BACKGROUND:The pathogenesis of diabetic kidney disease (DKD) is complex. Normoalbuminuric diabetic kidney disease (NADKD) is a special subtype of DKD that often progresses insidiously without detectable albuminuria, posing diagnostic and therapeutic challenges. Its pathogenesis remains unclear. Proteomic analysis of renal tissues may offer insights into its pathogenesis and identify biomarkers. METHODS:Clinicopathological data from 295 biopsy-proven DKD patients were collected and classified into normoalbuminuric (UACR < 30 mg/g, n = 25), microalbuminuric (UACR 30-300 mg/g, n = 26), and macroalbuminuric (UACR > 300 mg/g, n = 244) groups. Laser microdissection combined with mass spectrometry (LMD/MS) was used to analyze glomerular and proximal tubule proteomics in 5 patients per DKD subgroup and 5 control subjects. Associations with clinical features were examined. RESULTS:Glomerular proteomic analysis revealed that oxidative stress and metabolic pathways (UQCRC1) were upregulated in NADKD group, whereas the complement and coagulation cascades (C3, C5, C6, C9, CFH, CFHR1) were significantly upregulated in the microalbuminuric and macroalbuminuric DKD groups. The proximal tubule proteomics analysis showed that oxidative phosphorylation-related proteins (SDHA, CYCS, UQCRQ) were upregulated in NADKD, and collagen I related proteins (COL1A1, COL1A2) were significantly upregulated. CONCLUSION:Oxidative stress and mitochondrial dysfunction are involved in the progression of NADKD, lesions predominantly located in the tubulointerstitium. The complement pathway participates in the pathogenesis and progression of albuminuric DKD (ADKD). These divergent molecular profiles suggest that NADKD and ADKD may reflect different pathophysiological mechanisms and have important implications for therapeutic strategies in diabetes management.
Diabetes mellitus (DM) is a metabolic disorder marked by persistent hyperglycemia (HG), resulting from abnormalities in insulin secretion or insulin resistance. This condition represents a major public health concern since it causes multisystem complications, including microvascular diseases, macrovascular diseases, and neuropathy. Few effective therapies are currently available. Ferroptosis, an iron-dependent mode of regulated cell death triggered by lipid peroxidation (LPO), is intricately linked to the pathogenesis, progression, and complications of DM. It has been increasingly recognised as a key mechanism underlying peripheral insulin resistance and insulin deficiency resulting from β-cell dysfunction. In this study, we systematically summarised the primary regulatory mechanisms of ferroptosis and outlined current research advancements in mechanistic insights into its role in diabetic complications. Besides, we explored how inter-organelle interactions drive ferroptosis under diabetic conditions and play pathogenic effects in diabetes and its complications. Finally, we systematically reviewed the therapeutic drugs targeting ferroptosis from the perspectives of traditional Chinese medicine (TCM) and Western medicine, respectively. This interdisciplinary integrated overview may provide a theoretical basis for future clinical transformation.
[This corrects the article DOI: 10.1016/j.ekir.2026.103791.].
Canagliflozin reduces albuminuria in patients with diabetic kidney disease (DKD) beyond its glucose-lowering effect, but the mechanisms remain unclear. We analyzed 85 patients treated with canagliflozin and 85 controls over 26 weeks to explore whether the gut microbiome and its metabolites contribute to renoprotection. Canagliflozin remodeled the gut microbiota, notably enriching Roseburia intestinalis and increasing plasma melibiose levels. In mice, canagliflozin alleviated glomerular endothelial injury and albuminuria. Similar effects were replicated by fecal microbiota transplantation, Roseburia intestinalis, or melibiose administration. Mechanistically, melibiose bound to and activated glyoxalase 1, reduced methylglyoxal, and suppressed the AGE-RAGE pathway, preserving glomerular endothelial integrity. Furthermore, oral melibiose precursor supplementation reduced albuminuria in patients with early-stage DKD. These findings suggest the involvement of a gut-kidney axis in the renoprotective effects of canagliflozin and indicate that melibiose may serve as a potential therapeutic strategy for DKD.
