scholarly journals Dysfunction of Selective Suppression of Auto-Antibody Production in SLE Mouse and Reconstruction of this Mechanism by Induction of Bone-Marrow Chimerism

Author(s):  
Emiko Takeuchi
2005 ◽  
Vol 80 (11) ◽  
pp. 1541-1545 ◽  
Author(s):  
Jonathan D. Powell ◽  
Courtney Fitzhugh ◽  
Elizabeth M. Kang ◽  
Mathew Hsieh ◽  
Ronald H. Schwartz ◽  
...  

Blood ◽  
1959 ◽  
Vol 14 (5) ◽  
pp. 548-557 ◽  
Author(s):  
J. W. HOLLINGSWORTH ◽  
Mary C. Perfetto

Abstract 1. Humoral antibody production has been studied in severely irradiated mice treated with isologous (same strain) or homologous (different strain) bone marrow. 2. The two methods of study involved functional end points of humoral antibody production as evidenced by in vivo lysis of rat erythrocytes or by regression of mouse leukosis E.L. 4 in histoincompatible mouse recipients. 3. Humoral antibody production was lost after irradiation and isologous marrow treatment, but recovered partially in two weeks and almost completely in four weeks. 4. Established immunity was not abruptly terminated after irradiation and treatment with either isologous or homologous marrow, although there was premature loss of immunity to rat erythrocytes by the irradiated, isologous marrow-treated mouse. 5. Permanent immunity could not be transferred by isologous marrow or spleen from immunized donors to irradiated recipients. 6. Treatment of mice histoincompatible to E.L. 4 leukosis with histocompatible donor bone marrow failed to establish rejection of the tumor. 7. These studies support the concept that humoral antibody production in irradiated, marrow-treated mice remains a function of the host rather than of the transplanted tissues. 8. These studies failed to clarify the conflicting evidence concerning the mechanism of the late illness that occurs after treatment of the irradiated mouse with bone marrow from a different strain or species.


Rheumatology ◽  
2019 ◽  
Vol 58 (12) ◽  
pp. 2230-2239
Author(s):  
Anouk von Borstel ◽  
Wayel H Abdulahad ◽  
Jan Stephan Sanders ◽  
Jasper Rip ◽  
Stefan F H Neys ◽  
...  

Abstract Objectives To determine Bruton’s tyrosine kinase (BTK) protein and phosphorylation levels in B cell subsets of granulomatosis with polyangiitis (GPA) patients and to investigate the effect of BTK blockade on in vitro B cell cytokine production, subset distribution and (auto)antibody production. Methods BTK protein and phosphorylation levels were determined by flow cytometry in peripheral blood B cells of 29 untreated GPA patients [9 active and 20 remission GPA patients (10 ANCA– and 10 ANCA+)], 9 age- and sex-matched healthy controls (HCs) and 9 untreated active RA patients. The effect of BTK blockade on in vitro B cell cytokine production, subset distribution and (auto)antibody production was determined in the same donors in peripheral blood mononuclear cell cultures. Results BTK protein levels were significantly increased in transitional and naïve B cells of active GPA and RA patients compared with remission GPA patients and HCs. Both B cell subsets of active patients were more sensitive to B cell receptor stimulation, as BTK and phospholipase Cγ2 phosphorylation were increased in these patients. In vitro BTK blockade had profound effects on B cell cytokine production, plasma cell formation and (auto)antibody production in both GPA patients and HCs. Interestingly, the effect of BTK blockade was less pronounced in active GPA patients, possibly due to increased activation of B cells. Conclusion We show that BTK protein and phosphorylation levels are most profoundly increased in newly emerging B cells of active GPA patients compared with remission patients. BTK blockade greatly inhibits in vitro B cell effector functions in GPA patients and HCs. These promising data identify BTK as an interesting novel therapeutic target in the treatment of GPA.


1979 ◽  
Vol 88 (2) ◽  
pp. 865-867
Author(s):  
R. M. Khaitov ◽  
I. G. Sidorovich ◽  
A. A. Vlasov ◽  
I. P. Dishkant

2002 ◽  
Vol 81 (9) ◽  
pp. 633-636 ◽  
Author(s):  
E. Sandberg ◽  
G. Bergenholtz ◽  
C. Eklund ◽  
U.I. Dahlgren

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