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1

蔡, 奕渔, 宇萱 王, 志路 李 та ін. "二甲双胍对体外高糖胁迫下正常肝细胞内乳酸代谢的影响". 亚洲临床医学杂志 3, № 6 (2020): 67. http://dx.doi.org/10.26549/yzlcyxzz.v3i6.5838.

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目的:研究二甲双胍对高糖胁迫下的体外肝细胞产生乳酸代谢的影响。方法:体外培养LO2肝细胞,细胞随机分为空白对照组,25mmol/L葡萄糖溶液、27mmol/L葡萄糖溶液、29mmol/L葡萄糖溶液、31mmol/L葡萄糖溶液、33mmol/L葡萄糖溶液、35mmol/L葡萄糖溶液处理组,确定最佳浓度为31mmol/L后,使用30mmol/L二甲双胍溶液,然后分为空白对照组。正常肝细胞+最适浓度葡萄糖溶液、正常肝细胞+二甲双胍溶液、正常肝细胞+最适浓度葡萄糖溶液+二甲双胍溶液分别在12h、24h、48h时用细胞计数板计算出肝细胞的数量,并运用乳酸试剂盒测定正常肝细胞+最适浓度葡萄糖溶液和正常肝细胞+最适浓度葡萄糖溶液+二甲双胍溶液分别在12h、24h、48h时的细胞培养液的乳酸值。结果:与未加入二甲双胍的高糖胁迫肝细胞实验组相比,加入二甲双胍的高糖胁迫肝细胞实验组的乳酸浓度无显著变化,但存活的肝细胞数目显著增加。结论:二甲双胍对高糖胁迫下的体外肝细胞产生乳酸代谢无明显影响,且对高糖胁迫下的肝细胞具有一定的保护作用。基于此,初步认为二甲双胍并不是导致糖尿病患者相关性乳酸酸中毒的直接因素。
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2

凌, 永嫦, 妹燕 李 та 俊利 王. "G6PD 缺乏症诊疗及其与地中海贫血关联发病研究新进展". 实用医学研究 2, № 5 (2020): 3–7. http://dx.doi.org/10.36012/pmr.v2i5.2740.

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葡萄糖-6-磷酸脱氢酶(glucose-6-phosphate dehydrogenase,G6PD)缺乏症属于X 连锁不完全显性遗传病,基 因突变是其主要发病原因。该疾病目前无特效治疗方法,早期预防和诊断是我 国 优 生 优 育 工 作 的 重 点 之 一,医 务 人 员 及 时 给 予患者合理的建议,让患者尽量避免使用有可能引起溶血 的 食 物 及 药 物,并 及 时 诊 治 该 疾 病 引 起 的 新 生 儿 高 胆 红 素 血 症,是 预防和诊治该疾病的重点。G6PD 缺乏与地中海贫血是遗传上独立的溶血性疾病,但近年来研究者 发 现 G6PD 与 地 中 海 贫 血 发病存在关联。因此,本文对 G6PD 缺乏症的诊疗及与地中海贫血之间的关联发病进行了简要综述。
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3

OSAKA, Tomoko, Kiyomi INOMATA, Takao OI, Masao MUKAIDA, and Joyo OSSAKA. "in situ Measurements of Dissolved Oxygen (DO) in Spring Waters with a Portable DO Meter." NIPPON KAGAKU KAISHI, no. 4 (1993): 342–48. http://dx.doi.org/10.1246/nikkashi.1993.342.

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4

MOTOHASHI, Keinosuke. "Phosphate release from bottom sediments and dissolved oxygen." Japan journal of water pollution research 9, no. 1 (1986): 45–48. http://dx.doi.org/10.2965/jswe1978.9.45.

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5

Eguchi, Wataru, Masataka Tanigaki, Kunio Mutoh, and Hiroshi Tsuchiya. "Rate of oxidation reaction of nitrogen monoxide by dissolved oxygen in aqueous solutions." KAGAKU KOGAKU RONBUNSHU 15, no. 6 (1989): 1115–19. http://dx.doi.org/10.1252/kakoronbunshu.15.1115.