Introduction:Pauci-immune endocapillary proliferative glomerulonephritis (GN) (Pauci-I-EPGN) is a rare glomerular disease with a heterogeneous and poorly understood etiology. Here we describe the clinicopathological features, immune cell infiltration patterns, and treatment outcomes of Pauci-I-EPGN. Methods:Fifteen patients with biopsy-proven Pauci-I-EPGN, diagnosed between January 2012 and June 2025, were studied retrospectively. Results:Fifteen patients (7 males and 8 females) aged 50.1 ±13.0 years at renal biopsy were included. The median 24 hour urine protein was 2.00 g/d (0.30-7.77 g/d), with a median serum creatinine level of 1.14 mg/dL (0.54-5.36 mg/dL). Seven cases had prodromal infection. Light microscopy (LM) showed endocapillary proliferative lesions in glomeruli. Immunofluorescence (IF) staining was negative for IgG, IgA, IgM, component C3, component C1q, and light chains. Electron microscopy (EM) revealed no electron-dense deposits. Immunohistochemical staining showed that inflammatory cells in glomeruli were mainly cluster of differentiation CD68+ cells and a small number of CD3+ cells. Multiplex IF staining demonstrated that CD68+ CD163+ cells were the predominant infiltrating cell type in glomeruli. Extensive transforming growth factor-beta (TGF-β) expression was observed within glomeruli. Besides, urinary soluble CD163 levels normalized to urinary creatinine (u-Cr) were elevated in 12 patients and correlated with the number of glomerular CD68+ CD163+ macrophages. Among 11 patients with a median follow-up period of 16.4 months (0.6-80.5 months), 5 achieved complete remission, 2 achieved partial remission, 1 showed stable kidney function, and 3 had progressive renal disease (1 progressed to end-stage renal disease [ESRD]). Conclusion:Pauci-I-EPGN is a rare distinct entity characterized by abnormal activation of intraglomerular M2 macrophages and CD8+ T cell infiltration, with inflammation-fibrosis imbalance driven by TGF-β overexpression. Corticosteroids may offer a potential therapeutic benefit for this type of disease. The overall outcomes in this cohort were generally favorable.
Increasing evidence points toward an essential role for complement activation in the pathogenesis of diabetic kidney disease (DKD). However, the precise molecular mechanisms remain unclear, and the pathway predominantly contributing to complement activation in DKD is of particular interest. In this study, the glomerular proteome, especially the profiles of the complement proteins, was analyzed in kidney biopsies from 40 DKD patients and 10 normal controls using laser microdissection-assisted liquid chromatography-tandem mass spectrometry (LMD-LC-MS/MS). The glomerular abundances of three proteins related to classical pathway (CP) (C1q, C1r, C1s), five proteins related to alternative pathway (AP) (CFB, CFH, CFHR1, CFHR3, CFHR5), one common protein related to CP and lectin pathway (LP) (C4), and six proteins related to terminal complement pathway (C3, C5, C6, C7, C8, C9) were significantly increased in DKD. Notably, none of the proteins unique to the lectin complement pathway, including mannose-binding lectin (MBL) and its associated proteins, were detected in DKD glomeruli. Furthermore, the glomerular complement proteins of CP and AP were positively correlated with glomerular pathological grades and proteinuria, and negatively correlated with eGFR in DKD patients. Our results highlight a critical role for complement activation of the CP and AP, rather than the LP, in DKD progression.
