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1.
N Engl J Med ; 391(5): 422-433, 2024 Aug 01.
Article in English | MEDLINE | ID: mdl-38804512

ABSTRACT

BACKGROUND: Minimal change disease and primary focal segmental glomerulosclerosis in adults, along with idiopathic nephrotic syndrome in children, are immune-mediated podocytopathies that lead to nephrotic syndrome. Autoantibodies targeting nephrin have been found in patients with minimal change disease, but their clinical and pathophysiological roles are unclear. METHODS: We conducted a multicenter study to analyze antinephrin autoantibodies in adults with glomerular diseases, including minimal change disease, focal segmental glomerulosclerosis, membranous nephropathy, IgA nephropathy, antineutrophil cytoplasmic antibody-associated glomerulonephritis, and lupus nephritis, as well as in children with idiopathic nephrotic syndrome and in controls. We also created an experimental mouse model through active immunization with recombinant murine nephrin. RESULTS: The study included 539 patients (357 adults and 182 children) and 117 controls. Among the adults, antinephrin autoantibodies were found in 46 of the 105 patients (44%) with minimal change disease, 7 of 74 (9%) with primary focal segmental glomerulosclerosis, and only in rare cases among the patients with other conditions. Of the 182 children with idiopathic nephrotic syndrome, 94 (52%) had detectable antinephrin autoantibodies. In the subgroup of patients with active minimal change disease or idiopathic nephrotic syndrome who were not receiving immunosuppressive treatment, the prevalence of antinephrin autoantibodies was as high as 69% and 90%, respectively. At study inclusion and during follow-up, antinephrin autoantibody levels were correlated with disease activity. Experimental immunization induced a nephrotic syndrome, a minimal change disease-like phenotype, IgG localization to the podocyte slit diaphragm, nephrin phosphorylation, and severe cytoskeletal changes in mice. CONCLUSIONS: In this study, circulating antinephrin autoantibodies were common in patients with minimal change disease or idiopathic nephrotic syndrome and appeared to be markers of disease activity. Their binding at the slit diaphragm induced podocyte dysfunction and nephrotic syndrome, which highlights their pathophysiological significance. (Funded by Deutsche Forschungsgemeinschaft and others.).


Subject(s)
Autoantibodies , Membrane Proteins , Podocytes , Adult , Aged , Animals , Child , Child, Preschool , Female , Humans , Male , Mice , Middle Aged , Autoantibodies/blood , Autoantibodies/immunology , Biopsy , Disease Models, Animal , Glomerulonephritis, IGA/blood , Glomerulonephritis, IGA/immunology , Glomerulonephritis, IGA/pathology , Glomerulosclerosis, Focal Segmental/blood , Glomerulosclerosis, Focal Segmental/immunology , Glomerulosclerosis, Focal Segmental/pathology , Lupus Nephritis/blood , Lupus Nephritis/immunology , Lupus Nephritis/pathology , Membrane Proteins/immunology , Nephrosis, Lipoid/blood , Nephrosis, Lipoid/immunology , Nephrosis, Lipoid/pathology , Nephrotic Syndrome/blood , Nephrotic Syndrome/immunology , Nephrotic Syndrome/pathology , Podocytes/immunology , Podocytes/pathology
2.
Kidney Int ; 105(6): 1279-1290, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38554992

