


Oncology
11:00 AM ET
60 min
Mingkun Zhang

The development and approval of therapeutic antibodies and antibody-related drugs have grown significantly in the past decade. The success of fully human antibodies in the clinic proved that genetically engineered mouse models that produce human antibodies can significantly accelerate therapeutic antibody discovery. Antibodies generated from these novel mouse models have favorable properties such as low immunogenicity, high diversity, affinity and developability.
In this live broadcast, Mingkun Zhang, Vice President of NeoMab Bio will share the following insights on latest technology in antibody drug discovery:
Technology Improvement in Antibody Drug Discovery
The Fully Human Antibody Discovery Platform
Strategies to Enhance Immune Response: Breaking Immune Tolerance
Solutions to Accelerate The Fully Human Antibody Discovery
More information about blogs


Upcoming
Selecting the right humanized mouse model is one of the most consequential decisions in immuno-oncology (IO) drug development. The wrong model can mask safety liabilities, inflate efficacy estimates, and weaken the data supporting regulatory submissions. Join GemPharmatech for a data-driven webinar on how strategic humanized mouse model selection strengthens preclinical decision-making, sharpens translational relevance, and supports IND-enabling studies.
2026-07-30 00:00:00
11:00 AM ET
Xinjie Lian


On-Demand
Hypertrophic cardiomyopathy (HCM) is a prevalent and genetically heterogeneous cardiovascular disorder, with approximately 55% of familial cases linked to mutations in sarcomeric genes. To enable mechanistic and therapeutic studies, GemPharmatech has successfully developed two HCM mouse models: the Mybpc3 knockout (KO) and the Myh6 R404Q (point mutation) strains.
2026-06-25 00:00:00
11:00 AM ET
Yue Shen, Ph.D.


On-Demand
Antibody-drug conjugates (ADCs), particularly the HER2-targeting Enhertu (DS-8201), have revolutionized targeted cancer therapy. Despite their clinical success, drug resistance remains a major hurdle limiting long-term therapeutic benefits. To address this challenge, GemPharmatech has developed multiple ADC resistance models, including a HER2-positive JIMT-1 breast cancer xenograft (CDX) model with acquired resistance to Enhertu, and a primary Enhertu-resistant HER2-positive lung cancer model from our patient-derived xenograft (PDX) library. Join us to explore how these Enhertu-resistant models serve as translational tools to elucidate resistance mechanisms and evaluate novel therapeutic strategies.
2026-04-14 00:00:00
11:00 AM ET
Shiying Guo, Ph.D.

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