Introduction The efficacy of Telitacicept treatment in reducing proteinuria in patients with IgA nephropathy (IgAN) was indicated in a phase II clinical trial with small sample size. In this study, we conducted a large multicenter retrospective study to explore the efficacy and safety of Telitacicept in patients with IgAN. Methods This study recruited patients with IgAN from 19 sites from China who were treated with Telitacicept and had been followed up at least once or with side effect reported, since April 1, 2021 to April 1, 2023. The primary outcomes of the study were the changing in proteinuria and eGFR over time. Results A cohort of 97 patients with IgAN who were treated with Telitacicept were recruited, with a median follow-up duration of 3 months. The median baseline proteinuria was 2.3 [1.3, 3.9] g/day and eGFR was 45.0 [26.8, 73.7] ml/min/1.73m2. There was a significant reduction of proteinuria at 2,4,6 months when compared with baseline (2.3 [1.5, 4.1] vs. 1.5 [0.8, 2.3] g/day; 2.3 [1.1, 3.7] vs. 1.1 [0.6, 1.9] g/day; 2.1 [1.0, 2.7] vs. 0.9 [0.5,1.7] g/day, all P values < 0.01). The level of eGFR were comparable between at the baseline and 2, 4, 6 months of follow-up time (41.5 [29.7, 72.0] vs. 42.5 [28.8, 73.3] ml/min/1.73m2; 41.0 [26.8, 67.7] vs. 44.7 [31.0, 67.8] ml/min/1.73m2; 33.7 [24.0, 58.5] vs. 32.6 [27.8, 57.5] ml/min/1.73m2, all P values > 0.26). Telitacicept was well tolerated in the patients. Conclusions This study indicates that Telitacicept alone or on top of steroids therapy can significantly and safely reduce proteinuria in patients with IgAN. The long-term kidney protection still need to be confirmed in large Phase III trial.
Rationale & ObjectiveLight and heavy chain deposition disease (LHCDD) is a rare form of monoclonal immunoglobulin deposition disease (MIDD), and limited clinical data are available characterizing this condition. We described the clinicopathological characteristics and outcomes of LHCDD.Study DesignCase series.Setting & Participants13 patients with biopsy-proven LHCDD, diagnosed between January 2008 to December 2022, at two Chinese medical centers.FindingsAmong the 13 patients described, 6 were men and 7 were women, with a mean age of 52.6 ± 8.0 years. Patients presented with hypertension (76.9%), anemia (84.6%), elevated serum creatinine (84.6%, median serum creatinine 1.7 mg/dL), proteinuria (100%, average urine protein 3.0g/24h), nephrotic syndrome (30.8%) and microscopic hematuria (76.9%). Serum immunofixation electrophoresis showed monoclonal immunoglobulin for 11 (84.6%) patients. Serum free light chain (FLC) ratios were abnormal in 11 (84.6%) patients, and heavy/light chain (HLC) ratios were abnormal in 9 of 10 (90%) patients with available data. Five patients were diagnosed with multiple myeloma. A histological diagnosis of nodular mesangial sclerosis was made in 10 (76.9%) patients. Immunofluorescence demonstrated deposits of IgG subclass (γ-κ/γ-λ:4/3) in 7 patients, and IgA (α-κ/α-λ:2/3) in 5 patients. Six patients underwent IgG subclass staining (γ1/γ2/γ3:3/2/1). The deposits of IgD-κ were confirmed by mass spectrometry in 1 patient. Among 12 patients for whom data were available over a median of 26.5 months, 11 received chemotherapy, and 1 received conservative treatment. One patient died. Three (25%) patients progressed to kidney failure. Among the 9 patients evaluable for hematological and kidney disease progression, five (56%) had a hematologic response and one (11%) achieved improvement in kidney disease.LimitationsRetrospective descriptive study, limited number of patients, UPEP or UIFE missing for most patients.ConclusionsIn this case series of LHCDD, light and heavy chain deposition in kidney tissues were most frequent with monoclonal IgG1-κ. Among patients with evaluable data, more than half had hematologic response but a kidney response was uncommon.
Renal involvement is common in monoclonal gammopathy (MG); however, the same patient may have both MG and non-paraprotein-associated renal damage. Accordingly, distinguishing the cause of renal damage is necessary because of the different clinical characteristics and associated treatments. In this multicenter retrospective cohort study, we described the clinicopathological characteristics and prognosis of 703 patients with MG and renal damage in central China. Patients were classified as having MG of renal significance (MGRS), MG of undetermined significance (MGUS), or hematological malignancy. 260 (36.98%), 259 (36.84%), and 184 (26.17%) had MGRS, MGUS, and hematological malignancies, respectively. Amyloidosis was the leading pattern of MGRS (74.23%), followed by thrombotic microangiopathy (8.85%) and monoclonal immunoglobulin deposition disease (8.46%). Membranous nephropathy was the leading diagnosis of MGUS (39.38%). Renal pathological findings of patients with hematological malignancies included paraprotein-associated lesions (84.78%) and non-paraprotein-associated lesions (15.22%). The presence of nephrotic syndrome and an abnormal free light chain (FLC) ratio were independently associated with MGRS. The overall survival was better in patients with MGUS than in those with MGRS or hematological malignancies.
