菅原卓也(Takuya SUGAHARA)
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The effect of secoisolariciresinol on 3T3-L1 adipocytes and the relationship between molecular structure and the activity., Animal Cell Technology: Basic & Applied Aspects, Vol. 16, 345-351, 2010.
The effects of pesticides on immune cells., Animal Cell Technology: Basic & Applied Aspects, Vol. 16, 377-382, 2010.
The differentiation of myoblast cells to myotube by paraquat., Animal Cell Technology: Basic & Applied Aspects, Vol. 16, 215-219, 2010.
Syntheses and antimicrobial activity of tetrasubstituted tetrahydrofuran lignan stereoisomers., Biosci. Biotechnol. Biochem., 73, 1608-1617, 2009.
[PubMed 19584535]
Abnormal response induced by pesticides on mammalian immune system., Interdisciplinary Studies on Environmental Chemistry Vol.2: Environmental Research in Asia for Establishing a Scientist's Network., 211-218, 2009.
Paraquat modulates the differentiation of C2C12 cells to myotube., Interdisciplinary Studies on Environmental Chemistry Vol.2: Environmental Research in Asia for Establishing a Scientist's Network., 219-226, 2009.
Severe abnormalities in the reproductive organs of mice caused by the chemical substances contained in heavy oil., J. Toxicol. Sci., 34, 239-244, 2009.
[J-STAGE]
Antimicrobial activity of stereoisomers of morinol A and B, tetrahydropyran sesquineolignan., Biosci. Biotechnol. Biochem., 73,129-133, 2009.
[PubMed 19129639]
The Effect of secoisolariciresinol on 3T3-L1 adipocytes and the relationship between molecular structure and the activity., Biosci. Biotechnol. Biochem., 73, 35-39, 2009.
[PubMed 19129664]
Antioxidant activity of butane type lignans, secoisolariciresinol, dihydroguaiaretic acid, and 7,7'-oxodihydroguaiaretic acid., Biosci. Biotechnol. Biochem., 72, 2981-2986, 2008.
[PubMed 18997397]
The mode of action of the immunostimulatory effect of collagen from jellyfish., Biosci. Biotechnol. Biochem., 72, 2809-0814, 2008.
[PubMed 18997433]
Syntheses of all stereoisomers of goniodiol from yeast-reduction products and their antimicrobiological activity., Biosci. Biotechnol. Biochem., 72, 2342-2352, 2008.
[PubMed 18776681]
Immunostimulation effect of the jellyfish collagen., Animal Cell Technology: Basic & Applied Aspects, Vol. 15, 307-313, 2008.
Structure-antibacterial activity relationship of 9-O,9'-O-demethyl (+)-virgatusin., Biosci. Biotechnol. Biochem., 72, 1032-1037, 2008.
[PubMed 18391445]
Effects of polyamines on proliferation and IgM productivity of human-human hybridoma, HB4C5 cells., Cytotechnology, 57, 115-122, 2008.
[PubMed 19003155]
Stereoselective construction of tetra-substituted tetrahydrofuran compounds from benzylic hemiacetal in the presence of H2 and Pd catalyst: stereoselective synthesis of stereoisomer of (-)-virgatusin and antimicrobiological activity., Biosci. Biotechnol. Biochem., 72, 197-203, 2008.
[PubMed 18175922]
First stereoselective synthesis of meso-secoisolariciresinol and comparison of biological activity with (+) and (-)-secoisolariciresinol., Biosci. Biotechnol. Biochem., 71, 2962-2968, 2007.
[PubMed 18071272]
Effect of benzylic structure of lignan on antioxidant activity., Biosci. Biotechnol. Biochem., 71, 2283-2290, 2007.
[PubMed 17827687]
Use of benzyl mesylate for the synthesis of tetrahydrofuran lignan: syntheses of 7,8-trans, 7',8'-trans, 7,7'-cis, 8,8'-cis-virgatusin stereoisomers., Biosci. Biotechnol. Biochem., 71, 2248-2255, 2007.
