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2. Characterization of human anti-EpCAM antibodies for developing an antibody–drug conjugate

6. Efficient human-like antibody repertoire and hybridoma production in trans-chromosomic mice carrying megabase-sized human immunoglobulin loci

7. Panel of human cell lines with human/mouse artificial chromosomes

9. Developing a workflow for the isolation of hybridoma cells producing fully human antigen-specific antibodies using a surface IgG detection method

10. Engineering of human induced pluripotent stem cells via human artificial chromosome vectors for cell therapy and disease modeling

13. Humanized UGT2 and CYP3A transchromosomic rats for improved prediction of human drug metabolism

15. Treatment of CHO cells with Taxol and reversine improves micronucleation and microcell-mediated chromosome transfer efficiency

28. Data from Systematic Analysis of Compounds Specifically Targeting Telomeres and Telomerase for Clinical Implications in Cancer Therapy

29. Supplementary Data from Systematic Analysis of Compounds Specifically Targeting Telomeres and Telomerase for Clinical Implications in Cancer Therapy

30. Supplementary Figures 1-2 from Genetic Instability Caused by Loss of MutS Homologue 3 in Human Colorectal Cancer

31. Supplementary Table 1 from Genetic Instability Caused by Loss of MutS Homologue 3 in Human Colorectal Cancer

33. Supplementary Figures 1-6, Methods and Materials from CTCFL/BORIS Is a Methylation-Independent DNA-Binding Protein That Preferentially Binds to the Paternal H19 Differentially Methylated Region

36. Hypermetabolism in mice carrying a near complete human chromosome 21

40. Reversible immortalisation enables genetic correction of human muscle progenitors and engineering of next‐generation human artificial chromosomes for Duchenne muscular dystrophy

44. An improved TK-NOG mouse as a novel platform for humanized liver that overcomes limitations in both male and female animals

49. A transchromosomic rat model with human chromosome 21 shows robust Down syndrome features

50. An improved TK-NOG mouse as a novel platform for humanized liver that overcomes limitations in both male and female animals

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