热休克蛋白60与关节炎相关的T细胞表位鼻腔给药是一种有前景的慢性关节炎免疫治疗方法。

B Prakken, M Wauben, P van Kooten, S Anderton, R van der Zee, W Kuis, W van Eden
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引用次数: 18

摘要

用分枝杆菌抗原免疫Lewis大鼠可诱导佐剂性关节炎(AA)。该疾病可通过识别分枝杆菌热休克蛋白60 (hsp60)中180-188个氨基酸序列的T细胞克隆A2b被动转移,并与粗软骨蛋白聚糖发生交叉反应。我们通过鼻腔给药含有这种表位(分枝杆菌hsp60 176-190)的肽,成功诱导外周细胞对这种aa相关T细胞表位的耐受。在用176-190鼻腔治疗和用hsp60分枝杆菌免疫的大鼠中,对176-190的增殖反应降低。176-190处理的大鼠鼻部AA受到抑制,而对照组分枝杆菌hsp60肽处理的大鼠鼻部AA没有受到抑制(211-225)。此外,鼻腔176-190在非微生物诱导的实验性关节炎(avridine诱导的关节炎)中也具有类似的关节炎保护作用。在随后的研究中,我们试图通过鼻给药分枝杆菌hsp60肽180-188和180- 1818,180 -188(L183-> a)的肽类似物(丙氨酸183)来预防和治疗AA,该肽已被证明对大鼠RT1 Bl具有更高的mhc结合亲和力,并且在体外具有更高的抑制增殖性A2b反应的能力。我们发现鼻部给药180-188对AA有中度关节炎抑制作用,而其类似肽丙氨酸183则有很强的抑制作用。这种强烈的关节炎抑制作用仅部分是由于对大鼠RT1 Bl具有更高的mhc结合亲和力。此外,有可能被动转移丙氨酸183诱导的疾病保护。在我们看来,目前的发现可能为通过鼻腔给药(类似物)肽的免疫治疗提供了新的前景,这些肽与关节特异性软骨蛋白聚糖表位具有模仿关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nasal administration of arthritis-related T cell epitopes of heat shock protein 60 as a promising way for immunotherapy in chronic arthritis.

Adjuvant Arthritis (AA) can be induced in Lewis rats by immunisation with mycobacterial antigens. The disease can be passively transferred with T cell clone A2b, which recognises the 180-188 amino acid sequence in mycobacterial heat shock protein 60 (hsp60) and which crossreacts with crude cartilage proteoglycans. We succeeded to induce peripheral tolerance to this AA-associated T cell epitope following nasal administration of a peptide containing this epitope (mycobacterial hsp60 176-190). In rats treated nasally with 176-190 and immunised with mycobacterial hsp60, proliferative responses to 176-190 were reduced. AA was inhibited nasally with 176-190 treated rats and not in rats nasally treated with a control mycobacterial hsp60 peptide (211-225). Moreover, nasal 176-190 led to similar arthritis protective effects in a non-microbially induced experimental arthritis (avridine induced arthritis). In a subsequent study we tried to prevent and to treat AA through nasal administration of mycobacterial hsp60 peptide 180-188 and a peptide analogue of 180-188, 180-188(L183->A) (Alanine 183), which has been shown to have an increased MHC-binding affinity for rat RT1 Bl and an increased capacity to inhibit the proliferative A2b response in vitro. We found that nasal administration of 180-188 had a moderate arthritis suppressive effect in AA, whereas its analogue peptide Alanine 183, had a strong suppressive effect. This strong arthritis suppressive effect was only partly due to the higher MHC-binding affinity for rat RT1 Bl. Furthermore, it was possible to passively transfer nasal Alanine 183 induced disease protection. The present findings may in our view offer novel prospects for immunotherapy through nasal administration of (analogue) peptides, with a mimicry relationship with joint specific cartilage proteoglycan epitopes.

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