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Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Characterization of AB598, a CD39 Enzymatic Inhibitory Antibody for the Treatment of Solid Tumors
Amy E Anderson1, Kaustubh Parashar1, Ke Jin1
1Arcus Biosciences, Inc., Hayward, California.
Abstract:
AB598 is a CD39 inhibitory antibody being pursued for the treatment of solid tumors in combination with chemotherapy and immunotherapy. CD39 metabolizes extracellular adenosine triphosphate (eATP), an alarmin capable of promoting antitumor immune responses, into adenosine, an immuno-inhibitory metabolite. By inhibiting CD39, the consumption of eATP is reduced, resulting in a proinflammatory milieu in which eATP can activate myeloid cells to promote antitumor immunity. The preclinical characterization of AB598 provides a mechanistic rationale for combining AB598 with chemotherapy in the clinic. Chemotherapy can induce ATP release from tumor cells and, when preserved by AB598, both chemotherapy-induced eATP and exogenously added ATP promote the function of monocyte-derived dendritic cells via P2Y11 signaling. Inhibition of CD39 in the presence of ATP can promote inflammasome activation in in vitro-derived macrophages, an effect mediated by P2X7. In a MOLP8 murine xenograft model, AB598 results in full inhibition of intratumoral CD39 enzymatic activity, an increase in intratumoral ATP, a decrease of extracellular CD39 on tumor cells, and ultimately, control of tumor growth. In cynomolgus monkeys, systemic dosing of AB598 results in effective enzymatic inhibition in tissues, full peripheral and tissue target engagement, and a reduction in cell surface CD39 both in tissues and in the periphery. Taken together, these data support a promising therapeutic strategy of harnessing the eATP generated by standard-of-care chemotherapies to prime the tumor microenvironment for a productive antitumor immune response.
Insights
AB598, a CD39 inhibitory antibody, enhances chemotherapy by preserving extracellular ATP (eATP) to boost antitumor immunity. This approach primes the tumor microenvironment for effective immune responses against solid tumors.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- CD39 metabolizes extracellular adenosine triphosphate (eATP) into immunosuppressive adenosine.
- eATP is an alarmin that can promote antitumor immune responses.
- Inhibiting CD39 may enhance anti-tumor immunity by increasing eATP levels.
Purpose of the Study:
- To investigate the preclinical efficacy of AB598, a CD39 inhibitory antibody.
- To explore the mechanistic rationale for combining AB598 with chemotherapy for solid tumor treatment.
- To evaluate the impact of AB598 on the tumor microenvironment and immune cell function.
Main Methods:
- Preclinical studies in a MOLP8 murine xenograft model.
- In vitro studies with macrophages and dendritic cells.
- Pharmacokinetic and pharmacodynamic assessments in cynomolgus monkeys.
Main Results:
- AB598 demonstrated full inhibition of intratumoral CD39 activity and increased intratumoral ATP in a xenograft model.
- AB598 treatment led to tumor growth control in mice.
- Systemic dosing in monkeys showed effective enzymatic inhibition and target engagement.
Conclusions:
- AB598 shows promise as a therapeutic strategy to enhance chemotherapy efficacy.
- Harnessing chemotherapy-induced eATP with CD39 inhibition can prime the tumor microenvironment for anti-tumor immunity.
- AB598 warrants further clinical investigation for solid tumor treatment.
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