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1.
Artigo em Chinês | WPRIM (Pacífico Ocidental) | ID: wpr-976131

RESUMO

@#Objective - - (BCL2L2)- ( ) To investigate the differential expression of the fusion gene BCL 2 like protein 2 poly A (PABPN1) ( ) binding protein nuclear 1 induced by sodium arsenite SA and its methylated metabolites in 16HBE cells and the Methods ) , related mechanism. i The 16HBE cells exposed to SA at concentrations of 1.5 3.0 and 4.5 µmol/L were set as -, - - low medium and high dose arsenic exposure groups. The 16HBE cells exposed to 4.5 µmol/L monomethylarsonic acid ( ), ( ) , MMA dimethylarsonic acid DMA and SA were set as MMA group DMA group and SA group. The 16HBE cells without , BCL2L2-PABPN1 toxic stimulation were set as control group. After the cells were cultured for 48 hours the expression of was - ( - ) ) ( ) detected by quantitative real time polymerase chain reaction qRT PCR . ii Two small interfering RNA siRNA silencing 基金项目:国家自然科学基金( ); 年云南省科技厅昆明医科大学应用基础研究联合专项面上项目 82160607 2021 ( ) 202101AY070001-054 作者简介:施雅( —),女,在读大学本科生,主要从事劳动卫生与环境卫生学研究;尹锦瑶( —),女,在读劳动卫生与环境卫 2001 1995 生学硕士研究生,主要从事劳动卫生与环境卫生学研究;施雅和尹锦瑶为共同第一作者 通讯作者:何越峰教授,博士研究生导师,- : E mail heyuefeng@kmmu.edu.cn中国职业医学 年 月第 卷第 期 , , , · · 2022 10 49 5 Chin Occup Med October 2022 Vol.49 No.5 523 BCL2L2-PABPN1, - fragments were designed and transfected into 16HBE cells to knockdown which were set as siRNA 1 group - - BCL2L2-PABPN1 and siRNA 2 group. Non transfected control group without knockdown of transfection was set up. After , BCL2L2-PABPN1 - culturing for 48 hours the expression level of in the three groups of cells was detected by qRT PCR. The cell - survival rate and early apoptosis rate were detected by MTS method and JC 1 mitochondrial membrane potential detection , ( ) , method respectively. The apoptosis was detected by Hoechest33342/propidium iodide PI double staining and the expression - Results ) level of P53 signaling pathway related proteins was detected by Western blotting. i The relative expression of BCL2L2-PABPN1 (P ) BCL2L2- in 16HBE cells increased with the increasing SA doses <0.01 . The relative expression of PABPN1 - , - - in high dose arsenic exposure was higher than that in control group low dose and medium dose arsenic exposure ( P ) BCL2L2-PABPN1 , groups all <0.05 . The relative expression of in SA group was higher than those in control group MMA ( P ) BCL2L2-PABPN1 group and DMA group all <0.05 . The relative expression of showed no significant difference between , ( P ) ) BCL2L2-PABPN1 control group MMA group and DMA group all >0.05 . ii The relative expression levels of and cell - - - ( P ) survival rate in siRNA 1 group and siRNA 2 group were lower than those in non transfected control group all <0.05 . , (P ) However there was no significant difference in the early apoptosis rate among the three groups >0.05 . The results of - Hoechest33342/PI double staining showed that the number of nuclear shrinkage and early apoptotic cells in siRNA 1 group and - - , - siRNA 2 group was higher than that in non transfected control group. The relative protein expression levels of P53 phospho , - - , - - ( P ) p53 BCL 2 associated death promoter P21 and cytochrome C in siRNA 1 group and siRNA 2 group were higher all <0.05 , - - P and the relative protein expression levels of P53 up regulated modulator of apoptosis were lower (all <0.05), when compared - Conclusion with the non transfected control group. SA may block the apoptosis of 16HBE cells by inducing the expression of BCL2L2-PABPN1 fusion gene . The mechanism may be related to the activation of P53 signaling pathway. The SA methylated BCL2L2-PABPN1 BCL2L2-PABPN1 - metabolites MMD and DMA had no effect on the expression of . may affect anti apoptosis BCL2L2 PABPN1 through affecting the synergistic effect of and genes.