ABSTRACT

Evidence from the Oxford IgA nephropathy (IgAN) cohort supports the clinical value of subclassifying focal segmental glomerulosclerosis lesions (S1). Using the larger Validation in IgA (VALIGA) study cohort, we investigated the association between podocytopathic changes and higher proteinuria, kidney outcome and response to immunosuppressive therapy. All biopsies were evaluated for glomeruli with segmental capillary occlusion by matrix ("not otherwise specified", NOS lesion), simple capsular adhesion without capillary occlusion (Adh), tip lesions, and podocyte hypertrophy (PH). S1 required a NOS lesion and/or Adh. A Chi-Squared Automatic Interaction Detection method was used to identify subgroups of FSGS lesions associated with distinctive proteinuria at biopsy. We assessed survival from a combined event (kidney failure or 50% decline in estimated glomerular filtration rate). Finally, we evaluated within each subgroup if immunosuppression was associated with a favorable outcome using propensity analysis. In 1147 patients, S1 was found in 70% of biopsies. Subclassification found NOS lesions in 44%, Adh in 59%, PH in 13%, and tip lesions in 3%, with much overlap. Four subgroups were identified with progressively higher proteinuria: from lowest, S1 without NOS, S1 with NOS but without Adh/PH, to highest, S1 with NOS and Adh but without PH, and S1 with NOS and PH. These four subgroups showed progressively worse kidney survival. Immunosuppression was associated with a better outcome only in the two highest proteinuria subgroups. Propensity analysis in these two groups, adjusted for clinical and pathological findings, found a significantly reduced time-dependent hazard of combined outcome with corticosteroids. Podocyte hypertrophy and glomeruli with simple adhesions appeared to reflect active lesions associated with a response to corticosteroids, while other S1 lesions defined chronicity. Thus, our findings support subclassifying S1 lesions in IgAN.


Subject(s)
Glomerular Filtration Rate , Glomerulonephritis, IGA , Glomerulosclerosis, Focal Segmental , Immunosuppressive Agents , Proteinuria , Humans , Glomerulonephritis, IGA/pathology , Glomerulonephritis, IGA/classification , Glomerulonephritis, IGA/diagnosis , Glomerulonephritis, IGA/immunology , Glomerulosclerosis, Focal Segmental/pathology , Glomerulosclerosis, Focal Segmental/classification , Glomerulosclerosis, Focal Segmental/immunology , Male , Female , Adult , Proteinuria/etiology , Proteinuria/pathology , Biopsy , Middle Aged , Immunosuppressive Agents/therapeutic use , Podocytes/pathology , Podocytes/immunology , Kidney Glomerulus/pathology , Kidney Glomerulus/immunology , Hypertrophy , Disease Progression , Treatment Outcome
3.
Kidney Int ; 105(6): 1165-1167, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38777401

ABSTRACT

The Oxford histopathologic classification (MEST-C: scores for lesions indicating active glomerular inflammation, mesangial [M] and endocapillary [E] hypercellularity as well as cellular or fibrocellular crescents [C], and for segmental glomerulosclerosis [S] and interstitial fibrosis and/or tubular atrophy [T]) is useful in helping assess prognosis in patients with IgA nephropathy. Elements of this classification indicative of active glomerular inflammation, endocapillary hypercellularity and crescents, also have been found to be responsive to immunosuppressive therapy, potentially including newer agents specifically targeting mediators of such inflammation. In this issue of Kidney International, Bellur and coworkers identify histopathologic subtypes of segmental glomerulosclerosis in IgA nephropathy showing podocyte injury that also behave like active lesions, including showing improved outcomes with immunosuppression. This podocyte injury, identifiable only by kidney biopsy, may represent a potential therapeutic target in some patients with IgA nephropathy.


Subject(s)
Glomerulonephritis, IGA , Podocytes , Glomerulonephritis, IGA/pathology , Glomerulonephritis, IGA/drug therapy , Glomerulonephritis, IGA/immunology , Humans , Podocytes/pathology , Podocytes/immunology , Podocytes/drug effects , Biopsy , Immunosuppressive Agents/therapeutic use , Glomerulosclerosis, Focal Segmental/pathology , Glomerulosclerosis, Focal Segmental/immunology , Glomerulosclerosis, Focal Segmental/drug therapy , Kidney Glomerulus/pathology , Kidney Glomerulus/immunology , Kidney Glomerulus/drug effects , Prognosis
4.
Kidney Int ; 105(1): 54-64, 2024 01.
Article in English | MEDLINE | ID: mdl-38707675