AimsLight chain proximal tubulopathy (LCPT) is a rare complication of paraprotein-related diseases. We report a case series to present the clinicopathological characteristics and outcomes of LCPT.MethodsA multicentre retrospective case series of 47 patients with LCPT, consisting of 36 crystalline, three non-crystalline, and eight mixed LCPTs, was studied between January 2007 and December 2023.ResultsThe median age at diagnosis was 57 years. Presentations included proteinuria (100%), renal insufficiency (62%) and Fanconi syndrome (68%). The underlying haematological diagnoses were monoclonal gammopathy of renal significance in 81% and multiple myeloma in 19%. Monoclonal light chain (LC) was detected in all cases using serum/urine-free LC assays or immunofixation electrophoresis. Among 36 crystalline LCPTs, 34 were κ-restricted and 2 λ-restricted. Three non-crystalline LCPTs were all λ-restricted. In mixed LCPTs, seven were κ-restricted and one was λ-restricted. Notably, 66% frozen-section immunofluorescence failed to reveal restricted LC, requiring paraffin-immunofluorescence or immunoelectron microscopy. The appearance of inclusions displayed intraindividual homogeneity but interindividual heterogeneity in 42 patients and notable intraindividual heterogeneity in the remaining 5 patients. Haematological complete response, very good partial response and partial response occurred in 61%. Kidney function improved or remained stable in 84%, worsened in 8% and progressed to end-stage renal disease in 8%.ConclusionsProteinuria and kidney dysfunction are the most common but less-specific renal manifestations of LCPTs, with most featuring Fanconi syndrome. Crystalline LCPT, primarily associated with κ-LC, is the predominant form. Most inclusions displayed intraindividual homogeneity and interindividual heterogeneity by electron microscopy. Most achieved haematological responses and favourable renal outcomes.
目的:筛选肾小管间质性肾病遗传变异枢纽基因.方法:对经肾活检证实且无明确病因的24例肾小管间质性肾病患者进行全外显子组测序,应用Phenolyzer数据库进行基因-表型关联评分,筛选其共有的罕见遗传变异,利用DAVID 6.8数据库进行基因功能通路富集分析.应用String数据库构建PPI网络图,并使用Cytoscape中的插件cytoHubba进行可视化分析,寻找枢纽基因.应用SWISS-Pdb Viewer软件分析枢纽基因突变前后表达蛋白三级结构的变化.结果:24例中女9例,男15例,年龄18~40(26.17±8.82)岁.全外显子组测序检测出19例患者携带致病或可能致病的基因突变位点,共发现35个肾小管间质性肾病易感基因,其在TGF-β信号通路、细胞因子-细胞因子受体相互作用信号通路中富集.PPI网络和Cytoscape分析筛选出4个枢纽基因,即VCP、PRKDC、RB-PJ、MYH11,且VCP基因突变造成蛋白质空间结构和功能的改变.结论:肾小管间质性肾病易感基因主要富集在离子跨膜转运的调节、蛋白质转运的调控、蛋白质磷酸化等生物过程,TGF-β信号通路、细胞因子-细胞因子受体相互作用信号通路中.VCP基因可能与肾小管间质性肾病有关.
