Laboratory of Molecular Autoimmune Disease, Renal Division, Department of Medicine, Brigham and Women's Hospital, Boston, MA 02115, USA.
J Immunol. 2012 May 1;188(9):4568-80. doi: 10.4049/jimmunol.1102154. Epub 2012 Mar 30.
CSF-1, required for macrophage (Mø) survival, proliferation, and activation, is upregulated in the tubular epithelial cells (TECs) during kidney inflammation. CSF-1 mediates Mø-dependent destruction in lupus-susceptible mice with nephritis and, paradoxically, Mø-dependent renal repair in lupus-resistant mice after transient ischemia/reperfusion injury (I/R). We now report that I/R leads to defective renal repair, nonresolving inflammation, and, in turn, early-onset lupus nephritis in preclinical MRL/MpJ-Faslpr/Fas(lpr) mice (MRL-Fas(lpr) mice). Moreover, defective renal repair is not unique to MRL-Fas(lpr) mice, as flawed healing is a feature of other lupus-susceptible mice (Sle 123) and MRL mice without the Fas(lpr) mutation. Increasing CSF-1 hastens renal healing after I/R in lupus-resistant mice but hinders healing, exacerbates nonresolving inflammation, and triggers more severe early-onset lupus nephritis in MRL-Fas(lpr) mice. Probing further, the time-related balance of M1 "destroyer" Mø shifts toward the M2 "healer" phenotype in lupus-resistant mice after I/R, but M1 Mø continue to dominate in MRL-Fas(lpr) mice. Moreover, hypoxic TECs release mediators, including CSF-1, that are responsible for stimulating the expansion of M1 Mø inherently poised to destroy the kidney in MRL-Fas(lpr) mice. In conclusion, I/R induces CSF-1 in injured TECs that expands aberrant Mø (M1 phenotype), mediating defective renal repair and nonresolving inflammation, and thereby hastens the onset of lupus nephritis.
CSF-1 是巨噬细胞(Mø)存活、增殖和激活所必需的,在肾脏炎症期间肾小管上皮细胞(TEC)中上调。CSF-1 在狼疮易感小鼠伴肾炎的 Mø 依赖性破坏中起介导作用,而在狼疮抵抗小鼠短暂缺血/再灌注损伤(I/R)后 Mø 依赖性肾修复中起介导作用。我们现在报告,I/R 导致肾脏修复缺陷、炎症持续存在,进而在临床前 MRL/MpJ-Faslpr/Fas(lpr) 小鼠(MRL-Fas(lpr) 小鼠)中引发早期狼疮肾炎。此外,肾脏修复缺陷不仅是 MRL-Fas(lpr) 小鼠的特征,因为其他狼疮易感小鼠(Sle 123)和没有 Fas(lpr)突变的 MRL 小鼠也存在修复缺陷。增加 CSF-1 可加速狼疮抵抗小鼠 I/R 后的肾脏愈合,但会阻碍愈合、加重炎症持续存在,并在 MRL-Fas(lpr) 小鼠中引发更严重的早期狼疮肾炎。进一步研究表明,在狼疮抵抗小鼠中,I/R 后与时间相关的 M1“破坏者”Mø 向 M2“修复者”表型的平衡发生变化,但 M1 Mø 在 MRL-Fas(lpr) 小鼠中继续占主导地位。此外,缺氧 TEC 释放包括 CSF-1 在内的介质,这些介质负责刺激固有地准备破坏 MRL-Fas(lpr) 小鼠肾脏的 M1 Mø 的扩张。总之,I/R 诱导受损 TEC 释放 CSF-1,CSF-1 会扩增异常的 Mø(M1 表型),介导肾脏修复缺陷和炎症持续存在,从而加速狼疮肾炎的发生。