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1.
Chinese Journal of Analytical Chemistry ; (12): 303-308, 2017.
Article in Chinese | WPRIM | ID: wpr-514463

ABSTRACT

A highly sensitive and selective DNA biosensor is described based on the fluorescence quenching ability of MoS2 nanosheet and exonucleaseⅢ( ExoⅢ) assisted dual-signal amplification. In this sensor, the fluorescence probes ( HP1 and HP2 ) cannot be degraded by Exo Ⅲdue to the 3 '-termini protrusion and thus are adsorbed on the surface of MoS2 nanosheets, which will result in the quenching of MoS2 nanosheets toward the probes and induce a low fluorescent signal. The presence of the target DNA leads to the desorption of probes on the surface of MoS2 nanosheets due to the hybridization toward probes, generating many fluorescent fragments by Exo Ⅲdigestion and inducing dual-signal amplification. This method can improve the sensitivity and detection limit compared with single amplification method, and shows excellent selectivity in the discrimination of single base mismatched targets. On the basis of the significantly high sensitivity, the developed biosensor can be potentially extended to detect various DNA targets with excellent sequence selectivity.

2.
Chinese Journal of Medical Education Research ; (12): 138-141, 2017.
Article in Chinese | WPRIM | ID: wpr-510598

ABSTRACT

Field practice teaching is an important part in pharmaceutical botany. According to the problems in the traditional field practice, an innovative system of field practice teaching was built. A series of reform and innovation was integrating and rationally allocating the existing resources. Combining the tra-ditional cognitive practice teaching and self-study, image-text card of medicinal plant was edited to enrich the teaching content, and the diversification of evaluation methods was proposed. This method could mobi-lize the enthusiasm of the students, improve the comprehensive quality of students and obtain good teaching effect.

3.
Journal of Pharmaceutical Analysis ; (6): 190-196, 2014.
Article in Chinese | WPRIM | ID: wpr-473643

ABSTRACT

The HPLC-MS/MS method was developed to profile the dynamics of abscisic acid (ABA) and ABA-glucose ester (ABA-GE) after cloning glycosyltransferase enzyme family gene AtUGT71C5 into Arabidopsis thaliana. By constructing over-expression lines (OE) and down-expression lines (DN), we acquired mutant strains to analyze the function of AtUGT71C5. The multiple-reaction monitoring (MRM) was used for quantitative determination in negative mode. The transition was m/z 263.1-153.0 for ABA ([M-H]t), m/z 425.1-263.0 for ABA-GE ([M-H]t), and m/z 321.0-152.0 for chloramphe-nicol. The linear range was 0.8684-217.1 ng/mL for ABA and 0.3920-196.0 ng/mL for ABA-GE. The accuracy was 88.0-109.0% for ABA and 86.6-113.0% for ABA-GE; the inter-day and intra-day precisions were less than 5.4%for ABA and 8.9%for ABA-GE, respectively. This method is simple and sensitive enough for determination of ABA and ABA-GE in A. thaliana leaves. All the evidence confirmed the speculation that AtUGT71C5 can mediate abscisic acid homeostasis.

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