Malignant nephrosclerosis is a thrombotic microangiopathy associated with abnormal local activation of the complement alternative pathway (AP). However, the mechanism underlying local AP activation is not fully understood. We hypothesized that complement factor D (CFD) secreted by endothelial cells triggers vascular dysfunction in malignant nephrosclerosis via local complement activation. We investigated the deposition of CFD in human kidney biopsy tissues and the function of endothelial-derived CFD in endothelial cell cultures. Immunofluorescence microscopy and laser microdissection-targeted mass spectrometry revealed significant deposition of CFD in the kidneys of patients with malignant nephrosclerosis. Conditionally immortalized human glomerular endothelial cells (CiGEnCs) continuously expressed and secreted CFD in vitro. CFD knockdown in CiGEnCs by small interfering RNA reduced local complement activation and attenuated the upregulation of intercellular adhesion molecule-1 (ICAM-1), vascular adhesion molecule-1 (VCAM-1), von Willebrand factor (VWF), and endothelin-1 (ET-1) induced by Ang II. The expression of CFD in CiGEnCs was significantly higher than that in other types of microvascular endothelial cells. Our findings suggest that (i) glomerular endothelial cells are an important source of local renal CFD, (ii) endothelial-derived CFD can activate the local complement system, and (iii) endothelial-derived CFD mediates endothelial dysfunction, which may play a role in the pathogenesis of malignant nephrosclerosis.
Background Early diagnosis and typing are crucial for improving the prognosis of patients with renal amyloidosis. Currently, Untargeted proteomics based precise diagnosis and typing of amyloid deposits are crucial for guiding patient management. Although untargeted proteomics achieve ultra-high-throughput by selecting the most abundant eluting cationic peptide precursors in series for tandem MS events, it lacks in sensitivity and reproducibility, which may not be suitable for early-stage renal amyloidosis with minor damages. Here, we aimed to develop parallel reaction monitoring (PRM)-based targeted proteomics to achieve high sensitivity and specificity by determining absolute abundances and codetecting all transitions of highly repeatable peptides of preselected amyloid signature and typing proteins in identifying early-stage renal immunoglobulin-derived amyloidosis. Methods and results In 10 discovery cohort cases, Congo red-stained FFPE slices were micro-dissected and analyzed by data-dependent acquisition-based untargeted proteomics for preselection of typing specific proteins and peptides. Further, a list of proteolytic peptides from amyloidogenic proteins and internal standard proteins were quantified by PRM-based targeted proteomics to validate performance for diagnosis and typing in 26 validation cohort cases. The diagnosis and typing effectiveness of PRM-based targeted proteomics in 10 early-stage renal amyloid cases was assessed via a comparison with untargeted proteomics. A peptide panel of amyloid signature proteins, immunoglobulin light chain and heave chain in PRM-based targeted proteomics showed significantly distinguishing ability and amyloid typing performance in patients. The diagnostic algorithm of targeted proteomics with a low amount of amyloid deposits in early-stage renal immunoglobulin-derived amyloidosis showed better performance than untargeted proteomics in amyloidosis typing. Conclusions This study demonstrates that the utility of these prioritized peptides in PRM-based targeted proteomics ensure high sensitivity and reliability for identifying early-stage renal amyloidosis. Owing to the development and clinical application of this method, rapid acceleration of the early diagnosis, and typing of renal amyloidosis is expected.
Introduction:Wilson's disease is an autosomal recessive disorder caused by ATP7B pathogenic mutations. The hallmark of this disorder mainly consists of liver involvement, neurologic dysfunction and psychiatric features. In addition, the kidneys can also be affected by excessive copper deposition.Methods:A total of 34 patients clinically diagnosed with WD were recruited. They underwent ATP7B gene sequencing and clinical data of symptoms, examination, and treatment were collected. Moreover, renal pathology information was also investigated.Results:We identified 25 potentially pathogenic ATP7B variants (16 missense, 5 frameshift, 3 splicing variants and 1 large deletion mutation) in these 34 WD patients, 5 of which were novel. In our cases, the most frequent variant was c.2333G>T (R778L, 39.06%, exon 8), followed by c.2621C>T (A874V, 10.94%, exon 11) and c.3316G>A (V1106I, 7.81%, exon 11). Furthermore, we described the thinning of the glomerular basement membrane as a rare pathologically damaging feature of Wilson's disease for the first time. Additionally, two patients who received liver transplant were observed with good prognosis in present study.Discussion:Our work expanded the spectrum of ATP7B variants and presented rare renal pathological feature in WD patients, which may facilitate the development of early diagnosis, counseling, treatment regimens of WD.
