Background:Immunoassays are commonly used in clinical laboratories to measure a variety of analytes, including hormones and tumor markers. Interference caused by rheumatoid factor (RF), heterophile antibodies, and human anti-animal antibodies (HAAA) has been reported but is rarely identified in daily practice. Here, we report a case of falsely elevated parathyroid hormone (PTH) due to immunoassay interference and review the literature. Case Presentation:A 57-year-old man who recovered well from lung metastasis of rectal cancer treated with bevacizumab and sintilimab for 1 year, presented to Peking University People's Hospital with persistently high PTH levels (>1200 ng/L) measured by a Roche Elecsys assay. He had hypoadrenocorticism induced by anti-programmed cell death 1 (PD-1), normal renal function, normal total calcium level, and normal 25-OH vitamin D concentration. The Beckman Coulter UniCel DxI 800 and Siemens Immulite 2000 platforms measured PTH levels of 18.3 ng/L and 8.7 ng/L, respectively. After the patient's serum was treated with polyethylene glycol (PEG) precipitation or mouse serum, the PTH levels determined by the Roche immunoassay decreased to 56.5 ng/L and 265.3 ng/L, respectively. Conclusion:Interference due to human anti-mouse antibodies (HAMA) could be the cause of falsely elevated PTH in the patient. Physicians should realize that immunoassay interference can lead to false results and closely communicate with the laboratory to avoid misdiagnosis and inappropriate therapies.
Immune imbalance plays a key role in the pathogenesis of ulcerative colitis (UC). The changes in CD4+ T cells and Treg cells in colonic T cells have an important relationship with UC. It is of great significance to elucidate the functional characteristics of CD4 cells and regulatory T (Treg) cells in UC patients. This study aimed to inquire into changes in functional markers of CD4 T cells and Tregs, including Helios, Bcl6, CTLA-4, CD226, TIGIT, PD-1 and ICOS. DSS-induced colitis was established in Balb/c mice and lymphocytes from spleen, mesenteric lymph nodes (MLNs), peripheral blood, and colon tissue were obtained. CD4+ T cells and Tregs were analyzed by flow cytometry. We found that Helios+ and Bcl-6+ proportions were increased in colonic CD4+ cells of DSS-induced colitis mice. CD4+FoxP3+CXCR5- Tregs were significantly elevated in the colon of colitis mice, with CTLA-4+ percentages increased. Naïve subsets in colonic CD4 and Tregs were significantly reduced, while effector T-cell subsets were increased in colitis mice. TIGIT+ and CD226+ percentages were significantly increased in both colonic CD4+ cells and Tregs of colitis mice. Both PD-1+ and ICOS+ percentages in colonic CD4 cells and the ICOS+ percentage in colonic Tregs were significantly increased in colitis mice. In conclusion, functional molecules related to CD4+ T cells and Tregs in colonic T cells are altered in UC, often adopting an activated phenotype. These changes may be associated with the pathogenesis of UC and could potentially serve as clinical therapeutic targets.
OBJECTIVES:This study aims to investigate the changes of circulating natural killer (NK) cells and their TIGIT expression diversities, and further explore the impact of TIGIT expression on the activity and function of NK cells in rheumatoid arthritis (RA) patients. METHODS:We comparatively assessed and compared the changes of NK cells, as well as their TIGIT expressions, among 53 RA patients, 23 healthy controls and 11 osteoarthritis (OA) patients using flow cytometry and in vitro cultures. CD25 and CD69 expression levels were used to evaluate the activation of NK subsets, and CD107α and GZMB expressions levels, and IFN-γ production abilities were detected to indicate the function of NK subsets. RESULTS:Circulating CD56brightNK cell levels were significantly elevated, while NKT cell levels were notably reduced in RA patients. In addition, NK cells manifested more activated phenotypes and enhanced function in RA. Meanwhile, TIGIT expression on NK cells and subsets was significantly reduced, with an imbalanced TIGIT/CD226 ratio. TIGIT-expressing NK subsets showed lower CD25 expression levels and weakened IFN-γ production abilities in RA patients. Furthermore, in vitro blockade of TIGIT pathway with anti-TIGIT antibody enhanced NK cell activity and function, while activation of TIGIT pathway with TIGIT-Fc chimera protein down-regulated NK cells activity and function. CONCLUSION:Our results showed that decreased TIGIT expressions in RA patients and the TIGIT signalling pathway may participate in the activation and function of NK subsets, which show new insight for the exploration of RA pathogenesis.