[PubMed 17827688]
Antimicrobiological activity of lignan: Effect of benzylic oxygen and stereochemistry of 2,3-dibenzyl-4-butanolide and 3,4-dibenzyltetrahydrofuran lignans on activity., Biosci. Biotechnol. Biochem., 71, 1745-1751, 2007.
[PubMed 17617715]
Determination of the stereochemistry of the tetrahydropyran sesquineolignans morinol A and B., J. Nat. Prod., 70, 549-556, 2007.
[PubMed 17302455]
Antifungal activity of tetra-substituted tetrahydrofuran lignan, (-)-virgatusin, and its structure-activity relationship., Biosci. Biotechnol. Biochem., 71, 1028-1035, 2007.
[PubMed 17420596]
Antibacterial activity of virgatusin-related compound., Biosci. Biotechnol. Biochem., 71, 677-680, 2007.
[PubMed 17341839]
Effect of benzylic oxygen on the cytotoxic activity of phenolic lignans., Biosci. Biotechnol. Biochem., 70, 2942-2947, 2006.
[PubMed 17151475]
Immunostimulation effect of the jellyfish collagen., Biosci. Biotechnol. Biochem., 70, 2131-2137, 2006.
[PubMed 16960386]
The anti-tumor effect of Euchema serra agglutinin (ESA) on colon cancer cells in vitro and in vivo., Anti-Cancer Drug., 17, 943-947, 2006.
[PubMed 16940804]
Radical and superoxide scavenging activity of matairesinol and oxidized matairesinol., Biosci. Biotechnol. Biochem., 70, 1934-1940, 2006.
[PubMed 16926506]
Molecular composition of non-ionic vesicles prepared from Span 80 or Span 85 by a two-step emulsification method., J. Disper. Sci. Technol., 27, 1217-1222, 2006.
Immunostimulation effect of the fermented milk on human hybridomas and peripheral blood lymphocytes., Animal Cell Technology: Basic & Applied Aspects, Vol. 14, 185-191, 2006.
Preparation of cationic immunovesicles containing cationic peptide lipid for specific drug delivery to target cells., Cytotechnology, 47, 51-57, 2005.
[PubMed 19003044]
Immunostimulation effects of proteose-peptone component 3 fragment on human hybridomas and peripheral blood lymphocytes., Biochim. Biophys. Acta, 1725, 233-240, 2005.
[PubMed 15978734]
Gene transfection into HeLa cells by vesicles containing cationic peptide lipid., Biosci. Biotechnol. Biochem., 69, 1453-1458, 2005.
[PubMed 16116271]
First enantioselective synthesis of (-)- and (+)-virgatusin, tetra-substituted tetrahydrofuran lignan., Org. Biomol. Chem., 3, 1670-1675, 2005.
[PubMed 15858648]
Identification of a novel zebrafish SULT1 cytosolic sulfotransferase: cloning, expression, characterization, and developmental expression study., Arch. Biochem. Biophys., 347, 10-19, 2005.
[PubMed 15820212]
Anti-cancer effect to colon cancer in either vitro or vivo using lipid vesicle combined with alga lectin ESA, Congress Proceedings of 10th The Asian Pacific Confederation of Chemical Engineering Congress, 1P-01-033, 1-10, 2004.
Specific targeting at ERM5-1 cell as a model human-brain tumor cell and the anti-tumor effect by using immunovesicle, Congress Proceedings of 10th The Asian Pacific Confederation of Chemical Engineering Congress, 1P-01-032, 1-9, 2004.
Lactate dehydrogenase enhances immunoglobulin production by human hybridoma and human peripheral blood lymphocytes., Cytotechnology, 42, 133-143, 2003.
[PubMed 19002935]
Sulphonation of Dehydroepiandrosterone and Neurosteroids: Molecular cloning, expression, and functional characterization of a novel Zebrafish SULT2Cytosolic Sulphotransferase., Biochem. J., 375, 785-791, 2003.