目的 研究补体系统活化成分在糖尿病肾病(diabetic kidney disease,DKD)患者血浆、尿液中的水平,并分析其与DKD临床、病理特征及预后的相关性.方法 选取郑州大学第一附属医院经肾穿刺活检证实为DKD患者(DKD组)50例,糖尿病(diabetes mellitus,DM)无肾损害患者(DM组)及健康成年人(健康对照组)各50例,采用酶联免疫吸附法(enzyme-linked immunosorbent assay,ELISA)对血浆及尿液中5种补体成分(H因子、B因子、P因子、C1q、C5a)水平进行了测定.应用COX比例风险回归模型分析影响肾脏预后的独立危险因素,并绘制ROC曲线分析B因子及C5a预测肾脏预后的价值.结果 DKD患者血浆中补体B因子、P因子、C1q及C5a均显著高于健康对照组及DM组(P<0.05),H因子低于健康对照组(P=0.03)及DM组(P<0.001).尿补体B因子、P因子及C5a均显著高于健康对照组及DM组(P<0.05),H因子低于健康对照组(P<0.001)及DM组(P=0.008),3组尿C1q水平无明显差异.旁路途径活化因子H因子、B因子、P因子、C5a水平与蛋白尿程度、肾功能及肾组织病理改变程度有关.多因素Cox风险比例分析显示,尿补体B因子(HR=2.63,95%CI:1.377~5.023,P<0.001)及尿补体C5a(HR =1.33,95%CI:1.06~1.668,P=0.014)是影响肾脏预后的独立危险因素.结论 在DKD患者中,补体旁路途径不同程度被激活,且与DKD 患者蛋白尿、肾组织病理改变、较差的肾脏预后相关.而补体经典途径起始因子C1q水平与DKD的发生发展及预后无明显相关性.
BACKGROUND:Hypocomplementemia and complement co-deposition with monoclonal immunoglobulins in glomeruli are not rare in proliferative glomerulonephritis with monoclonal immunoglobulin deposits (PGNMID). Deposition of monoclonal immunoglobulins in glomeruli has been suggested to activate complement and cause kidney injury. However, the profiles of complement activation in PGNMID and their clinical and pathologic significance need to be clarified. METHODS:Forty-six patients with PGNMID were enrolled. Proteomic analysis of glomeruli using laser microdissection and mass spectrometry was performed for ten patients with PGNMID to determine the composition of glomerular deposits. Kidney deposition of complement components was detected by immunohistochemistry and immunofluorescence. Urinary and plasma levels of complement components were measured by an enzyme-linked immunosorbent assay. Group differences were assessed using t tests or Mann-Whitney U tests depending on the distribution. Correlation analysis was performed using Spearman rank correlation or Pearson correlation. RESULTS:Laser microdissection and mass spectrometry-based proteomic analysis showed that complement components were the most enriched proteins deposited in the glomeruli of patients with PGNMID. Glomerular deposition of C3c, C4d, and C5b-9 was detected in most patients. Levels of urinary and plasma C3a, C5a, soluble C5b-9, C4d, Bb, and C1q as well as urinary mannose-binding lectin were significantly higher in patients with PGNMID compared with healthy controls. The intensity of C3c and C4d deposition in glomeruli correlated with serum creatinine and the percentage of crescents, respectively. Furthermore, levels of urinary complement components correlated positively with serum creatinine, urinary protein excretion, percentage of crescents, and global glomerulosclerosis in kidney biopsies, whereas plasma levels of most complement components did not show a significant correlation with clinicopathologic parameters. In multivariable analysis, a higher level of urinary C4d was identified as an independent risk factor of kidney failure. CONCLUSIONS:The complement system was found to be overactivated in PGNMID, and levels of urinary complements correlated with disease severity. A higher level of urinary C4d was identified as an independent risk factor of kidney failure.
