1.Photochemical reactions of poly(3-butoxythiophene-2,5-diyl) with chloroform.
Mokhtar IMIT ; Takakazu YAMAMOTO ; Patigul IMIN
Journal of Zhejiang University. Science. B 2005;6(8):722-724
Photochemical reactions of poly(3-butoxythiophene-2,5-diyl) with chloroform under irradiation with light were studied. The reactions were separately carried out under air, oxygen, and nitrogen. The obtained results showed that this reaction belongs to the pseudo-first-order reaction with a rate constant k(obs) of 1.4 x 10(-5) s(-1) at room temperature. The presence or absence of air, oxygen, and nitrogen did not have obvious effects on the reaction rate under irradiation with light.
Air
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Chloroform
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analysis
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chemistry
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radiation effects
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Kinetics
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Light
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Nitrogen
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chemistry
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Oxygen
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chemistry
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Photochemistry
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methods
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Thiophenes
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analysis
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chemistry
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radiation effects
2.Influence of surfactant concentration on counter-ion induced solubility of poly(pyridine-2,5-diyl).
Mokhtar IMIT ; Takakazu YAMAMOTO ; Patigul IMIN
Journal of Zhejiang University. Science. B 2005;6(5):365-368
Protonating the pyridine rings of poly(pyridine-2,5-diyl) with dodecybenzenesulfonic acid and camphorsulphonic acid produces polymer materials which can be dissolved in chloroform (in contrast to the unprotonated polymer, which can only be dissolved in strong acids such as formic acid) and allows mixing the protonated polymers with other chloroform soluble conjugated polymers for use in electronic devices. The protonating behavior of poly(pyridine-2,5-diyl) with two kinds of surfactants is different in some levels. Dodecybenzenesulfonic acid has higher protonating ability than camphorsulphonic acid.
3.Human Leukocyte Antigens and Biomarkers in Type 1 Diabetes Mellitus Induced by Immune-Checkpoint Inhibitors
Hidefumi INABA ; Yosuke KAIDO ; Saya ITO ; Tomonao HIROBATA ; Gen INOUE ; Takakazu SUGITA ; Yuki YAMAMOTO ; Masatoshi JINNIN ; Hiroaki KIMURA ; Tomoko KOBAYASHI ; Shintaro IWAMA ; Hiroshi ARIMA ; Takaaki MATSUOKA
Endocrinology and Metabolism 2022;37(1):84-95
Background:
Type 1 diabetes mellitus induced by immune-checkpoint inhibitors (ICI-T1DM) is a rare critical entity. However, the etiology of ICI-T1DM remains unclear.
Methods:
In order to elucidate risk factors for ICI-T1DM, we evaluated the clinical course and immunological status of patients with ICI-T1DM who had been diagnosed during 2016 to 2021.
Results:
Seven of 871 (0.8%, six men and one woman) patients developed ICI-T1DM. We revealed that the allele frequencies of human leukocyte antigen (HLA)-DPA1*02:02 and DPB1*05:01 were significantly higher in the patients with ICI-T1DM In comparison to the controls who received ICI (11/14 vs. 10/26, P=0.022; 11/14 vs. 7/26, P=0.0027, respectively). HLA-DRB1*04:05, which has been found to be a T1DM susceptibility allele in Asians, was also observed as a high-risk allele for ICI-T1DM. The significance of the HLA-DPB1*05:01 and DRB1*04:05 alleles was confirmed by an analysis of four additional patients. The absolute/relative neutrophil count, neutrophils-lymphocyte ratio, and neutrophil-eosinophil ratio increased, and the absolute lymphocyte count and absolute/relative eosinophil count decreased at the onset as compared with 6 weeks before. In two patients, alterations in cytokines and chemokines were found at the onset.
Conclusion
Novel high-risk HLA alleles and haplotypes were identified in ICI-T1DM, and peripheral blood factors may be utilized as biomarkers.