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Making Enzymes Resistant to Organic Solvents: From Trial and Error to AI Design
/en/news/Enzyme-tolerance-modification-for-organic-solvents
How to Achieve Enzyme Enantioselective Modification?
/en/news/Enzyme-enantioselective-modification
Enzyme Acid Resistance Engineering: Why Do Enzymes "Fear Acid"?
/en/news/Enzyme-acid-resistance-modification
Methods to Improve Enzyme Thermal Stability
/en/news/Methods-for-Enzyme-Thermal-Stability-Modification
A Complete Overview of Strategies to Boost Enzyme Activity
/en/news/Strategies-to-Boost-Enzyme-Activity
Methods for Modifying Enzyme Substrate Specificity: From 'Lock and Key' to Smart Design
/en/news/Methods-for-Modifying-Enzyme-Substrate-Specificity
Predicting the Combined Effects of Protein Mutations: Cracking the Epistasis
/en/news/Prediction-of-combined-effects-of-protein-mutations
A Complete Guide to High-Throughput Protein Screening
/en/news/High-throughput-protein-screening-plan
How to Mine Novel Enzymes from Databases: An AI-Driven Practical Guide
/en/news/How-to-mine-new-enzymes-from-databases
How to use AutoDock Vina for protein docking?Protein docking agent
/en/news/AutoDock-Vina-protein-docking
Predicting Protein Solubility Mutations Through Evolution: From Trial to AI Agents
/en/news/Protein-Solubility-Mutation-Prediction
Protein Expression Optimization Mutations: Why Can't We Boost Yields?
/en/news/Mutations-to-optimize-protein-expression
The Complete Guide to Analyzing Protein Surface Charges
/en/news/Protein-surface-charge-analysis
Recommended tools for predicting protein active sites!
/en/news/Protein-Active-Site-Prediction-Tool
DiffDock Protein-Ligand Docking: When to Use It?
/en/news/DiffDock-protein-ligand-docking
Complete Tutorial for Protein Phylogenetic Analysis workflow
/en/news/Protein-Phylogenetic-Analysis-Workflow
AlphaFold Protein Structure Prediction Tutorial
/en/news/AlphaFold-Protein-Structure-Prediction-Tutorial
How to look at AlphaFold structure results? From prediction to experimental decisions
/en/news/How-to-check-AlphaFold-structure-results
Recommended Protein Sequence Clustering Software: A Full Comparison of Online AI Platforms and Local Tools
/en/news/protein-sequence-clustering
How to Find Protein Conserved Sites? A Complete Guide from Sequence Alignment to Intelligent Analysis
/en/news/How-to-find-conserved-sites-in-a-protein
How to do multiple sequence alignment of proteins?
/en/news/multiple-sequence-alignment-of-proteins
Recommended Online Tools for Protein Sequence Function Prediction: How Can an All-in-One AI Platform Beat Traditional Toolchains?
/en/news/Tool-for-Protein-Sequence-Function-Prediction
Protein Sequence and Function Relationship: Three-Layer Mapping, Three Major Dilemmas, and New Solutions in the AI Era
/en/news/Relationship-between-protein-sequence-and-function
Protein Sequence Analysis Software Recommendations: More Than Just Queries, It's R&D
/en/news/software-for-protein-sequence-analysis
Protein G pre-packed column or Protein G agarose resin? Understand how to choose in 5 minutes
/en/news/Protein-G-prepacked-column
AAV Virus Vector Purification Media and AAV Affinity Chromatography Materials: The 'Purification Code' of Gene Therapy and New AI Solutions
/en/news/AAV-viral-vector-purification-resin
Fab purified Protein L resin and scFv purified Protein L resin: the "exclusive key" for antibody fragment purification
/en/news/Protein-L-resin-4-purification
Rabbit IgG Purification Media / Human IgG Purification Media / IgG Subclass Purification Media: The Complete Guide to Choosing
/en/news/IgG-purification-resins
How to choose AAV resins? This article explains the differences and selection of AAV affinity resins, AAV chromatography resins, and AAV purification resins
/en/news/AAV-purification-resin
Kappa Light Chain Purification Resins / Kappa Light Chain Affinity Resins: Principles, Applications, and Selection Guide
/en/news/kappa-light-chain-purification-resin
Complete Guide to IgG Purification with Protein G: Choosing Multi-Species IgG Purification Media and Practical Tips for Mouse/Rat IgG Purification
/en/news/IgG-purification-resin
Protein A pre-packed columns, chromatography columns, capture steps, and process development
/en/news/Protein-A-prepacked-column-chromatography-columns
Protein L Affinity Ligands: Why Can They Capture Antibodies That Protein A Cannot?
