Background: Tuberculosis (TB) remains a major global public health challenge. Articular T/3 is an important form of extrapulmonary tuberculosis, and its diagnosis is difficult because of the low sensitivity of trad...Background: Tuberculosis (TB) remains a major global public health challenge. Articular T/3 is an important form of extrapulmonary tuberculosis, and its diagnosis is difficult because of the low sensitivity of traditional methods. The aim of this study was to analyze the diagnostic value of T-SPOT.TB on synovial fluid for the diagnosis of articular TB. Methods: Patients with suspected articular TB were enrolled consecutively between August 2011 and December 2015. T-SPOT.TB was performed on both synovial fluid mononuclear cells (SFMCs) and peripheral blood mononuclear cells (PBMCs). The final diagnosis of articular TB was independent of the T-SPOT.TB result. The diagnostic sensitivity, specificity, predictive value, and likelihood ratio of T-SPOT.TB on SFMCs and PBMCs were analyzed. Results: Twenty patients with suspected articular TB were enrolled. Six were diagnosed with articular TB, and 14 patients were diagnosed with other diseases. Sensitivity and specificity were 83% and 86% for T-SPOT.TB on SFMCs, and 67% and 69% for T-SPOT.TB on PBMCs, respectively. The positive predictive value (PPV) and negative predictive value (NPV) of T-SPOT.TB on SFMCs were 71% and 92%, respectively. The PPV and NPV were 50% and 82% for T-SPOT.TB on PBMCs. Conclusion: Sensitivity, specificity, and NPV of T-SPOT.TB on SFMCs appeared higher than that on PBMCs, indicating that T-SPOT. TB on SFMCs might be a rapid and accurate diagnostic test for articular TB.展开更多
BACKGROUND The IFIH1 gene codes the MDA5 protein and the DDX58 gene codes the RIG-I receptor.Both proteins are parts of the interferon(IFN)I signaling pathway and are responsible for antiviral defense and innate immun...BACKGROUND The IFIH1 gene codes the MDA5 protein and the DDX58 gene codes the RIG-I receptor.Both proteins are parts of the interferon(IFN)I signaling pathway and are responsible for antiviral defense and innate immune response.IFIH1 and DDX58 polymorphisms are associated with a spectrum of autoimmune diseases.Rare gain-of-function IFIH1 mutations have been found in Singleton-Merten and Aicardi-Goutières syndrome,while DDX58 mutation can cause atypical Singleton-Merten syndrome.AIM To characterize children with pediatric rheumatic diseases(PRD)carrying DDX58 or IFIH1 variants.METHODS Clinical exome sequencing was performed on 92 children with different PRD.IFIH1 and DDX58 variants have been detected in 14 children.IFN-I score has been analyzed and the clinical characteristics of patients have been studied.RESULTS A total of seven patients with systemic lupus erythematosus(SLE)(n=2),myelodysplastic syndrome with SLE features at the onset of the disease(n=1),mixed connective tissue disease(MCTD)(n=1),undifferentiated systemic autoinflammatory disease(uSAID)(n=3)have 5 different variants of the DDX58 gene.A common non-pathogenic variant p.D580E has been found in five children.A rare variant of uncertain significance(VUS)p.N354S was found in one patient with uSAID,a rare likely non-pathogenic variant p.E37K in one patient with uSAID,and a rare likely pathogenic variant p.Cys864fs in a patient with SLE.Elevated IFN-I score was detected in 6 of 7 patients with DDX58 variants.Seven patients had six different IFIH1 variants.They were presented with uSAID(n=2),juvenile dermatomyositis(JDM)(n=1),SLElike disease(n=1),Periodic fever with aphthous stomatitis,pharyngitis,and adenitis syndrome(n=1),and systemic onset juvenile idiopathic arthritis(n=1).Three patients have VUS p.E627X,one patient has benign variant p.I923V.Rare VUS p.R595H was detected in the JDM patient.Another rare VUS p.L679Ifs*2 and previously not reported variant p.V599Ffs*5 were detected in the patient with uSAID.One patient with uSAID has rare VUS p.T520A.All patients had elevated IFN-I scores.CONCLUSION Rare compound-heterozygous IFIH1 variant(p.L679Ifs*2 and p.V599Ffs*5),heterozygous IFIH1 variant(p.T520A)and heterozygous DDX58 variant(p.Cys864fs)are probably disease causative for uSAID and SLE.The majority of patients with different DDX58 and IFI1 variants had hyperactivation of the IFN I signaling pathway.展开更多