2.
Se Pu ; 20(4): 289-94, 2002 Jul.
Artigo em Chinês | MEDLINE | ID: mdl-12541907

RESUMO

In high performance liquid chromatography, it is necessary to apply multi-composition gradient elution for the separation of complex samples such as environmental and biological samples. Multivariate stepwise gradient elution is one of the most efficient elution modes, because it combines the high selectivity of multi-composition mobile phase and shorter analysis time of gradient elution. In practical separations, the separation selectivity of samples can be effectively adjusted by using ternary mobile phase. For the optimization of these parameters, the retention equation of samples must be obtained at first. Traditionally, several isocratic experiments are used to get the retention equation of solute. However, it is time consuming especially for the separation of complex samples with a wide range of polarity. A new method for the fast optimization of ternary stepwise gradient elution was proposed based on the migration rule of solute in column. First, the coefficients of retention equation of solute are obtained by running several linear gradient experiments, then the optimal separation conditions are searched according to the hierarchical chromatography response function which acts as the optimization criterion. For each kind of organic modifier, two initial linear gradient experiments are used to obtain the primary coefficients of retention equation of each solute. For ternary mobile phase, only four linear gradient runs are needed to get the coefficients of retention equation. Then the retention times of solutes under arbitrary mobile phase composition can be predicted. The initial optimal mobile phase composition is obtained by resolution mapping for all of the solutes. A hierarchical chromatography response function is used to evaluate the separation efficiencies and search the optimal elution conditions. In subsequent optimization, the migrating distance of solute in the column is considered to decide the mobile phase composition and sustaining time of the latter steps until all the solutes are eluted out. Thus the first stepwise gradient elution conditions are predicted. If the resolution of samples under the predicted optimal separation conditions is satisfactory, the optimization procedure is stopped; otherwise, the coefficients of retention equation are adjusted according to the experimental results under the previously predicted elution conditions. Then the new stepwise gradient elution conditions are predicted repeatedly until satisfactory resolution is obtained. Normally, the satisfactory separation conditions can be found only after six experiments by using the proposed method. In comparison with the traditional optimization method, the time needed to finish the optimization procedure can be greatly reduced. The method has been validated by its application to the separation of several samples such as amino acid derivatives, aromatic amines, in which satisfactory separations were obtained with predicted resolution.


Assuntos
Aminoácidos/isolamento & purificação , Compostos de Anilina/isolamento & purificação , Cromatografia Líquida de Alta Pressão/instrumentação , Aminoácidos/química , Cromatografia Líquida de Alta Pressão/métodos , Matemática , Mapeamento de Peptídeos , Fenilenodiaminas/isolamento & purificação
3.
Se Pu ; 20(2): 97-101, 2002 Mar.
Artigo em Chinês | MEDLINE | ID: mdl-12541961

RESUMO

Referring to traditional optimal methods, a method for the optimization of isocratic elution mobile phase composition in high performance liquid chromatography has been developed. In this method, the genetic algorithm based on line-crossover and plane-mutation is used. The principle of genetic algorithm and the process of optimization of mobile phase composition in reversed-phase ion-pair high performance liquid chromatography using genetic algorithm are introduced in details. With the concentrations of acetonitrile and ion-pair reagent sodium octane sulfonate chosen as the optimal parameters, the optimum was obtained by three times of optimization procedures. The mean relative error between the predicted and experimental values was 0.75% at the optimum and the optimization results were satisfactory.


Assuntos
Aminoácidos/isolamento & purificação , Cromatografia Líquida de Alta Pressão/métodos , Genética , Algoritmos , Mapeamento de Peptídeos
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