Natural killer (NK) cells were reported to be involved in the pathogenesis of primary antiphospholipid syndrome (pAPS). Immunosuppressive receptor T-cell immunoreceptor with Ig and ITIM domains (TIGIT) and activating receptor cluster of differentiation 226 (CD226) are specifically expressed on NK cells with competitive functions. This study aims to investigate the expression diversities of CD226/TIGIT on NK subsets and their associations with NK subsets activation phenotypes and potential clinical significance, furthermore, to explore potential cause for CD226/TIGIT expression diversities in pAPS. We comparatively assessed the changes of CD56brightNK, CD56dimNK, and NK-like cells in 70 pAPS patients compared with control groups, including systemic lupus erythematosus, asymptomatic antiphospholipid antibodies carriers (asymp-aPLs carriers), and healthy controls and their expression diversities of CD226/TIGIT by flow cytometry. CD25, CD69, CD107α expression, and interferon gamma (IFN-γ) secretion levels of NK subsets were detected to determine the potential association of CD226/TIGIT expression with NK subsets phenotypes. CD226/TIGIT expression levels were compared among different subgroups divided by aPLs status. Moreover, in vitro cultures were conducted to explore the potential mechanisms of CD226/TIGIT expression imbalance. CD56brightNK and CD3+CD56+NK-like cells were significantly increased while CD56dimNK cells were obviously decreased in pAPS, and CD56brightNK and NK-like cells exhibited significantly higher CD226 but lower TIGIT expressions. CD226+CD56brightNK and TIGIT-CD56brightNK cells show higher CD69 expression and IFN-γ secretion capacity, and CD226+NK-like and TIGIT-NK-like cells showed higher expressions of CD25 and CD69 but lower apoptosis rate than CD226- and TIGIT+CD56brightNK/NK-like cells, respectively. The imbalanced CD226/TIGIT expressions were most significant in aPLs triple-positive group. Imbalanced expressions of CD226/TIGIT on CD56brightNK and NK-like cells were aggravated after interleukin-4 (IL-4) stimulation and recovered after tofacitinib blocking. Our data revealed significant imbalanced CD226/TIGIT expressions on NK subsets in pAPS, which closely associated with NK subsets phenotypes and more complicated autoantibody status. CD226/TIGIT imbalanced may be affected by IL-4/Janus Kinase (JAK) pathway activation.
AbstractThe characterization of protein complex is vital for unraveling biological mechanisms in various life processes. Despite advancements in biophysical tools, the capture of non-covalent complexes and deciphering of their biochemical composition continue to present challenges for low-input samples. Here we introduce SNAP-MS, a Stationary-phase-dissolvable Native Affinity Purification and Mass Spectrometric characterization strategy. It allows for highly efficient purification and characterization from inputs at the pico-mole level. SNAP-MS replaces traditional elution with matrix dissolving during the recovery of captured targets, enabling the use of high-affinity bait-target pairs and eliminates interstitial voids. The purified intact protein complexes are compatible with native MS, which provides structural information including stoichiometry, topology, and distribution of proteoforms, size variants and interaction states. An algorithm utilizes the bait as a charge remover and mass corrector significantly enhances the accuracy of analyzing heterogeneously glycosylated complexes. With a sample-to-data time as brief as 2 hours, SNAP-MS demonstrates considerable versatility in characterizing native complexes from biological samples, including blood samples.
