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免疫缺陷作为糖尿病突变db的主要表型。柯萨奇病毒B4相关研究。

Immunodeficiency as primary phenotype of diabetes mutation db. Studies with coxsackievirus B4.

作者信息

Montgomery L B, Loria R M, Chinchilli V M

机构信息

Department of Microbiology and Immunology, School of Basic Health Sciences, Virginia Commonwealth University, Medical College of Virginia, Richmond 23298-0678.

出版信息

Diabetes. 1990 Jun;39(6):675-82. doi: 10.2337/diab.39.6.675.

Abstract

Restriction of food intake (R) in the C57BL/KsJ db/db diabetic mutant mouse prevents phenotypic expression of diabetes, whereas ad libitum feeding (AL) results in spontaneous diabetes. Previous results showed that coxsackievirus B4 (CB4)-infected genetically identical db/db mice with and without diabetes could be distinguished by the levels of CB4-neutralizing antibody and virus-specific antibodies as determined by enzyme-linked immunosorbent assay and the numbers of splenic antibody-forming cells. Our results show that the diabetic genotype db/db R was deficient in total spleen lymphocytes and lymphocyte subsets and was unable to produce agglutinating antibody to sheep erythrocytes (SRBCs) or specific antibody to noninfectious CB4. The db/db AL mutant expressing the diabetic phenotype was not as deficient in spleen cell parameters. The response to noninfectious CB4 was delayed but substantial. The db/db AL mouse was also unique with its higher agglutinating antibody levels after virus infection than its uninfected control or the infected or uninfected db/db R mouse. In vitro SRBC immunization of spleen lymphocytes determined that this enhanced response was largely dependent on the diabetic milieu and was not a property of the cells. Genetic predisposition to diabetes is characterized by immunodeficiency as evident from inadequate levels of antibodies to infectious or noninfectious antigens and absolute and relative deficiency in spleen lymphocyte subsets and total numbers of spleen cells. Phenotypic expression of diabetes results in partial amelioration of the immunodeficiency evident in diabetic genotype db/db R without disease.

摘要

在C57BL/KsJ db/db糖尿病突变小鼠中,限制食物摄入(R)可预防糖尿病表型的表达,而自由采食(AL)则会导致自发性糖尿病。先前的结果表明,通过酶联免疫吸附测定法测定的柯萨奇病毒B4(CB4)中和抗体水平和病毒特异性抗体以及脾抗体形成细胞的数量,可以区分感染了CB4的、基因相同的有无糖尿病的db/db小鼠。我们的结果表明,糖尿病基因型db/db R的脾淋巴细胞总数和淋巴细胞亚群存在缺陷,无法产生针对绵羊红细胞(SRBC)的凝集抗体或针对非感染性CB4的特异性抗体。表达糖尿病表型的db/db AL突变体在脾细胞参数方面没有那么缺乏。对非感染性CB4的反应延迟但显著。db/db AL小鼠在病毒感染后的凝集抗体水平也高于未感染的对照或感染或未感染的db/db R小鼠,这一点也很独特。对脾淋巴细胞进行体外SRBC免疫测定表明,这种增强的反应在很大程度上取决于糖尿病环境,而不是细胞的特性。糖尿病的遗传易感性表现为免疫缺陷,这从针对感染性或非感染性抗原的抗体水平不足以及脾淋巴细胞亚群和脾细胞总数的绝对和相对缺乏中可以明显看出。糖尿病的表型表达导致糖尿病基因型db/db R在无疾病情况下明显的免疫缺陷得到部分改善。

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