HTG - Therapeutics Technology
From Therapeutics
The initial focus of HTG Therapeutics will be to identify development candidates targeting RNA or RNA modifying proteins, which could be relevant in areas such as oncology, immunology, diabetes, and rare disease. HTG’s EdgeSeq and Epi-EdgeSeq technology is a foundational element in our drug discovery programs. It enables a more highly resolved view of the transcriptome, especially aberrations in physiological states leading to disease. Utilizing recent advancements in data science, we seek to create better therapeutic candidates by assimilating RNA profiling directly into the drug discovery process.
Product Details
Advanced full transcriptome profiling combined with innovative medicinal chemistry, utilizing advanced data science structural and transcriptomic algorithms, is expected to enable more effective drug and companion diagnostic discovery across broad disease areas.
- Nervous System Disease
- Cardiovascular
- Diabetes
- Infectious Disease
- Immunology
- Genetic Disease
- Metabolic Disease
- Liver Disease
- Immuno-oncology
- Rare Disease
We plan to use the HTG Transcriptome Panel and an epitranscriptome profiling technology evolved from the original HTG EdgeSeq technology (HTG EpiEdgeSeq) for the profiling of RNA modifications. By leveraging these profiling technologies earlier in the drug discovery process, HTG Therapeutics is seeking to generate lead compounds with superior efficacy and toxicity profiles. Having created a first-in-class transcriptomic and epitranscriptomic platform, HTG has implemented cutting edge medicinal chemistry in its therapeutic discovery efforts including multi-parameter computational filters and advanced structure, ligand and pharmacophore-based design. By pairing state-of-the-art expression profiling with innovative medicinal chemistry, HTG seeks to create the foundation for the future of drug discovery.
Four Pillars
Four Pillars
The intersection of innovative profiling and chemistry
Whole transcriptome mRNA and miRNA profiling guides drug discovery driving better understanding of health and disease.
Custom focus libraries, augmented chemo-informatics, multi-parameter computational filters, and advanced structure-based design.
HTG Epi-EdgeSeq
Epi transcriptome profiling assessing m6A, A-to-I and other RNA modifications.
Iterative profiling and structural modifications are cycled to identify candidates with improved physiochemical properties.
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