[PubMed 12885295]
Sulfonation of environmental estrogens by zebrafish cytosolic sulfotransferases., Biochem. Biophys. Res. Commun., 309, 7-11, 2003.
[PubMed 12943655]
Sulfation of hydroxychlorobiphenyls: molecular cloning, expression, and functional characterization of zebrafish SULT1 sulfotransferases., Eur. J. Biochem., 270, 2404-2411, 2003.
[PubMed 12755695]
cDNA Cloning, Expression, and Functional Characterization of A Zebrafish SULT1 Cytosolic Sulfotransferase., Arch. Biochem. Biophys., 414, 67-73, 2003.
[PubMed 12745256]
High IgM production by human-human hybridoma HB4C5 cells cultured in microtubes., Biosci. Biotechnol. Biochem., 67, 393-395, 2003.
[PubMed 12729006]
Differential roles of human monoamine (M)-form and simple phenol (P)-form phenol sulfotransferases in drug metabolism., J. Biochem.-Tokyo, 133, 259-262, 2003.
[PubMed 12761191]
Structure-function relationships in the stereospecific and manganese-dependent dopa/tyrosine sulfation by human M-form phenol sulfotransferase., J. Biol. Chem., 278, 1525-1532, 2003.
[PubMed 12424257]
Molecular cloning, expression, and functional characterization of a novel zebrafish cytosolic sulfotransferase., Biochem. Biophys. Res. Commun., 300, 725-730, 2003.
[PubMed 12507510]
Manganese stimulation and stereospecificity of the dopa/tyrosine-sulfating activity of human monoamine-form phenol sulfotransferase: kinetic studies of the mechanism using wild-type and mutant enzymes., J. Biol. Chem., 277, 43813-43820, 2002.
[PubMed 12228221]
Differential xenoestrogen-sulfating activities of the human cytosolic sulfotransferases: molecular cloning, expression, and purification of human SULT2B1a and SULT2B1b sulfotransferases., Biochim. Biophys. Acta,1573, 165-170, 2002.
[PubMed 12399026]
Heat denaturation enhanced immunoglobulin production stimulating activity of lysozyme from hen egg white., Biochim. Biophys. Acta, 1572, 19-24, 2002.
[PubMed 12204328]
Increase of immunoglobulin productivity of human-human hybridoma HB4C5 cells by histone., Biosci. Biotechnol. Biochem., 66, 1241-1245, 2002.
[PubMed 12162544]
Immunoglobulin production stimulating activity of heat-denatured lysozyme., Animal Cell Technology: Basic & Applied Aspects, Vol. 12, 179-183, 2001.
The Cytotoxic effect of Eucheuma serra agglutinin (ESA) on cancer cells and its application to molecular probe for drug delivery system using lipid vesicles., Cytotechnology., 36, 93-99, 2001.
[PubMed 19003319]
Alcohol dehydrogenase-I from horse liver serves as an immunoglobulin production stimulating factor., Enzyme Microb. Technol., 29, 136-143, 2001.
Application of the lipid vesicle immobilized Eucheuma sera lectin for target-specific drug delivery., Proc. of Biotechnology 2000 (The World Congress on Biotechnology), 83-85, 2000.
Preparation of an immunovesicle for specific combining to target cells toward either DDS or gene transfection., Proc. of Biotechnology 2000 (The World Congress on Biotechnology), 79-81, 2000.
The mode of actions of lysozyme as an immunoglobulin production stimulating factor., Biochim. Biophys. Acta, 1475, 27-34, 2000.
[PubMed 10806334]
Study of the specific binding between lipid vesicles and human-human hybridoma toward either DDS or gene transfection., Animal Cell Technology: Products from Cells, Cells as Products, 433-435, 1999.
Study of DDS for cancer therapy applying lipid vesicle immobilizing Eucheuma Serra lectin., Animal Cell Technology: Products from Cells, Cells as Products, 429-431, 1999.