Background: Hepatocellular cancer (HCC) is one of the most harmful tumors to human health. Currently, there is still a lack of highly sensitive and specific HCC biomarkers in clinical practice. In this study, we aimed to explore the diagnostic performance of prostaglandin A2 (PGA2) for the early detection of HCC. Methods: Untargeted metabolomic analyses on normal control (NC) and HCC participants in the discovery cohort were performed, and PGA2 was identified to be dysregulated in HCC. A liquid chromatography-tandem mass spectrometry (LC-MS/MS) method for detecting serum PGA2 was established and applied to validate the dysregulation of PGA2 in another independent validation cohort. Receiver operating characteristic (ROC), decision curve analysis (DCA) and some other statistical analyses were performed to evaluate the diagnostic performance of PGA2 for HCC. Results: At first, PGA2 was found to be dysregulated in HCC in untargeted metabolomic analyses. Then a precise quantitative LC-MS/MS method for PGA2 has been established and has passed rigorous method validation. Targeted PGA2 analyses confirmed that serum PGA2 was decreased in HCC compared to normal-risk NC and high-risk cirrhosis group. Subsequently, PGA2 was identified as a novel biomarker for the diagnosis of HCC, with an area under the ROC curve (AUC) of 0.911 for differentiating HCC from the combined NC + cirrhosis groups. In addition, PGA2 exhibited high performance for differentiating small-size (AUC = 0.924), early-stage (AUC = 0.917) and AFP (-) HCC (AUC = 0.909) from the control groups. The combination of PGA2 and AFP might be useful in the surveillance of risk population for HCC and early diagnosis of HCC. Conclusion: This study establishes that PGA2 might be a novel diagnostic biomarker for HCC.
BackgroundAnti-glycoprotein 2 (anti-GP2) IgA and antineutrophil-cytoplasmic antibodies to proteinase 3 (PR3-ANCA) have been reported as predictive markers of cholangiocarcinoma (CCA) in patients with primary sclerosing cholangitis (PSC), but their prevalence in CCA patients without PSC remains unclear.MethodsThis study involved Asian discovery (n = 118) and European validation (n = 38) cohorts of CCA patients without PSC, alongside 49 Asian and 82 European pancreatic ductal adenocarcinoma (PDAC) patients, 21 with benign pancreatic neoplasms (BPN) and 45 with hepatocellular carcinoma (HCC), and 157 healthy controls (HC) from Asia and Europe. We analyzed the prevalence of PR3-ANCA, IgA and IgG against GP21 and GP24, and the CA19-9 levels.ResultsAnti-GP21 IgA was the most prevalent in both CCA cohorts (discovery: 55.1 %; validation: 42.1 %) and significantly higher than in other groups except PDAC (all p < 0.05). It demonstrated the best diagnostic performance in distinguishing CCA from disease controls and HC, outperforming tumor markers. No significant correlation was found between anti-GP21 IgA levels and CA19-9 levels.ConclusionOur findings show that anti-GP21 IgA revealing the loss of mucosal tolerance is a potential novel diagnostic biomarker for CCA.
We aimed to characterize the alterations in the immune phenotypes and explore the potential relevance to pathogenesis in IgG4-RD. Forty-two IgG4-RD patients and thirty-eight healthy controls were recruited in this study. Peripheral immunocompetent cells including T cells, CD4 + T cells, CD8 + T cells, B cells, NK cells CD4 + CD45RA + T cells (naïve T cells), CD4 + CD25 − / + Foxp3 − T cells (Teff), CD4 + CD25hiCD127lowCD161 + T cells (CD161 + Treg), CD4 + CD25hiFoxp3 + T cells (Foxp3 + Treg), CD4 + CD4RA-CXCR5 + PD1 + CCR7low T cells (pTfh), T helper (Th) 1, Th2, and Th17 before and after treatment were immunophenotyped by flow cytometry. Compared with healthy controls, IgG4-RD patients showed higher proportions of NK (20.1
Autoantibodies against NETs (ANETA) are present in SLE patients. We aimed to determine the clinical relevance of ANETA in SLE. Serum from 129 SLE patients, 161 patients with various rheumatoid diseases (DC), and 53 healthy controls (HC) were tested by a home-made ANETA ELISA platform. ANETA showed a sensitivity of 35.7% and a specificity of 92.5%, respectively, in the diagnosis of SLE. The combination of ANETA with anti-dsDNA antibody increased the diagnostic sensitivity from 49.6% to 62.8% for SLE. The presence of ANETA potentiates the clinical utility of anti-dsDNA antibodies in identifying a subset of SLE patients with higher disease activity and hematological abnormalities. The binding of ANETA to NETs did not inhibit the immunostimulatory effect of NETs. Our findings suggested that ANETA have potential as clinically relevant biomarkers that potentiate the clinical performance of anti-dsDNA antibodies in the diagnosis, risk stratification and subtyping of patients with SLE.
