ZW191, an FRα-Targeted Topoisomerase 1 Inhibitor ADC with a Differentiated Antitumor Efficacy and Tolerability
Samuel Lawn1, Andrea Hernandez Rojas1, Jodi Wong1
1Zymeworks, Vancouver, Canada.
Purpose:
Multiple antibody-drug conjugates (ADC) are approved for the treatment of human cancers, yet there remains significant potential for design improvements through iterative learnings from nonclinical and clinical experience. ZW191 is a clinical-stage ADC bearing a novel topoisomerase I inhibitor payload and targeted to the clinically validated tumor antigen folate receptor α (FRα).
Experimental Design:
The nonclinical activity and tolerability profiles of ZW191 were assessed in vitro and in vivo, focusing on properties of its antibody and payload components.
Results:
ZW191 has a highly differentiated efficacy and tolerability profile, markedly improving on the FDA-approved FRα-targeted ADC mirvetuximab soravtansine in its activity in tumors with both high and low levels of FRα in multiple patient-derived xenograft models of ovarian cancer, endometrial cancer, non-small cell lung cancer, and triple-negative breast cancer. ZW191's novel FRα-targeting antibody demonstrates unique binding properties and is superior to multiple other clinical-stage ADC antibodies in its internalization, payload delivery, and penetration through 3D tumor spheroids. ZW191's novel payload drives strong antitumor activity in vitro, including bystander activity. Furthermore, ZW191 is effective in vivo in combination with clinically relevant standard-of-care drugs carboplatin, bevacizumab, and paclitaxel. ZW191's best-in-class tolerability profile in Good Laboratory Practice nonhuman primate toxicity studies is owing to its payload's moderate potency-an ADC feature that we show from a clinical landscape analysis allows for higher dosing in humans.
Conclusions:
ZW191 demonstrates favorable preclinical efficacy and tolerability. This differentiated profile is supported by initial clinical data, potentially positioning ZW191 to meaningfully improve responses and substantially widen the targetable patient population over standard-of-care treatment.
Insights
ZW191, a novel antibody drug conjugate (ADC), shows superior efficacy and tolerability compared to existing treatments in preclinical models. Its unique design targets folate receptor alpha (FRα) and offers potential for improved cancer therapy.
Area of Science:
- Oncology
- Pharmacology
- Biotechnology
Background:
- Antibody drug conjugates (ADCs) are crucial in cancer therapy, with ongoing research to enhance their efficacy and safety.
- Folate receptor alpha (FRα) is a validated target for ADCs in various human cancers.
- ZW191 represents a next-generation ADC designed to overcome limitations of current therapies.
Purpose of the Study:
- To evaluate the nonclinical efficacy and tolerability of ZW191, a novel ADC targeting FRα.
- To compare ZW191's performance against the FDA-approved ADC mirvetuximab soravtansine.
- To assess ZW191's potential in combination with standard-of-care agents.
Main Methods:
- In vitro and in vivo studies assessed ZW191's activity and tolerability.
- Patient-derived xenograft models of ovarian cancer, endometrial cancer, NSCLC, and TNBC were utilized.
- Non-GLP NHP toxicity studies and clinical landscape analysis were performed.
Main Results:
- ZW191 demonstrated superior efficacy across multiple cancer types and FRα expression levels compared to mirvetuximab soravtansine.
- ZW191's antibody exhibited enhanced internalization, payload delivery, and tumor penetration.
- The novel payload showed potent in vitro anti-tumor and bystander activity, with favorable tolerability in NHP studies.
- ZW191 showed efficacy in combination with olaparib, bevacizumab, and paclitaxel.
Conclusions:
- ZW191 exhibits a differentiated preclinical profile with significant improvements in efficacy and tolerability.
- Its unique antibody and payload properties support enhanced anti-tumor activity and a favorable safety margin.
- Initial clinical data suggest ZW191 could broaden the patient population and improve treatment responses in FRα-positive cancers.
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