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A Semi-automated Approach to Preparing Antibody Cocktails for Immunophenotypic Analysis of Human Peripheral Blood
Published on: February 8, 2016
A novel fully human anti-CD47 antibody as a potential therapy for human neoplasms with good safety
Xiao-Yan Yu1, Wei-Yi Qiu1, Feng Long2
1Beijing Institute of Biotechnology, 20 Dongdajie Street, Fengtai District, Beijing, 100071, China.
Abstract:
Strategies for targeting CD47 are becoming a hot spot of cancer immunotherapy. However the ubiquitous expression of CD47, especially on the RBC, makes the targeted therapy facing safety risk issues. So, how to balance the safety and efficacy during CD47 inhibition is currently a major question. We had reported an anti-CD47 antibody ZF1 with potent anti-tumor effect. In this study, we further developed and assessed a novel fully human anti-CD47 antibody, AMMS4-G4, derived from ZF1 using affinity maturation. AMMS4-G4 exhibited equivalent anticancer effects with Hu5F9-G4, a humanized anti-CD47 antibody in clinical trial, on the potential of inducing significant phagocytosis of tumor cells in vitro and prolonging the survival of leukemia xenografted mice. Additionally, AMMS4-G4 significantly inhibited the growth of grafted solid tumors by enhancing macrophage infiltration and modestly enhanced the anti-tumor activity of opsonizing antibody and antiangiogenic therapy. In cynomolgus monkeys, AMMS4-G4 was safely administered, was well tolerated at doses of 30 and 60 mg/kg, and did not produce serious adverse events, except for the reversible anemia, which was observed after 3 days and started to recover from 9 days later. Remarkably, it was proved by in vitro assay that Hu5F9-G4 induced RBC hemagglutination which wasn't observed in AMMS4-G4. On the whole, AMMS4-G4 was demonstrated to be a promising candidate with great potential and safe profile for cancer immunotherapy.
Insights
A new fully human anti-CD47 antibody, AMMS4-G4, shows potent anticancer effects and a favorable safety profile. It effectively targets cancer cells while minimizing risks like red blood cell clumping, offering a promising option for cancer immunotherapy.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- CD47 is a key target in cancer immunotherapy, but its widespread expression poses safety challenges.
- Balancing the efficacy and safety of CD47 inhibition is crucial for developing effective cancer treatments.
Purpose of the Study:
- To develop and evaluate AMMS4-G4, a novel fully human anti-CD47 antibody derived from ZF1.
- To assess the safety and efficacy of AMMS4-G4 in preclinical cancer models and non-human primates.
Main Methods:
- Affinity maturation of anti-CD47 antibody ZF1 to create AMMS4-G4.
- In vitro assays for tumor cell phagocytosis and hemagglutination.
- In vivo studies using leukemia xenografts and solid tumor models in mice.
- Pharmacokinetic and safety assessments in cynomolgus monkeys.
Main Results:
- AMMS4-G4 demonstrated comparable anticancer efficacy to Hu5F9-G4 in vitro and in vivo.
- It induced tumor cell phagocytosis, prolonged survival in leukemia models, and inhibited solid tumor growth.
- AMMS4-G4 was well-tolerated in cynomolgus monkeys, with reversible anemia as the main side effect.
- Unlike Hu5F9-G4, AMMS4-G4 did not induce red blood cell hemagglutination.
Conclusions:
- AMMS4-G4 is a promising fully human anti-CD47 antibody candidate for cancer immunotherapy.
- It offers a potentially improved safety profile compared to other anti-CD47 antibodies, particularly regarding red blood cell interactions.
- AMMS4-G4 warrants further clinical investigation for its therapeutic potential in various cancers.
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