ABSTRACT

The neonatal Fc receptor (FcRn) was initially discovered as the receptor that allowed passive immunity in newborns by transporting maternal IgG through the placenta and enterocytes. Since its initial discovery, FcRn has been found to exist throughout all stages of life and in many different cell types. Beyond passive immunity, FcRn is necessary for intrinsic albumin and IgG recycling and is important for antigen processing and presentation. Given its multiple important roles, FcRn has been utilized in many disease treatments including a new class of agents that were developed to inhibit FcRn for treatment of a variety of autoimmune diseases. Certain cell populations within the kidney also express high levels of this receptor. Specifically, podocytes, proximal tubule epithelial cells, and vascular endothelial cells have been found to utilize FcRn. In this review, we summarize what is known about FcRn and its function within the kidney. We also discuss how FcRn has been used for therapeutic benefit, including how newer FcRn inhibiting agents are being used to treat autoimmune diseases. Lastly, we will discuss what renal diseases may respond to FcRn inhibitors and how further work studying FcRn within the kidney may lead to therapies for kidney diseases.


Subject(s)
Histocompatibility Antigens Class I , Kidney Diseases , Receptors, Fc , Humans , Histocompatibility Antigens Class I/metabolism , Histocompatibility Antigens Class I/immunology , Histocompatibility Antigens Class I/genetics , Receptors, Fc/metabolism , Receptors, Fc/immunology , Receptors, Fc/genetics , Kidney Diseases/metabolism , Kidney Diseases/drug therapy , Kidney Diseases/therapy , Kidney Diseases/immunology , Animals , Kidney/metabolism , Kidney/immunology , Kidney/pathology , Podocytes/metabolism , Podocytes/immunology , Immunoglobulin G/metabolism , Immunoglobulin G/immunology , Autoimmune Diseases/drug therapy , Autoimmune Diseases/immunology , Autoimmune Diseases/metabolism
5.
Ren Fail ; 46(2): 2373276, 2024 Dec.
Article in English | MEDLINE | ID: mdl-38967134

ABSTRACT

BACKGROUND: Podocytes, as intrinsic renal cells, can also express MHC-II and costimulatory molecules under inflammatory conditions, suggesting that they may act as antigen-presenting cells (APCs) to activate immune cell responses and then lead to immune-mediated renal injury. They are already recognized as main targets in the pathogenic mechanism of hepatitis B virus (HBV)-associated glomerulonephritis (HBV-GN). Previous studies also have indicated that inflammatory cells infiltration and immune-mediated tissue injury are evident in the kidney samples of patients with HBV-GN. However, the role of podocytes immune disorder in the pathogenic mechanism of HBV-GN remains unclear. METHODS: Renal function and inflammatory cells infiltration were measured in HBV transgenic (HBV-Tg) mice. In vitro, podocytes/CD4+ T cells or macrophages co-culture system was established. Then, the expression of HBx, CD4, and CD68 was determined by immunohistochemistry, while the expression of MHC-II, CD40, and CD40L was determined by immunofluorescence. Co-stimulatory molecules expression was examined by flow cytometry. The levels of inflammatory factors were detected by ELISA. RESULTS: In vivo, renal function was obviously impaired in HBV-Tg mice. HBx was significantly upregulated and immune cells infiltrated in the glomerulus of HBV-Tg mice. Expression of MHC-II and costimulatory molecule CD40 increased in the podocytes of HBV-Tg mice; CD4+ T cells exhibited increased CD40L expression in glomerulus. In vitro, CD40 expression was markedly elevated in HBx-podocytes. In co-culture systems, HBx-podocytes stimulated CD4+ T cells activation and caused the imbalance between IFN-γ and IL-4. HBx-podocytes also enhanced the adhesion ability of macrophages and induced the release of proinflammatory mediators. CONCLUSION: Taken together, these podocyte-related immune disorder may be involved in the pathogenic mechanism of HBV-GN.


