File contents
name: 'aav-vector-design-agent'
description: 'AI-powered adeno-associated virus (AAV) vector design for gene therapy including capsid engineering, promoter selection, and tropism optimization.'
measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes.
allowed-tools:
- read_file
- run_shell_command
AAV Vector Design Agent
The AAV Vector Design Agent provides AI-driven design of adeno-associated virus vectors for gene therapy applications. It covers capsid selection and engineering, promoter/enhancer design, transgene optimization, and manufacturing considerations.
When to Use This Skill
When selecting optimal AAV serotype for tissue-specific targeting.
To design novel capsid variants with enhanced properties.
For optimizing transgene expression cassettes.
When predicting immunogenicity and neutralizing antibody escape.
To design liver-detargeted or CNS-tropic vectors.
Core Capabilities
Capsid Selection : Match AAV serotype to target tissue based on tropism profiles.
Capsid Engineering : Design modified capsids for enhanced transduction or immune evasion.
Promoter Design : Select and optimize tissue-specific or ubiquitous promoters.
Transgene Optimization : Codon optimization and regulatory element design.
Immunogenicity Prediction : Predict NAb binding and T-cell epitopes.
Manufacturing Assessment : Evaluate producibility and purification considerations.
AAV Serotype Tropism
Serotype
Primary Tropism
Clinical Use
AAV1
Muscle, CNS
Glybera (muscle)
AAV2
Broad (liver, muscle)
Luxturna (retina)
AAV5
CNS, liver, retina
Hemgenix (liver)
AAV8
Liver, muscle
Multiple trials
AAV9
CNS, cardiac, liver
Zolgensma (CNS)
AAVrh10
CNS, liver
CNS trials
AAVrh74
Muscle
Elevidys (muscle)
AAV-PHP.eB
CNS (mouse)
Research
Workflow
Input : Target tissue, therapeutic gene, patient population characteristics.
Capsid Selection : Rank serotypes by tropism profile match.
Capsid Engineering : Design modifications if needed (peptide insertion, point mutations).
Cassette Design : Optimize ITR-to-ITR expression cassette.
Immunogenicity Analysis : Predict NAb prevalence and T-cell epitopes.
Manufacturing Review : Assess production feasibility.
Output : Complete vector design with rationale.
Example Usage
User : "Design an AAV vector for liver-directed gene therapy in hemophilia B with low immunogenicity."
Agent Action :
python3 Skills/Gene_Therapy/AAV_Vector_Design_Agent/aav_designer.py \
--target_tissue liver \
--therapeutic_gene F9 \
--indication hemophilia_b \
--minimize_immunogenicity true \
--nab_escape true \
--promoter liver_specific \
--output aav_design/
Expression Cassette Components
5' ITR - [Promoter] - [5' UTR] - [Transgene] - [WPRE] - [PolyA] - 3' ITR
Packaging limit: ~4.7 kb between ITRs
Promoter Options :
Promoter
Type
Size
Application
CAG
Ubiquitous
1.7 kb
Strong expression
EF1α
Ubiquitous
1.2 kb
Constitutive
LP1
Liver-specific
0.5 kb
Hepatocyte targeting
hSyn
Neuron-specific
0.5 kb
CNS applications
MCK
Muscle-specific
0.6 kb
Myopathies
CMV
Ubiquitous
0.6 kb
High initial (silenced)
Capsid Engineering Strategies
Directed Evolution :
Error-prone PCR libraries
DNA shuffling
Selection in target tissue
Rational Design :
Peptide display (insertion in variable loops)
Point mutations for receptor targeting
Tyrosine-to-phenylalanine for stability
Machine Learning :
Sequence-function models
Generative models for novel capsids
Tropism prediction
Immunogenicity Considerations
Pre-existing NAbs :
Serotype
NAb Prevalence
AAV2
30-60%
AAV5
15-30%
AAV8
15-25%
AAV9
20-35%
Mitigation Strategies :
Serotype selection based on patient screening
Engineered NAb-evading capsids
Immunosuppression protocols
Plasmapheresis
AI/ML Components
Tropism Prediction :
CNN on capsid sequence
Cell-type specific transduction
Cross-species translation
Immunogenicity Modeling :
MHC binding prediction
T-cell epitope mapping
NAb epitope prediction
Expression Optimization :
Codon optimization algorithms
RNA structure prediction
miRNA target site avoidance
Manufacturing Considerations
Factor
Impact
Optimization
Capsid yield
Production cost
Sequence modifications
Empty/full ratio
Potency
Purification method
Aggregation
Stability
Formulation
