- Research Article
- 10.47363/jmca/2023(2)116
Climate Change May be Driven by Solar Microwaves and Radio Waves –A Molecular Modeling (DFT/MM) Study
- Jun 30, 2023
- Journal of Mathematical & Computer Applications
- Shozo Yanagida
Publications from 2021 to 2026
Showing 7 of 7 papers
Climate Change May be Driven by Solar Microwaves and Radio Waves –A Molecular Modeling (DFT/MM) Study
Antitumor Effect of a Novel Photodynamic Therapy With Acetylated Glucose-conjugated Chlorin for Gastrointestinal Cancers.
We previously synthesized a glucose-conjugated chlorin compound e6 (G-chlorin e6), and reported that it has very strong antitumor effects. The aim of the present study was to synthesize acetylated glucose-conjugated chlorin (AcN003HP) and evaluate its antitumor effect and excretion. To evaluate the antitumor effect of AcN003HP, its IC50 was calculated as well as its accumulation in cancer cells was examined by flow cytometry. Confocal microscopy was used to observe the intracellular localization of AcN003HP. The excretion and antitumor effects of AcN003HP were also evaluated in vivo. AcN003HP showed stronger antitumor effects and accumulation into cancer cells compared to talaporfin sodium, a conventional photosensitizer. AcN003HP was localized in the endoplasmic reticulum. In a xenograft tumor mouse model, AcN003HP showed longer excretion time from the body than G-chlorin e6, and photodynamic therapy using AcN003HP showed very strong antitumor effects. The safety, improved controllability, and robust antitumor effects suggest AcN003HP as a good next-generation photosensitizer.
Read moreマイクロ波熱触媒で有機化学が変わる2(マイクロ波化学入門(その7))
マイクロ波と物質の相互作用 : マイクロ波で物質が温まるのはなぜか?(マイクロ波化学入門(その2))
Microwave-assisted synthesis of (tris-acetylacetonato)(2,9-dimethyl-4,7-diphenyl-1,10-phenanthroline)terbium(III) complex with outstanding high green luminescence
Space-Time Imaging of Bioluminescence from a Single Colony of Luminous Bacterium
We performed a space-time imaging analysis of a single colony of marine luminous bacterium using a fluorescent microscope connected to a real-color CCD camera. The bioluminescence and bright-field imaging showed that a glowing ring occurred close to the frontline of the growing colony, and that the ring spread out regularly while retaining a concentric ring shape. The glowing ring faded out when the colony terminated its growth. Furthermore, it was found that either aeration or O2-supply triggered a new glowing ring on the dim inside of the colony, and that the newly triggered ring phases out in the absence of aeration or O2-supply. Such a flickering pattern was confirmed to repetitively occur on the same concentric circle, corresponding to the presence and absence of aeration or O2-supply. From these findings, it is postulated that a growing single colony possesses a certain periodic property.
Read moreElectrochemical and Luminescent Properties of New Mononuclear Ruthenium(II) and Binuclear Iridium(III)-Ruthenium(II) Terpyridine Complexes
Hexafluorophosphate salts of mononuclear complexes [Ru(II)Cl(L)(terpy)]+ (L = dmbpy (1); dpbpy (2), sambpy (3), and dpp (7), and binuclear complexes [Ru(II)2Cl2(dpp)(terpy)2]2+ (8) and [Ir(III)Ru(II)Cl2(dpp)(terpy)2]3+ (9) were prepared and characterized. Abbreviations of the ligands are bpy = 2,2'-bipyridine, dmbpy = 4,4'-dimethyl-2,2'-bipyridine, dpbpy = 4,4'-diphenyl-2,2'-bipyridine, dpp = 2,3-bis(2-pyridyl)pyrazine, sambpy = 4,4'-bis((S)-(+)-alpha-1-phenylethylamido)-2,2'-bipyridine, and terpy = 2,2':6',2''-terpyridine. The absorption spectra of 8 and 9 are dominated by ligand-centered bands in the UV region and by metal-to-ligand charge-transfer bands in the visible region. The details of their spectroscopic and electrochemical properties were investigated. In both binuclear complexes, it has been found that the HOMO is based on the Ru metal, and LUMO is dpp-based. [Ir(III)Ru(II)Cl2(dpp)(terpy)2]3+, indicating intense emission at room temperature, and a lifetime of 154 ns. The long lifetime of this bimetallic chromophore makes it a useful component in the design of supramolecular complexes.
Read more