The mode of actions of lysozyme as an immunoglobulin production stimulating factor (IPSF)., Animal Cell Technology: Products from Cells, Cells as Products, 43-45, 1999.
Effects of DNA on immunoglobulin production stimulating activity of alcohol dehydrogenase., Cytotechnology, 31, 95-102, 1999.
Aldolase from rabbit muscle enhances immunoglobulin production by human hybridoma and human peripheral blood lymphocytes., Enzyme Microb. Technol., 24, 41-47, 1999.
Inhibition of immunoglobulin production stimulating activity of glyceraldehyde-3-phosphate dehydrogenase by nucleotides., Biosci. Biotech. Biochem., 62, 1237-1239, 1998.
[PubMed 9692209]
A novel function of enolase from rabbit muscle; an immunoglobulin production stimulating factor., Biochim. Biophys. Acta, 1380, 163-176, 1998.
[PubMed 9565679]
Spermine enhances IgM productivity of human-human hybridoma HB4C5 cells and human peripheral blood lymphocytes., Cytotechnology, 26, 111-118, 1998.
Enhancement of immunoglobulin production of hybridomas and lymphocytes by alcohol dehydrogenase-I., Biochemical Engineering: Marching Toward The Century of Biotechnology, 157-160, 1997.
Alcohol dehydrogenase-I from horse liver stimulates immunoglobulin production by human hybridoma and human peripheral blood lymphocytes., Mol. Cell. Biochem., 173, 113-119, 1997.
[PubMed 9278261]
Immunoglobulin production stimulating activities of basic proteins., Animal Cell Technology: Basic & Applied Aspects, Vol. 8, 209-215, 1997.
Lysozyme stimulates immunoglobulin production by human-human hybridoma and human peripheral blood lymphocytes., Cytotechnology, 24, 177-182, 1997.
Enhancement of IgM production by human peripheral blood lymphocytes by rice fermented seasoning under serum-free cultivation., J. Ferment. Bioeng., 82, 77-79, 1996.
Effects of sodium poly(styrene sulfonate) on antibody production and cell growth HB4C5 hybridoma cells., Polym. J., 27, 719-727, 1995.
Immunoglobulin production stimulating activities of nucleic acid-binding proteins., Animal Cell Technology: Developments towards the 21st Century, 501-507, 1995.
Effects of organic pH buffers on cell growth and antibody production of human-human hybridoma HB4C5 cells in a serum-free culture., Cytotechnology, 17, 117-125, 1995.
The mode of actions of glyceraldehyde-3-phosphate
dehydrogenase identified as an immunoglobulin production stimulating factor., FEBS Lett., 368, pp.92-96, 1995.
[PubMed 7615095]
Removability and permeability of DNA in protein solution using BMM., Animal Cell Technology: Basic & Applied Aspects, Vol. 6, 543-547, 1994.
Enhancement of immunoglobulin productivity of human-human hybridoma HB4C5 cells by basic proteins and poly-basic amino acids., Biosci. Biotechnol. Biochem., 58, 2212-2214, 1994.
Synthesis of bis-piperazine-type pH buffer agents and their application to mammalian cell cultures., Biosci. Biotechnol. Biochem., 58, 1370-1375, 1994.
Immunoglobulin production stimulating factor (IPSF) derived from Namalwa cells., Animal Cell Technology: Basic & Applied Aspects, Vol. 5, 601-607, 1993.
Serum-free culture of human-human hybridoma secreting monoclonal antibody against stomach cancer., Animal Cell Technology: Basic & Applied Aspects, Vol. 4, 321-326, 1992.
Virus containment continuous culture of animal cells., Animal Cell Technology: Basic & Applied Aspects, Vol. 4, 233-237, 1992.
Purification and characterization of immunoglobulin production stimulating factor-IIβ derived from Namalwa cells., Cytotechnology, 10, 137-146, 1992.
Purification and characterization of immunoglobulin production stimulating factor IIα derived from Namalwa cells., Production of Biologicals from Animal Cells in Culture, 735-741, 1991.