DNA packaging
Transgene size
Cassette design
Prerequisites
Python 3.10+
Sequence analysis tools
Immunoinformatics packages
Structural biology tools
Related Skills
CRISPR_Design_Agent - For gene editing payloads
Protein_Engineering - For capsid design
RNA_Therapeutics - For alternative modalities
Regulatory Considerations
Biodistribution : Required for IND
Shedding : Vector in bodily fluids
Germline transmission : Gonadal presence
Integration risk : Random vs site-specific
Immunogenicity : Pre-existing and induced
Author
AI Group - Biomedical AI Platform
1 --- 2 name: aav-vector-design-agent 3 description: <!-- 4 --- 5 <!-- 6 # COPYRIGHT NOTICE 7 # This file is part of the "Universal Biomedical Skills" project. 8 # Copyright (c) 2026 MD BABU MIA, PhD <md.babu.mia@mssm.edu> 9 # All Rights Reserved. 10 # 11 # This code is proprietary and confidential. 12 # Unauthorized copying of this file, via any medium is strictly prohibited. 13 # 14 # Provenance: Authenticated by MD BABU MIA 15 16 --> 17 18 --- 19 name: 'aav-vector-design-agent' 20 description: 'AI-powered adeno-associated virus (AAV) vector design for gene therapy including capsid engineering, promoter selection, and tropism optimization.' 21 measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. 22 allowed-tools: 23 - read_file 24 - run_shell_command 25 --- 26 27 28 # AAV Vector Design Agent 29 30 The **AAV Vector Design Agent** provides AI-driven design of adeno-associated virus vectors for gene therapy applications. It covers capsid selection and engineering, promoter/enhancer design, transgene optimization, and manufacturing considerations. 31 32 ## When to Use This Skill 33 34 * When selecting optimal AAV serotype for tissue-specific targeting. 35 * To design novel capsid variants with enhanced properties. 36 * For optimizing transgene expression cassettes. 37 * When predicting immunogenicity and neutralizing antibody escape. 38 * To design liver-detargeted or CNS-tropic vectors. 39 40 ## Core Capabilities 41 42 1. **Capsid Selection**: Match AAV serotype to target tissue based on tropism profiles. 43 44 2. **Capsid Engineering**: Design modified capsids for enhanced transduction or immune evasion. 45 46 3. **Promoter Design**: Select and optimize tissue-specific or ubiquitous promoters. 47 48 4. **Transgene Optimization**: Codon optimization and regulatory element design. 49 50 5. **Immunogenicity Prediction**: Predict NAb binding and T-cell epitopes. 51 52 6. **Manufacturing Assessment**: Evaluate producibility and purification considerations. 53 54 ## AAV Serotype Tropism 55 56 | Serotype | Primary Tropism | Clinical Use | 57 |----------|-----------------|--------------| 58 | AAV1 | Muscle, CNS | Glybera (muscle) | 59 | AAV2 | Broad (liver, muscle) | Luxturna (retina) | 60 | AAV5 | CNS, liver, retina | Hemgenix (liver) | 61 | AAV8 | Liver, muscle | Multiple trials | 62 | AAV9 | CNS, cardiac, liver | Zolgensma (CNS) | 63 | AAVrh10 | CNS, liver | CNS trials | 64 | AAVrh74 | Muscle | Elevidys (muscle) | 65 | AAV-PHP.eB | CNS (mouse) | Research | 66 67 ## Workflow 68 69 1. **Input**: Target tissue, therapeutic gene, patient population characteristics. 70 71 2. **Capsid Selection**: Rank serotypes by tropism profile match. 72 73 3. **Capsid Engineering**: Design modifications if needed (peptide insertion, point mutations). 74 75 4. **Cassette Design**: Optimize ITR-to-ITR expression cassette. 76 77 5. **Immunogenicity Analysis**: Predict NAb prevalence and T-cell epitopes. 78 79 6. **Manufacturing Review**: Assess production feasibility. 80 81 7. **Output**: Complete vector design with rationale. 82 83 ## Example Usage 84 85 **User**: "Design an AAV vector for liver-directed gene therapy in hemophilia B with low immunogenicity." 