/en/news/Protein-L-ligand-Protein-L-affinity-ligands
Protein L Resin vs. Recombinant Protein L Resins: Filling the Key Piece in Antibody Fragment Purification
/en/news/Protein-L-affinity-chromatography-resin
What is a Protein G ligand? Principles, parameters, and selection guide for Protein G affinity ligands
/en/news/Protein-G-affinity-ligand
Protein G Resin (Affinity/Chromatography) Principles, Parameters, and Applications|Guide to Choosing Recombinant Protein G Resin
/en/news/protein-g-resin
Antibody downstream purification resins: A full view of Protein A resins from industrial to commercial use
/en/news/process-scale-Protein-A-resin
pH 5 Elution Protein A Resins: Can They Solve the Purification Challenges of Acid-Sensitive Antibodies?
/en/news/pH-5-elution-Protein-A-resin
A Deep Dive into China Protein A Resins: The Road to Replacing Imported Affinity Chromatography Resins
/en/news/China-made-affinity-chromatography-resin
A complete guide to purifying monoclonal antibodies, bispecific antibodies, Fc fusion proteins, and ADCs using Protein A resin
/en/news/Protein-A-resin-for-antibody-purification
Low-pH Sensitive Antibody Purification Resins: When Antibodies "Fear Acid," How Does the Process Break Through?
/en/news/resin-for-acid-sensitive-antibody-purification
Customized Chromatography Media and Affinity Ligands: The Personalized Upgrade Path for Biopharmaceutical Purification Media
/en/news/custom-affinity-ligand-resin
Fc affinity resin; Fc-binding ligand; Fc region antibody purification resin from molecular recognition to industrial applications
/en/news/Fc-affinity-resin-Fc-binding-ligand
Low-Aggregating Protein A Resins: A Solution to the Aggregate Problem for Bispecific and Multispecific Antibodies?
/en/news/low-aggregation-Protein-A-resin
High pH elution of Protein A resins: the end of 'low acid shock' in antibody purification?
/en/news/high-pH-elution-Protein-A-resin
The Five Generations of Affinity Ligand Evolution: From Natural Extraction to Protein Large-Scale Model Design
/en/news/affinity-ligand
Antibody Capture/Monoclonal Antibody Purification/IgG Purification: The Core Role of Protein A Media in Antibody Production
/en/news/Protein-A-resin
Mild pH Elution of Protein A Resins: A Flexible Revolution in Antibody Purification
/en/news/mild-pH-elution-Protein-A-resin
In-Depth Look at GMP-Grade Chromatography Media: Why Antibody Capture Media are the 'Cost Bottleneck' of Biologics?
/en/news/GMP-grade-chromatography-resin
Low shedding / high flow / high throughput: The 3D performance upgrade of next-gen Protein A resins
/en/news/protein-a
Enzyme Mining: The Lifeblood of Green Biomanufacturing
/en/news/Enzyme-mining
Enzyme Directed Evolution: Can AI End the Era of Trial and Error?
/en/news/Enzyme-directed-evolution
Analysis and Application of Directed Protein Evolution Technology
/en/news/Directed-evolution-of-proteins
Protein design, what exactly is it?
/en/news/Protein-design
Overview of Protein Engineering
/en/news/Proteins-engineering
Protein Function Prediction: Smart Decoding from Sequence to Function
/en/news/Protein-Function-Prediction
High-capacity Protein A resin and alkali-resistant Protein A resin double-wheel drive: AI-driven technological evolution
/en/news/high-capacity-NaOH-resistant-Protein-A-resin
Bioprocess chromatography resin downstream purification resin biopharma chromatography resin process-scale chromatography resin: How AI is reshaping high-end purification consumables development
/en/news/biopharma-chromatography-resins
Selection Logic for MabSelect SuRe Alternatives & MabSelect PrismA X Alternatives – Cytiva Protein A Resin Alternatives
/en/news/mabselect-suremabselect-prisma-xcytiva-protein-a-resin-alternative
In-Depth Look at Affinity Chromatography Resins/Media/Purification Materials: How AI Boosts Protein Purification Efficiency
/en/news/affinity-chromatography-resin
From Natural Protein to Industrial Tool: The Industrial Evolution of Protein A Affinity Ligands
/en/news/Protein-A-affinity-ligand
Next-Generation Protein A Chromatography Media: High Load, Alkali-Resistant, and the AI-Driven Path to Domestic PrismA Alternatives
/en/news/Protein-A-chromatography-media
Industrial enzymes: Green manufacturing biocatalysts, AI dry-wet closed-loop reshaping local industry patterns
/en/news/Industrial-enzymes
The technological upgrades and industry value of protein a affinity
/en/news/protein-a-resin
MabSelect PrismA Alternative : Technology Evolution and Localization of Protein A Affinity Resins
/en/news/MabSelect-PrismA-alternative-Protein-A-Resin
AI protein is quietly rewriting the fundamental logic of the biotech industry
/en/news/ai-protein-tech
No animal-derived ligands: How is the 'safety lock' of biopharmaceuticals made?
