Dendritic cell immune potency on 2D and in 3D collagen matrices

被引:26
|
作者
Sapudom, Jiranuwat [1 ]
Alatoom, Aseel [1 ]
Mohamed, Walaa K. E. [1 ]
Garcia-Sabate, Anna [1 ]
McBain, Ian [1 ]
Nasser, Rasha A. [2 ]
Teo, Jeremy C. M. [1 ,3 ]
机构
[1] New York Univ Abu Dhabi, Div Engn, Lab Immuno Bioengn Res & Applicat, Abu Dhabi, U Arab Emirates
[2] United Arab Emirates Univ, Coll Med, Dept Microbiol Immunol, Al Ain, U Arab Emirates
[3] NYU, Tandon Sch Engn, Dept Biomed & Mech Engn, New York, NY 10003 USA
关键词
DC-SIGN; T-CELLS; DIFFERENTIATION; RECEPTOR; ANTIGEN; ACTIVATION; MIGRATION; PROLIFERATION; SPECIFICITY; ADHESIONS;
D O I
10.1039/d0bm01141j
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
Dendritic cells (DCs) are antigen-presenting cells capable of either activating the immune response or inducing and maintaining immune tolerance. Understanding how biophysical properties affect DC behaviors will provide insight into the biology of a DC and its applications. In this work, we studied how cell culture dimensionality (two-dimensional (2D) and three-dimensional (3D)), and matrix density of 3D collagen matrices modulate differentiation and functions of DCs. Besides, we aimed to point out the different conceptual perspectives in modern immunological research, namely tissue-centric and cell-centric perspectives. The tissue-centric perspective intends to reveal how specific microenvironments dictate DC differentiation and in turn modulate DC functionalities, while the cell-centric perspective aims to demonstrate how pre-differentiated DCs behave in specific microenvironments. DC plasticity was characterized in terms of cell surface markers and cytokine secretion profiles. Subsequently, antigen internalization and T cell activation were quantified to demonstrate the cellular functions of immature DCs (iDCs) and mature DCs (mDCs), respectively. In the tissue-centric perspective, we found that expressed surface markers and secreted cytokines of both iDCs and mDCs are generally higher in 2D culture, while they are regulated by matrix density in 3D culture. In contrast, in the cell-centric perspective, we found enhanced expression of cell surface markers as well as distinct cytokine secretion profiles in both iDCs and mDCs. By analyzing cellular functions of cells in the tissue-centric perspective, we found matrix density dependence in antigen uptake by iDCs, as well as on mDC-mediated T cell proliferation in 3D cell culture. On the other hand, in the cell-centric perspective, both iDCs and mDCs appeared to lose their functional potentials to internalization antigen and T cell stimulation. Additionally, mDCs from tissue- and cell-centric perspectives modulated T cell differentiation by their distinct cytokine secretion profiles towards Th1 and Th17, respectively. In sum, our work emphasizes the importance of dimensionality, as well as collagen fibrillar density in the regulation of the immune response of DCs. Besides this, we demonstrated that the conceptual perspective of the experimental design could be an essential key point in research in immune cell-material interactions and biomaterial-based disease models of immunity.
引用
收藏
页码:5106 / 5120
页数:15
相关论文
共 50 条
  • [21] Evaluation of cell binding to collagen and gelatin: a study of the effect of 2D and 3D architecture and surface chemistry
    Davidenko, Natalia
    Schuster, Carlos F.
    Bax, Daniel V.
    Farndale, Richard W.
    Hamaia, Samir
    Best, Serena M.
    Cameron, Ruth E.
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, 2016, 27 (10)
  • [22] Evaluation of cell binding to collagen and gelatin: a study of the effect of 2D and 3D architecture and surface chemistry
    Natalia Davidenko
    Carlos F. Schuster
    Daniel V. Bax
    Richard W. Farndale
    Samir Hamaia
    Serena M. Best
    Ruth E. Cameron
    Journal of Materials Science: Materials in Medicine, 2016, 27
  • [23] Following Actin Fibers in 3D During Cell Migration in Collagen Matrices
    Digman, Michelle A.
    Chiu, Chi-Li
    Aguilar, Jose S.
    Gratton, Enrico
    BIOPHYSICAL JOURNAL, 2011, 100 (03) : 616 - 617
  • [24] Preliminary Study: Invertebrate Primary Cell Culture on 3D Collagen Matrices
    Moffitt, M.
    Natesan, S.
    Rehman, F.
    Ahearn, G. A.
    INTEGRATIVE AND COMPARATIVE BIOLOGY, 2018, 58 : E156 - E156
  • [25] Toward single cell traction microscopy within 3D collagen matrices
    Hall, Matthew S.
    Long, Rong
    Feng, Xinzeng
    Huang, Yuling
    Hui, Chung-Yuen
    Wu, Mingming
    EXPERIMENTAL CELL RESEARCH, 2013, 319 (16) : 2396 - 2408
  • [26] Collagen 3D matrices as a model for the study of cell behavior in pulmonary fibrosis
    Machahua, Carlos
    Vicens-Zygmunt, Vanesa
    Rios-Martin, Jesus
    Llatjos, Roger
    Escobar-Campuzano, Ignacio
    Molina-Molina, Maria
    Montes-Worboys, Ana
    EXPERIMENTAL LUNG RESEARCH, 2022, 48 (03) : 126 - 136
  • [27] 21/2D or 3D?
    Roth, S
    Küster, B
    Sura, H
    KUNSTSTOFFE-PLAST EUROPE, 2004, 94 (07): : 65 - 67
  • [28] 2D and 3D on demand
    Philippi, Anne
    F & M; Feinwerktechnik, Mikrotechnik, Messtechnik, 1998, 106 (06): : 412 - 414
  • [29] From 2D to 3D
    Steven De Feyter
    Nature Chemistry, 2011, 3 (1) : 14 - 15
  • [30] Fast MATLAB assembly of FEM matrices in 2D and 3D: Nodal elements
    Rahman, Talal
    Valdman, Jan
    APPLIED MATHEMATICS AND COMPUTATION, 2013, 219 (13) : 7151 - 7158