Subject(s)
Glomerulonephritis , Hepatitis B virus , Mice, Transgenic , Podocytes , Trans-Activators , Viral Regulatory and Accessory Proteins , Animals , Podocytes/immunology , Podocytes/pathology , Podocytes/metabolism , Mice , Trans-Activators/metabolism , Trans-Activators/genetics , Glomerulonephritis/immunology , Glomerulonephritis/pathology , Glomerulonephritis/virology , Hepatitis B virus/immunology , CD4-Positive T-Lymphocytes/immunology , CD4-Positive T-Lymphocytes/metabolism , Macrophages/immunology , Macrophages/metabolism , Hepatitis B/immunology , Hepatitis B/complications , Humans , Coculture Techniques , Male , Disease Models, Animal , Mice, Inbred C57BL
6.
Int J Mol Sci ; 25(11)2024 May 29.
Article in English | MEDLINE | ID: mdl-38892120

ABSTRACT

Following the discovery of podocyte phospholipase A2 receptor and thrombospondin type-1 domain-containing 7A, various potential target antigens for membranous nephropathy (MN) have been reported one after another. MN target antigens have now been identified in a significant proportion of patients, and a new classification framework classifies patients with MN based on the detected antigen and associated disease phenotype. A serology-based approach that does not require a histological diagnosis for patients suspected of having MN has also been proposed. However, there have been cases in which dual positivity for MN antigens and/or corresponding antibodies has been shown. Importantly, some of them showed a transition of the affected patient's immune responses to MN antigens, suggesting that serological diagnosis changes depending on the timing of the analysis. In this review, we provide detailed information on these cases and present an overview of our recent understanding of their putative mechanisms involved in these cases. Greater awareness is required to adequately recognize and develop appropriate therapeutic strategies for this condition.


Subject(s)
Glomerulonephritis, Membranous , Glomerulonephritis, Membranous/immunology , Glomerulonephritis, Membranous/diagnosis , Glomerulonephritis, Membranous/blood , Humans , Receptors, Phospholipase A2/immunology , Receptors, Phospholipase A2/metabolism , Autoantigens/immunology , Prevalence , Podocytes/metabolism , Podocytes/immunology , Podocytes/pathology , Autoantibodies/immunology , Autoantibodies/blood , Thrombospondins/immunology , Thrombospondins/metabolism
12.
Rev Med Virol ; 31(3): e2176, 2021 05.
Article in English | MEDLINE | ID: mdl-33022818

ABSTRACT

The novel coronavirus (SARS-CoV-2) has turned into a life-threatening pandemic disease (Covid-19). About 5% of patients with Covid-19 have severe symptoms including septic shock, acute respiratory distress syndrome, and the failure of several organs, while most of them have mild symptoms. Frequently, the kidneys are involved through direct or indirect mechanisms. Kidney involvement mainly manifests itself as proteinuria and acute kidney injury (AKI). The SARS-CoV-2-induced kidney damage is expected to be multifactorial; directly it can infect the kidney podocytes and proximal tubular cells and based on an angiotensin-converting enzyme 2 (ACE2) pathway it can lead to acute tubular necrosis, protein leakage in Bowman's capsule, collapsing glomerulopathy and mitochondrial impairment. The SARS-CoV-2-driven dysregulation of the immune responses including cytokine storm, macrophage activation syndrome, and lymphopenia can be other causes of the AKI. Organ interactions, endothelial dysfunction, hypercoagulability, rhabdomyolysis, and sepsis are other potential mechanisms of AKI. Moreover, lower oxygen delivery to kidney may cause an ischaemic injury. Understanding the fundamental molecular pathways and pathophysiology of kidney injury and AKI in Covid-19 is necessary to develop management strategies and design effective therapies.