86 87 **Agent Action**: 88 ```bash 89 python3 Skills/Gene_Therapy/AAV_Vector_Design_Agent/aav_designer.py \ 90 --target_tissue liver \ 91 --therapeutic_gene F9 \ 92 --indication hemophilia_b \ 93 --minimize_immunogenicity true \ 94 --nab_escape true \ 95 --promoter liver_specific \ 96 --output aav_design/ 97 ``` 98 99 ## Expression Cassette Components 100 101 ``` 102 5' ITR - [Promoter] - [5' UTR] - [Transgene] - [WPRE] - [PolyA] - 3' ITR 103 104 Packaging limit: ~4.7 kb between ITRs 105 ``` 106 107 **Promoter Options**: 108 | Promoter | Type | Size | Application | 109 |----------|------|------|-------------| 110 | CAG | Ubiquitous | 1.7 kb | Strong expression | 111 | EF1α | Ubiquitous | 1.2 kb | Constitutive | 112 | LP1 | Liver-specific | 0.5 kb | Hepatocyte targeting | 113 | hSyn | Neuron-specific | 0.5 kb | CNS applications | 114 | MCK | Muscle-specific | 0.6 kb | Myopathies | 115 | CMV | Ubiquitous | 0.6 kb | High initial (silenced) | 116 117 ## Capsid Engineering Strategies 118 119 **Directed Evolution**: 120 - Error-prone PCR libraries 121 - DNA shuffling 122 - Selection in target tissue 123 124 **Rational Design**: 125 - Peptide display (insertion in variable loops) 126 - Point mutations for receptor targeting 127 - Tyrosine-to-phenylalanine for stability 128 129 **Machine Learning**: 130 - Sequence-function models 131 - Generative models for novel capsids 132 - Tropism prediction 133 134 ## Immunogenicity Considerations 135 136 **Pre-existing NAbs**: 137 | Serotype | NAb Prevalence | 138 |----------|----------------| 139 | AAV2 | 30-60% | 140 | AAV5 | 15-30% | 141 | AAV8 | 15-25% | 142 | AAV9 | 20-35% | 143 144 **Mitigation Strategies**: 145 - Serotype selection based on patient screening 146 - Engineered NAb-evading capsids 147 - Immunosuppression protocols 148 - Plasmapheresis 149 150 ## AI/ML Components 151 152 **Tropism Prediction**: 153 - CNN on capsid sequence 154 - Cell-type specific transduction 155 - Cross-species translation 156 157 **Immunogenicity Modeling**: 158 - MHC binding prediction 159 - T-cell epitope mapping 160 - NAb epitope prediction 161 162 **Expression Optimization**: 163 - Codon optimization algorithms 164 - RNA structure prediction 165 - miRNA target site avoidance 166 167 ## Manufacturing Considerations 168 169 | Factor | Impact | Optimization | 170 |--------|--------|--------------| 171 | Capsid yield | Production cost | Sequence modifications | 172 | Empty/full ratio | Potency | Purification method | 173 | Aggregation | Stability | Formulation | 174 | DNA packaging | Transgene size | Cassette design | 175 176 ## Prerequisites 177 178 * Python 3.10+ 179 * Sequence analysis tools 180 * Immunoinformatics packages 181 * Structural biology tools 182 183 ## Related Skills 184 185 * CRISPR_Design_Agent - For gene editing payloads 186 * Protein_Engineering - For capsid design 187 * RNA_Therapeutics - For alternative modalities 188 189 ## Regulatory Considerations 190 191 1. **Biodistribution**: Required for IND 192 2. **Shedding**: Vector in bodily fluids 193 3. **Germline transmission**: Gonadal presence 194 4. **Integration risk**: Random vs site-specific 195 5. **Immunogenicity**: Pre-existing and induced 196 197 ## Author 198 199 AI Group - Biomedical AI Platform 200 201 202 <!-- AUTHOR_SIGNATURE: 9a7f3c2e-MD-BABU-MIA-2026-MSSM-SECURE -->
BioTender-max/awesome-bio-agent-skills/tree/main/skills/openclaw/aav-vector-design-agent commit ff5c925807
Frequently asked questions How do I install the Aav Vector Design Agent skill? Run npx skillmds@latest add biotender-max/aav-vector-design-agent in your terminal (requires Node.js), paste this page's agent-chat prompt into Claude, Cursor, or any MCP-connected agent, or download the SKILL.md file and copy it into your agent's skills directory.
What does the Aav Vector Design Agent skill do? <!-- It is listed under AI & ML on SkillMD.
Is Aav Vector Design Agent safe to use? This skill has not completed SkillMD's automated safety review yet. SkillMD never runs a skill's scripts for you; review the SKILL.md before installing.
Which AI agents work with Aav Vector Design Agent? This skill is tagged as working with Claude Code, Claude.ai, OpenAI Codex. SKILL.md is an open format, so most agents that read a skills directory can load it too.
Is Aav Vector Design Agent free to use? Yes. Installing skills from SkillMD is free, and the skill stays under its author's original license.
Who published Aav Vector Design Agent? BioTender-max (@biotender-max) published this skill. Their other Agent Skills are listed on their SkillMD profile.