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Hemoglobin
international journal for hemoglobin research
Volume 20, 1996 - Issue 4
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Original Article

Hb Toranomon [β112(G14)Cys → Trp]: A New Unstable Electrophoretically Silent Hemoglobin

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Pages 361-369 | Received 26 Mar 1996, Accepted 23 May 1996, Published online: 07 Jul 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Teruo Harano, Keiko Harano, Yin‐Feng Hong, Aung Myint Than, Yoshimasa Suetsugu & Kenzou Ohba. (2003) The Mutation of Hb Turriff [α99(G6)Lys→Glu (AAG→GAG)] Is Carried by the α1‐Globin Gene in a Japanese (Hb Turriff‐I). Hemoglobin 27:2, pages 123-127.
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Teruo Harano, Yoshimasa Suetsugu, Keiko Harano, Aung Myint Than, Yin‐Feng Hong & Akemi Kuroda. (2003) A New Hemoglobin Variant, Hb Fukui [α139(HC1)Lys→Asn (AAA→AAC) (α2)]. Hemoglobin 27:2, pages 117-121.
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Stephen O. Brennan, Howard C. Potter, Lia M. Kubala, Susan A. Carnoutsos & Martin M. Ferguson. (2002) Hb CANTERBURY [β112(G14)Cys → Phe]: A NEW, MILDLY UNSTABLE VARIANT. Hemoglobin 26:1, pages 67-69.
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M. F. H. Carver & T. H. J. Huisman. (1997) International Hemoglobin Information Center Variant List. Hemoglobin 21:6, pages 505-506.
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Articles from other publishers (11)

Chris E. Cooper, Matthew Bird, XiaoBo Sheng, Ji-Won Choi, Gary G.A. Silkstone, Michelle Simons, Natalie Syrett, Riccardo Piano, Luca Ronda, Stefano Bettati, Gianluca Paredi, Andrea Mozzarelli & Brandon J. Reeder. (2021) Stability of Maleimide-PEG and Mono-Sulfone-PEG Conjugation to a Novel Engineered Cysteine in the Human Hemoglobin Alpha Subunit. Frontiers in Chemistry 9.
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Maki Kinoshita. (2020) Unexpectedly high rate of hemoglobin variants in the clinical laboratory: Effects on the levels of hemoglobin A1c意外に多いヘモグロビン異常症. Tenri Medical Bulletin 23:2, pages 88-95.
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Mika Ito, Kou Sano & Masafumi Koga. (2020) 3 cases of variant hemoglobin Hb A2-Niigata detected by falsely high HbA1c values. Clinica Chimica Acta 510, pages 656-658.
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Shuichi Otabe, Hitomi Nakayama, Tsuyoshi Ohki, Eri Soejima, Yuji Tajiri & Kentaro Yamada. (2016) Haemoglobin variants may cause significant differences in haemoglobin A1c as measured by high-performance liquid chromatography and enzymatic methods in diabetic patients: a cross-sectional study. Annals of Clinical Biochemistry: International Journal of Laboratory Medicine 54:4, pages 432-437.
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Katsumi Iizuka, Masami Mizuno, Hiroyuki Niwa & Jun Takeda. (2015) A Rare Case of Variant Hemoglobin (Hb Yahata) Suspected Based on Inconsistent Plasma Glucose and HbA1c Levels. Internal Medicine 54:14, pages 1771-1775.
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Mariko Higa, Ayumi Yoshifuji, Ayano Doi, Eiko Yoshida, Kaoru Yamashita, Takamasa Ichijo, Hiromi Ouchi, Ayako Miyazaki & Takahisa Hirose. (2013) A diabetic patient with hemoglobin variant Hb Mito diagnosed from a change in HbA1c measurement method. Diabetology International 4:4, pages 257-260.
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Hiroko Ijima, Hideaki Jinnouchi, Kazuyuki Hamaguchi, Satoshi Ohguni, Yuji Haga, Masaharu Nagashima, Ayako Miyazaki & Masafumi Koga. (2011) Cases with Hb Toranomon show abnormal HbA1c levels measured by upgraded high-performance liquid chromatography models. Diabetology International 2:4, pages 202-207.
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Masuomi Tomita, Yusuke Kabeya, Katuya Okada, Maki Shirai, Shinichiro Asai, Takeshi Katsuki, Yoichi Oikawa, Akira Shimada, Keiko Harano & Yoshihito Atsumi. (2011) Normal glucose tolerance with high HbA1c levels observed in two cases of Hb variants. Diabetology International 1:2, pages 104-107.
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Yoshiyuki Naito, Takayuki Takahashi, Tatsuro Matsunashi, Keiko Harano & Teruo Harano. (2002) Hb Nishinomiya [Leu-Gly-Inserted between Codons 69(E13) and 70(E14) of β: A Novel Unstable Hemoglobin with Reduced Oxygen Affinity Found in a Patient with Spherocytic Hemolysis. International Journal of Hematology 76:2, pages 146-148.
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Wolfgang J. Schnedl, Andrea Liebminger, Regina E. Roller, Rainer W. Lipp & Guenter J. Krejs. (2001) Hemoglobin variants and determination of glycated hemoglobin (HbA1c). Diabetes/Metabolism Research and Reviews 17:2, pages 94-98.
Crossref
Takamasa Yamaguchi, Yi Yang, Melisenda J. McDonald & Kazuhiko Adachi. (2000) Surface and Interface β-Chain Residues Synergistically Affect Hemoglobin Assembly. Biochemical and Biophysical Research Communications 270:3, pages 683-687.
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