Subject(s)
Acute Kidney Injury/pathology , COVID-19/physiopathology , Cytokine Release Syndrome/pathology , Disseminated Intravascular Coagulation/pathology , Lymphopenia/pathology , Necrosis/pathology , Proteinuria/pathology , Sepsis/pathology , Acute Kidney Injury/immunology , Acute Kidney Injury/virology , Angiotensin-Converting Enzyme 2/genetics , Angiotensin-Converting Enzyme 2/immunology , COVID-19/immunology , COVID-19/virology , Cytokine Release Syndrome/immunology , Cytokine Release Syndrome/virology , Cytokines/genetics , Cytokines/immunology , Disseminated Intravascular Coagulation/immunology , Disseminated Intravascular Coagulation/virology , Host-Pathogen Interactions/genetics , Host-Pathogen Interactions/immunology , Humans , Kidney Tubules, Proximal/immunology , Kidney Tubules, Proximal/physiopathology , Lymphopenia/immunology , Lymphopenia/virology , Necrosis/immunology , Necrosis/virology , Podocytes/immunology , Podocytes/pathology , Proteinuria/immunology , Proteinuria/virology , SARS-CoV-2/immunology , SARS-CoV-2/pathogenicity , Sepsis/immunology , Sepsis/virology , Serine Endopeptidases/genetics , Serine Endopeptidases/immunology , Spike Glycoprotein, Coronavirus/genetics , Spike Glycoprotein, Coronavirus/immunology
13.
J Biochem Mol Toxicol ; 36(1): e22935, 2022 Jan.
Article in English | MEDLINE | ID: mdl-34726812

ABSTRACT

The primary consequences of membranous nephropathy (MN) are the development of nephrotic syndrome including hypogammaglobulinemia, the increased infectious risk, the loss of protein-bound vitamin D, and, above all, an elevated thromboembolic incidence of up to 50% in severe proteinuria patients. Membrane nephropathy may be either idiopathic or primary, not recognized (70%-80%) or secondary (20%-30%) to pathological sicknesses such as hepatitis B, systemic lupus erythematosus, malignancies, and side-effects of medicines. The immunological responses in MN involve multiple components: immunoglobulin G (IgG), long-escaped antigens, and the membrane attachment complex, formed by the supplement to form C5b-9. In general, IgG4 is the most significant IgG subclass deposited in idiopathic membranous nephropathic disease but fluctuating IgG1 levels also are linked with immunological deposits. In contrast, IgG1, IgG2, and IgG3 deposition are greater than IgG4 deposition in secondary nephropathy. Fluconazole is a synthetic antifungal triazole that is often used. It is well tolerated in general and has never been identified as a cause of nephropathies. We report on the development of MN caused by fluconazole therapy that could potentiate podocyte autophagy.


Subject(s)
Autophagy , Fluconazole/adverse effects , Glomerulonephritis, Membranous/chemically induced , Glomerulonephritis, Membranous/immunology , Podocytes/immunology , Autophagy/drug effects , Autophagy/immunology , Fluconazole/therapeutic use , Glomerulonephritis, Membranous/therapy , Humans , Immunoglobulin G/immunology
14.
J Am Soc Nephrol ; 32(11): 2777-2794, 2021 11.
Article in English | MEDLINE | ID: mdl-34716242

ABSTRACT

BACKGROUND: Autoantibodies binding to podocyte antigens cause idiopathic membranous glomerulonephritis (iMGN). However, it remains elusive how autoantibodies reach the subepithelial space because the glomerular filtration barrier (GFB) is size selective and almost impermeable for antibodies. METHODS: Kidney biopsies from patients with iMGN, cell culture, zebrafish, and mouse models were used to investigate the role of nephronectin (NPNT) regulating microRNAs (miRs) for the GFB. RESULTS: Glomerular endothelial cell (GEC)-derived miR-192-5p and podocyte-derived miR-378a-3p are upregulated in urine and glomeruli of patients with iMGN, whereas glomerular NPNT is reduced. Overexpression of miR-192-5p and morpholino-mediated npnt knockdown induced edema, proteinuria, and podocyte effacement similar to podocyte-derived miR-378a-3p in zebrafish. Structural changes of the glomerular basement membrane (GBM) with increased lucidity, splitting, and lamellation, especially of the lamina rara interna, similar to ultrastructural findings seen in advanced stages of iMGN, were found. IgG-size nanoparticles accumulated in lucidity areas of the lamina rara interna and lamina densa of the GBM in npnt-knockdown zebrafish models. Loss of slit diaphragm proteins and severe structural impairment of the GBM were further confirmed in podocyte-specific Npnt knockout mice. GECs downregulate podocyte NPNT by transfer of miR-192-5p-containing exosomes in a paracrine manner. CONCLUSIONS: Podocyte NPNT is important for proper glomerular filter function and GBM structure and is regulated by GEC-derived miR-192-5p and podocyte-derived miR-378a-3p. We hypothesize that loss of NPNT in the GBM is an important part of the initial pathophysiology of iMGN and enables autoantigenicity of podocyte antigens and subepithelial immune complex deposition in iMGN.


