| Literature DB >> 33314603 |
Senlian Hong1, Chenhua Yu1,2, Peng Wang1, Yujie Shi1, Weiqian Cao1,3, Bo Cheng4, Digantkumar G Chapla5, Yuanhui Ma1, Jie Li1, Emily Rodrigues6, Yoshiki Narimatsu7, John R Yates1, Xing Chen4, Henrik Clausen7, Kelly W Moremen5, Matthew Scott Macauley6, James C Paulson1, Peng Wu1.
Abstract
CD22, a member of Siglec family of sialic acid binding proteins, has restricted expression on B cells. Antibody-based agents targeting CD22 or CD20 on B lymphoma and leukemia cells exhibit clinical efficacy for treating these malignancies, but also attack normal B cells leading to immune deficiency. Here, we report a chemoenzymatic glycocalyx editing strategy to introduce high-affinity and specific CD22 ligands onto NK-92MI and cytokine-induced natural killer cells to achieve tumor-specific CD22 targeting. These CD22-ligand modified cells exhibited significantly enhanced tumor cell binding and killing in vitro without harming healthy B cells. For effective lymphoma cell killing in vivo, we further functionalized CD22 ligand-modified NK-92MI cells with the E-selectin ligand sialyl Lewis X to promote trafficking to bone marrow. The dual-functionalized cells resulted in the efficient suppression of B lymphoma in a xenograft model. Our results suggest that natural killer cells modified with glycan ligands to CD22 and selectins promote both targeted killing of B lymphoma cells and improved trafficking to sites where the cancer cells reside, respectively.Entities:
Keywords: B-lymphoma; CD22 ligands; E-selectin; chemoenzymatic glycan editing; sLeX
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Year: 2020 PMID: 33314603 PMCID: PMC7980786 DOI: 10.1002/anie.202005934
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336