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6

KOBAYASHI, Hideaki, Mitsuru TAKAMIYA, and Mineo HASEGAWA. "Protection against Oxidation in Mayonnaise by the Control of Dissolved Oxygen." Oleoscience 5, no. 10 (2005): 473–79. http://dx.doi.org/10.5650/oleoscience.5.473.

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7

GOTO, Eiji, Daisuke SUGAWARA, Ying-der LEE, and Tadashi TAKAKURA. "Control of Dissolved Oxygen Concentration in Deep Hydroponic Culture of Spinach Using Pressurized Oxygen Gas." Shokubutsu Kojo Gakkaishi 15, no. 1 (2003): 27–32. http://dx.doi.org/10.2525/jshita.15.27.

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8

Kitagawa, Shoji, and Keisuke Taira. "Measurements of dissolved oxygen by an electrode method." Oceanography in Japan 2, no. 1 (1993): 15–18. http://dx.doi.org/10.5928/kaiyou.2.15.

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9

Ueno, S., M. Iwasaka, and T. Kitajima. "Behavior of Dissolved Oxygen under Strong Magnetic Fields." Journal of the Magnetics Society of Japan 18, no. 2 (1994): 683–86. http://dx.doi.org/10.3379/jmsjmag.18.683.

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10

NAGAI, Hideo. "Effects of Dissolved Oxygen on Sake Brewing." JOURNAL OF THE BREWING SOCIETY OF JAPAN 88, no. 4 (1993): 264–71. http://dx.doi.org/10.6013/jbrewsocjapan1988.88.264.

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11

Chiba, Kenji. "The effect of dissolved oxygen on the growth of young striped bass." NIPPON SUISAN GAKKAISHI 54, no. 4 (1988): 599–606. http://dx.doi.org/10.2331/suisan.54.599.

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12

KAMETANI, Hitoshi, Katsuaki HORIE, Noriaki KOUDA, et al. "Development of a dissolved oxygen improvement system for dam lake." Transactions of the JSME (in Japanese) 83, no. 853 (2017): 17–00147. http://dx.doi.org/10.1299/transjsme.17-00147.

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13

Muramoto, Yoshihisa, Katsuhiro Tamura, Takanori Taniwaki, Shingo Takai, and Yoshihisa Suzuki. "Removal of Dissolved Oxygen in Sudachi Juice by Nitrogen Gas Pressurization." Nippon Shokuhin Kagaku Kogaku Kaishi 52, no. 4 (2005): 178–82. http://dx.doi.org/10.3136/nskkk.52.178.

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14

Takasaki, Shinichi, Kazuyoshi Ogura, Hiroki Tamura, and Masaichi Nagayama. "Effect of Dissolved Oxygen on the Dissolution Rate of Magnetite in EDTA Solutions." Zairyo-to-Kankyo 45, no. 2 (1996): 67–74. http://dx.doi.org/10.3323/jcorr1991.45.67.

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15

OKAMOTO, Masashi, Tooru YAMAUCHI, and Sadao KAWAKITA. "Preservation of Sake Quality by Decreasing the Dissolved Oxygen Concentration." JOURNAL OF THE BREWING SOCIETY OF JAPAN 97, no. 3 (2002): 172–77. http://dx.doi.org/10.6013/jbrewsocjapan1988.97.172.

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16

Kato, Chiaki, Nobuyoshi Hara, and Katsuhisa Sugimoto. "Development of Porous Pt-MOS Capacitor Dissolved Oxygen Sensor." Zairyo-to-Kankyo 43, no. 9 (1994): 493–99. http://dx.doi.org/10.3323/jcorr1991.43.493.

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17

SAKAI, Sigeo, Shusaku YOSHIDA, Katuhiko MIKUNI, Hirosi ISHIGAMI, and Kozo HARA. "Protection of bioreactor from bacterial contamination by the introduction of high concentration of dissolved oxygen." Journal of the Japanese Society of Starch Science 37, no. 4 (1990): 263–66. http://dx.doi.org/10.5458/jag1972.37.263.

