Biotechnology #FortizoTechnologies
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Do you know that CRISPR technology offers transformative benefits in biomedical science and biotechnology? It allows precise gene editing to correct genetic defects, potentially curing disorders like cystic fibrosis and muscular dystrophy. CRISPR also accelerates drug discovery by creating accurate disease models and identifying new therapeutic targets. It also enables personalized medicine through tailored treatments based on genetic makeup. Additionally, CRISPR can engineer disease-resistant crops, addressing food security, and create sustainable biofuels, aiding environmental conservation. Its versatility and precision make CRISPR a cornerstone of future scientific advancements. Do check out our latest article on this interesting topic !!! 😉 My heartfelt thanks to HoS Phelim Yong and co-author Yap Wei Hsum 🎓 for making it possible 😏
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In a groundbreaking study, researchers from the Innovative Genomics Institute at the University of California, Berkeley, has harnessed CRISPR/Cas9 technology to improve photosynthesis efficiency. Photosynthesis, the process by which plants convert sunlight into energy, is fundamental for plant growth and food production, while other studies have used CRISPR/Cas9 gene editing to knock out or decrease the expression of genes, this is the first unbiased gene-editing approach to increase gene expression and downstream photosynthetic activity. The team focused on specific genes involved in photosynthesis. By precisely modifying these genes, they significantly increased plant productivity. Plants and crops exhibit remarkable plasticity, adapting to significant DNA changes over millions of years. Using this plasticity of plants biologists harnessed the flexibility to make rapid improvements for efficient growth and climate adoption these genetically enhanced plants exhibited higher rates of carbon dioxide fixation and improved utilization of light energy. The implications of this research extend beyond the lab, potentially revolutionizing agriculture and addressing global food security challenges. #Photo-Revolution #RnD_Cell #Tuesday_Trivia
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AI & CRISPR: A Biotech Revolution! 🧬 Exciting times ahead in biotechnology! Scientists are now harnessing the power of Artificial Intelligence (AI) to craft novel proteins that could tackle major global challenges like reducing greenhouse gases and innovating new materials. Alongside, CRISPR technology is making precise edits in genes, pushing the boundaries of genetic engineering further than ever before. 🔬 This synergy of AI and gene editing holds transformative potential for the future of biotechnology. Imagine bioengineered crops that can thrive in arid conditions or new enzymes that can break down plastics! ⚠️ But, as promising as it sounds, this technology is still budding and not without risks. The complexity of biological systems means there’s a chance of unforeseen consequences. 💭 What's your take on this revolutionary blend of AI and gene editing? Are the benefits worth the risks? Drop your thoughts below! 👇 #AI #GeneEditing #Biotechnology #Innovation #FutureOfScience #CRISPR #ArtificialIntelligence #ScienceDiscussion #EcoSolutions #MaterialScience
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🌱 Exciting developments are sprouting in the field of biotechnology! 🧬 From groundbreaking gene editing techniques to innovative drug discoveries, the possibilities seem endless. As a passionate advocate for the intersection of science and technology, I'm thrilled to witness the impact biotech is making on our world. 💡 One area of particular interest is the advent of CRISPR technology, revolutionizing genetic engineering with its precision and efficiency. Imagine the potential for treating genetic diseases or creating disease-resistant crops! 🔬 Moreover, the fusion of AI and biotech is unlocking new avenues for drug discovery and personalized medicine. With machine learning algorithms analyzing vast datasets, researchers can pinpoint potential treatments with unprecedented speed and accuracy. 🌍 The implications extend far beyond the lab, influencing sectors like healthcare, agriculture, and environmental conservation. It's an exhilarating time to be part of the biotech community, where each breakthrough brings us closer to solving some of society's most pressing challenges. Let's continue to collaborate, innovate, and push the boundaries of what's possible in biotechnology! 💪 👉 connect for B.tech biotechnology notes & classes #Biotech #Innovation #ScienceAndTechnology #Biotech #Genetics #CRISPR #GeneEditing #DrugDiscovery #AIinBiotech #PrecisionMedicine #HealthTech #AgriTech #EnvironmentalScience #Innovation #ScienceAndTechnology
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I've been thinking a lot about the future of our world, and it's clear to me that biotechnology is at the heart of it. 🌍♥️ From CRISPR gene editing to personalized medicine 💊✂️, the advancements we're seeing are nothing short of amazing. The potential to tackle global challenges in health, agriculture, and beyond is incredible. 💯 It’s an exciting time to be part of this field, and I can’t wait to see where it leads us. Let’s keep pushing the boundaries of what's possible! 📈📈 #Biotechnology #FutureOfScience #Innovation
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#DNA Modification Using CRISPR/Cas9 Becomes Accessible The modern stage of genetic engineering is curious in many ways, but the most interesting is that even today, almost everyone can access CRISPR/Cas9 kits to create their own genetically modified organism. Their price is around $100 now in specialised shops. Not for modifying ourselves, right? Yet. But modifying bacteria is interesting, too. CRISPR/Cas9 technology utilises short RNA strands that can be artificially synthesised to match specific genome regions, connected with Cas9 proteins that cut DNA at this point, enabling a specific genetic sequence to be inserted there via genetic recombination. Therefore, a kit contains the CRISPR/Cas9 complex, plus the gene that should be inserted. While early experiments with microorganism modification were usually limited by making them glow, nowadays genetically modified bacteria can produce chemical substances, recycle waste, break toxic substances, improve agricultural production, and potentially do many other things. All these applications aren’t used widely yet, but their time is coming, as more and more biotech startups arise. It means it’s the right time to realise your idea with modified living organisms. With all these advancements, the entry-level in the #biotech business is now lower than ever, while continuing to fall. You can not only develop your genetic engineering idea, such as creating waste-cleaning bacteria, but verify it with minimal investments. And that’s where valuable products can be born. Connect with #Atlantix to turn your ideas into stable and profitable businesses, moving from concepts to patented products that change everything! #science #biology
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