Immunoglobulin production stimulating factor-IIα (IPSF-IIα) is glyceraldehyde-3-phosphate dehydrogenase like protein., Cytotechnology, 6, 115-120, 1991.
Large-scale, high-density freezing of hybridomas and its application to high-density culture., Biotechnol. Bioeng., 38, 1110-1113, 1991.
Purification of immunoglobulin production stimulating factor IIα derived from Namalwa cells., Cytotechnology, 5, 255-263, 1991.
Enhancement of immunoglobulin production of human-human hybridomas by immunoglobulin production stimulating factors., Trends in Animal Cell Culture Technology, 291-297, 1990.
Relationship between oxygen consumption rate and cellular activity of mammalian cells culturedin serum-free media., Biotechnol. Bioeng., 36, 759-762, 1990.
Purification and characterization of immunoglobulin production stimulating factor derived from human B lymphoblastoid HO-323 cells., Cytotechnology, 3, 189-197, 1990.
Stimulation of proliferation and immunoglobulin M production by lactoferrin in human-human and mouse-mouse hybridomas cultures in serum-free conditions., Cytotechnology, 3, 123-131, 1990.
Screening of immunoglobulin production stimulating factor (IPSF) in foodstuffs using human-human hybridoma HB4C5 cells., Agric. Biol. Chem., 53, 2987-2991, 1989.
Stimulation of monoclonal antibody production by human-human hybridoma cells with an elevated concentration of potassium or sodium phosphate in serum-free medium., Cytotechnology, 2, 63-67, 1989.
Partial purification and characterization of immunoglobulin production stimulating factor derived from Namalwa cells., In Vitro Cell. Develop. Biol., 25, 243-247, 1989.
〜研究テーマのページで要旨公開中〜
「第2章 第4節 [7] 培養装置による動物細胞の大量培養」, 動物細胞培養の手法と細胞死・増殖不良・細胞変異を防止する技術, 技術情報協会, p. 231-236, 2014
「第2編 細胞培養法による製造 第4章 高密度培養法」, バイオ医薬品製造の効率化と生産基材の開発, シーエムシー出版, p. 55-60, 2012.
「第13章 柑橘成分の生体調節機能」, 食と健康を支援する 第2集、山田耕路編著, 門司印刷, p. 153-166, 2012.
「動物細胞を用いた機能性評価 HB4C5細胞を用いた抗体産生促進活性測定法」, 食品機能性評価マニュアル集 第3集、食品機能性評価支援センター編, p. 95-104, 2009.
「第3章 ハイブリドーマによるモノクローナル抗体生産性の増強」, 生物機能研究会シリーズ1 生物機能研究の進歩1(生物機能研究会編), アイピーシー, p. 117-136, 2002.
「抗体産生促進因子」(p. 149-150), 「高密度培養」(p. 165-166), 「生理活性物質の単離精製」(p. 170-171), 動物細胞工学ハンドブック, 朝倉書店, 2000.
「第3章 動物系バイオインダストリー」, 新産業化学シリーズ ニューバイオインダストリー, 大日本図書, p. 109〜160, 1997.
「細胞工学概論」, コロナ社, p. 1-207, 1994.
「第3章 動物細胞培養法」, 化学と生物実験ライン25 動物細胞培養技術, 廣川書店, p. 27-42, 1992.
「動物細胞の生産性を向上する培地添加因子」, BIO INDIUSTRY, 38(3), 30-39, 2021.
「動物細胞と実験動物を用いた生理活性物質の機能解明」、月刊愛媛ジャーナル、22、60-63、2009.
「界面活性剤を利用したナノカプセルによる薬物運搬体および遺伝子導入体の開発」(共著)、化学と教育、55、184-187、2007.
「食品タンパク質およびペプチドの免疫調節機構」(共著)、生物機能研究会誌、6、25-31、2002.