/en/news/No-animal-derived-ligands
What Will Scientific Research Look Like in the coming 5 years? AI for Science Is Offering Answers
/en/news/ai-research-tool
How can pre-packed columns become the efficient core tool for bio-purification experiments?
/en/news/pre-packed-columns
From Laboratory to Industrialization: Can Antibody Optimization Platforms Break Through the Multi-Objective Synergy Challenge?
/en/news/Antibody-Optimization-Platform
Understanding the Hierarchy of Protein Journals: How AI Protein Research is Changing Academic Publishing Rules?
/en/news/protein-journal
Customized Ligands: Making a 'Tailor-Made' Key for Cells
/en/news/Custom-ligands
Protein Science Research: Decoding the Basic Language of Life
/en/news/Protein-Science-Research
Molecular Dynamics Platform: From Computational Tools to AI-Native Simulation Base
/en/news/Molecular-Dynamics-Platform
Behind the Treasure of WAIC2026: A Post-2000 'Genius Teen' AI Crossover Started with Family Bonds
/en/news/waic2026-ai-shanghai-exhibition
AI Protein Research: From 'Reading Heavenly Books' to 'Writing Code,' What Is Life Science Going Through?
/en/news/AI-Protein-Research
Engineered Ligands: How Does Molecular Recognition Move from 'Discovery' to 'Creation'?
/en/news/Engineered-ligand
Can Molecular Simulation Platforms Become the "Digital Microscope" for Biomolecular R&D?
/en/news/Molecular-simulation-platform
AI Artificial Proteins: Unlocking Programmable Life Molecules and Transforming the Biomanufacturing Industry
/en/news/AI-artificial-protein
Load Capacity: The 'Molecular Loading' Engineering of Biomedicine
/en/news/Load-capacity
Can AI Virtual Screening Compress Industrial Enzyme R&D Cycles from Years to Months?
/en/news/AI-virtual-screening
Biological proteins: the invisible cornerstone of hundreds of billions in biomanufacturing, now being rewritten by AI
/en/news/Biological-protein
Protein Conjugation: Finding a 'Functional Partner' for Your Protein
/en/news/Protein-conjugation
AI Drug Discovery Platforms: Breaking the "Double Ten" Law of New Drug Development
/en/news/Drug-R&D-AI-Platform
Protein A affinity chromatography: the 'gold standard' for antibody purification and its new evolution powered by AI
/en/news/protein-a-ProteinA
Virus-specific ligands: How to find the 'unchanging' parts on ever-mutating viruses?
/en/news/virus-specific-ligand
Biological algorithm platform: What's the answer for scaling up synthetic biology?
/en/news/Biological-Algorithm-Platform
When artificial proteins become a national strategy, who will speed up the R&D?
/en/news/artificial-protein
AAV Protein: The 'Nano Courier' of Gene Therapy
/en/news/aav-protein
AI Zero-Shot Prediction: How Can Protein Engineering Move Beyond Trial-and-Error Mutations?
/en/news/Zero-shot-prediction
Tag-purified ligand: giving the protein a 'precise handle'
/en/news/Tag-purified-ligand
How did proteins evolve from gifts of nature to AI-designed 'molecular assets'?
/en/news/ai-protein
Catalytic Activity: The Core Measure of How Well an Enzyme Works
/en/news/Catalytic-activity
Protein Functionalization: Giving proteins the 'superpowers' they naturally don't have
/en/news/Protein-functionalization
Say goodbye to blind trial and error! How can AI accurately activate glycotransferase activity?
