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1
Characterization of the murine immune response to type 6 pneumococcal polysaccharide.小鼠对6型肺炎球菌多糖免疫反应的特征
Infect Immun. 1983 Feb;39(2):615-22. doi: 10.1128/iai.39.2.615-622.1983.
2
The role of a functionally distinct IgM anti-type III pneumococcal polysaccharide (SIII) in low-dose paralysis to SIII in mice.功能独特的IgM抗III型肺炎球菌多糖(SIII)在小鼠对SIII低剂量麻痹中的作用。
Aust J Exp Biol Med Sci. 1986 Feb;64 ( Pt 1):19-35. doi: 10.1038/icb.1986.3.
3
Primary murine immunoglobulin M responses to certain pneumococcal capsular polysaccharides consist primarily of anti-pneumococcal cell wall carbohydrate antibodies.小鼠对某些肺炎球菌荚膜多糖的原发性免疫球蛋白M反应主要由抗肺炎球菌细胞壁碳水化合物抗体组成。
Infect Immun. 1986 Jun;52(3):867-71. doi: 10.1128/iai.52.3.867-871.1986.
4
Effect of concanavalin A on lymphocyte interactions involved in the antibody response to type III pneumococcal polysaccharide. II. Ability of suppressor T cells to act on both B cells and amplified T cells to limit the magnitude of the antibody response.伴刀豆球蛋白A对参与Ⅲ型肺炎球菌多糖抗体应答的淋巴细胞相互作用的影响。II. 抑制性T细胞作用于B细胞和扩增T细胞以限制抗体应答幅度的能力。
J Immunol. 1977 Sep;119(3):1163-8.
5
Sensitivity of amplifier T cells involved in the antibody response to type III pneumococcal polysaccharide to anti-lymphocyte serum.参与对III型肺炎球菌多糖抗体反应的放大T细胞对抗淋巴细胞血清的敏感性。
J Immunol. 1977 Sep;119(3):1159-62.
6
Type 6 and 19 pneumococcal polysaccharides coupled to erythrocytes elicit pneumococcal cell wall-specific primary IgM responses and capsular polysaccharide-specific secondary IgG responses.与红细胞偶联的6型和19型肺炎球菌多糖引发肺炎球菌细胞壁特异性的原发性IgM反应和荚膜多糖特异性的继发性IgG反应。
Eur J Immunol. 1990 Mar;20(3):595-603. doi: 10.1002/eji.1830200320.
7
Effect of concanavalin A on lymphocyte interactions involved in the antibody response to type III pneumococcal polysaccharide I. Comparison of the suppression induced by con A and low dose paralysis.伴刀豆球蛋白A对参与Ⅲ型肺炎球菌多糖抗体应答的淋巴细胞相互作用的影响。伴刀豆球蛋白A诱导的抑制作用与低剂量麻痹作用的比较。
J Immunol. 1977 Mar;118(3):952-6.
8
Kinetics of the antibody response to type III pneumococcal polysaccharide. II. Factors influencing the serum antibody levels after immunization with an optimally immunogenic dose of antigen.抗III型肺炎球菌多糖抗体反应的动力学。II. 用最佳免疫原性剂量抗原免疫后影响血清抗体水平的因素。
J Immunol. 1976 Jan;116(1):52-64.
9
Amplifier T cell activity is decreased in MRL/1 mice: failure of concanavalin A and anti-lymphocyte serum to enhance antibody responses to thymus-independent antigens.MRL/1小鼠中辅助性T细胞活性降低:伴刀豆球蛋白A和抗淋巴细胞血清无法增强对胸腺非依赖性抗原的抗体反应。
Clin Exp Immunol. 1985 Apr;60(1):95-103.
10
Regulation of the antibody response to pneumococcal polysaccharide by thymus-derived cells.胸腺来源细胞对肺炎球菌多糖抗体应答的调节
Rev Infect Dis. 1981 Mar-Apr;3(2):332-41. doi: 10.1093/clinids/3.2.332.

