Reimers J I, Andersen H U, Mauricio D, Pociot F, Karlsen A E, Petersen J S, Mandrup-Poulsen T, Nerup J
Steno Diabetes Center, Gentofte, Denmark.
Diabetes. 1996 Jun;45(6):771-8. doi: 10.2337/diab.45.6.771.
The aim of this study was to investigate whether strain-dependent differences in beta-cell sensitivity to interleukin (IL) 1 beta exist in vitro and in vivo and if so, whether these differences correlate to variations in IL-1 beta-induced islet inducible nitric oxide synthase (iNOS) mRNA expression and nitrite production in vitro and islet iNOS protein content in vivo. Isolated islets of Langerhans in vitro from Wistar-Kyoto/Møllegården (WK/Mol) rats were sensitive to the inhibitory effect of IL-1 beta on accumulated and acute insulin secretion, whereas islets from Brown Norway/Charles River (BN/CR) rats were resistant. Furthermore, IL-1 beta induced higher islet iNOS mRNA expression and nitric oxide production from WK/Mol islets compared with BN/CR islets. WK/Mol, WK/CR, BN/Mol, BN/CR, and Lewis-Scripps/Mol (LS/Mol) rats received one daily injection of recombinant human IL-1 beta (4.0 microg/kg) or vehicle for 5 days. All the strains investigated were susceptible to IL-1 beta-induced changes in body weight, food intake, temperature, and plasma glucagon and corticosterone. However, IL-1 beta induced hyperglycemia and impairment of beta-cell glucose responsiveness in WK/Mol and LS/Mol rats, but not in BN rats. Furthermore, IL-l beta-induced islet iNOS expression in vivo determined by immunostaining was greater in WK/Mol rats compared with WK/CR and BN/CR rats. No restriction fragment length polymorphisms, using 20 restriction enzymes, were identified in the iNOS gene in six rat strains including BioBreeding rats. In conclusion, the relative resistance of BN rat islets to IL-1 beta-induced inhibition of beta-cell function in vitro was associated with lower islet iNOS mRNA expression and nitrite production in this strain. Further, the resistance of BN rats to IL-1 beta-induced hyperglycemia was associated with a lower islet iNOS expression in vivo.
本研究的目的是调查胰岛β细胞对白细胞介素(IL)-1β的敏感性是否存在品系依赖性差异,以及如果存在,这些差异是否与体外IL-1β诱导的胰岛诱导型一氧化氮合酶(iNOS)mRNA表达和亚硝酸盐生成以及体内胰岛iNOS蛋白含量的变化相关。从Wistar-Kyoto/Møllegården(WK/Mol)大鼠分离的体外胰岛对IL-1β对累积和急性胰岛素分泌的抑制作用敏感,而来自Brown Norway/Charles River(BN/CR)大鼠的胰岛则具有抗性。此外,与BN/CR胰岛相比,IL-1β诱导WK/Mol胰岛中更高的iNOS mRNA表达和一氧化氮生成。WK/Mol、WK/CR、BN/Mol、BN/CR和Lewis-Scripps/Mol(LS/Mol)大鼠每天注射一次重组人IL-1β(4.0μg/kg)或赋形剂,持续5天。所有研究的品系均易受IL-1β诱导的体重、食物摄入量、体温以及血浆胰高血糖素和皮质酮变化的影响。然而,IL-1β诱导WK/Mol和LS/Mol大鼠出现高血糖和β细胞葡萄糖反应性受损,但在BN大鼠中未出现。此外,通过免疫染色测定,IL-1β诱导的体内胰岛iNOS表达在WK/Mol大鼠中比WK/CR和BN/CR大鼠更高。在包括BioBreeding大鼠在内的六个大鼠品系的iNOS基因中,未发现使用20种限制性内切酶的限制性片段长度多态性。总之,BN大鼠胰岛在体外对IL-1β诱导的β细胞功能抑制的相对抗性与该品系中较低的胰岛iNOS mRNA表达和亚硝酸盐生成相关。此外,BN大鼠对IL-1β诱导的高血糖的抗性与体内较低的胰岛iNOS表达相关。