/en/news/Glycosyl-Transfer-Activity
Custom Antigen Ligands: Painting a Precise Portrait of 'Unruly' Targets
/en/news/Custom-antigen-ligand
High-Affinity Antibodies: More Than Just 'Binding Tightly'
/en/news/High-affinity-antibody
Protein optimization: from trying it out to calculating it
/en/news/Protein-optimization
Hydrolytic Activity: From "Molecular Scissors" to the AI-Powered Precision Design Revolution in Enzymology
/en/news/Hydrolyzed-Energy
Protein Interaction Prediction: How AI is Reshaping the Fundamentals of Life Sciences?
/en/news/Protein-Interaction-Prediction
Antibody Screening – Out of billions of molecules, which ones are worth keeping?
/en/news/Antibody-screening
How can we use AI process optimization to break through the bottlenecks in scaling up biomanufacturing?
/en/news/AI-Process-Optimization
Antibody discovery: How to rethink the search logic for tens of billions of molecules?
/en/news/Antibody-discovery
How can protein structure prediction become a business engine in the AI era?
/en/news/Protein-structure-prediction
Can the AI human-machine collaboration model reshape the writing and mentoring system for bioinformatics papers?
/en/news/Bioinformatics-paper-coaching
From Trash Bottles to Everything: 11 Transformations of rPET
/en/news/rpet-productions
When Antibody Purification Hits an 'Exception' — The Limits of Platform Processes and How to Handle Them
/en/news/Antibody-purification
Traditional Process Development Relies on Experience—What Does AI-Driven Process Development Rely On?
/en/news/AI-Process-development
Full-Chain Decoding of Enzymatic Recycled Polyester: When AI Gives 'Molecular Scissors' Industrial-Scale Efficiency
/en/news/Enzymatic-recycled-polyester
Diagnostic Development – What Determines How Far Biomarkers Go from Papers to the Clinic
/en/news/Diagnostic-development
Breaking the bottleneck: AI microbial models kick off a new era of 'chip'-style biomanufacturing
/en/news/AI-Strain-Large-Model
From bottle flakes to pallets, how is AI reshaping the six forms of the rPET industry chain?
/en/news/rPET
Heat Resistance Evolution: Proteins' 'Ultimate Challenge'
/en/news/Heat-resistance-protein
What makes affinity enrichment spot it in the 'vast crowd' of proteins at a glance?
/en/news/Affinity-enrichment
Recycled ethylene glycol (rEG); AI is rewriting the recycling story of waste plastics.
/en/news/rEG
Process Development – Translating an industrial scale between milligrams and kilograms
/en/news/Process-development
Breaking Free from Fragmented R&D: AI Research Agents as Dedicated Executors in Protein Design
/en/news/AI-Research-Agent
Regenerated Purified Terephthalic Acid (r-PTA): How Are Waste Polyesters Reborn?
/en/news/r-pta
The Nature of Homologousness: How Proteins Are Like Family and Where Science Draws the Line
/en/news/The-Nature-of-Homology
Plastic-degrading enzymes: when the shoulder blades start showing 'white pollution.'
/en/news/Plastic-degrading-enzyme
A century of effort: Big-molecule drugs are finally making the switch from injections to pills
/en/news/Switch-from-injection-to-oral
Avoiding Patents: Mapping Innovation Boundaries in Protein Sequences
/en/news/Patent-avoidance
Claimed to be 'all-around' but no one dares to recycle it? The ultimate problem of TPEE has been quietly solved by AI
/en/news/TPEE-Thermoplastic-Polyester-Elastomer
From Waste to High Value: The Advanced Path of Recycled Copolyester PETG, PCTG, PCT, and PCTA
/en/news/PETG-PCTG-PCT-PCTA
Purification Efficiency—From 'Black Box Guesswork' to 'Rational Design': A New AI Paradigm
/en/news/Purification-efficiency
Research AI tools—are they really just 'tools'?
/en/news/ai-research-tool-agent
rPET, rPBT, rPTT, rPEN: An AI-Driven Polyester Recycling Revolution
/en/news/rpet-rpbt-rptt-rpen
When Proteins Act as "Smart Carriers": What Is the Future of Localized Drug Administration
/en/news/Local-medication
How does non-specific binding affect the signal-to-noise ratio in detection? AI-assisted optimization approaches
/en/news/non-specific-binding
Protein Sequence Search: When 'Search' Becomes 'Design'
/en/news/Protein-sequence-search
Protein Stability: How the Code of Life Stands Up to Environmental Challenges?
/en/news/Protein-stability
Can one-stop protein development turn fragmented trial-and-error into a ‘conversation equals closed loop’?
