MAIA Biotechnology Reveals Higher Anticancer Potency of Telomere-Targeting Compounds Derived from THIO
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Study results warrant further in vivo in-depth investigation of THIO conjugates as second generation cancer therapies
“In this study we demonstrated broad-spectrum therapeutically-attractive opportunities for specific telomeric stress-inducing treatments. The results demonstrate an increase in innate sensing and adaptive antitumor immunity via the self-produced chemical modification of cancer cell telomeres by THIO,” said MAIA’s Chief Scientific Officer Sergei Gryaznov, Ph.D.
The new THIO prodrugs are lipid conjugated compounds derived from THIO. The prodrugs are pharmacologically inactive compounds that, after intake, are metabolized into a pharmacologically active drug. In vitro, these compounds were able to induce telomeric DNA damage responses that were similar or more profound than those for THIO, as assessed by quantitative Telomere Damage Induced Foci assays (TIF formation). Efficient formation of micronuclei structures was also observed. Initial in vivo evaluation of the anticancer activity, conducted in human xenografts and murine syngeneic models of colorectal cancer, demonstrated potent anticancer activity at relatively low dose levels for one of the lead lipid conjugates.
“Our findings from this study demonstrate the significance of telomeric DNA structural and functional integrity for cancer cell survival. The high potency of these THIO-like agents warrants further in vivo in-depth investigation as a potential next generation of telomerase-mediated telomere-targeting compounds,” said Vlad Vitoc, M.D., MAIA’s Chief Executive Officer.
The findings were presented by Dr. Gryaznov at the International Biochemistry Congress 2023, organized by the Turkish Biochemical Society and held in
The telomere-centric action of MAIA’s lead candidate THIO is being evaluated in Phase 2 clinical trials (THIO-101) in non-small-cell lung carcinoma (NSCLC) patients.
About THIO
THIO (6-thio-dG or 6-thio-2’-deoxyguanosine) is a first-in-class investigational telomere-targeting agent currently in clinical development to evaluate its activity in Non-Small Cell Lung Cancer (NSCLC). Telomeres, along with the enzyme telomerase, play a fundamental role in the survival of cancer cells and their resistance to current therapies. The modified nucleotide 6-thio-2’-deoxyguanosine (THIO) induces telomerase-dependent telomeric DNA modification, DNA damage responses, and selective cancer cell death. THIO-damaged telomeric fragments accumulate in cytosolic micronuclei and activates both innate (cGAS/STING) and adaptive (T-cell) immune responses. The sequential treatment with THIO followed by PD-(L)1 inhibitors resulted in profound and persistent tumor regression in advanced, in vivo cancer models by induction of cancer type–specific immune memory. THIO is presently developed as a second or later line of treatment for NSCLC for patients that have progressed beyond the standard-of-care regimen of existing checkpoint inhibitors.
About MAIA Biotechnology, Inc.
MAIA is a targeted therapy, immuno-oncology company focused on the development and commercialization of potential first-in-class drugs with novel mechanisms of action that are intended to meaningfully improve and extend the lives of people with cancer. Our lead program is THIO, a potential first-in-class cancer telomere targeting agent in clinical development for the treatment of NSCLC patients with telomerase-positive cancer cells. For more information, please visit www.maiabiotech.com.
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Source: MAIA Biotechnology, Inc.
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