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1.
Mol Pharm ; 20(6): 3223-3233, 2023 06 05.
Article in English | MEDLINE | ID: mdl-37104703

ABSTRACT

Activation of the IRE-1/XBP-1 pathway is related to many human diseases. Coumarin-based derivatives acting as both IRE-1 inhibitors and bright fluorophores are highly desirable to establish an integrated fluorescent inhibitor system. Here, we take insights into the aqueous stability of a photocaged IRE-1 inhibitor PC-D-F07 through a structure activity relationship. The substituent effects indicate that the electron-withdrawing -NO2 moiety in the photocage combined with the tricyclic coumarin fluorophore contribute to the structural stability of PC-D-F07. To optimize the photocage of PC-D-F07, we incorporate a 1-ethyl-2-nitrobenzyl or 2-nitrobenzyl photolabile moiety on the hydroxyl group of the IRE-1 inhibitor to generate RF-7 and RF-8. Upon photoactivation, both RF-7 and RF-8 present an increased fluorescence response, sequentially enabling the unlocking of the ortho-1,3-dioxane acetal for the release of active IRE-1 inhibitors. Moreover, RF-7 exhibits a high repolarization ratio of converting M2-type tumor-associated macrophages (M2-TAMs) to M1-type immune-responsive macrophages. This provides a novel prodrug strategy of modulating druggable fluorophore backbones to achieve spatiotemporally controllable drug release for precise cancer treatment.


Subject(s)
Coumarins , Fluorescent Dyes , Humans , Coumarins/chemistry , Structure-Activity Relationship , Fluorescent Dyes/chemistry
2.
Zhongguo Yi Liao Qi Xie Za Zhi ; 44(4): 346-352, 2020 Apr 08.
Article in Chinese | MEDLINE | ID: mdl-32762212

ABSTRACT

This paper analyzes the causes and risks of common design and development changes of laser treatment equipment, studies the changes of key components and their corresponding control measures, forms the identification method of design changes of laser treatment equipment, and gives suggestions on how to deal with design and development changes, so as to provide references for inspectors during on-site inspection.


Subject(s)
Laser Therapy/instrumentation , Humans , Risk Factors
3.
Lipids ; 51(9): 1051-63, 2016 09.
Article in English | MEDLINE | ID: mdl-27464514

ABSTRACT

Rabbitfish Siganus canaliculatus was the first marine teleost demonstrated to have the ability to biosynthesize C20-22 long-chain polyunsaturated fatty acid (LC-PUFA) from C18 PUFA precursors, which is generally absent or low in marine teleosts. Thus, understanding the molecular basis of LC-PUFA biosynthesis in rabbitfish will contribute to efforts aimed at optimizing LC-PUFA biosynthesis in teleosts, especially marine species. In the present study, the importance of the transcription factors liver X receptor (Lxr) and sterol regulatory element-binding protein 1 (Srebp1) in regulation of LC-PUFA biosynthesis in rabbitfish was investigated. First, full-length cDNA of Lxr and Srebp1 were cloned and characterized. The Lxr mRNA displayed a ubiquitous tissue expression pattern while Srebp1 was highly expressed in eyes, brain and intestine. In rabbitfish primary hepatocytes treated with Lxr agonist T0901317, the expression of Lxr and Srebp1 was activated, accompanied by elevated mRNA levels of Δ4 and Δ6/Δ5 fatty acyl desaturase (Fad), key enzymes of LC-PUFA biosynthesis, as well as peroxisome proliferator-activated receptor γ (PPARγ). In addition, Srebp1 displayed higher expression levels in liver of rabbitfish fed a vegetable oil diet or reared at 10 ppt salinity, which were conditions reported to increase the liver expression of Δ4 and Δ6/Δ5 Fad and LC-PUFA biosynthetic ability, than fish fed a fish oil diet or reared at 32 ppt, respectively. These results suggested that Lxr and Srebp1 are involved in regulation of LC-PUFA biosynthesis probably by promoting the expression of two Fad in rabbitfish liver, which, to our knowledge, is the first report in marine teleosts.


Subject(s)
Cloning, Molecular/methods , Fatty Acids, Unsaturated/biosynthesis , Liver X Receptors/genetics , Perciformes/metabolism , Sterol Regulatory Element Binding Protein 1/genetics , Animals , Fish Proteins/genetics , Fish Proteins/metabolism , Gene Expression , Gene Expression Regulation , Liver X Receptors/metabolism , Organ Specificity , Perciformes/genetics , Phylogeny , Sterol Regulatory Element Binding Protein 1/metabolism
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