Objectives: Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) continues to spread worldwide. However, it remains unknown whether individuals with prior SARS-CoV-1 infection are protected from SARS-CoV-2 infection. This study assessed protective antibody levels in SARS survivors with and without the COVID-19 vaccine. Methods: We recruited 17 SARS survivors infected with SARS-CoV-1 in 2003, including 8 not vaccinated with the COVID-19 vaccine and 9 vaccinated with two doses of inactivated whole-virion COVID-19 vaccine (Sinopharm). In addition, 105 healthy adult volunteers without SARS-CoV-1 and SARS-CoV-2 infections were used as controls. The relative concentrations of three protective antibodies including anti-SARSCoV-2 spike IgG (nCoV S-IgG), anti-SARS-CoV-2 spike receptor-binding domain IgG (nCoV RBD-IgG), and anti-SARS-CoV-2 neutralizing antibodies (nCoV NAbs) were measured to evaluate humoral immunity. Results: We found that the positive rates of these antibodies in unvaccinated SARS survivors were 37.5%, 37.5%, and 62.5%, respectively. In contrast, the corresponding positive rates were all 0% in controls before vaccination. In controls, the levels of protective antibodies reached a peak ca. 28 days after the second dose of vaccine and then started to decline. Surprisingly, the levels of these antibodies were maintained at very high levels even 166 days after the second dose of vaccine in SARS survivors. Conclusion: Our study suggests that there are protective antibodies cross-reacting with SARS-CoV-2 in recovered SARS patients and that SARS survivors can generate a much stronger antibody response induced by the COVID-19 vaccine than can controls. These initial findings show the feasibility of developing novel pan-sarbecovirus vaccines. & COPY; 2023 Elsevier Ltd and International Society of Antimicrobial Chemotherapy. All rights reserved.
Background Follicular helper T (Tfh), follicular regulatory T (Tfr), and follicular cytotoxic T (Tfc) cells play important roles in autoimmune diseases. Nevertheless, their changes of functional phenotypes in ulcerative colitis (UC), most importantly, their changes in colon tissue as the target-organ, have not been explored. Methods DSS-colitis was induced in Balb/c mice and lymphocytes were collected from spleen, mesenteric lymph nodes, peripheral blood and colon. Tfh, Tfr, and Tfc cells were analyzed using flow cytometry based on their CD4+CXCR5+FOXP3-Tfh, CD4+CXCR5+FOXP3+Tfr and CD8+CXCR5+Tfc expressions. Various functional characterization markers including CD44, CD62L, TIGIT, CD226, PD-1, ICOS, Helios, CTLA-4 and Bcl6 were analyzed in the T cell subsets of the organs. Results Tfh and Tfr cells in the colon were significantly increased in DSS-colitis mice. Additionally, the proportions of Tfr and Tfc cells in the peripheral blood were also increased, while Tfc cell proportions in the colon were decreased. The proportion of naïve cells in the Tfh, Tfr and Tfc cells in the colon and peripheral blood decreased, while the proportion of effector memory T cells increased. The TIGIT+CD226-Tfh and Tfc cells were upregulated in the colon of DSS-colitis mice. The PD-1+, ICOS+ and PD-1+ICOS+ Tfh cells were increased in both the colonic and peripheral blood Tfh and Tfc of DSS-colitis mice. The Bcl6+ proportions in the Tfh and Tfr were increased in the colon of DSS-colitis mice. Conclusion The colonic and peripheral blood Tfh and Tfc cells of DSS-colitis mice have a significantly activated T cell phenotype, which may play a significant role in the pathogenesis of UC.