「癌細胞への標的機能を有する脂質膜ベシクルの創製」(共著)、化学工学シンポジウムシリーズ、76、230-238、2001.
「癌治療DDSへの利用を目指した脂質ベシクルの創製」(共著)、ケミカルエンジニアリング、45(6)、49-55、2000.
「ヒト型ハイブリドーマの抗体産生促進機構に関する研究」、日本農芸化学会誌、74, 1107-1112, 2000.
「ハイブリドーマによるモノクローナル抗体の効率的生産に関する研究」、日本農芸化学会誌、74、986-989、2000.
「モノクローナル抗体生産性の増強」、生物機能研究会誌、2、18-23、1998.
「レーザー共焦点顕微鏡による蛍光観察」、生物機能研究会誌、2、60-64、1998.
「コメ発酵エキス中の増殖促進因子、および抗体産生促進因子の検索」、日本農芸化学会誌、70、801-802、1996.
Immunoglobulin production stimulating factors., Cell Biology and Biotechnology: Novel Approaches to Increased Cellular Productivity, 35-62, 1993.
池田 剛・中嶋圭介・吉野七海・中村俊輔・恩田浩幸・葛西雅博・小池麻里子・菅原卓也・西 甲介・石田萌子:2-O-トランス-カフェオイルヒドロキシクエン酸の製造方法 (PCT/JP2023/035789)(2023年9月29日出願)
菅原卓也・恩田浩幸・西本壮吾:免疫賦活剤及び免疫不活用食品組成物 (特許第7212329号)(2023年1月17日登録)
菅原卓也:愛媛FoodCamp (商願2022-139956)(2022年12月7日出願)
池田 剛・中嶋圭介・吉野七海・中村俊輔・恩田浩幸・葛西雅博・小池麻里子・菅原卓也・西 甲介・石田萌子:2-O-トランス-カフェオイルヒドロキシクエン酸の製造方法 (特願2022-158668)(2022年9月30日出願)
菅原卓也・恩田浩幸:免疫賦活組成物及び免疫賦活用食品組成物 (特許第7045661号)(2022年3月24日登録)
菅原卓也・恩田浩幸:抗アレルギー剤及びアレルギー疾患の予防又は治療用食品組成物(特許第7017749号)(2022年2月1日登録)
菅原卓也・筬島克裕:ペプチド含有抗アレルギー用組成物 (特願2021-128586)(2021年8月4日出願)
菅原卓也・恩田浩幸:マクロファージ活性化剤及びマクロファージ活性化用食品組成物(特許第6789522号)(2020年11月8日登録)
菅原卓也・筬島克裕・近藤智彦・末光友和:アレルギー症状緩和剤(特許第6664739号)(2020年2月21日登録)
菅原卓也・筬島克裕・近藤智彦・末光友和:マクロファージ活性化剤(特許第6647623号)(2020年1月17日登録)
四国乳業株式会社・愛媛大学・伊方サービス株式会社:「N・PLUS (エヌプラス)」(商標第6179506号) (2019年9月13日登録)
四国乳業株式会社・愛媛大学・伊方サービス株式会社:「N+ (エヌプラス)」(商標第5849663号) (2016年5月13日登録)
菅原卓也・山内 聡・秋山浩一・土居幹治・白石隆介:「免疫調節蛋白質の製造方法」特許第4656300号(2011年1月7日登録)
「ペプチド含有抗アレルギー用組成物」 特願2021-128586(2021年8月4日出願)
「外用又は内用組成物」特願2020-128448(2020年7月29日出願)
「PPARガンマ産生活性化剤、アディポネクチン産生活性化剤、及びMCP-1産生抑制剤」特願2020-113973(2020年7月1日出願)
愛媛新聞社 愛媛農林水産賞 技術開発賞 (2016年)
International Conference on Food Factors (ICoFF) 2011 Poster Award, "Effect of flaxseed lignan on lipid accumulation in adipocytes."(2011年)
日本農芸化学会 日本農芸化学奨励賞(2000年)