/en/news/One-station-protein-development
Protein research enters the 'programmable era': How is AI cracking the life's code unsolved for 50 years?
/en/news/Protein-research
Engineered Proteins: AI-Driven Life Function Remodeling
/en/news/Engineered-protein
Building a Standardized Deployment and Optimization Framework for Large Language Models
/en/news/AI-Protein-large-language-Model-PLLMs
Affinity ligand protein Development: Who Can Break Through the Limitations of Natural Ligands?
/en/news/Ligand-protein-development
Protein Mutants: From Nature's 'Accidents' to Humanity's 'Toolbox'
/en/news/Protein-mutant
A Paradigm Shift in Protein Design – From 'Fishing in the Sea' to 'Precise Customization'
/en/news/ai-driven-proteins-design
Protein purification got you frustrated? What you're missing isn't experience, it's an AI.
/en/news/ai-Protein-purification
Can online consultations with biology experts really replace the 'old pros' in the lab?
/en/news/Biology-expert-online-consultation
How is a research AI assistant reshaping the overall approach to exploring biology?
/en/news/Research-AI-Assistant
Protein AI: A Key Step Towards Industrialization
/en/news/Protein-AI-Agent
Directed Evolution: From Random Mutations to Smart Design
/en/news/protein-Directed-evolution
Affinity Chromatography: A Critical Validation Tool for AI-Driven Protein Design
/en/news/ai-affinity-chromatography-protein
instrumental enzymes: From Natural Selection to AI Customization
/en/news/tool-enzyme
The Efficiency Revolution at Protein Research Companies
/en/news/Proteins-Research-Design-Company
AI-driven protein prediction is ushering in an era of precise drug design
/en/news/ai-Protein-prediction
Protein research software is changing the game in biological research
/en/news/Protein-research-software
Protein De Novo Design: ushering in the era of programmable molecules of life
/en/news/protein-de-novo-design
The AI Era of Protein Engineering: How to Achieve Efficient Industrial Application
/en/news/Protein-engineering
Bio R&D Agents: The R&D Revolution from Trial and Error to Prediction
/en/news/Biotech-R&D-agent
Bioinformatics Research Tools: From Data Flood to Intelligent Interpretation
/en/news/Bioinformatics-research-tools
Precise Protein Function Prediction: AI’s Breakthrough from Sequence to Function Map
/en/news/ai-Accurate-Protein-Prediction
The Next Station for Protein Databases: From Sequence Storage to Intelligent Design Engine
/en/news/proteins-databank-database
Few-shot learning empowers efficient protein research and development in the biomedical field
/en/news/Few-shot-learning
AI for Science Platforms: Resolving the Efficiency-Innovation Paradox
/en/news/Scientific-Research-AI-Platform
Is it time to upgrade your protein search tool?
/en/news/Proteins-search-tool
Enzyme Design Platforms Reshape the Infrastructure of Biomanufacturing
/en/news/Enzyme-design-platform
New Approach to Target-Binding Antibody Development
/en/news/Target-binding-antibody
Artificial Intelligence, the 'New Partner' of Life Sciences
/en/news/AI-4-Life-Sciences
AI-Driven Enzyme Engineering Platform: From Trial and Error to Computation
/en/news/AI-Assisted-Enzyme-Engineering-Platform
Protein Function Tags: 'Smart Badges' Reshaping Biomanufacturing
/en/news/Proteins-function-label
Protein Engineering: On the Ruins of Failure, We Learned to Design Life
/en/news/proteins-engineering
Intelligent Scientific Research Platform Iteration: Breaking Laboratory Silos and Creating a Super Connector for Research
/en/news/Intelligent-Research-Platform-AI
The Evolution of Academic Literature Platforms: How AI Is Turning “Literature Grunt Work” into “Thinking Time”
/en/news/Biological-Paper-Study-Platform
Protein sequences: From decoding to design, how is AI reshaping the code of life?
/en/news/protein-sequence
Protein Dataset: Infrastructure Bottlenecks and Breakthrough Paths in the Era of Protein Intelligence
/en/news/Protein-dataset-AI
Protein Function Prediction and Engineering in the AI Era
/en/news/ai-protein-prediction-design
How does an automated experimental platform reshape the future of biomanufacturing?
