Generation and characterization of CD1d-specific single-domain antibodies with distinct functional features

被引:17
|
作者
Lameris, Roeland [1 ]
de Bruin, Renee C. G. [1 ]
Henegouwen, Paul M. P. van Bergen En [2 ]
Verheul, Henk M. [1 ]
Zweegman, Sonja [3 ]
de Gruijl, Tanja D. [1 ]
van der Vliet, Hans J. [1 ]
机构
[1] Vrije Univ Amsterdam, Dept Med Oncol, Med Ctr, De Boelelaan 1117, NL-1081 HV Amsterdam, Netherlands
[2] Univ Utrecht, Div Cell Biol, Dept Biol, Fac Sci, Utrecht, Netherlands
[3] Vrije Univ Amsterdam, Dept Haematol, Med Ctr, Amsterdam, Netherlands
关键词
cancer; CD1d; dendritic cell; invariant natural killer T-cell; variable domain of heavy-chain-only antibody; KILLER-T-CELLS; NKT CELLS; LIPID ANTIGENS; INKT CELLS; CD1D; NANOBODIES; CARCINOMA; CANCER; PHAGE; IMMUNOTHERAPY;
D O I
10.1111/imm.12635
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Ligation of the CD1d antigen-presenting molecule by monoclonal antibodies (mAbs) can trigger important biological functions. For therapeutic purposes camelid-derived variable domain of heavy-chain-only antibodies (VHH) have multiple advantages over mAbs because they are small, stable and have low immunogenicity. Here, we generated 21 human CD1d-specific VHH by immunizing Lama glama and subsequent phage display. Two clones induced maturation of dendritic cells, one clone induced early apoptosis in CD1d-expressing B lymphoblasts and multiple myeloma cells, and another clone blocked recognition of glycolipid-loaded CD1d by CD1d-restricted invariant natural killer T (iNKT) cells. In contrast to reported CD1d-specific mAbs, these CD1d-specific VHH have the unique characteristic that they induce specific and well-defined biological effects. This feature, combined with the above-indicated general advantages of VHH, make the CD1d-specific VHH generated here unique and useful tools to exploit both CD1d ligation as well as disruption of CD1d-iNKT interactions in the treatment of cancer or inflammatory disorders.
引用
收藏
页码:111 / 121
页数:11
相关论文
共 50 条
  • [31] Characterization of Novel Single-Domain Nanobodies Against NEIL1
    Thompson, Marlo K.
    Sharma, Nidhi
    Skelton, Adam J.
    Eggers, Mark H.
    Valenzuela, Israel
    Arrington, Jennifer F.
    Andrews, Joel F.
    Prakash, Aishwarya
    ENVIRONMENTAL AND MOLECULAR MUTAGENESIS, 2023, 64 : 76 - 77
  • [32] Characterization of Novel Single-Domain Nanobodies Against NEIL1.
    Thompson, M. K.
    Sharma, N.
    Arrington, J. F.
    Andrews, J. F.
    Prakash, A.
    ENVIRONMENTAL AND MOLECULAR MUTAGENESIS, 2021, 62 : 65 - 65
  • [33] Enhanced CD1d phosphatidylserine presentation using a single-domain antibody promotes immunomodulatory CD1d-TIM-3 interactions
    Lameris, Roeland
    Shahine, Adam
    Veth, Myrthe
    Westerman, Bart
    Godfrey, Dale, I
    Hulsik, David Lutje
    Brouwer, Patricia
    Rossjohn, Jamie
    de Gruijl, Tanja D.
    van der Vliet, Hans J.
    JOURNAL FOR IMMUNOTHERAPY OF CANCER, 2023, 11 (12)
  • [34] Isolation and characterization of anti-FcγRIII (CD16) llama single-domain antibodies that activate natural killer cells
    Behar, Ghislaine
    Siberil, Sophie
    Groulet, Agnes
    Chames, Patrick
    Pugniere, Martine
    Boix, Charlotte
    Sautes-Fridman, Catherine
    Teillaud, Jean-Luc
    Baty, Daniel
    PROTEIN ENGINEERING DESIGN & SELECTION, 2008, 21 (01): : 1 - 10
  • [35] Isolation, characterization and pentamerization of α-cobrotoxin specific single-domain antibodies from a naive phage display library:: Preliminary findings for antivenom development
    Stewart, Christine S.
    MacKenzie, C. Roger
    Hall, J. Christopher
    TOXICON, 2007, 49 (05) : 699 - 709
  • [36] Oriented conjugates of single-domain antibodies and quantum dots: toward a new generation of ultrasmall diagnostic nanoprobes
    Sukhanova, Alyona
    Even-Desrumeaux, Klervi
    Kisserli, Aymric
    Tabary, Thierry
    Reveil, Brigitte
    Millot, Jean-Marc
    Chames, Patrick
    Baty, Daniel
    Artemyev, Mikhail
    Oleinikov, Vladimir
    Pluot, Michel
    Cohen, Jacques H. M.
    Nabiev, Igor
    NANOMEDICINE-NANOTECHNOLOGY BIOLOGY AND MEDICINE, 2012, 8 (04) : 516 - 525
  • [37] Generation, expression and utilization of single-domain antibodies for in vivo protein localization and manipulation in sea urchin embryos
    Schrankel, Catherine S.
    Gokirmak, Tufan
    Lee, Chang-Wook
    Chang, Geoffrey
    Hamdoun, Amro
    ECHINODERMS, PT B, 2019, 151 : 353 - 376
  • [38] Functional modulation of RAGE activation by multimeric S100B using single-domain antibodies
    Simoes, Margarida C.
    Cristovao, Joana S.
    Pardon, Els
    Steyaert, Jan
    Fritz, Guenter
    Gomes, Claudio M.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2024, 300 (12)
  • [39] Engineering camel single-domain antibodies and immobilization chemistry for human prostate-specific antigen sensing
    Saerens, D
    Frederix, F
    Reekmans, G
    Conrath, K
    Jans, K
    Brys, L
    Huang, L
    Bosmans, E
    Maes, G
    Borghs, G
    Muyldermans, S
    ANALYTICAL CHEMISTRY, 2005, 77 (23) : 7547 - 7555
  • [40] Enhancement of CD1D-specific natural killer T cell function in a murine model of hepatitis C
    Herman, RB
    He, Q
    Bekele, H
    Wang, RJ
    Exley, M
    Koziel, MJ
    HEPATOLOGY, 2005, 42 (04) : 545A - 545A