SQ3370, the first clinical click chemistry-activated cancer therapeutic, shows safety in humans and translatability across species
Srinivasan, S.; Yee, N. A.; Zakharian, M.; Aleckovic, M.; Mahmoodi, A.; Nguyen, T.-H.; Mejia Oneto, J. M.
10.1101/2023.03.28.534654 bioRxivShow abstract
BackgroundSQ3370 is the first demonstration of the Click Activated Protodrugs Against Cancer (CAPAC) platform that uses click chemistry to activate drugs directly at tumor sites, maximizing therapeutic exposure. SQ3370 consists of a tumor-localizing biopolymer (SQL70) and a chemically-attenuated doxorubicin (Dox) protodrug SQP33; the protodrug is activated upon clicking with the biopolymer at tumor sites. Here, we present data from preclinical studies and a Phase 1 dose-escalation clinical trial in adult patients with advanced solid tumors (NCT04106492) demonstrating SQ3370s activation at tumor sites, safety, systemic pharmacokinetics (PK), and immunological activity. MethodsTreatment cycles consisting of an intratumoral or subcutaneous injection of SQL70 biopolymer followed by 5 daily intravenous doses of SQP33 protodrug were evaluated in tumor-bearing mice, healthy dogs, and adult patients with solid tumors. ResultsSQL70 effectively activated SQP33 at tumor sites, resulting in high Dox concentrations that were well tolerated and unachievable by conventional treatment. SQ3370 was safely administered at 8.9x the veterinary Dox dose in dogs and 12x the conventional Dox dose in patients, with no dose-limiting toxicity reported to date. SQ3370s safety, toxicology, and PK profiles were highly translatable across species. SQ3370 increased cytotoxic CD3+ and CD8+ T-cells in patient tumors indicating T-cell-dependent immune activation in the tumor microenvironment. ConclusionsSQ3370, the initial demonstration of click chemistry in humans, enhances the safety of Dox at unprecedented doses and has the potential to increase therapeutic index. Consistent safety, toxicology, PK, and immune activation results observed with SQ3370 across species highlight the translatability of the click chemistry approach in drug development. Trial registrationNCT04106492; 7 September 2019
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Comparative evaluation of bolus and fractionated administration modalities for two antibody-cytokine fusions in immunocompetent tumor-bearing mice 95%
- Triggered Release from Thermosensitive Liposomes Improves Tumor Targeting of Vinorelbine 94%
- Nor-LAAM loaded PLGA Microparticles for Treating Opioid Use Disorder 94%
Similar papers in this journal
Similar papers in this journal
- Synergistic Effect of Thermoneutral Housing and Chronotherapeutic PD-1 Blockade Overcomes Melanoma Resistance 92%
- Changes in serum CXCL13 levels are associated with outcomes of Colorectal Cancer Patients Undergoing First-Line Oxaliplatin-Based Treatment 92%
- NRF2 upregulation by CDDO-Me protects AC16 human cardiomyocytes against doxorubicin-induced toxicity. 91%
Similar papers in this journal
- TUB-010, a novel anti-CD30 antibody-drug conjugate based on Tub-tag technology, widens the therapeutic window by reducing toxicity while maintaining high efficacy 96%
- Immunotherapy with immunocytokines and PD-1 blockade enhances the anticancer activity of small molecule-drug conjugates targeting carbonic anhydrase IX 96%
- An antibody-tumor necrosis factor fusion protein that synergizes with oxaliplatin for treatment of colorectal cancer 93%
Similar papers in this journal
- Reshaping the Landscape of Locoregional Treatments for Breast Cancer Liver Metastases: A novel, intratumoral, p21-targeted percutaneous therapy increases survival in BALB/c mice inoculated with 4T1 triple negative breast cancer cells in the liver. 94%
- Injectable diblock copolypeptide hydrogel provides platform to maintain high local concentrations of taxol and local tumor control 93%
- Evaluation of deacetylase inhibition in metaplastic breast carcinoma using multiple derivations of preclinical models of a new patient-derived tumor 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.