/en/news/Automated-biological-experimentation-platform
Specific Proteins: The 'Dedicated Action Agents' in Life
/en/news/Specific-protein
Breaking Down the Walls of the Laboratory: How AI Reshapes the Platform Logic of Biological Research
/en/news/Biological-Research-tool-software
How AI Reshapes Biological Research — From 'Finding a Needle in a Haystack' to 'Precision Engineering'
/en/news/ai-Biological-research
Mutation Design: The Precise Engineering of Rewriting the Code of Life
/en/news/AI-Mutation-Design
Enzyme Engineering Enters the Era of Intelligent Design: An Industrial Evolution of an Enzyme
/en/news/ai-enzyme-engineering
Synthetic Biology: When Life Becomes Programmable Source Code
/en/news/Synthetic-Biology
From Blind Trial and Error to Precise Prediction: How Mutation Forecasting is Rewriting the Rules of Protein Design
/en/news/ai-Mutation-Prediction
Biopharmaceutical AI is rewriting the 'double ten rule' of new drug development
/en/news/Biomedical-AI
In the AI era, what 'innate challenges' does enzyme design actually aim to solve?
/en/news/ai-enzyme-design-discovery
Innovative drug development is standing at the crossroads of a paradigm shift
/en/news/Innovative-drug-development
Protein Large Models: From Understanding Protein Language to Building R&D Intelligent Agents
/en/news/protein-model-ai
De Novo protein design, a revolution in writing the new language of life
/en/news/de-novo-protein-design-ai
De novo design: AI is rewriting the underlying rules of protein creation
/en/news/de-novo-designai
Protein database, hiding the next 'singularity moment' of bio-manufacturing
/en/news/protein-database-ai-design
AI Pharmaceutical: The Decade-Long, Billion-Dollar Dilemma is Being Rewritten Line by Line by Code
/en/news/ai-for-medicine
Protein De novo design using MatwingsVenus
/en/news/de-novo-protein-design
Matwings Launches AI-Designed Alkali-Stable Protein A, Redefining the Boundaries of Affinity Chromatography
/en/news/protein-a-ai
How exactly do you 'mine' protein sequences? We tried this company's conversational AI.
/en/news/Protein-sequence-model
AI for Protein: When Artificial Intelligence Learns to 'Create Things,' Protein Design Welcomes Its iPhone Moment
/en/news/ai-for-protein-iphone
AI-Directed Evolution: Unlocking the Future Code of Protein Design
/en/news/ai-protein-design
Protein A Mild Elution Media: How AI Tackles Challenges in Biopharmaceutical Purification?
/en/news/protein-aai-1protein-a
AI Enzyme Mining: The Technological Leap from Traditional Screening to Intelligent Design
/en/news/ai-enzyme-mining
The Next Battlefield of AI Protein Prediction: Making Protein Design as Simple as Chatting
/en/news/ai-Protein-predictions
Protein Structure Prediction Tools: From 'Single-Point Prediction' to 'Full-Chain Agents'
/en/news/protein-structure-prediction
Dialogue is R&D: How a Protein Innovation Platform Makes Protein Design Accessible
/en/news/ai-protein-engineering
Protein Sequence Design Tools: From the Three-Piece Set to AI Intelligent Agent Dry-Wet Closed Loop
/en/news/ai-protein-sequence
Protein Toolbox: Installing a 'Thinking Operating System' for Protein Design
/en/news/ai-biology-agent-lab-box
AI Protein Laboratory: When Life Sciences Meet Artificial Intelligence, You Can Also Become the 'Hand of God'
/en/news/ai-biology-agent
Conversational wet-dry closed loop, an protein experiment automation platform is defining the future
/en/news/Integrated-Bio-Smart-Manufacturing-Platform
Research Agent: The 'GPT Moment' in the Scientific Community Has Arrived
/en/news/AI-FOR-SCIENCE
AI Automated Experimental Factory: Conversational Wet-Dry Closed Loop for Protein Design
/en/news/ai-auto-lab
How do scientists conduct AI protein design?
/en/news/ai-how-to-research-new-protein
Interview with China Economic Weekly: To succeed in biomanufacturing, first learn how to "converse" with AI.
/en/news/ai--matwingsvenus
Professor Hong team at Shanghai Jiao Tong University has created a protein "toolbox" to design functional proteins using AI.
/en/news/ai
Shanghai Jiao Tong University releases "Venus," a protein design model that uses AI to train "hexagonal warriors."
/en/news/shanghai-jiao-tong-university-releases-venus-a-protein-design-model-that-uses-ai-to-train-hexagonal-warriors
Matwings Technology MatwingsVenus™ – a conversational protein R&D closed-loop agent across dry-lab and wet-lab workflows – has been officially launched!
/en/news/matwingsvenusai