Subject(s)
Endothelial Cells/metabolism , Extracellular Matrix Proteins/biosynthesis , Glomerular Basement Membrane/metabolism , Glomerular Basement Membrane/physiopathology , Glomerulonephritis, Membranous/genetics , Kidney Glomerulus/metabolism , MicroRNAs/physiology , Animals , Antigen-Antibody Complex/analysis , Autoantigens/genetics , Autoantigens/immunology , Cells, Cultured , Coculture Techniques , Exosomes/metabolism , Extracellular Matrix Proteins/deficiency , Extracellular Matrix Proteins/physiology , Gene Expression Regulation , Gene Targeting , Glomerular Basement Membrane/immunology , Glomerular Basement Membrane/ultrastructure , Glomerulonephritis, Membranous/immunology , Glomerulonephritis, Membranous/metabolism , Glomerulonephritis, Membranous/physiopathology , Gold Sodium Thiosulfate , Humans , Metal Nanoparticles , Mice , MicroRNAs/biosynthesis , MicroRNAs/genetics , MicroRNAs/urine , Paracrine Communication , Permeability , Podocytes/immunology , Podocytes/metabolism , Proteinuria/etiology , Transfection , Zebrafish , Zebrafish Proteins/deficiency , Zebrafish Proteins/genetics
15.
Clin Immunol ; 232: 108869, 2021 11.
Article in English | MEDLINE | ID: mdl-34600127

ABSTRACT

Children with idiopathic nephrotic syndrome (INS) usually have podocyte injury, and recent studies suggest a B cell dysfunction in INS. Therefore, this study attempts to screen and identify the podocyte autoantibodies in patients. Two-dimensional electrophoresis and mass spectrometry were used to screen and identify the pathogenic podocyte autoantibodies in children with INS. The positive rate, expression pattern, and clinical correlation of these podocyte autoantibodies in children with INS were determined by clinical study. At least 66% of INS children have podocyte autoantibodies. Seven podocyte autoantibodies closely related to INS were screened and identified for the first time in this study. These podocyte autoantibodies are positively correlated with proteinuria, and its titer will decrease rapidly after effective treatment. In this study, a group of new disease subgroup-"autoimmune podocytes" were identified by podocyte autoantibodies.


Subject(s)
Autoantibodies/immunology , Autoantigens/immunology , Autoimmune Diseases/immunology , Nephrotic Syndrome/immunology , Podocytes/immunology , Adolescent , Child , Child, Preschool , Female , Humans , Male , Proteinuria/immunology
16.
Curr Opin Nephrol Hypertens ; 30(3): 287-293, 2021 05 01.
Article in English | MEDLINE | ID: mdl-33480620

ABSTRACT

PURPOSE OF REVIEW: Membranous nephropathy is an autoimmune disease caused by antibodies mostly directed to podocyte antigens. PLA2R and THSD7A antigens were described in 2009 and 2014 using classical immunochemical techniques. In the last 2 years, thanks to the combination of laser microdissection of glomeruli and mass spectrometry of solubilized digested proteins, several antigens associated with various causes have been described in patients with membranous nephropathy. The purpose of this review is to report on those "new" antigens and to analyse the clinicopathological correlations that make each of this antigen unique. RECENT FINDINGS: This article covers the literature of the last 2 years devoted to the description of those new antigens and biomarkers including NELL-1 and Semaphorin 3B in primary membranous nephropathy, and exostosins 1 and 2 and NCAM in lupus class V membranous nephropathy, which will be compared with the previously described antigens. These findings will lead to propose a new classification of membranous nephropathy based on serology and tissue antigen identification that could/should substitute for the classical distinction between primary and secondary membranous nephropathy. SUMMARY: The discovery of the latest antigens has major implications for the care of patients with membranous nephropathy as they drive the etiologic investigations and provide invaluable markers for treatment monitoring.