ABSTRACT Background Urinary sediment messenger RNAs (mRNAs) have been shown as novel biomarkers of kidney disease. We aimed to identify targeted urinary mRNAs in diabetic nephropathy (DN) based on bioinformatics analysis and clinical validation. Methods Microarray studies of DN were searched in the GEO database and Nephroseq platform. Gene modules negatively correlated with estimated glomerular filtration rate (eGFR) were identified by informatics methods. Hub genes were screened within the selected modules. In validation cohorts, a quantitative polymerase chain reaction assay was used to compare the expression levels of candidate mRNAs. Patients with renal biopsy–confirmed DN were then followed up for a median time of 21 months. End-stage renal disease (ESRD) was defined as the primary endpoint. Multivariate Cox proportional hazards regression was developed to evaluate the prognostic values of candidate mRNAs. Results Bioinformatics analysis revealed four chemokines (CCL5, CXCL1, CXLC6 and CXCL12) as candidate mRNAs negatively correlated with eGFR, of which CCL5 and CXCL1 mRNA levels were upregulated in the urinary sediment of patients with DN. In addition, urinary sediment mRNA of CXCL1 was negatively correlated with eGFR (r = −0.2275, P = 0.0301) and CCL5 level was negatively correlated with eGFR (r = −0.4388, P < 0.0001) and positively correlated with urinary albumin:creatinine ratio (r = 0.2693, P = 0.0098); also, CCL5 and CXCL1 were upregulated in patients with severe renal interstitial fibrosis. Urinary sediment CCL5 mRNA was an independent predictor of ESRD [hazard ratio 1.350 (95% confidence interval 1.045–1.745)]. Conclusions Urinary sediment CCL5 and CXCL1 mRNAs were upregulated in DN patients and associated with a decline in renal function and degree of renal interstitial fibrosis. Urinary sediment CCL5 mRNA could be used as a potential prognostic biomarker of DN.
OBJECTIVE:Gut flora imbalance characterizes patients with chronic kidney disease (CKD). Although biotic supplementation has been proposed to lessen inflammation and oxidative stress and, thus, reduce the risk of progressive kidney damage and cardiovascular disease, the effects remain controversial. We conducted a meta-analysis to assess the therapeutic benefits of biotics in CKD.METHODS:PubMed, Embase, and Cochrane databases were systematically searched for randomized controlled trials that evaluated any biotic (prebiotic, probiotic, synbiotics) supplements in patients with CKD (CKD, stage 3-4 to end-stage renal disease). Primary endpoints included changes in renal function, markers of inflammation, and oxidative stress. Secondary endpoints included changes in levels of uremic toxins and variations in lipid metabolism.RESULTS:Twenty-three eligible studies included 842 participants. In a pooled-analysis, biotics did not change estimated glomerular filtration rate (mean difference [MD] = 0.08, P = .92) or serum albumin (MD = -0.01, P = .86), although prebiotics reduced serum creatinine (standardized mean difference [SMD] = -0.23, P = .009) and blood urea nitrogen (MD = -6.05, P < .00001). Biotics improved total antioxidative capacity (SMD = 0.37, P = .007) and malondialdehyde (SMD = -0.96, P = .006) and reduced the inflammatory marker interleukin-6 (SMD = -0.30, P = .01) although not C-reactive protein (SMD = -0.22, P = .20). Biotic intervention reduced some uremic toxins, including p-cresol sulfate (SMD = -2.18, P < .0001) and indoxyl sulfate (MD = -5.14, P = .0009), which decreased in dialysis-dependent patients. Another toxin, indole-3-acetic acid (MD = -0.22, P = .63), did not change. Lipids were unaffected by biotic intervention (total cholesterol: SMD = -0.01, P = .89; high-density lipoprotein: SMD = -0.08, P = .76; low-density lipoprotein: MD = 3.54, P = .28; triglyceride: MD = -2.26, P = .58).CONCLUSION:The results highlight the favorable influence of biotics on circulating markers of creatinine, oxidant stress (malondialdehyde, total antioxidative capacity), inflammation (interleukin-6), and uremic toxins (p-cresol sulfate) in patients with CKD. Biotics did not affect estimated glomerular filtration rate, albumin, indole-3-acetic acid, or lipids in either predialysis or dialysis patients.