Objective This study aimed to clarify the expression of HLA-DQ and granulysin in peripheral blood T-cell subsets in patients with chronic hepatitis B virus (CHB) and to evaluate their significance in assisting CHB diagnosis and immune status assessment. Methods Peripheral blood from 34 CHB patients, 36 inactive HBsAg carriers and 33 healthy controls were collected, and HLA-DQ and granulysin in a series of T-cell subsets were analysed by flow cytometry. The ability to secrete IL-10 and IFN-gamma and the functional T-cell subsets were measured in Treg and CD4 cells expressing HLA-DQ or not. Correlation analyses were further conducted between HLA-DQ/granulysin-related subsets and clinical indicators of HBV infection, and ROC curves were built to evaluate diagnosis efficiency of HLA-DQ-related subsets. Results HLA-DQ+ percentages in circulating CD4 T cells were downregulated in CHB patients. The proportions of HLA-DQ + Tfh in CHB were upregulated while HLA-DQ+ percentages in Treg were decreased. In terms of function, the IFN-gamma secretion ability of CD4 + T cells and IL-10 secretion in Tregs were stronger in HLA-DQ+ than HLA-DQ- subsets. HLA-DQ + CD4 + T cells and HLA-DQ + Treg were negatively correlated with HBV-DNA, while HLA-DQ + Tfh and Tfc cells were positively correlated with HBV-DNA and ALT. HLA-DQ + Treg/Tfh/Tfc could help to distinguish CHB from inactive HBsAg carriers. Conclusion HLA-DQ on T cells can characterize the function of T-cell subsets and analysis of HLA-DQ can help to evaluate immune status and assist in diagnosis of CHB.
Objectives This study aimed to elucidate the changes and associated mechanisms of circulating CD28- cytotoxic T lymphocytes (CTLs) in patients with IgG4-related disease (IgG4-RD). Methods Fifty IgG4-RD patients and 15 healthy controls (HCs) were recruited. Peripheral blood mononuclear cells (PBMCs) were isolated, the levels of circulating CD28- CTLs were detected by flow cytometry, and the proportions of CD127lo or GZMB+CD28- CTL subsets were analyzed in the meantime. Mechanistically, PBMCs isolated from IgG4-RD patients were stimulated with IL-7 in the presence or absence of the JAK inhibitor tofacitinib. Flow cytometry was used to analyze the proliferation of CD28- CTLs and the changes in related subpopulations. Results Circulating CD4+CD28- CTLs and CD8+CD28- CTLs were significantly increased in IgG4-RD patients compared with HCs, accompanied by an elevation of CD127lo or GZMB+ CTL subsets. The ex vivo culture of PBMCs showed that IL-7 could induce the amplification of CD4+CD28- CTLs and CD8+CD28- CTLs in IgG4-RD. Furthermore, IL-7 promotes the proliferation and functional subset changes of these CD28- CTLs in this disease. The selective JAK inhibitor tofacitinib significantly inhibited the effects of IL-7 on CD4+CD28- CTLs and CD8+CD28- CTLs. Conclusion IL-7 can affect the immune balance of IgG4-RD patients by promoting the expansion and function of CD4+CD28- and CD8+CD28- CTLs in IgG4-RD through the JAK pathway. Blockade of the IL-7 signaling pathway may be a new therapeutic strategy for IgG4-RD.