引用本文的文献

1
Conjugation of polysaccharide 6B from Streptococcus pneumoniae with pneumococcal surface protein A: PspA conformation and its effect on the immune response.肺炎链球菌6B多糖与肺炎球菌表面蛋白A的结合:PspA构象及其对免疫反应的影响。
Clin Vaccine Immunol. 2013 Jun;20(6):858-66. doi: 10.1128/CVI.00754-12. Epub 2013 Apr 3.
2
Synthetic 6B di-, tri-, and tetrasaccharide-protein conjugates contain pneumococcal type 6A and 6B common and 6B-specific epitopes that elicit protective antibodies in mice.合成的6B二糖、三糖和四糖-蛋白质缀合物含有肺炎球菌6A和6B型共同表位以及6B特异性表位,可在小鼠体内引发保护性抗体。
Infect Immun. 2001 Feb;69(2):787-93. doi: 10.1128/IAI.69.2.787-793.2001.
3
Role of spleen in immune response to polyvalent pneumococcal vaccine.脾脏在对多价肺炎球菌疫苗免疫反应中的作用。
Br Med J (Clin Res Ed). 1983 Dec 17;287(6408):1829-32. doi: 10.1136/bmj.287.6408.1829.
4
Serum antibody responses of juvenile and infant rhesus monkeys injected with Haemophilus influenzae type b and pneumococcus type 6A capsular polysaccharide-protein conjugates.注射b型流感嗜血杆菌和6A 型肺炎球菌荚膜多糖-蛋白结合物的幼年和婴儿恒河猴的血清抗体反应。
Infect Immun. 1984 Sep;45(3):582-91. doi: 10.1128/iai.45.3.582-591.1984.
5
Phosphorylcholine determinants in six pneumococcal capsular polysaccharides detected by monoclonal antibody.通过单克隆抗体检测六种肺炎球菌荚膜多糖中的磷酰胆碱决定簇。
Infect Immun. 1984 Mar;43(3):876-8. doi: 10.1128/iai.43.3.876-878.1984.
6
Immunogenic properties of octasaccharide-protein conjugates derived from Klebsiella serotype 11 capsular polysaccharide.源自肺炎克雷伯菌血清型11荚膜多糖的八糖-蛋白质缀合物的免疫原性特性。
Infect Immun. 1985 Feb;47(2):421-8. doi: 10.1128/iai.47.2.421-428.1985.
7
Primary murine immunoglobulin M responses to certain pneumococcal capsular polysaccharides consist primarily of anti-pneumococcal cell wall carbohydrate antibodies.小鼠对某些肺炎球菌荚膜多糖的原发性免疫球蛋白M反应主要由抗肺炎球菌细胞壁碳水化合物抗体组成。
Infect Immun. 1986 Jun;52(3):867-71. doi: 10.1128/iai.52.3.867-871.1986.
8
Natural killer cell regulation of age-related and type-specific variations in antibody responses to pneumococcal polysaccharides.自然杀伤细胞对肺炎球菌多糖抗体反应中与年龄相关及类型特异性变化的调节。
J Exp Med. 1986 Nov 1;164(5):1505-15. doi: 10.1084/jem.164.5.1505.

本文引用的文献

1
The bacteriology of acute otitis media in children with special reference to Streptococcus pneumoniae as studied by bacteriological and antigen detection methods.采用细菌学和抗原检测方法对儿童急性中耳炎的细菌学进行研究,特别关注肺炎链球菌。
Scand J Infect Dis. 1981;13(3):177-83. doi: 10.3109/inf.1981.13.issue-3.04.
2
Immune response of neonates to pneumococcal polysaccharide-protein conjugate.新生儿对肺炎球菌多糖-蛋白质结合物的免疫反应。
Immunology. 1982 Jun;46(2):333-42.
3
The epidemiology of pneumococcal disease in infants and children.婴幼儿肺炎球菌疾病的流行病学
Rev Infect Dis. 1981 Mar-Apr;3(2):246-53. doi: 10.1093/clinids/3.2.246.
4
Immunochemistry of groups A, B, and C meningococcal polysaccharide-tetanus toxoid conjugates.A、B和C群脑膜炎球菌多糖-破伤风类毒素结合物的免疫化学
J Immunol. 1981 Sep;127(3):1011-8.
5
Efficacy of pneumococcal vaccination against recurrent otitis media. Preliminary results of a field trial in Finland.
Ann Otol Rhinol Laryngol Suppl. 1980 May-Jun;89(3 Pt 2):357-62. doi: 10.1177/00034894800890s383.
6
A gene of the immunoglobulin H-chain cluster controls the murine antibody response to pneumococcal polysaccharide type 14.免疫球蛋白重链簇的一个基因控制小鼠对14型肺炎球菌多糖的抗体反应。
Scand J Immunol. 1980;12(2):155-8. doi: 10.1111/j.1365-3083.1980.tb00052.x.
7
Pneumococcal vaccine and otitis media.肺炎球菌疫苗与中耳炎
Lancet. 1980 Sep 13;2(8194):547-51. doi: 10.1016/s0140-6736(80)91989-3.
8
Immunization of dissociated spleen cell cultures from normal mice.对来自正常小鼠的脾细胞解离培养物进行免疫接种。
J Exp Med. 1967 Sep 1;126(3):423-42. doi: 10.1084/jem.126.3.423.
9
Studies on the regulation of avidity at the level of the single antibody-forming cell. The effect of antigen dose and time after immunization.关于单个抗体形成细胞水平亲和力调节的研究。抗原剂量和免疫后时间的影响。
J Exp Med. 1970 Jul 1;132(1):77-88. doi: 10.1084/jem.132.1.77.
10
Strain differences in the antibody plaque-forming cell responses of inbred mice to pneumococcal polysaccharide.近交系小鼠对肺炎球菌多糖的抗体空斑形成细胞反应中的品系差异。
Cell Immunol. 1971 Feb;2(1):73-81. doi: 10.1016/0008-8749(71)90026-8.