Subject(s)
Antigens , Glomerulonephritis, Membranous , Glomerulonephritis, Membranous/diagnosis , Glomerulonephritis, Membranous/immunology , Humans , Podocytes/immunology , Podocytes/pathology
17.
J Pathol ; 252(2): 165-177, 2020 10.
Article in English | MEDLINE | ID: mdl-32686090

ABSTRACT

Infiltration of activated T cells into renal tissue plays an essential role in inflammatory nephropathy. However, the mechanism enabling the renal recruitment and activation of T cells remains elusive. Here we report that inflammatory cytokine-promoted antigen presentation by podocytes is a key for recruiting and activating specific T cells. Our results showed that diabetes-associated inflammatory cytokines IFNγ and IL-17 all upregulated expression of MHC-I, MHC-II, CD80 and CD86 on the podocyte surface. Both IFNγ and IL-17 stimulated the uptake and processing of ovalbumin (OVA) by mouse podocytes, resulting in presentation of OVA antigen peptide on the cell surface. OVA antigen presentation by podocytes was also validated using human podocytes. Furthermore, OVA antigen-presenting mouse podocytes were able to activate OT-I mouse T cell proliferation and inflammatory cytokine secretion, which in turn caused podocyte injury and apoptosis. Finally, OT-I mice subjected to direct renal injection of OVA plus IFNγ/IL-17 but not OVA alone exhibited OVA antigen presentation by podocytes and developed nephropathy in 4 weeks. In conclusion, antigen presentation by podocytes under inflammatory conditions plays an important role in activating T cell immune responses and facilitating immune-mediated glomerular disease development. © 2020 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.


Subject(s)
Antigen Presentation/immunology , Lymphocyte Activation/immunology , Nephritis/immunology , Podocytes/immunology , T-Lymphocytes/immunology , Animals , Antigen-Presenting Cells/immunology , Humans , Mice
18.
Int J Mol Sci ; 22(3)2021 Jan 27.
Article in English | MEDLINE | ID: mdl-33514066

ABSTRACT

Systemic lupus erythematosus (SLE) is a chronic autoimmune disease with a broad spectrum of clinical presentations that can affect almost all organ systems. Lupus nephritis (LN) is a severe complication that affects approximately half of the systemic erythematosus lupus (SLE) patients, which significantly increases the morbidity and the mortality risk. LN is characterized by the accumulation of immune complexes, ultimately leading to renal failure. Aberrant activation of T cells plays a critical role in the pathogenesis of both SLE and LN and is involved in the production of inflammatory cytokines, the recruitment of inflammatory cells to the affected tissues and the co-stimulation of B cells. Calcineurin is a serine-threonine phosphatase that, as a consequence of the T cell hyperactivation, induces the production of inflammatory mediators. Moreover, calcineurin is also involved in the alterations of the podocyte phenotype, which contribute to proteinuria and kidney damage observed in LN patients. Therefore, calcineurin inhibitors have been postulated as a potential treatment strategy in LN, since they reduce T cell activation and promote podocyte cytoskeleton stabilization, both being key aspects in the development of LN. Here, we review the role of calcineurin in SLE and the latest findings about calcineurin inhibitors and their mechanisms of action in the treatment of LN.


Subject(s)
Calcineurin Inhibitors/therapeutic use , Calcineurin/genetics , Lupus Erythematosus, Systemic/drug therapy , Lupus Nephritis/drug therapy , B-Lymphocytes/drug effects , B-Lymphocytes/immunology , Humans , Interleukin-2/genetics , Interleukin-2/immunology , Lupus Erythematosus, Systemic/pathology , Lupus Nephritis/pathology , Podocytes/immunology , T-Lymphocytes/drug effects
19.
Clin Immunol ; 216: 108445, 2020 07.
Article in English | MEDLINE | ID: mdl-32344016

