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1.
Zhongguo Zhong Yao Za Zhi ; 46(19): 4891-4897, 2021 Oct.
Article in Chinese | MEDLINE | ID: mdl-34738382

ABSTRACT

With the advantages of extensive sources, easy collection, renewability, high yield, carbon circulation, low pollution, and so on, Chinese medicinal solid waste can be converted into clean gas by pyrolysis and gasification, which is then able to serve for industrial production. This is of great practical significance in the context of energy shortage and for solid waste recycling in China. This paper reviews the research progress on biomass gasification principle, gasification medium, and reactor in gasification technology of Chinese medicinal solid waste in recent years. Meanwhile, based on the summary of related research, the defects and improvement measures regarding raw materials, gasification agents, by-products, and reactors were discussed, which provides direction for further development in the gasification technology of Chinese medicinal solid waste in the future.


Subject(s)
Pyrolysis , Solid Waste , Biomass , China , Technology
2.
Bioorg Chem ; 98: 103737, 2020 05.
Article in English | MEDLINE | ID: mdl-32193031

ABSTRACT

PI3Kα has been identified as an ideal target to treat with PIK3CA gene mutation disease, including drugs such as Alpelisib and Copanlisib. Five purine analogues and four thiazole analogues were designed and synthesized. Their enzymaticactivity against PI3Ka/ß/γ/δ were tested, respectively. All compounds showed excellent selectivity in modulating PI3Ka activity, and parts of the compounds showed good inhibition. Meanwhile, we used Autodock 4.2 to explore the binding mode of the most potential compound Tg with the target protein. In addition, DFT was used to calculate the HOMO-LUMO maps of the compounds Tf, Tg and positive control. This paper will provide some useful information for further drug design of PI3Kα inhibitors.


Subject(s)
Density Functional Theory , Drug Design , Phosphatidylinositol 3-Kinases/metabolism , Phosphoinositide-3 Kinase Inhibitors/pharmacology , Dose-Response Relationship, Drug , Humans , Molecular Docking Simulation , Molecular Structure , Phosphoinositide-3 Kinase Inhibitors/chemical synthesis , Phosphoinositide-3 Kinase Inhibitors/chemistry , Structure-Activity Relationship
3.
Molecules ; 24(11)2019 Jun 08.
Article in English | MEDLINE | ID: mdl-31181779

ABSTRACT

Lung cancer is one of the most common malignancies and is an increasing cause of cancer-related deaths. In our previous study, a series of ferulic acid (FA) derivatives were designed and synthesized; they exhibited positive anti-cancer activities, especially for a compound labelled FXS-3. In this study, a 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay was performed, wherein it revealed the inhibitory effect of FXS-3 on the proliferation and metastasis of human lung cancer A549 cells. The further flow cytometry assay showed that FXS-3 induced apoptosis of A549 cells induced cell cycle arrest at the G0/G1 phase. The trans-well migration and Matrigel invasion assays revealed that FXS-3 inhibited the migration and invasion of A549 cells. By the western blotting analysis, FXS-3 increased the expression of B-cell lymphoma-2 (Bcl-2) associated X protein (Bax)/Bcl-2 ratio, inhibited matrix metalloproteinase (MMP)-2 and MMP-9, and regulated the extracellular signal-regulated kinase (ERK)/p38, c-Jun N-terminal kinase (JNK), protein kinase B (AKT)/mechanistic target of rapamycin (mTOR), as well as mitogen-activated protein kinase (MEK)/ERK signaling pathways. The subsequent A549 xenograft-bearing mouse model and tail vein injection of A549 cells induced pulmonary tumor metastasis model showed that FXS-3 significantly restrained the tumor growth and metastasis. In conclusion, FXS-3 might inhibit proliferation and metastasis of human lung cancer A549 cells by positively regulating JNK signaling pathway and negativly regulating ERK/p38, AKT/mTOR, and MEK/ERK signaling pathways, which provides important scientific basis for the development of anti-cancer drugs about FA derivatives.


Subject(s)
Coumaric Acids/pharmacology , Lung Neoplasms/enzymology , Lung Neoplasms/pathology , MAP Kinase Signaling System/drug effects , Mitogen-Activated Protein Kinase Kinases/metabolism , Proto-Oncogene Proteins c-akt/metabolism , TOR Serine-Threonine Kinases/metabolism , A549 Cells , Animals , Apoptosis/drug effects , Cell Cycle Checkpoints/drug effects , Cell Movement/drug effects , Cell Proliferation/drug effects , Coumaric Acids/chemistry , Humans , Male , Mice, Nude , Neoplasm Invasiveness , Neoplasm Metastasis , Xenograft Model Antitumor Assays
4.
Bioorg Chem ; 80: 253-260, 2018 10.
Article in English | MEDLINE | ID: mdl-29966871

ABSTRACT

Series of 1,2,4-triazole Schiff bases (2a-2d, 2f-2h and 3a-3h) have been designed and synthesized. The structure of title compounds was confirmed on the basis of their spectral data and elemental analysis. All the target compounds were screened for their in vitro antifungal activity and antibacterial activity. Two of the tested compounds (2a and 2b) exhibited significant antifungal activity against most fungi, especially compound 2a showed better antifungal activity than triadimefon. Meanwhile, the antibacterial activity assay also indicated compound 2a exhibited excellent antibacterial activities comparable to chloramphenicol. The SAR manifested no substitution at position 5 of the triazole ring caused an increase in activity, and 3-phenoxy phenyl group introduced in 1,2,4-triazole scaffold can enhance the antibacterial activity. The DFT calculation indicated triazole ring, S atom and benzene ring in both of the 2a and 3a make a major contribution to the activity.


Subject(s)
Anti-Bacterial Agents/chemical synthesis , Antifungal Agents/chemical synthesis , Drug Design , Schiff Bases/chemistry , Triazoles/chemistry , Anti-Bacterial Agents/chemistry , Anti-Bacterial Agents/pharmacology , Antifungal Agents/chemistry , Antifungal Agents/pharmacology , Crystallography, X-Ray , Density Functional Theory , Escherichia coli/drug effects , Fungi/drug effects , Microbial Sensitivity Tests , Molecular Conformation , Pythium/drug effects , Staphylococcus aureus/drug effects , Structure-Activity Relationship , Triazoles/chemical synthesis , Triazoles/pharmacology
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