Abstract 145P
Background
Macrophages exert their functions mainly through SIRPa receptor, which interacts with CD47 on cellular targets. As many cancer cells overexpress CD47 to evade immune surveillance, blocking SIRPa-CD47 interaction represents a promising approach to control tumor progression. The clinical progress of anti-CD47 antibodies were hindered by either side effects or lacking appreciable efficacy. To overcome this dilemma, we engineered a SIRPa-fusion protein that exhibits superior efficacy against multiple tumor types while maintaining good safety profiles.
Methods
Using structure-guided protein engineering, we selected a SIRPa mutant that exhibited marked phagocytic abilities against tumors while maintaining good safety features on normal cells. To assess the efficacy of this molecule, it was tested in multiple xenograft mouse models alongside competing biologics currently in clinical trials. We also performed quantitative RNA transcriptional analysis to evaluate the changes in gene expression inside tumor and in the tumor microenvironment.
Results
Comparing to other clinical candidates, HCB101 triggered strong phagocytic reactions against tumor cells but not red blood cells. We have analyzed 14 human tumor xenograft models, HCB101 consistently showed excellent efficacy against heme and solid tumors, with tumor growth inhibition index ranging from 60-100% at the dose of 0.5-10mg/kg over placebo. We also observed an increase in M1/M2 macrophage ratio after the treatment with HCB101, which correlated with the observed anti-tumor efficacy. Quantitative RNA transcriptional analysis indicated that HCB101 triggered drastic changes in gene expression comparing to other competing molecules. This suggested a unique MOA underlying HCB101’s superior efficacy. There was no apparent adverse reaction observed during the toxicology studies, indicating a good safety profile.
Conclusions
Comparing to relevant clinical candidates, HCB101 exhibits superior efficacy in 14 different CDX models of hemotological and solid tumors while maintaining good safety profiles. It is a highly effective biologic with robust efficacy, both as monotherapy and in combination. Clinical trial of HCB101 is now in progress.
Clinical trial identification
NCT05892718.
Legal entity responsible for the study
HanchorBio, Inc.
Funding
HanchorBio, Inc.
Disclosure
All authors have declared no conflicts of interest.
Resources from the same session
126P - Evaluation of Myeloid Targeting Agents, PY159 and PY314, in Two Dose Expansion Phase 1b Trials in Platinum-Resistant Ovarian Cancer
Presenter: Oladapo Yeku
Session: Poster Display
116TiP - Randomized, open-label, phase II study of botensilimab (BOT) alone and in combination with balstilimab (BAL) versus standard-of-care in patients with refractory metastatic colorectal cancer
Presenter: Eric Van Cutsem
Session: Poster Display
127P - REGN5668 (MUC16xCD28 bispecific antibody) with cemiplimab (anti-PD-1 antibody) in recurrent ovarian cancer: Phase 1 dose-escalation study
Presenter: Ira Winer
Session: Poster Display
128P - A phase I dose escalation and expansion trial of LYT-200, a Galectin-9 antibody +/- tislelizumab
Presenter: Gerald Falchook
Session: Poster Display
129P - Naxitamab efficacy in patients with refractory/relapsed high-risk neuroblastoma and bone metastases as assessed by Curie score
Presenter: Brian Kushner
Session: Poster Display
131P - Safety and clinical efficacy of Roginolisib (IOA-244), the first oral allosteric modulator of phosphoinositide 3-kinase inhibitor delta (PI3K_)
Presenter: Anna Di Giacomo
Session: Poster Display
132P - A phase I clinical trial of QLS31905 in advanced solid tumors
Presenter: Yakun Wang
Session: Poster Display
133P - Phase 1/2 study of XTX101, a masked, tumor-activated Fc-enhanced anti-CTLA-4, in patients with advanced solid tumors
Presenter: Diwakar Davar
Session: Poster Display
134P - A Phase 1 Study Exploring the Safety and Tolerability of the Small Molecule PD-L1 Inhibitor INCB099318 in Select Advanced Solid Tumors
Presenter: David Pinato
Session: Poster Display
135P - Isunakinra as Monotherapy and Combined with Nivolumab for Treatment Resistant Advanced Solid Tumours: Exploratory Effect Data, Tolerability, and Pharmacokinetics from a Dose Escalation Trial
Presenter: Carlos Becerra
Session: Poster Display