ABSTRACT

Recent progress has highlighted the involvement of a variety of innate and adaptive immune cells in lupus nephritis. These include activated neutrophils producing extracellular chromatin traps that induce type I interferon production and endothelial injury, metabolically-rewired IL-17-producing T-cells causing tissue inflammation, follicular and extra-follicular helper T-cells promoting the maturation of autoantibody-producing B-cells that may also sustain the formation of germinal centers, and alternatively activated monocytes/macrophages participating in tissue repair and remodeling. The role of resident cells such as podocytes and tubular epithelial cells is increasingly recognized in regulating the local immune responses and determining the kidney function and integrity. These findings are corroborated by advanced, high-throughput genomic studies, which have revealed an unprecedented amount of data highlighting the molecular heterogeneity of immune and non-immune cells implicated in lupus kidney disease. Importantly, this research has led to the discovery of putative pathogenic pathways, enabling the rationale design of novel treatments.


Subject(s)
Lupus Nephritis/immunology , Adaptive Immunity/immunology , Animals , Autoantibodies/immunology , B-Lymphocytes/immunology , Germinal Center/immunology , Humans , Immunity, Innate/immunology , Kidney/immunology , Podocytes/immunology , T-Lymphocytes, Helper-Inducer/immunology
20.
Am J Kidney Dis ; 76(5): 624-635, 2020 11.
Article in English | MEDLINE | ID: mdl-32668319

ABSTRACT

RATIONALE & OBJECTIVE: Membranous nephropathy (MN) is characterized by the deposition of immune complexes along glomerular basement membranes. M-Type phospholipase A2 receptor (PLA2R), thrombospondin type 1 domain-containing 7A (THSD7A), exostosin 1 and 2 (EXT1/2), and neural epidermal growth factor-like 1 protein (NELL-1) have been identified as established or potential podocyte antigens in MN. We investigated the association of podocyte antigen staining with MN clinical phenotype and outcomes. STUDY DESIGN: Multicenter retrospective cohort study. SETTING & PARTICIPANTS: 177 consecutive patients with MN unrelated to lupus erythematosus, identified after screening of 3,875 native kidney biopsies performed in the Belgian UCLouvain Kidney Disease Network from 2000 through 2018. PREDICTOR: Positive immunostaining for podocyte antigens on archived kidney biopsy samples. OUTCOMES: Association with different phenotypes (baseline characteristics of patients and pathologic findings on kidney biopsy), time to cancer and to kidney failure. ANALYTICAL APPROACH: Kaplan-Meier estimates and Cox regression analyses to assess time to cancer and kidney failure. RESULTS: 177 patients were followed up for a median of 4.0 (IQR, 1.3-8.0) years. Diagnosis of PLA2R-positive (PLA2R+), THSD7A+, and double-negative (PLA2R-/THSD7A-) MN was made in 117 (66.1%), 6 (3.4%), and 54 (30.5%) patients, respectively. Progression to kidney failure was similar in all groups. Although the number of patients with THSD7A+MN was small, they showed a higher incidence (50%) and increased risk for developing cancer during follow-up (adjusted HR, 5.0 [95% CI, 1.4-17.9]; P=0.01). 8% and 5% of patients with double-negative MN stained positively for EXT1/2 and NELL-1, respectively. Most patients with EXT1/2+MN were women, had features of systemic autoimmunity, and showed glomerular C1q deposits. LIMITATIONS: Retrospective design; small number of patients in the THSD7A group; lack of evaluation of immunoglobulin G subclasses deposition. CONCLUSIONS: Our real-world data describe the relative prevalence of subgroups of MN and support the hypothesis that a novel classification of MN based on podocyte antigen staining may be clinically relevant.


Subject(s)
Autoantibodies/immunology , Glomerulonephritis, Membranous/immunology , Podocytes/pathology , Adult , Aged , Biopsy , Disease Progression , Female , Follow-Up Studies , Glomerulonephritis, Membranous/pathology , Humans , Male , Middle Aged , Phenotype , Podocytes/immunology , Retrospective Studies , Staining and Labeling/methods
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