Divergent incommensurable models have been developed to explain the pathogenesis of lupus nephritis. Most contemporary models favor a central role for anti-chromatin antibodies. How they exert their pathogenic effect has, however, endorsed conflicts that at least for now preclude insight into definitive pathogenic pathways. The following paradigms are contemporarily in conflict with each other: i) the impact of anti-double-stranded DNA (dsDNA) antibodies that cross-react with inherent renal antigens, ii) the impact of anti-dsDNA antibodies targeting exposed chromatin in glomeruli, and iii) the impact of relative antibody avidity for dsDNA, chromatin fragments, or cross-reacting antigens. Aside from these three themes, the pathogenic role of T cells in lupus nephritis is not clear. These different models should be tested through a collaboration between scientists belonging to the different paradigms. If it turns out that there are different pathogenic pathways in lupus nephritis, the emerging pathogenic mechanism(s) may be encountered with new individual causal therapy modalities. Today, therapy is still unspecific and far from interfering with the cause(s) of the disorder. This review attempts to describe what we know about processes that may cause lupus nephritis and how such basic processes may be affected if we can specifically interrupt them. Secondary inflammatory mechanisms, cytokine signatures, activation of complement, and other contributors to inflammation will not be discussed herein; rather, the events that trigger these factors will be discussed.
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http://dx.doi.org/10.1016/j.ajpath.2016.06.026 | DOI Listing |
PeerJ
January 2025
Department of Nephrology, Children's Hospital, Zhejiang University School of Medicine, National Clinical Research Center for Child Health, Hangzhou, Zhejiang, China.
Dysregulated specificity proteins (SPs), members of the C2H2 zinc-finger family, are crucial transcription factors (TFs) with implications for renal physiology and diseases. This comprehensive review focuses on the role of SP family members, particularly SP1 and SP3, in renal physiology and pathology. A detailed analysis of their expression and cellular localization in the healthy human kidney is presented, highlighting their involvement in fatty acid metabolism, electrolyte regulation, and the synthesis of important molecules.
View Article and Find Full Text PDFKidney Res Clin Pract
January 2025
Department of Pathology, Binzhou Medical University Hospital, Binzhou, China.
Nefrologia (Engl Ed)
January 2025
Instituto de Investigación i+12, Departamento de Medicina, Universidad Complutense de Madrid, Madrid, Spain; Servicio de Reumatología, Hospital Universitario 12 de Octubre, Madrid, Spain.
Lab Invest
January 2025
Department of Pathology; Center of Metabolic Diseases and Cancer Research, Institute of Medical and Health Science, Hebei Medical University; Key Laboratory of Kidney Diseases of Hebei Province; Shijiazhuang 050017, China. Electronic address:
Exosomes play a role in cell communication by transporting content between cells. Here, we tested whether renal podocyte-derived exosomes affect the injury of glomerular endothelial cells in lupus nephritis (LN). We found that exosomes containing high levels of high mobility group box 1 (HMGB1) were released from podocytes in patients with LN, BALB/c mice injected with pristane (which induces lupus-like disease in mice), and cultured human renal glomerular endothelial cells (HRGECs) treated with LN plasma.
View Article and Find Full Text PDFLupus
January 2025
Department of Medical Education, INCMNSZ, Ciudad de Mexico, Mexico.
Background: Glucocorticoids are frequently employed in systemic lupus erythematosus (SLE) patients and play a critical role in the induction therapy of lupus nephritis (LN), despite their many side effects, including steroid-induced diabetes (SID). Information regarding SID in SLE patients is quite scant.
Purpose: The aim of this study was to determine risk factors associated with the development of SID in patients with LN.
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