Objective To develop a highly sensitive and rapid nucleic acid detection method for the severe acute respiratory syndrome coronavirus 2(SARS-CoV-2).Methods We designed,developed,and manufactured an integrated disposab...Objective To develop a highly sensitive and rapid nucleic acid detection method for the severe acute respiratory syndrome coronavirus 2(SARS-CoV-2).Methods We designed,developed,and manufactured an integrated disposable device for SARS-CoV-2 nucleic acid extraction and detection.The precision of the liquid transfer and temperature control was tested.A comparison between our device and a commercial kit for SARS-Cov-2 nucleic acid extraction was performed using real-time fluorescence reverse transcription polymerase chain reaction(RT-PCR).The entire process,from SARS-CoV-2 nucleic acid extraction to amplification,was evaluated.Results The precision of the syringe transfer volume was 19.2±1.9μL(set value was 20),32.2±1.6(set value was 30),and 57.2±3.5(set value was 60).Temperature control in the amplification tube was measured at 60.0±0.0℃(set value was 60)and 95.1±0.2℃(set value was 95)respectively.SARS-Cov-2 nucleic acid extraction yield through the device was 7.10×10^(6) copies/mL,while a commercial kit yielded 2.98×10^(6) copies/mL.The mean time to complete the entire assay,from SARS-CoV-2 nucleic acid extraction to amplification detection,was 36 min and 45 s.The detection limit for SARS-CoV-2 nucleic acid was 250 copies/mL.Conclusion The integrated disposable devices may be used for SARS-CoV-2 Point-of-Care test(POCT).展开更多
BACKGROUND The lack of effective pharmacotherapies for nonalcoholic fatty liver disease(NAFLD)is mainly attributed to insufficient research on its pathogenesis.The pathogenesis of TM6SF2-efficient NAFLD remains unclea...BACKGROUND The lack of effective pharmacotherapies for nonalcoholic fatty liver disease(NAFLD)is mainly attributed to insufficient research on its pathogenesis.The pathogenesis of TM6SF2-efficient NAFLD remains unclear,resulting in a lack of therapeutic strategies for TM6SF2-deficient patients.AIM To investigate the role of TM6SF2 in fatty acid metabolism in the context of fatty liver and propose possible therapeutic strategies for NAFLD caused by TM6SF2 deficiency.METHODS Liver samples collected from both NAFLD mouse models and human participants(80 cases)were used to evaluate the expression of TM6SF2 by using western blotting,immunohistochemistry,and quantitative polymerase chain reaction.RNA-seq data retrieved from the Gene Expression Omnibus database were used to confirm the over-expression of TM6SF2.Knockdown and overexpression of TM6SF2 were performed to clarify the mechanistic basis of hepatic lipid accumulation in NAFLD.MK-4074 administration was used as a therapeutic intervention to evaluate its effect on NAFLD caused by TM6SF2 deficiency.RESULTS Hepatic TM6SF2 levels were elevated in patients with NAFLD and NAFLD mouse models.TM6SF2 overexpression can reduce hepatic lipid accumulation,suggesting a protective role for TM6SF2 in a high-fat diet(HFD).Downregulation of TM6SF2,simulating the TM6SF2 E167K mutation condition,increases intracellular lipid deposition due to dysregulated fatty acid metabolism and is characterized by enhanced fatty acid uptake and synthesis,accompanied by impaired fatty acid oxidation.Owing to the potential effect of TM6SF2 deficiency on lipid metabolism,the application of an acetyl-CoA carboxylase inhibitor(MK-4074)could reverse the NAFLD phenotypes caused by TM6SF2 deficiency.CONCLUSION TM6SF2 plays a protective role in the HFD condition;its deficiency enhanced hepatic lipid accumulation through dysregulated fatty acid metabolism,and MK-4074 treatment could alleviate the NAFLD phenotypes caused by TM6SF2 deficiency.展开更多
基金supported by National Key R&D Program of China[2021YFC2301103 and 2022YFE0202600]Shenzhen Science and Technology Program[JSGG20220606142605011].
文摘Objective To develop a highly sensitive and rapid nucleic acid detection method for the severe acute respiratory syndrome coronavirus 2(SARS-CoV-2).Methods We designed,developed,and manufactured an integrated disposable device for SARS-CoV-2 nucleic acid extraction and detection.The precision of the liquid transfer and temperature control was tested.A comparison between our device and a commercial kit for SARS-Cov-2 nucleic acid extraction was performed using real-time fluorescence reverse transcription polymerase chain reaction(RT-PCR).The entire process,from SARS-CoV-2 nucleic acid extraction to amplification,was evaluated.Results The precision of the syringe transfer volume was 19.2±1.9μL(set value was 20),32.2±1.6(set value was 30),and 57.2±3.5(set value was 60).Temperature control in the amplification tube was measured at 60.0±0.0℃(set value was 60)and 95.1±0.2℃(set value was 95)respectively.SARS-Cov-2 nucleic acid extraction yield through the device was 7.10×10^(6) copies/mL,while a commercial kit yielded 2.98×10^(6) copies/mL.The mean time to complete the entire assay,from SARS-CoV-2 nucleic acid extraction to amplification detection,was 36 min and 45 s.The detection limit for SARS-CoV-2 nucleic acid was 250 copies/mL.Conclusion The integrated disposable devices may be used for SARS-CoV-2 Point-of-Care test(POCT).
基金Supported by National Natural Science Foundation of China,No.81670514 and No.81702337Scientific Research Project of Shanghai Municipal Health Commission,No.202040065Natural Science Foundation of Shanghai Scientific and Technological Project of Innovative Action,No.20ZR1411900.
文摘BACKGROUND The lack of effective pharmacotherapies for nonalcoholic fatty liver disease(NAFLD)is mainly attributed to insufficient research on its pathogenesis.The pathogenesis of TM6SF2-efficient NAFLD remains unclear,resulting in a lack of therapeutic strategies for TM6SF2-deficient patients.AIM To investigate the role of TM6SF2 in fatty acid metabolism in the context of fatty liver and propose possible therapeutic strategies for NAFLD caused by TM6SF2 deficiency.METHODS Liver samples collected from both NAFLD mouse models and human participants(80 cases)were used to evaluate the expression of TM6SF2 by using western blotting,immunohistochemistry,and quantitative polymerase chain reaction.RNA-seq data retrieved from the Gene Expression Omnibus database were used to confirm the over-expression of TM6SF2.Knockdown and overexpression of TM6SF2 were performed to clarify the mechanistic basis of hepatic lipid accumulation in NAFLD.MK-4074 administration was used as a therapeutic intervention to evaluate its effect on NAFLD caused by TM6SF2 deficiency.RESULTS Hepatic TM6SF2 levels were elevated in patients with NAFLD and NAFLD mouse models.TM6SF2 overexpression can reduce hepatic lipid accumulation,suggesting a protective role for TM6SF2 in a high-fat diet(HFD).Downregulation of TM6SF2,simulating the TM6SF2 E167K mutation condition,increases intracellular lipid deposition due to dysregulated fatty acid metabolism and is characterized by enhanced fatty acid uptake and synthesis,accompanied by impaired fatty acid oxidation.Owing to the potential effect of TM6SF2 deficiency on lipid metabolism,the application of an acetyl-CoA carboxylase inhibitor(MK-4074)could reverse the NAFLD phenotypes caused by TM6SF2 deficiency.CONCLUSION TM6SF2 plays a protective role in the HFD condition;its deficiency enhanced hepatic lipid accumulation through dysregulated fatty acid metabolism,and MK-4074 treatment could alleviate the NAFLD phenotypes caused by TM6SF2 deficiency.