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de novo protein / mAB design

Accelerate Discovery With ML/AI-Driven, Structure-First Antibody Engineering

Kemp Protein’s De Novo Antibody Design Services combine advanced computational protein engineering, ML/AI-guided sequence generation, and industry-leading analytical expertise to rapidly create novel antibody candidates with optimal affinity, stability, and manufacturability.

Whether you require a new lead, humanization-free novelty, or custom multi-specific antibody formats, we deliver FTO-friendly, rationally engineered candidates ready for expression and validation.


Service Overview

ML/AI-Driven Antibody Generation

Using next-generation machine learning models, we design novel, non-redundant antibody sequences tailored to your target epitope.
Capabilities include:

  • Target-specific CDR design

  • Germline selection and constraint-based engineering

  • Multi-objective optimization for affinity, developability, and low immunogenicity

  • Rapid exploration of thousands of sequence candidates

Structural Modeling & In Silico Validation

We integrate physics-based and deep-learning approaches to predict and optimize binding and stability:

  • High-resolution structural modeling (AlphaFold-class tools)

  • Antigen–antibody docking and scoring

  • In silico affinity maturation

  • Aggregation, PTM, and liability screening

  • Fc and format modeling (IgG, Fab, scFv, VHH, bispecifics)

Prototype Expression & Purification

(Available as a standalone or integrated workflow)

  • CHO, HEK293, or Pichia pastoris expression

  • Affinity and tag-based purification

  • Analytical development and QC

    • SEC-HPLC

    • Binding analytics (SPR/BLI/ELISA)

    • Antibody isotyping, conjugation, or amplification as needed

Functional Assay Support

  • Antigen binding & competition assays

  • Cell-based potency and mechanism-of-action assays

  • Stability and developability testing


Formats We Support

We design and deliver a wide range of antibody modalities:

  • Monoclonal antibodies (full-length IgGs)

  • Fab, scFv, and VHH nanobodies

  • Bispecific & multi-specific antibodies

  • Antigen-binding fragments (Fab, F(ab’)₂)

  • Anti-idiotype antibodies

  • ADCs (antibody–drug conjugate-compatible scaffolds)


Deliverables

Every project includes a comprehensive engineering package:

  • AI-designed antibody sequences (10–200+ variants)

  • 3D models and docking files

  • Annotated developability and liability reports

  • Ranked shortlist of lead candidates

  • Optional recombinant production and analytical validation

  • Assay-ready purified antibody material (optional)


Applications

Our de novo design platform is ideal for:

  • Novel or challenging targets lacking existing antibodies

  • Projects requiring IP-unique and FTO-supportive sequences

  • Bispecific and non-canonical antibody engineering

  • Rapid early discovery or expansion of existing antibody pipelines

  • ADC precursor design with defined conjugation sites


Why Partner With Us?

  • Fully integrated AI + Wet Lab workflow
    From design to expression, analytics, and assay verification—under one roof.

  • High-throughput in silico screening
    Evaluate thousands of variants before a single protein is produced.

  • Quality-first development (Kemp Proteins–style rigor)
    Robust analytical and purification methods ensure stable, well-characterized prototypes.

  • Modern AI-native engineering (ProtIQ.ai–style innovation)
    Advanced neural models trained on massive protein–antigen datasets.

  • Flexible project models
    Design-only or full expression & validation packages.


Typical Project Timeline

  • 2–4 weeks: Target assessment, ML/AI design, in silico scoring

  • 3–6 weeks: Recombinant expression, purification & analytics

  • 6–10 weeks: Full validation package with functional assays

(Timelines vary by format, complexity, and expression system.)


Get Started

Whether you need a fresh lead, a full antibody engineering campaign, or AI-driven sequence optimization, our team delivers rapid, reliable, and manufacturable candidates tailored to your therapeutic goals.

Request a Quote
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