Vollmar A M, Schulz R
Institute of Pharmacology, Toxicology and Pharmacy, University of Munich, Germany.
J Clin Invest. 1995 Jun;95(6):2442-50. doi: 10.1172/JCI117944.
The coexpression of the natriuretic peptides ANP, BNP and CNP as well as their differential regulation in mouse macrophages was demonstrated by quantitative PCR, HPLC analysis, and specific radioimmunoassays. Exposure of peritoneal- and bone marrow-derived macrophages to various immunomodulators revealed that bacterial LPS strikingly increases (up to 300-fold) the mRNA coding for CNP as does zymosan (up to 15-fold). In this respect, neither the phorbol ester PMA nor the glucocorticoid dexamethasone had any effect. Examination of macrophages for ANP mRNA showed a similar response to LPS and zymosan, though only a three- to sixfold increase, confirming previous data. In contrast, the concentration of mRNA coding for brain natriuretic peptide in these cells was reduced by dexamethasone (up to twofold) as well as LPS (two- to fivefold). No change was observed upon challenge with zymosan or PMA. The findings at the mRNA level are complemented by their corresponding peptide products. Incubation of macrophages with LPS resulted in a two- and fivefold elevation of intracellular ANP and CNP immunoreactivity, respectively. The amount of peptides released from cells under these conditions was found increased for ANP (threefold) and CNP (10-fold). No changes were observed for both intra- and extracellular brain natriuretic peptide. The coexpression of natriuretic peptides in macrophages as well as their different regulations by immunomodulators suggest discrete functions of these peptides within the immune system.
通过定量PCR、HPLC分析和特异性放射免疫测定,证实了利钠肽ANP、BNP和CNP在小鼠巨噬细胞中的共表达及其差异调节。将腹膜和骨髓来源的巨噬细胞暴露于各种免疫调节剂后发现,细菌脂多糖(LPS)显著增加(高达300倍)编码CNP的mRNA,酵母聚糖也有类似作用(高达15倍)。在这方面,佛波酯PMA和糖皮质激素地塞米松均无任何作用。检测巨噬细胞中的ANP mRNA发现,其对LPS和酵母聚糖有类似反应,尽管仅增加三到六倍,这证实了先前的数据。相比之下,这些细胞中编码脑钠肽的mRNA浓度在地塞米松(高达两倍)和LPS(两到五倍)作用下降低。用酵母聚糖或PMA刺激后未观察到变化。mRNA水平的研究结果得到了相应肽产物的补充。用LPS孵育巨噬细胞导致细胞内ANP和CNP免疫反应性分别升高两倍和五倍。在这些条件下,发现细胞释放的ANP肽量增加了三倍,CNP增加了十倍。细胞内和细胞外脑钠肽均未观察到变化。利钠肽在巨噬细胞中的共表达及其受免疫调节剂的不同调节表明这些肽在免疫系统中具有不同的功能。