Accelerating Aptamer Discovery and Optimization for Diagnostics and Therapeutics

AI-Powered In Silico Aptamer Design

Welcome to Neoncorte Bio, a pioneering AI-powered biotechnology company transforming the field of aptamer discovery and development. By integrating advanced artificial intelligence with extensive expertise in molecular biology, our team accelerates the design, selection, and optimization of aptamers customized for diagnostics, therapeutics, and biosensor applications. With deep experience in both AI and biotechnology, we provide innovative, data-driven aptamer solutions tailored to meet the specific requirements of your research or industry projects, enabling faster, more efficient outcomes in key areas such as academic research, drug discovery, and clinical diagnostics.
In Silico Aptamer Design Services

Aptamer Design Services

We leverage AI to streamline the aptamer design process, offering custom solutions for developing aptamers with high specificity and affinity. Whether you need aptamers for diagnostics, therapeutics, or biosensors, our AI algorithms accelerate discovery while reducing time and costs.
  • AI-Driven Sequence Prediction and Optimization
  • Custom High-Affinity Aptamers for Specific Targets
  • Fast Turnaround Time with Minimal Experimental Data


Applications of AI-Designed Aptamers

Therapeutics
Diagnostics
Research Tools

Why Choose AI-Powered Aptamer Design?

Why Choose Neoncorte Bio’s AI-Powered Solutions?
Rapid Discovery
Our proprietary AI algorithms scan millions of aptamer candidates in silico, identifying the best binders faster than traditional methods
Cost Efficiency
Reduced experimental costs by narrowing down promising candidates before entering the lab
Customization
Tailored aptamer designs for specific therapeutic, diagnostic, or research purposes
Iterative Optimization
Continual improvement of aptamer accuracy through lab feedback and machine learning

How Our AI-Powered Platform Works

How Does Our In Silico Aptamer Design Platform Work?
  • 1
    Data Collection
    We begin by gathering data on your protein target and functional requirements.
  • 2
    AI Model Training
    Our machine learning models simulate interactions between aptamer candidates and your target.
  • 3
    Candidate Selection
    High-confidence candidates are selected based on binding affinity, stability, and specificity.
  • 4
    Lab Validation
    Validated aptamers are fine-tuned and optimized based on experimental feedback.
Frequently Asked Questions (FAQs)
Request a Demo of Our In Silico Aptamer Design Tool

Neoncorte Bio

Where AI Meets Biotechnology
Neoncorte Bio leads the way in integrating artificial intelligence with in silico aptamer design. Our team of experts in computational biology, bioinformatics, and machine learning is committed to advancing innovation in aptamer discovery. By leveraging cutting-edge AI-driven models, we offer highly efficient, cost-effective solutions that push the boundaries of aptamer design. Our approach accelerates the identification and optimization of aptamers, allowing for rapid and precise targeting of molecular structures, whether for therapeutic, diagnostic, or research purposes. With Neoncorte Bio, in silico aptamer design reaches new heights of performance and innovation.

Publications

Explore our contributions to the forefront of biotechnology and artificial intelligence. From AI-driven enzyme engineering to deep learning applications in data analysis, our publications highlight innovative solutions to complex challenges in molecular biology and computational science.
  • Modification of natural enzymes to introduce new properties and enhance existing ones is a central challenge in bioengineering. This study is focused on the development of Taq polymerase mutants that show enhanced reverse transcriptase (RTase) activity while retaining other desirable properties such as fidelity, 5′-3′ exonuclease activity, effective deoxyuracil incorporation, and tolerance to locked nucleic acid (LNA)-containing substrates.
  • The transcriptomic data are being frequently used in the research of biomarker genes of different diseases and biological states. The most common tasks there are the data harmonization and treatment outcome prediction. Both of them can be addressed via the style transfer approach. Either technical factors or any biological details about the samples which we would like to control (gender, biological state, treatment, etc.) can be used as style components.
  • List of all Neoncorte Bio publications dedicated to Molecular Biology, Biotechnology, Artificial Intelligence and Artificial Neural Networks, published mostly by Nikolay Russkikh, CEO of Neoncorte Bio

Our Expertise in Action

With extensive experience in AI applications and software engineering tailored to the life sciences, we specialize in solving complex challenges and delivering innovative solutions for our customers. Our work demonstrates a deep understanding of cutting-edge technologies and their application in the real world.
Here are examples of the types of projects we have successfully delivered:
  • Automated NGS Data Analysis:
    Designed a production-grade solution for the automated processing, annotation, and analysis of Next-Generation Sequencing (NGS) data.
  • Single-Cell Data Integration:
    Built state-of-the-art tools for integrating multimodal single-cell data, achieving recognition for technical excellence.
  • Metagenomic Classification Algorithms:
    Developed advanced methods for classifying sequencing reads in metagenomics research.

  • High-Throughput Image Processing Pipelines:
    Engineered an efficient pipeline to process millions of sequencing images with exceptional accuracy.
  • Cell Counting via AI:
    Created a computer vision solution for precise cell counting in microphotography images, streamlining data analysis.
Get in touch with our team
Phone: +1-503-754-3958
Email: contact@neoncorte.com