Development of an investigational epigenetic silencer therapy to transcriptionally inactivate viral DNA in chronic hepatitis B

Approved chronic hepatitis B therapies rarely result in functional cure, as they fail to permanently silence all transcriptionally active hepatitis B virus (HBV) DNA. CRMA-1001 employs an optimized epigenetic silencer that represses viral transcription through targeted deposition of DNA methylation on episomal and integrated HBV DNAs. Here we showed that in HBV mouse models, a single dose of CRMA-1001 produced >3-log10 reductions in viral biomarkers, which correlated with de novo methylation of HBV DNA. Three doses resulted in up to 90% of animals with undetectable hepatitis B surface antigen and HBV DNA by 6 months post treatment. In non-human primates, CRMA-1001 induced transient liver transaminase elevations only at the highest dose tested. Expression and DNA methylation profiling revealed no detectable unintended targets in the human genome. These findings support the initiation of clinical development of CRMA-1001 as a finite treatment course with the potential for functional cure in individuals living with chronic hepatitis B. A nanomedicine comprising a guide RNA and an mRNA co-encapsulated in a lipid nanoparticle for delivery to hepatocytes holds promise for a functional cure for chronic hepatitis B through epigenetic silencing.

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Publication Details

Journal
Nature Biomedical Engineering
Published
2026-09-21
DOI
https://doi.org/10.1038/s41551-026-01802-8
Citations
1
Primary Topic
Hepatitis B Virus Studies
Type
article
Field-Weighted Citation Impact
5.42
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article

Development of an investigational epigenetic silencer therapy to transcriptionally inactivate viral DNA in chronic hepatitis B

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1 citations
Nature Biomedical Engineering
Hepatitis B Virus Studies
5.42
article

Development of an investigational epigenetic silencer therapy to transcriptionally inactivate viral DNA in chronic hepatitis B

Martino Alfredo Cappelluti, Pietro Spinelli, Rayman Choo-Wing, Melissa Bonner, Amber R. Cutter DiPiazza, Ari E. Friedland, Cristiana Giancarlo, Chloe Pantano, Bradley Niesner, Arogya Khadka, Jennifer L. Marlowe, Erica M. Hildebrand, Angelo Lombardo, Raffaele De Francesco, Lorena Donnici, Yesseinia I. Angleró-Rodriguez, Taesun Eom, Aron B. Jaffe, Sahar Abubucker, Sivan Harel, Sameer Abraham, Vic E. Myer, Ricardo N. Ramírez, Sarah B. Voytek, Caroline Mugambwa, Qiang Xiong, Matteo Conti, Chih‐Wei Ko, Jhon A. Medina, Ava Zhai, Xiaoyun Guo, Glen Acosta, Mary S. Morrison, Lenka Hoffman
article en
1 citations

Abstract

Approved chronic hepatitis B therapies rarely result in functional cure, as they fail to permanently silence all transcriptionally active hepatitis B virus (HBV) DNA. CRMA-1001 employs an optimized epigenetic silencer that represses viral transcription through targeted deposition of DNA methylation on episomal and integrated HBV DNAs. Here we showed that in HBV mouse models, a single dose of CRMA-1001 produced >3-log10 reductions in viral biomarkers, which correlated with de novo methylation of HBV DNA. Three doses resulted in up to 90% of animals with undetectable hepatitis B surface antigen and HBV DNA by 6 months post treatment. In non-human primates, CRMA-1001 induced transient liver transaminase elevations only at the highest dose tested. Expression and DNA methylation profiling revealed no detectable unintended targets in the human genome. These findings support the initiation of clinical development of CRMA-1001 as a finite treatment course with the potential for functional cure in individuals living with chronic hepatitis B. A nanomedicine comprising a guide RNA and an mRNA co-encapsulated in a lipid nanoparticle for delivery to hepatocytes holds promise for a functional cure for chronic hepatitis B through epigenetic silencing.

Nature Biomedical Engineering
Vita-Salute San Raffaele University (IT), University of Milan (IT), The San Raffaele Telethon Institute for Gene Therapy (IT), Woman's Hospital (US), Istituti di Ricovero e Cura a Carattere Scientifico (IT), Istituto Nazionale Genetica Molecolare (IT), Istituto di Ricovero e Cura a Carattere Scientifico San Raffaele (IT)
Good health and well-being
Openalex Percentile: Top 3%
Hepatitis B Virus Studies
5.42
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