小鼠对6型肺炎球菌多糖免疫反应的特征

Characterization of the murine immune response to type 6 pneumococcal polysaccharide.

作者信息

Fairchild R L, Braley-Mullen H

出版信息

Infect Immun. 1983 Feb;39(2):615-22. doi: 10.1128/iai.39.2.615-622.1983.

DOI:10.1128/iai.39.2.615-622.1983
PMID:6339385
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC347996/
Abstract

The antibody response to type 6 (Danish type 6A) pneumococcal capsular polysaccharide (S6) was determined in various strains of mice. S6 elicited a very low plaque-forming cell (PFC) response in most strains of mice. BALB/c mice responded better than most other strains, and the response to S6 was further characterized in BALB/c mice. Immunization with 1 to 5 micrograms of S6 induced a plaque-forming cell response of short duration which consisted totally of immunoglobulin M-producing PFC. Athymic nude mice produced three- to fivefold more PFC in response to S6 than their euthymic littermates, suggesting that thymus-derived (T) cells negatively influence the S6 response. Regulation of the response by T cells was further suggested by the ability of antilymphocyte serum to enhance the S6 PFC response and by the suppressed response induced by priming with a low dose of S6 3 days before immunization with an optimal dose of S6 (low dose paralysis). When concanavalin A was given 2 days after immunization with S6, the response was enhanced two- to sevenfold, suggesting that the response is also positively influenced by T amplifier cells. When the avidity of the antibody produced by S6-specific PFC was measured by a plaque inhibition test, the avidity of the anti-S6 antibody was found to be very low. These results suggest that S6 is a poor immunogen because the affinity of the S6-specific antibody and B cell surface receptors is low.

摘要

在不同品系的小鼠中测定了对6型(丹麦6A型)肺炎球菌荚膜多糖(S6)的抗体反应。在大多数品系的小鼠中,S6引发的空斑形成细胞(PFC)反应非常低。BALB/c小鼠的反应比大多数其他品系更好,并且在BALB/c小鼠中对S6的反应得到了进一步表征。用1至5微克S6免疫诱导了短暂的空斑形成细胞反应,该反应完全由产生免疫球蛋白M的PFC组成。无胸腺裸鼠对S6产生的PFC比其有胸腺的同窝小鼠多三至五倍,这表明胸腺来源的(T)细胞对S6反应有负面影响。抗淋巴细胞血清增强S6 PFC反应的能力以及在以最佳剂量S6免疫前3天用低剂量S6预处理诱导的反应受抑制(低剂量麻痹),进一步表明了T细胞对该反应的调节作用。在用S6免疫后2天给予刀豆球蛋白A时,反应增强了两至七倍,这表明该反应也受到T放大细胞的正向影响。当通过空斑抑制试验测量由S6特异性PFC产生的抗体的亲和力时,发现抗S6抗体的亲和力非常低。这些结果表明S6是一种弱免疫原,因为S6特异性抗体与B细胞表面受体的亲和力很低。