Objective: Human epididymis protein 4 (HE4) have been implicated in the pulmonary involvements. We aimed to investigate the clinical utility of HE4 in clinical stratification in patients with rheumatoid arthritis (RA). Methods: This study included a discovery cohort comprising 70 RA patients and 64 healthy controls (HCs), and a validation cohort comprising 98 RA patients and 75 HCs. Human epididymis protein 4 were determined by electrochemical luminescence analyzer. Results: The levels of HE4 were significantly elevated in patients with RA compared to HCs. The positive rates of HE4 in patients with RA and HCs were 50.0% and 0, respectively, in the discovery cohort and 53.1 and 1.3%, respectively, in the validation cohort. When RA patients were subgrouped according to HE4 status, HE4-positive group displayed higher prevalence of interstitial lung disease (ILD) compared to HE4-negative group (28.6 vs. 11.4% in discovery cohort and 57.7 vs. 8.7% in the validation cohort). A positive correlation between the levels of HE4 with the degree of lung impairment was identified. Receiver operating curve (ROC) analysis revealed an optimal cut-off value of 104.3 pmol/L in HE4 for distinguishing RA-ILD from RA-non ILD with the areas under the curve (AUC) of 0.790. Multivariate logistic regression analysis illustrated that high levels of HE4 independently identified patients with RA-ILD (OR, 9.080, p < 0.001). Conclusion: Our findings showed a novel role of HE4 in RA risk stratification, suggest that introducing HE4 to the current RA test panel may serve as an indicator in identifying RA patients for further RA-ILD workups, such as high-resolution computed tomography (HRCT).
Objectives Neutrophilia is a hallmark of adult-onset Still’s disease (AOSD). This study aimed to investigate the role of a distinct subset of granulocytes, the low-density granulocytes (LDGs) in the pathogenesis of AOSD. Methods A total of 56 patients with AOSD were included in the study. LDGs were quantified by flow cytometry. Correlations between LDGs with disease activity and laboratory parameters were determined by Spearman’s nonparametric test. The cellular sources of the pro-inflammatory cytokines in AOSD were determined by intracellular staining. Results Active AOSD patients displayed significantly higher levels of LDGs compared with inactive AOSD patients and healthy controls (HCs) (P<0.001). Circulating LDGs were significantly correlated with CRP, ESR and the modified Pouchot score in patients with AOSD (P<0.01). The levels of LDGs were significantly decreased after the active AOSD patients achieved disease remission (P=0.0391). CD14+ monocytes constituted over 90% IL-1β+ peripheral blood mononuclear cells (PBMCs) and over 80% TNF-α+ PBMCs in both active AOSD patients and HCs, respectively. In active AOSD, CD14+ monocytes accounted for 24.6% to 75.0% of IL-6+ PBMCs, while LDGs comprised 22.8% to 72.2% of IL-6+ PBMCs. In contrast, over 90% IL-6+ PBMCs were CD14+ monocytes in HCs. A significant correlation was identified between the levels of LDGs and serum IL-6 levels in AOSD (P<0.0001). Conclusion Active AOSD is associated with elevated levels of a pro-inflammatory subset of neutrophils, the LDGs that produce IL-6. Our data highlight an unappreciated role of LDGs in the aberrant innate immune responses in AOSD.
To examine the expression and clinical significance of circulating CD4+ FoxP3– CXCR5– CXCR3+ PD‐1hi cells in rheumatoid arthritis (RA).
Purpose: A recently identified population of T cells, phenotypically CD4(+)PD-1(hi)CXCR5(-), has been firstly termed as peripheral helper T cells (Tph) and found to be pathogenic in autoimmune diseases. However, the potential role of Tph in ulcerative colitis (UC) remains unclear. We aim to investigate the changes of circulating Tph in UC patients and their potential significance in the pathogenesis of UC. Methods: Totally 68 UC patients and 34 age- and sex-matched healthy controls were enrolled. Circulating Tph and B cell subsets were analyzed by flow cytometry. Expressions of inducible T-cell co-stimulator (ICOS) on Tph cells were analyzed. Serum IL-4, IL-10, IL-12 and IL-21 were detected using ELISA. Correlation analyses were conducted between Tph cells and disease severity, functional B cell subsets and serum cytokines. Results: Both the frequency and absolute number of Tph were significantly increased in active UC patients and ICOS levels in Tph cells were also elevated, compared with remission UC patients and healthy controls. Tph and ICOS expression were significantly positively correlated with Mayo score and serum CRP in active UC patients, and were significantly decreased when achieving remission after treatment. Tph levels were correlated with new memory B cells, plasmablasts, serum IL-4 and IL-21. Meanwhile, serum IL-10 showed negative correlation while IL-12 exhibited positive correlation with circulating Tph cells in UC patients. Conclusions: Circulating Tph cells are elevated in active UC patients and are associated with the disease activity, which may contribute to the pathogenesis of UC.
