1.Mechanistic study of combined poisoning of diazepam and ethanol based on metabolomics
Ni HU ; Lishuang LIU ; Yiwei GUO ; Tao WANG ; Zhimei BAI ; Jing ZHANG ; Jiajie ZHANG ; Bochao LI ; Pingrong ZHOU ; Hongwei LIU ; Zhiwen WEI ; Keming YUN ; Lele WANG
Chinese Journal of Forensic Medicine 2025;40(3):284-287
Objective To study the plasma metabolomics of mice poisoned by different dosage of the combination of diazepam and ethanol,and to reveal the toxicological mechanisms of combined poisoning of diazepam and ethanol.Methods Female Kunming mice were randomly divided into blank group,single and combined poisoning group(n=6),Based on the LD50 of diazepam co-administered with graded ethanol doses,mice in the single-drug and combined groups received oral gavage at 1/2,1,and 2 × LD50.Retro-orbital blood samples(~500 μL)were collected within 24 hours post-administration and analyzed by UPLC-QE-MS technology.Principal component analysis and orthogonal partial least squares discriminant analysis were used to identify differential metabolites and associated metabolic pathways.Results A total of 387 differential metabolites were identified in the combined poisoning group of diazepam and ethanol implicating the key pathways including tryptophan metabolism,phenylalanine metabolism,arginine and proline metabolism,Glycerophospholipid metabolism,phenylalanine,tyrosine and tryptophan biosynthesis.Conclusion Combined diazepam and ethanol poisoning exerts significant systemic effects by disrupting neurotransmitters conduction,exacerbating oxidative stress response and dysregulating energy metabolism.
2.Mechanistic study of combined poisoning of diazepam and ethanol based on metabolomics
Ni HU ; Lishuang LIU ; Yiwei GUO ; Tao WANG ; Zhimei BAI ; Jing ZHANG ; Jiajie ZHANG ; Bochao LI ; Pingrong ZHOU ; Hongwei LIU ; Zhiwen WEI ; Keming YUN ; Lele WANG
Chinese Journal of Forensic Medicine 2025;40(3):284-287
Objective To study the plasma metabolomics of mice poisoned by different dosage of the combination of diazepam and ethanol,and to reveal the toxicological mechanisms of combined poisoning of diazepam and ethanol.Methods Female Kunming mice were randomly divided into blank group,single and combined poisoning group(n=6),Based on the LD50 of diazepam co-administered with graded ethanol doses,mice in the single-drug and combined groups received oral gavage at 1/2,1,and 2 × LD50.Retro-orbital blood samples(~500 μL)were collected within 24 hours post-administration and analyzed by UPLC-QE-MS technology.Principal component analysis and orthogonal partial least squares discriminant analysis were used to identify differential metabolites and associated metabolic pathways.Results A total of 387 differential metabolites were identified in the combined poisoning group of diazepam and ethanol implicating the key pathways including tryptophan metabolism,phenylalanine metabolism,arginine and proline metabolism,Glycerophospholipid metabolism,phenylalanine,tyrosine and tryptophan biosynthesis.Conclusion Combined diazepam and ethanol poisoning exerts significant systemic effects by disrupting neurotransmitters conduction,exacerbating oxidative stress response and dysregulating energy metabolism.
3.Establishment of dissolution test method of isoniazid tablets and evaluation of dissolution profiles
Xiaoming ZHANG ; Xiaoyan LIU ; Yifu ZHANG ; Wenli WANG ; Wenwen QIN ; Pingrong YANG
Drug Evaluation Research 2017;40(2):169-173
Objective To establish a method for determining the dissolution of isoniazid tablet in vitro and evaluate the dissolution profiles.Methods The paddle method was used for the dissolution test and the rotation rate was set at 50 r/min.The hydrochloric acid solution (pH 1.2),acetate buffer solution (pH 4.5),phosphate buffer solution (pH 6.8) and water (900 mL) were used as the dissolution media.HPLC was used for the determination of dissolution quantity.Results There was a good linear relationship between the quality concentration of i soniazid and peak area in the range of 0.1981-0.9904μg (r =0.9993).The average recovery was 100.2%.Precision,reproducibility,and specificity tests were good.Among the determination of 16 manufactures,the dissolution profiles in water of four manufactures were not similar with Sandoz reference preparation.Conclusion The HPLC method is simple.The accuracy and specificity of determination of isoniazid dissolution are improved.There is significant difference in the dissolution profiles between different manufactures.The method can be used for the determination of dissolution curves for isoniazid tablets.
4.Dynamic change of the reticulin fibres and collagen fibres in vitro long-term bone marrow culture of acute myeloid leukemia
Yanjuan LIN ; Lianhuang LU ; Zhizhe CHEN ; Juemin LI ; Pingrong ZHANG
Chinese Journal of Pathophysiology 1986;0(01):-
AIM and METHOD: The relationship between the evolution of the reticulin fibres(RF) or the collagen fibres(CF) and the growing of hematopoietic cells in long-term bone marrow culture (LTBMC) from 15 paticnts with acute myeloid leukemia (AML) and form 6 normal subjects was observed by inverted microscope, Gomoris staining and Massons staining were used. RESULTS: (1)The amount of RF contents of 8 AMLs,with self- maintained(AMLsm) in the 1~8 weeks-old-culture was significant less than that of normal control and 7 AMLs,without self-maintained(AMLnsm) ( P

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