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18

HONDA, Kazuhiro, Akira SATO, Hidetoshi ARIZONO, Yoshihito MORI, and Seiichiro NAKABAYASHI. "The Oxidative Reaction of Iron by the Dissolved Oxygen in Water under the Strong Magnetic Field." Journal of The Surface Finishing Society of Japan 54, no. 1 (2003): 73–75. http://dx.doi.org/10.4139/sfj.54.73.

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19

MITUNO, Junji, Sumiko SANUKI, and Masao IWAI. "Oxidation of Phosphite in Acidic Solutions with Dissolved Oxygen under UV Irradiation." Journal of MMIJ 124, no. 9 (2008): 589–93. http://dx.doi.org/10.2473/journalofmmij.124.589.

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20

TOMIOKA, Yuichi, Naoki HIROYOSHI, Yasumasa KUBO, and Masami TSUNEKAWA. "Effect of Jarosite on the Removal of Arsenic ions in Sulfuric Acid Solution." Shigen-to-Sozai 121, no. 12 (2005): 597–602. http://dx.doi.org/10.2473/shigentosozai.121.597.

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21

Ueno, S., M. Iwasaka, and G. Furukawa. "Dynamic Behavior of Dissolved Oxygen Molecules in Strong Magnetic Fields." Journal of the Magnetics Society of Japan 20, no. 2 (1996): 705–8. http://dx.doi.org/10.3379/jmsjmag.20.705.

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22

Sakai, Masahiro, and Hironobu Takahashi. "Effect of Dissolved Oxygen on Corrosion Behavior of Phosphorous Deoxidized Copper Tube in Formic Acid Solution." Zairyo-to-Kankyo 65, no. 12 (2016): 510–14. http://dx.doi.org/10.3323/jcorr.65.510.

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23

HONDA, Kazuhiro. "Study on Acceleration of Oxidation of Hydrogensulfite Ion by Dissolved Oxygen in Aqueous Solution Under Freezing Process." Journal of the Surface Finishing Society of Japan 51, no. 8 (2000): 865–67. http://dx.doi.org/10.4139/sfj.51.865.

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24

Yuan, Zhangfu, Kusuhiro Mukai, Katsuhiko Takagi, and Masahiko Ohtaka. "Dependence of Surface Tension of Molten Tin on Temperature and Oxygen Partial Pressure." Journal of the Japan Institute of Metals 65, no. 1 (2001): 21–28. http://dx.doi.org/10.2320/jinstmet1952.65.1_21.

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25

SUMIKURA, Mitsuhiro, Masaharu TASAKI, Kazuo OKAMURA, and Shin-ichiro WADA. "Oxidation and Adsorption of Hydrogen Sulfide in Aqueous Solutions Using Activated Carbon." Journal of Japan Society on Water Environment 36, no. 4 (2013): 115–21. http://dx.doi.org/10.2965/jswe.36.115.

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26

SATO, Seigo. "Protection of bioreactor from contamination by the presence of high concentration of dissolved oxygen." Journal of the agricultural chemical society of Japan 65, no. 2 (1991): 193–96. http://dx.doi.org/10.1271/nogeikagaku1924.65.193.

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27

SATO, Hideyuki, Yoshio MISAWA, and Tsutomu SUMII. "Research and development on a dissolved chlorine sensor. I. Electrochemical determination of dissolved chlorine in a strong acidic electrolyte." NIPPON KAGAKU KAISHI, no. 8 (1990): 842–47. http://dx.doi.org/10.1246/nikkashi.1990.842.

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28

Sakai, Masahiro, and Shota Nakagawa. "Effect of Dissolved Oxygen on Ant^|^apos;s Nest Corrosion of Copper in Formic Acid Solution." Zairyo-to-Kankyo 63, no. 5 (2014): 333–36. http://dx.doi.org/10.3323/jcorr.63.333.

