Vogt B A, Shanley T P, Croatt A, Alam J, Johnson K J, Nath K A
Department of Pediatrics, University of Minnesota, Minneapolis 55455, USA.
J Clin Invest. 1996 Nov 1;98(9):2139-45. doi: 10.1172/JCI119020.
Considerable attention is directed to a surprising biologic phenomenon wherein tissues exposed to one insult acquire resistance to another. We identify a novel example of acquired resistance to acute renal failure and a mechanism that contributes to such resistance. Nephrotoxic serum, administered to rats 24 h before the induction of glycerol-induced acute renal failure, reduces functional and structural injury that occurs in this model. Since heme oxygenase, the rate-limiting enzyme in heme degradation, protects against heme protein-induced renal injury, we questioned whether induction of heme oxygenase underlies the protection afforded by nephrotoxic serum. Kidney heme oxygenase (HO-1) mRNA was induced 6 h after nephrotoxic serum and renal tubules were identified as the site of expression of heme oxygenase protein. Induction of heme oxygenase was accompanied by increased renal content of ferritin but not by induction of other antioxidant enzymes. Inhibition of heme oxygenase prevented the protection afforded by nephrotoxic serum. Nephrotoxic serum did not protect against ischemic acute renal failure, a model in which heme oxygenase is not induced. Thus, nephrotoxic serum protects against glycerol-induced acute renal failure by inducing heme oxygenase in tubules. This study provides the first demonstration of resistance to tubular injury acquired from glomerular inflammation, uncovers a mechanism for such resistance, and exposes the dialogue that occurs between glomeruli and tubules.
相当多的注意力被导向一种令人惊讶的生物学现象,即暴露于一种损伤的组织会获得对另一种损伤的抗性。我们发现了一种对急性肾衰竭获得性抗性的新例子以及一种促成这种抗性的机制。在甘油诱导的急性肾衰竭诱导前24小时给大鼠注射肾毒性血清,可减轻该模型中发生的功能和结构损伤。由于血红素加氧酶是血红素降解中的限速酶,可防止血红素蛋白诱导的肾损伤,我们质疑血红素加氧酶的诱导是否是肾毒性血清提供保护作用的基础。肾毒性血清注射6小时后,肾脏血红素加氧酶(HO-1)mRNA被诱导,并且肾小管被确定为血红素加氧酶蛋白的表达部位。血红素加氧酶的诱导伴随着肾脏中铁蛋白含量的增加,但其他抗氧化酶并未被诱导。抑制血红素加氧酶可阻止肾毒性血清提供的保护作用。肾毒性血清不能保护免受缺血性急性肾衰竭,在该模型中血红素加氧酶不会被诱导。因此,肾毒性血清通过诱导肾小管中的血红素加氧酶来保护免受甘油诱导的急性肾衰竭。这项研究首次证明了从肾小球炎症获得的对肾小管损伤的抗性,揭示了这种抗性的机制,并揭示了肾小球和肾小管之间发生的对话。