Amano M T, Carneiro A S, Ribeiro O G, Cabrera W K, De Franco M, Ibañez O M, Isaac L, Starobinas N
Laboratório de Complemento, Departamento de Imunologia, Instituto de Ciências Biomédicas, Universidade de São Paulo, São Paulo, Brazil.
Inflamm Res. 2009 Apr;58(4):204-9. doi: 10.1007/s00011-008-8132-4.
Mice selected for a strong (AIRmax) or weak (AIRmin) acute inflammatory response present different susceptibilities to bacterial infections, autoimmune diseases and carcinogenesis. Variations in these phenotypes have been also detected in AIRmax and AIRmin mice rendered homozygous for Slc11a1 resistant (R) and susceptible (S) alleles. Our aim was to investigate if the phenotypic differences observed in these mice was related to the complement system.
AIRmax and AIRmin mice and AIRmax and AIRmin groups homozygous for the resistance (R) or susceptibility (S) alleles of the solute carrier family 11a1 member (Slc11a1) gene, formerly designated Nramp-1.
While no difference in complement activity was detected in sera from AIRmax and AIRmin strains, all sera from AIRmax Slc11a1 resistant mice (AIRmax(RR)) presented no complement-dependent hemolytic activity. Furthermore, C5 was not found in their sera by immunodiffusion and, polymerase chain reaction and DNA sequencing of its gene demonstrated that AIRmax(RR) mice are homozygous for the C5 deficient (D) mutation previously described in A/J. Therefore, the C5D allele was fixed in homozygosis in AIRmax(RR) line.
The AIRmax(RR) line is a new experimental mouse model in which a strong inflammatory response can be triggered in vivo in the absence of C5.
被选择用于产生强烈(AIRmax)或微弱(AIRmin)急性炎症反应的小鼠,对细菌感染、自身免疫性疾病和致癌作用表现出不同的易感性。在纯合了溶质载体家族11a1成员(Slc11a1,以前称为Nramp-1)抗性(R)和易感(S)等位基因的AIRmax和AIRmin小鼠中,也检测到了这些表型的差异。我们的目的是研究在这些小鼠中观察到的表型差异是否与补体系统有关。
AIRmax和AIRmin小鼠以及溶质载体家族11a1成员(Slc11a1)基因抗性(R)或易感(S)等位基因纯合的AIRmax和AIRmin组,该基因以前称为Nramp-1。
虽然在AIRmax和AIRmin品系的血清中未检测到补体活性差异,但来自AIRmax Slc11a1抗性小鼠(AIRmax(RR))的所有血清均无补体依赖性溶血活性。此外,通过免疫扩散在其血清中未发现C5,对其基因进行聚合酶链反应和DNA测序表明,AIRmax(RR)小鼠对于先前在A/J中描述的C5缺陷(D)突变是纯合的。因此,C5D等位基因在AIRmax(RR)品系中纯合固定。
AIRmax(RR)品系是一种新的实验小鼠模型,在该模型中,在没有C5的情况下可在体内引发强烈的炎症反应。