Objective Neutrophilia is a hallmark of adult-onset Still disease (AOSD). We aimed to investigate the levels of granulocyte colony-stimulating factor (G-CSF), an essential regulator of neutrophil production and function, in the pathogenesis of AOSD. Methods Sera were collected from 70 patients with AOSD and 20 healthy controls (HCs). The levels of G-CSF were determined by ELISA. Low-density granulocytes (LDGs) were quantified by flow cytometry. Correlations between G-CSF levels and disease activity, laboratory variables, and LDG levels in patients with AOSD were analyzed by Spearman correlation test. Results Patients with active AOSD presented significantly higher levels of G-CSF compared to inactive AOSD patients (P < 0.001) and HCs (P < 0.0001). The G-CSF levels were significantly decreased after active AOSD patients achieved disease remission (P = 0.0015). The G-CSF levels were significantly correlated with C-reactive protein, erythrocyte sedimentation rate, ferritin, and systemic score in AOSD (P < 0.0001). Significant correlations between the levels of G-CSF and circulating neutrophils (P < 0.0001), neutrophil-to-lymphocyte ratio (P < 0.0001), percentages of LDGs in the peripheral blood mononuclear cells (P = 0.004), as well as absolute numbers of circulating LDGs (P = 0.018) were identified. Patients with fever, evanescent rash, sore throat, arthralgia, myalgia, lymphadenopathy, or hepatomegaly/elevated liver enzymes displayed significantly higher levels of G-CSF compared to patients without these manifestations (P < 0.05). Conclusion Our findings indicate that G-CSF is implicated in the pathogenesis of AOSD, and targeting G-CSF may have therapeutic potential for AOSD. In addition, introducing circulating G-CSF levels into the clinical assessment system may help to monitor disease activity.
Summary Inducible co-stimulator-positive (ICOS) and programmed cell death 1-positive (PD-1) are important markers for follicular helper T cells (Tfh); however, their roles and clinical values in ulcerative colitis (UC) remain unknown. In this study, we recruited 68 UC patients and 34 healthy controls. Circulating ICOS+, PD-1+ and ICOS+PD-1+ Tfh subsets were analyzed by flow cytometry. Twelve active UC patients achieving remission after treatment with 5-aminosalicylic acid were followed-up and Tfh subset changes were analyzed. Serum immunoglobulin (Ig)G, C-reactive protein (CRP), interleukin (IL)-4 and IL-21 levels and B cell subsets were analyzed and Mayo scores were calculated. Correlation analyses were performed between Tfh subsets and the clinical indicators. Receiver operating characteristic (ROC) curves were generated to evaluate the efficiency of Tfh subsets for disease monitoring. We found that levels of ICOS+, PD-1+ and ICOS+PD-1+ Tfh cells were significantly increased in active UC and significantly decreased when achieving clinical remission. Activated ICOS+PD-1+Tfh cells were positively correlated with serum CRP and Mayo scores. Furthermore, ICOS+PD-1+ Tfh cells were significantly correlated with circulating new memory B cells and plasmablasts, as well as serum IgG, IL-4 and IL-21. ROC analyses showed that when ICOS+PD-1+ Tfh cells were used in combination with PD-1+ Tfh cells, the diagnostic efficacy in distinguishing active UC from stable remission patients was higher than that of any one used alone, with area under curve (AUC) value 0·931. Our findings suggest that increased ICOS+PD-1+ Tfh cells are associated with the activation of B cells in the pathogenesis of UC, and may be a potential biomarker for UC disease monitoring.