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29

OKAMOTO, Masashi, Tooru YAMAUCHI, Syuntaro YANO, et al. "Preservation of Sake Quality by Decreasing the Dissolved Oxygen Concentration." JOURNAL OF THE BREWING SOCIETY OF JAPAN 94, no. 10 (1999): 827–32. http://dx.doi.org/10.6013/jbrewsocjapan1988.94.827.

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30

OGAWA, Keiji, Hisaki YAMANAKA, Masashi OKAMOTO, et al. "Preservation of Sake Quality by Decreasing the Dissolved Oxygen (The 2 nd Report)." JOURNAL OF THE BREWING SOCIETY OF JAPAN 96, no. 10 (2001): 719–25. http://dx.doi.org/10.6013/jbrewsocjapan1988.96.719.

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31

KOIZUMI, Akiko, Hisaki YAMANAKA, Masashi OKAMOTO, et al. "Quality Preservation of Sake by Decreasing the dissolved Oxygen (The 3rd Report)." JOURNAL OF THE BREWING SOCIETY OF JAPAN 98, no. 2 (2003): 125–31. http://dx.doi.org/10.6013/jbrewsocjapan1988.98.125.

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32

Ishii, Katsuya, Ryota Ozaki, Kenji Kaneko, and Masataka Masuda. "Effect of Oxygen on Aluminum Corrosion in Pure Water." Journal of the Japan Institute of Metals 70, no. 10 (2006): 845–48. http://dx.doi.org/10.2320/jinstmet.70.845.

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33

ANDO, Koji, Naoyuki TSUCHIDA, and Masaki IMAMURA. "Impurities Control of Copper Electrolyte by Using Dissolved Oxygen." Shigen-to-Sozai 117, no. 12 (2001): 979–84. http://dx.doi.org/10.2473/shigentosozai.117.979.

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34

MATSUI, TOSHIHIRO, TAKASHI FUJINO, FUMIE KOBAYASHI, and MORIYASU TSUJI. "Effect of Storage with Chlorine Dioxide Solution on Cryptosporidian Oocyst." Japanese Journal of Tropical Medicine and Hygiene 25, no. 3 (1997): 117–20. http://dx.doi.org/10.2149/tmh1973.25.117.

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35

Chiba, Kenji. "The effect of dissolved oxygen on the growth of young ayu." NIPPON SUISAN GAKKAISHI 54, no. 2 (1988): 175–81. http://dx.doi.org/10.2331/suisan.54.175.

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36

Okumura, Minoru, Takashi Shiono, Kunihiro Ando, and Yasushi Seike. "A Simple Spectrophotometric Method for the Determination of Dissolved Oxygen in Environmental Waters." BUNSEKI KAGAKU 58, no. 4 (2009): 317–20. http://dx.doi.org/10.2116/bunsekikagaku.58.317.

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37

Seri, Osami, Shyuichi Furuya, and Noboru Soga. "Relationship between Pitting of Aluminum Alloy 5052 and Concentration of Dissolved Oxygen for Can Stocks." CORROSION ENGINEERING 39, no. 4 (1990): 175–78. http://dx.doi.org/10.3323/jcorr1974.39.4_175.

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38

Yamasaki, Shigehisa, David H. Secor, and Hachiro Hirata. "Population Growth of Two Types of Rotifer (L and S) Brachionus plicatilis at Different Dissolved Oxygen Levels." NIPPON SUISAN GAKKAISHI 53, no. 7 (1987): 1303. http://dx.doi.org/10.2331/suisan.53.1303.

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39

MORI, Masayoshi, and Hisanori KAGAWA. "Effects of calcium and magnesium on dissolved oxygen concentration in the Ishite River." Japanese Journal of Limnology (Rikusuigaku Zasshi) 61, no. 1 (2000): 11–20. http://dx.doi.org/10.3739/rikusui.61.11.

