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伊藤 廉特任准教授
特任准教授
研究論文
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『Toxicology in vitro』(2024). 99, 105885
Predicting the binding affinity of chemicals to estrogen receptor using Hansen solubility parameters
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『IFFSCC MAGAZINE』(2024).
Establishment of a novel and highly effective hair growth theory fulfilled by hair follicle stem cells
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『Toxicology in vitro』 (2022). 83(9), 105408、10.1016/j.tiv.2022.105408
Prediction of acute oral toxicity using the Hansen solubility parameter
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『J.Soc.Cosmet.Chem.Jpn.』(2022). 56(1) 53-59
Predictive study of eye irritation results obtained from STE method using Hansen solubility parameters
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『Alternatives to Animal Testing and EXperimentation』 (2021). 21(1) 19-25.
Prediction of the binding to androgen receptor using Hansen solubility parameters
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『SPring-8 Section B: Industrial Application Report』 (2021). 9(5) 337-342
Effects of Hair Bleaching on the Structure of Cell Membrane Complex in the Cuticle and Water Sorption Behavior
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『J.Soc.Cosmet.Chem.Jpn.』(2021). 55(3) 288-297.
Prediction of GHS eye-irritation classification using the Hansen solubility parameter
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『Toxicology in vitro』 (2021), 70, 105039.
Highly accurate predictor of eye irritation utilizing potential parameters of a reconstructed human cornea epithelium model calculated based on Hansen solubility parameters
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『Toxicology Letters』 (2021). 342(15), 1-5
An alternative predictor of eye irritation that utilizes potential parameters of the human corneal epithelium model calculated based on Hansen solubility parameters
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『Applied Physics Express』 (2021). 14(8), 086501.
Graphical interpretation of non-negative factorization expecting bio-Raman research
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『Alternatives to Animal Testing and EXperimentation』 (2020). 25(1), 13-18
Highly accurate predictor of eye irritation that utilizes rabbit eye potential parameters calculated based on Hansen solubility parameters
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『Applied Physics Express』 (2020). 13, 036501-1-5
Automatic Removal of Binary Background Components from Raman Big Data and Its Application to Human Hair Imaging
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『SPring-8 Section B: Industrial Application Report』 (2020). 8(2), 375-378、DOI:10.18957/rr.8.2.375
Evaluation of Sulfur Distribution in Bleached Human Hair using Soft X-ray Microspectroscopy
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『SPring-8 Section B: Industrial Application Report』 (2020). 8(2), 384-387、DOI:10.18957/rr.8.2.384
Evaluation of Sulfur Distribution in Human Black Hair using Soft X-ray Microspectroscopy
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『IFFSCC MAGAZINE』(2019). 21(3), 81-85
Predicting One’s Future Hair Condition
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『薬剤学』(2018). 78(1), 25-27,
放射光赤外顕微鏡による毛髪内部へ浸透する油溶性成分の可視化
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『Colloid & Interface Communication』(2017). 42(2), 39-41
X線CTを用いた加齢と共に変化する毛髪内構造評価
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『Status Report of Hyogo-Beamlines with Research Results』(2017). 5(6), 20-23
Observation of Hairs in Various Countries Using X-ray CT method
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『Journal of Fiber Science and Technology』 (2016). 72(1), 1-8, doi 10.2115/fiberst.2016-0004
Evaluation of Cysteic Acid in Bleached Hair Using Infrared Spectroscopy
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『放射光学会誌』 (2015). 28(5). 210-213
放射光イメージングを用いた加齢と共に変化する毛髪内構造評価
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『Advances in Life Sciences』 (2015). 5(4). 85-89, DOI: 10.5923/j.als.20150504.02
Cysteic Acid Formation Behaviors in Bleached Hair of Southeast Asian Characterized by Infrared Spectroscopy
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『J Biol Chem.』 (2014). 289(39), 27004-27018. doi: 10.1074/jbc.M114.564104
Inhibition of the functional interplay between ER oxidoreduclin-1α (Ero1α) and protein disulfide isomerase (PDI) by the endocrine disruptor bisphenol A.
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『Acta Crystallographica Section D.』 (2013). 69, 1839–1849
Humidity control and hydrophilic glue coating applied to mounted protein crystals improve X-ray diffraction experiments
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『Acta Crystallographica Section F.』 (2012), 68:476-478, doi:10.1107/S1744309112007439
Crystallization and preliminary crystallographic analysis of the complex between triiodothyronine and the bb' fragment of rat protein disulfide isomerase
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『蛋白質科学会アーカイブ』、(2012). 5, e066
良質な蛋白質結晶の育成:ミクロシーディングの標準的な方法
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『The Protein Journal』(2012), 31: 499-503, doi: 10.1007/s10930-012-9427-4
Glutathione ethylester, a novel protein refolding reagent, enhances both the efficiency of refolding and correct disulfide formation
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『FEBS Letters』、(2011). 585, 555-560, doi: 10.1016/j.febslet.2011.01.008
Glycine amide shielding on the aromatic surfaces of lysozyme: Implication for suppression of protein aggregation
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『Protein Engineering, Design and Selection』、(2011). 24(3):269-274.、doi: 10.1093/protein/gzq101
High-resolution X-ray analysis revealing binding of arginine to aromatic residues of lysozyme surface: Implication of suppression of protein aggregation by arginine
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『Acta Crystallographica Section F.』、(2010). 66, 750–754, doi:10.1107/S174430911001376X
Amino acids and glycine ethyl ester as new crystallization reagents for lysozyme
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『Acta Crystallographica Section F.』、(2010). 66, 744–749, doi:10.1107/S1744309110013710
Comparative analysis of amino acids and amino-acid derivatives in protein crystallization
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『Soft Matter.』、(2010). 6, 5320-5326, doi: 10.1039/C000930J
Mechanism of on-off switch for enzyme by complementary polymer pair system (CPPS)
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『Acta Crystallographica Section F.』、(2010). 66, 1531-1532, doi:10.1107/S1744309110037759
Crystallization and preliminary crystallographic analysis of the Achromobacter Protease I mutants
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『蛋白質科学会アーカイブ』、(2008). 1, e046
蛋白質の結晶化に向けた蛋白質溶液の新しい調節法
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『Journal of Synchrotron Radiation』、(2008). 15, 316–318
The effect of additives on protein crystallization
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『Acta Crystallographica Section F』、 (2008). 64, 531–532
Crystallization and preliminary X-ray structural studies of prouroguanylin