scholarly journals B cells in tumor draining lymph nodes act as efficient antigen presenting cells in cancer patients

2015 ◽  
Vol 3 (S2) ◽  
Author(s):  
A Ali Zirakzadeh ◽  
David Krantz ◽  
Malin Winerdal ◽  
Christian Lundgren ◽  
Ciputra Adijaya Hartana ◽  
...  
Parasitology ◽  
2005 ◽  
Vol 131 (5) ◽  
pp. 657-667 ◽  
Author(s):  
D. K. V. BOPPANA ◽  
S. K. WIKEL ◽  
D. G. RAJ ◽  
M. B. MANOHAR ◽  
J. LALITHA

Immunohistochemical analysis of skin and draining lymph nodes of sheep repeatedly infested with the ixodid tickHyalomma anatolicum anatolicumwere studied for different antigen-presenting cells and lymphocyte subpopulations. Infiltration of neutrophils, macrophages and lymphocytes adjacent to the tick bite site were observed. Skin biopsies showed significant increases in dermal infiltration of CD8+and γδ+T cells at 72 h and 8 days after both primary and secondary infestation. Infiltrations of MHC-II DR/DQ decreased at 72 h after tick infestation, whereas significant increases were recorded for 8-day skin biopsies. CD1+cellular infiltrations were observed during secondary infestations at the dermis. Decreased ratios of CD4[ratio ]CD8 T cells and MHC-II[ratio ]CD1 antigen-presenting cells were observed in both infestations compared to healthy skin biopsies. Ratios of αβ[ratio ]γδ T cells increased gradually during infestation compared to uninfested skin. The regional lymph nodes from tick-infested sheep showed an increased CD8+, γδ+T and CD1+cellular infiltration compared to control lymph nodes. CD4+T cells were decreased. There were no significant changes in CD45R+cellular infiltration either at skin lesions or regional lymph nodes.


2010 ◽  
Vol 53 (1) ◽  
pp. 63-69 ◽  
Author(s):  
Gaby Ermelindo Roberto Monteiro ◽  
Gervásio Henrique Bechara ◽  
Alessandra Maria Franzin ◽  
Isabel Kinney Ferreira de Miranda Santos

1993 ◽  
Vol 178 (6) ◽  
pp. 2055-2066 ◽  
Author(s):  
M H Kosco-Vilbois ◽  
D Gray ◽  
D Scheidegger ◽  
M Julius

This study was designed to investigate whether follicular dendritic cells (FDC) can activate B cells to a state in which they can function as effective antigen-presenting cells (APC). High buoyant density (i.e., resting) B cells specific for 2,4-dinitro-fluorobenzene (DNP) were incubated with DNP-ovalbumin (OVA) bearing FDC, after which their capacity to process and present to an OVA-specific T cell clone was assessed. The efficacies of alternative sources of antigen and activation signals in the induction of B cell APC function were compared with those provided by FDC. Only FDC and Sepharose beads coated with anti-immunoglobulin (Ig)kappa monoclonal antibody provided the necessary stimulus. FDC carrying inappropriate antigens also induced B cell APC function in the presence of exogenous DNP-OVA. However, in circumstances where soluble DNP-OVA was limiting, FDC bearing complexes containing DNP, which could crosslink B cell Ig receptors, induced the most potent APC function. Analysis by flow cytometry revealed that within 24 h of coculture with FDC, a significant percentage of B cells increased in size and expressed higher levels of major histocompatibility complex class II. By 48 h, an upregulation of the costimulatory molecule, B7/BB1, occurred, but only when exposed to the FDC bearing DNP. Taken together, the results demonstrate that FDC have the capacity to activate resting B cells to a state in which they can function as APC for T cells. The stimuli that FDC provide may include: (a) an antigen-dependent signal that influences the upregulation of B7/BB1; and (b) possibly a signal independent of crosslinking mIg that results in Ig internalization. The relevance of these findings to the formation of germinal centers and maintenance of the humoral response is discussed.


Vaccines ◽  
2018 ◽  
Vol 6 (4) ◽  
pp. 75 ◽  
Author(s):  
Angita Shrestha ◽  
Jean-Remy Sadeyen ◽  
Munir Iqbal

Avian viral diseases including avian influenza, Marek’s disease and Newcastle disease are detrimental to economies around the world that depend on the poultry trade. A significant zoonotic threat is also posed by avian influenza viruses. Vaccination is an important and widely used method for controlling these poultry diseases. However, the current vaccines do not provide full protection or sterile immunity. Hence, there is a need to develop improved vaccines. The major aim of developing improved vaccines is to induce strong and specific humoral and cellular immunity in vaccinated animals. One strategy used to enhance the immunogenicity of vaccines is the selective delivery of protective antigens to antigen-presenting cells (APCs) including dendritic cells, macrophages and B cells. APCs have a central role in the initiation and maintenance of immune responses through their ability to capture, process and present antigens to T and B cells. Vaccine technology that selectively targets APCs has been achieved by coupling antigens to monoclonal antibodies or ligands that are targeted by APCs. The aim of this review is to discuss existing strategies of selective delivery of antigens to APCs for effective vaccine development in poultry.


2019 ◽  
Vol 114 ◽  
pp. 172-178 ◽  
Author(s):  
Mohsen Arabpour ◽  
Reza Rasolmali ◽  
Abdoul-Rasoul Talei ◽  
Fereshteh Mehdipour ◽  
Abbas Ghaderi

2019 ◽  
Vol 8 (6) ◽  
pp. e1588085 ◽  
Author(s):  
Tatsuo Matsuda ◽  
Eisaku Miyauchi ◽  
Yu-Wen Hsu ◽  
Satoshi Nagayama ◽  
Kazuma Kiyotani ◽  
...  

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