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Modulation of the T Cell Response to beta-Lactoglobulin by Conjugation with Carboxymethyl Dextran

机译:通过与羧甲基葡聚糖结合来调节T细胞对β-乳球蛋白的反应。

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We have previously prepared beta-lactoglobulin (beta-LG)-carboxymethyl dextran (CMD) conjugates with water-soluble carbodiimide and achieved reduced immunogenicity of beta-LG. In the present study, to elucidate the mechanism for the reduced immunogenicity of beta-LG, we investigated changes in the T cell response to beta-LG after conjugation with CMDs differing in molecular weight (about 40 and 162 kDa). Lymph mode cells from BALB/c, C3H/He, and C57BL/6 mice that had been immunized with beta-LG or the conjugates were stimulated with beta-LG, and the in vivo T cell response was then evaluated by BrdU (5-bromo-2'-deoxyuridine) ELISA as the ex vivo proliferative response. T cells from the conjugate-immunized mice showed a lower proliferative response than those from the beta-LG-immunized mice. T cell epitope scanning, using synthesized peptides, showed that the T cell epitope profiles of the conjugates were similar to those of beta-LG, whereas the proliferative response to each epitope was reduced. These results indicate that the lower in vivo T cell response with the conjugates was not due to induction of conjugate-specific T cells, but due to a decrease in the number of beta-LG-specific T cells. After the lymph node cells from beta-LG-immunized mice had been stimulated with beta-LG or the conjugates, he efficiency of the antigen presentation of the conjugate to beta-LG-specific T cells was evaluated by BrdU ELISA as the in vitro proliferative response. The antigen presentation of beta-LG to the T cells was reduced by conjugation with CMD. In addition, conjugation with CMD enhanced the resistance of beta-LG to cathepsin B and cathepsin D, which suggest that conjugation with CMD inhibited the degradation of beta-LG by proteases in APC and led to suppression of the generation of antigenic peptides including T cell epitopes from beta-LG. It is therefore considered that the suppressive effect on the generation of T cell epitopes reduced the antigen presentation of the conjugates and that this reduction led to a decrease in the number of beta-LG-specific T cells in vivo. As a results, the decreased help to B cells by T cells would have reduced the antibody response to beta-LG. We conclude that suppression of the generation of T cell epitopes by conjugation with CMD is important to the mechanism for the reduced immunogenicity of beta-LG.
机译:我们以前已经准备了与水溶性碳二亚胺的β-乳球蛋白(β-LG)-羧甲基葡聚糖(CMD)缀合物,并降低了β-LG的免疫原性。在本研究中,为了阐明降低β-LG免疫原性的机制,我们研究了与分子量不同(约40和162 kDa)的CMD结合后T细胞对β-LG反应的变化。用β-LG或BALG / c,C3H / He和C57BL / 6小鼠免疫的淋巴模式细胞用β-LG刺激,然后用BrdU评估体内T细胞反应(5-溴2'-脱氧尿苷)ELISA作为离体增殖反应。来自结合物免疫小鼠的T细胞显示出比来自β-LG免疫小鼠的T细胞低的增殖反应。使用合成肽进行的T细胞抗原决定簇扫描显示,缀合物的T细胞抗原决定簇特征与β-LG相似,而对每个抗原决定簇的增殖反应却有所降低。这些结果表明,缀合物的体内T细胞应答较低不是由于诱导缀合物特异性T细胞,而是由于β-LG特异性T细胞数量的减少。用β-LG或结合物刺激来自β-LG免疫小鼠的淋巴结细胞后,通过BrdU ELISA将结合物向β-LG特异性T细胞的抗原呈递效率评估为体外增殖响应。通过与CMD结合减少了β-LG向T细胞的抗原呈递。另外,与CMD的缀合增强了β-LG对组织蛋白酶B和组织蛋白酶D的抗性,这表明与CMD的缀合抑制了APC中蛋白酶对β-LG的降解并导致抑制了包括T细胞在内的抗原肽的产生。 β-LG的抗原决定簇。因此,认为对T细胞表位的产生的抑制作用降低了缀合物的抗原呈递,并且这种降低导致体内β-LG特异性T细胞的数量减少。结果,T细胞对B细胞的帮助减少将减少对β-LG的抗体应答。我们得出结论,通过与CMD结合抑制T细胞表位的产生对于降低β-LG免疫原性的机制很重要。

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