Literature DB >> 29056342

Synthetic RNA-Based Immunomodulatory Gene Circuits for Cancer Immunotherapy.

Lior Nissim1, Ming-Ru Wu1, Erez Pery1, Adina Binder-Nissim1, Hiroshi I Suzuki2, Doron Stupp3, Claudia Wehrspaun1, Yuval Tabach3, Phillip A Sharp4, Timothy K Lu5.   

Abstract

Despite its success in several clinical trials, cancer immunotherapy remains limited by the rarity of targetable tumor-specific antigens, tumor-mediated immune suppression, and toxicity triggered by systemic delivery of potent immunomodulators. Here, we present a proof-of-concept immunomodulatory gene circuit platform that enables tumor-specific expression of immunostimulators, which could potentially overcome these limitations. Our design comprised de novo synthetic cancer-specific promoters and, to enhance specificity, an RNA-based AND gate that generates combinatorial immunomodulatory outputs only when both promoters are mutually active. These outputs included an immunogenic cell-surface protein, a cytokine, a chemokine, and a checkpoint inhibitor antibody. The circuits triggered selective T cell-mediated killing of cancer cells, but not of normal cells, in vitro. In in vivo efficacy assays, lentiviral circuit delivery mediated significant tumor reduction and prolonged mouse survival. Our design could be adapted to drive additional immunomodulators, sense other cancers, and potentially treat other diseases that require precise immunological programming.
Copyright © 2017. Published by Elsevier Inc.

Entities:  

Keywords:  RNA-based AND gate; biology; cancer detecting circuit; cancer immunotherapy; genetic circuit; ovarian cancer

Mesh:

Substances:

Year:  2017        PMID: 29056342      PMCID: PMC5986174          DOI: 10.1016/j.cell.2017.09.049

Source DB:  PubMed          Journal:  Cell        ISSN: 0092-8674            Impact factor:   41.582


  53 in total

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3.  DNA double-stranded breaks induce histone H2AX phosphorylation on serine 139.

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6.  Cellular heterogeneity mediates inherent sensitivity-specificity tradeoff in cancer targeting by synthetic circuits.

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Review 10.  Immunocytokines for cancer treatment: past, present and future.

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5.  A compact synthetic pathway rewires cancer signaling to therapeutic effector release.

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6.  Engineered dCas9 with reduced toxicity in bacteria: implications for genetic circuit design.

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7.  Defining the Teratoma as a Model for Multi-lineage Human Development.

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Journal:  Cell       Date:  2020-11-04       Impact factor: 41.582

8.  miRNA-Mediated Regulation of Synthetic Gene Circuits in the Green Alga Chlamydomonas reinhardtii.

Authors:  Francisco J Navarro; David C Baulcombe
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9.  Genetically engineered control of phenotypic structure in microbial colonies.

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10.  Cell-Free Characterization of Coherent Feed-Forward Loop-Based Synthetic Genetic Circuits.

Authors:  Pascal A Pieters; Bryan L Nathalia; Ardjan J van der Linden; Peng Yin; Jongmin Kim; Wilhelm T S Huck; Tom F A de Greef
Journal:  ACS Synth Biol       Date:  2021-06-01       Impact factor: 5.110

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