文摘Background: Tuberculosis (TB) remains a major global public health challenge. Articular T/3 is an important form of extrapulmonary tuberculosis, and its diagnosis is difficult because of the low sensitivity of traditional methods. The aim of this study was to analyze the diagnostic value of T-SPOT.TB on synovial fluid for the diagnosis of articular TB. Methods: Patients with suspected articular TB were enrolled consecutively between August 2011 and December 2015. T-SPOT.TB was performed on both synovial fluid mononuclear cells (SFMCs) and peripheral blood mononuclear cells (PBMCs). The final diagnosis of articular TB was independent of the T-SPOT.TB result. The diagnostic sensitivity, specificity, predictive value, and likelihood ratio of T-SPOT.TB on SFMCs and PBMCs were analyzed. Results: Twenty patients with suspected articular TB were enrolled. Six were diagnosed with articular TB, and 14 patients were diagnosed with other diseases. Sensitivity and specificity were 83% and 86% for T-SPOT.TB on SFMCs, and 67% and 69% for T-SPOT.TB on PBMCs, respectively. The positive predictive value (PPV) and negative predictive value (NPV) of T-SPOT.TB on SFMCs were 71% and 92%, respectively. The PPV and NPV were 50% and 82% for T-SPOT.TB on PBMCs. Conclusion: Sensitivity, specificity, and NPV of T-SPOT.TB on SFMCs appeared higher than that on PBMCs, indicating that T-SPOT. TB on SFMCs might be a rapid and accurate diagnostic test for articular TB.
文摘BACKGROUND The IFIH1 gene codes the MDA5 protein and the DDX58 gene codes the RIG-I receptor.Both proteins are parts of the interferon(IFN)I signaling pathway and are responsible for antiviral defense and innate immune response.IFIH1 and DDX58 polymorphisms are associated with a spectrum of autoimmune diseases.Rare gain-of-function IFIH1 mutations have been found in Singleton-Merten and Aicardi-Goutières syndrome,while DDX58 mutation can cause atypical Singleton-Merten syndrome.AIM To characterize children with pediatric rheumatic diseases(PRD)carrying DDX58 or IFIH1 variants.METHODS Clinical exome sequencing was performed on 92 children with different PRD.IFIH1 and DDX58 variants have been detected in 14 children.IFN-I score has been analyzed and the clinical characteristics of patients have been studied.RESULTS A total of seven patients with systemic lupus erythematosus(SLE)(n=2),myelodysplastic syndrome with SLE features at the onset of the disease(n=1),mixed connective tissue disease(MCTD)(n=1),undifferentiated systemic autoinflammatory disease(uSAID)(n=3)have 5 different variants of the DDX58 gene.A common non-pathogenic variant p.D580E has been found in five children.A rare variant of uncertain significance(VUS)p.N354S was found in one patient with uSAID,a rare likely non-pathogenic variant p.E37K in one patient with uSAID,and a rare likely pathogenic variant p.Cys864fs in a patient with SLE.Elevated IFN-I score was detected in 6 of 7 patients with DDX58 variants.Seven patients had six different IFIH1 variants.They were presented with uSAID(n=2),juvenile dermatomyositis(JDM)(n=1),SLElike disease(n=1),Periodic fever with aphthous stomatitis,pharyngitis,and adenitis syndrome(n=1),and systemic onset juvenile idiopathic arthritis(n=1).Three patients have VUS p.E627X,one patient has benign variant p.I923V.Rare VUS p.R595H was detected in the JDM patient.Another rare VUS p.L679Ifs*2 and previously not reported variant p.V599Ffs*5 were detected in the patient with uSAID.One patient with uSAID has rare VUS p.T520A.All patients had elevated IFN-I scores.CONCLUSION Rare compound-heterozygous IFIH1 variant(p.L679Ifs*2 and p.V599Ffs*5),heterozygous IFIH1 variant(p.T520A)and heterozygous DDX58 variant(p.Cys864fs)are probably disease causative for uSAID and SLE.The majority of patients with different DDX58 and IFI1 variants had hyperactivation of the IFN I signaling pathway.