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40

MATSUI, Toshiro, Toshiaki NAKAO, Masaomi FUKAMACHI, Noriko SHIKADA, Mitsuya SHIMODA, and Yutaka OSAJIMA. "Removal of Dissolved Oxygen by Immobilized Ascorbate Oxidase onto a Packaging Film." NIPPON SHOKUHIN KAGAKU KOGAKU KAISHI 43, no. 4 (1996): 362–67. http://dx.doi.org/10.3136/nskkk.43.362.

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41

Taya, Shiro, Moriyasu Ito, and Akihide Hirano. "Design of a New Test Boiler and Effect of Dissolved Oxygen on Corrosion Behavior of Carbon Steel in Boiler Water System." Zairyo-to-Kankyo 41, no. 7 (1992): 447–52. http://dx.doi.org/10.3323/jcorr1991.41.447.

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42

NISHIUCHI, Yukiko, Aki TAMARU, and Takahiro TOTANI. "Bactericidal Effect of Sodium Hypochlorite and Chlorine Dioxide against Mycobacteria and Mycobacterial Biofilm." Japanese Journal of Infection Prevention and Control 30, no. 4 (2015): 243–48. http://dx.doi.org/10.4058/jsei.30.243.

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43

SAKAI, Noboru, Masao IKEDA, Akira KOUNOSU, and Tadashi CHIDA. "Effect of Dissolved Oxygen on the Rate of Pyrite Oxidation with Ferric Sulfate." Journal of the Mining Institute of Japan 104, no. 1203 (1988): 303–7. http://dx.doi.org/10.2473/shigentosozai1953.104.1203_303.

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44

KURODA, Masao, Tsuneo TANAKA, and Tomohide WATANABE. "Nitrification under Low DO Condition by Bio-electro Reactor Process." Journal of Japan Society on Water Environment 20, no. 10 (1997): 666–69. http://dx.doi.org/10.2965/jswe.20.666.

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45

Maita, Masashi, Yutaka Fukuda, Koh-ichi Satoh, Nobuaki Okamoto, and Yayoi Ikeda. "The Influence of the Dissolved Oxygen on the Levels of Plasma Components in Yellowtail." NIPPON SUISAN GAKKAISHI 64, no. 2 (1998): 288–89. http://dx.doi.org/10.2331/suisan.64.288.

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46

KONDO, Masatoshi, Pribadi Mumpuni ADHI, Minoru TAKAHASHI, et al. "On-line monitoring of oxygen potential and structure of oxide layer in liquid metals by electrochemical methods." Transactions of the JSME (in Japanese) 83, no. 847 (2017): 16–00412. http://dx.doi.org/10.1299/transjsme.16-00412.

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47

Hosoya, Keizo, and Katsuhisa Sugimoto. "Effect of Water, Anion, and Dissolved Oxygen on Corrosion Behavior of Iron in Methanol Solutions." Journal of the Japan Institute of Metals 59, no. 6 (1995): 646–52. http://dx.doi.org/10.2320/jinstmet1952.59.6_646.

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48

SERI, Osami, and Kosuke TAGASHIRA. "Effect of dissolved oxygen on corrosion behavior of Al-Fe alloys in NaCl solution." Journal of Japan Institute of Light Metals 37, no. 2 (1987): 103–8. http://dx.doi.org/10.2464/jilm.37.103.

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49

HIROSHIRO, Yoshinari, Takushi YOKOYAMA, Kenji JINNO, and Shin-Ichiro WADA. "Variation of nitrate and dissolved oxygen concentrations in groundwater with surface conditions of farm land." Journal of Groundwater Hydrology 38, no. 1 (1996): 1–11. http://dx.doi.org/10.5917/jagh1987.38.1.

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50

Harada, Masayoshi, and Isao Yoshida. "Fluctuation Characteristics of Dissolved Oxygen in Lake Koyama of Tottori Prefecture." Journal of Rainwater Catchment Systems 10, no. 1 (2004): 29–35. http://dx.doi.org/10.7132/jrcsa.kj00003257775.

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