1.Advances in Nanozyme-Aptamer Systems for the Detection of Foodborne Pathogens
Hao LIANG ; Shiyu JIA ; Zhou ZHAN ; Yujiao CAI ; Xiangheng NIU
Journal of Sichuan University (Medical Sciences) 2025;56(5):1251-1259
Food safety problems caused by foodborne pathogenic bacteria pose a serious threat to public health,creating an urgent need to develop testing methods and techniques with excellent performance and are simple to use and of affordable cost.Traditional testing methods,such as isolation and culture,morphological observation,biochemical identification,and serological tests,have many limitations,including complex procedures,reliance on specialized technical equipment and personnel,and long turnaround time,rendering them inadequate for meeting current and future testing demands.Therefore,it is particularly important to develop simple,rapid,and highly sensitive methods for analyzing pathogenic bacteria.The fusion of nucleic acid aptamers and nanozymes brings new ideas for the rapid testing of pathogenic bacteria.On one hand,aptamers offer specific recognition capability for target bacteria and can be combined with various nucleic acid signal amplification techniques.On the other hand,the enzyme-like catalytic activity and signal amplification effect of many nanomaterials provide a basis for highly sensitive testing.This review highlights the application potential of nanozyme?aptamer coupling systems in the field of microbial analysis by briefly summarizing the latest research progress in the use of nanozymes combined with aptamers for the detection of foodborne pathogenic bacteria.First of all,two main approaches to conjugating nanozymes with aptamers are introduced.Then,the testing mechanisms and typical applications of nanozyme?aptamer coupling systems for foodborne pathogenic bacteria are discussed.Finally,future development trends and existing challenges are disucssed from four perspectives,including specificity,high sensitivity,high throughput,and intelligent detection.This review aims to provide a useful reference for the fusion of nanozymes and aptamers and for the development of on-site rapid testing techniques for foodborne pathogens,and to encourage broader academic interest to further advance this promising research field.
2.Determination of Nigeglanoside in Seeds of Nigella glandulifera by HPLC
Yujiao ZHAN ; Chenyang LI ; Xu HU ; Yan CHEN ; Jun ZHAO ; Fang XU
Herald of Medicine 2018;37(11):1374-1376
Objective To establish a method for the determination of nigeglanoside in seeds of Nigella glandulifera. Methods The content of nigeglanoside was determined by HPLC.The separation was performed on a C18column ( YMC-Pack ODS-A,250 mm×4.6 mm,5 μm) with a gradient elution system of acetonitrile and 0.017 5 mol·L-1acetic acid solution at the flow rate of 1.0 mL·min-1.The detection wavelength was set at 290 nm,and column temperature was 30 ℃. Results The linear range of nigeglanoside was 0.01-0.30 mg·mL-1(R2=0.9991).The RSDs of precision,stability and repeatability were all less than 2%.The average recovery was 96.66% (RSD=1.25%,n=6). Conclusion The method is accurate and reproducible. It is effective in controlling the quality of seeds of Nigella glandulifera .
3.Expression of LRP16 in human endometrial carcinoma tissues and its role on cell proliferation
Yujiao ZHANG ; Ling LIU ; Chunyan WANG ; Ping ZHAN ; Zonghui WU ; Wen HE ; Dingyu WANG
Chongqing Medicine 2013;(25):2983-2985
Objective To investigate the expression change of LRP16 in endometrial cancer tissues and its influence on the pro-liferation of human endometrial carcinoma HEC-1-B cells .Methods HEC-1-B cells were transfected with LRP16 .RT-PCR was used to examine the expression of LRP16 in 26 normal endometrium specimens ,10 endometrial cancer specimens .RT-PCR was used for verifying the transfection success .WES-T was used to observe the proliferation change of HEC-1-B cells .Results The positive expression rate and level of LRP16 mRNA in the endometrial cancer tissues were 83 .33% and 0 .82 ± 0 .21 ,which were significantly higher than 30 .00% ,0 .47 ± 0 .18 in the normal endometrium tissues(P<0 .05) .The RT-PCR detection results revealed that the expression of LRP16 mRNA after transfection was significantly increased .HEC-1-B cells in the transfection group could continued to proliferate in vitro ,but the proliferation capacity was not increased .Conclusion The expression abnormality of LRP16 may be closely related to the occurrence and progress of endometrial cancer ,LRP16 gene may have potential value for the endometrial canc-er gene therapy .

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