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1

1952-, Roy René, American Chemical Society. Division of Carbohydrate Chemistry., and American Chemical Society Meeting, eds. Carbohydrate-based vaccines. American Chemical Society, 2008.

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2

Zhongwu, Guo, and Boons Geert-Jan, eds. Carbohydrate-based vaccines and immunotherapies. John Wiley & Sons, 2009.

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3

Klesov, A. A. Glycobiology and drug design. Edited by American Chemical Society. Division of Carbohydrate Chemistry. American Chemical Society, 2012.

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4

Klesov, A. A. Glycobiology and drug design. Edited by American Chemical Society. Division of Carbohydrate Chemistry. American Chemical Society, 2012.

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5

Edgar, Kevin J., Charles M. Buchanan, and Thomas Heinze. Polysaccharide materials: Performance by design. American Chemical Society, 2009.

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6

Edgar, Kevin J. Polysaccharide materials: Performance by design. American Chemical Society, 2009.

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7

Edgar, Kevin J. Polysaccharide materials: Performance by design. American Chemical Society, 2009.

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8

Seeberger, Peter H., and Christoph Rademacher, eds. Carbohydrates as Drugs. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-08675-0.

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9

Publishing, FC &. A. Medical. The complete sugar control strategy guide: Easy steps to melt away belly fat, clear your arteries, and control your blood sugar without dangerous drugs. FC & A Medical Publishing, 2008.

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10

Klyosov, Anatole A., Zbigniew J. Witczak, and David Platt, eds. Carbohydrate Drug Design. American Chemical Society, 2006. http://dx.doi.org/10.1021/bk-2006-0932.

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11

A, Klesov A., Witczak Zbigniew J. 1947-, and Platt David 1953-, eds. Carbohydrate drug design. American Chemical Society, 2006.

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12

1947-, Witczak Zbigniew J., and Nieforth Karl A, eds. Carbohydrates in drug design. M. Dekker, 1997.

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13

Jimenez-Barbero, Jesus, F. Javier Canada, and Sonsoles Martin-Santamaria, eds. Carbohydrates in Drug Design and Discovery. Royal Society of Chemistry, 2015. http://dx.doi.org/10.1039/9781849739993.

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14

Grossier, Marianne F. A. Syntheses towards carbohydrate-bearing dendrimers for novel drug delivery. UMIST, 1996.

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15

1966-, Seeberger Peter H., ed. Solid support oligosaccharide synthesis and combinatorial carbohydrate libraries. Wiley, 2001.

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16

Huang, Xuefei. Petite and sweet: Glyco-nanotechnology as a bridge to new medicines. Edited by American Chemical Society. Division of Carbohydrate Chemistry. American Chemical Society, 2011.

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17

Letters), Alfred Benzon Symposium (36th 1993 Royal Danish Academy of Sciences and. Complex carbohydrates in drug research: Structural and functional aspects : proceedings of a symposium held at the Royal Danish Academy of Sciences and Letters, 6-10 June 1993. Munksgaard, 1994.

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18

1936-, Wurtman Richard J., and Wurtman Judith J, eds. Food constituents affecting normal and abnormal behaviors. Raven Press, 1986.

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19

Keith, Lierre. The vegetarian myth: Food, justice and sustainability. Flashpoint Press, 2009.

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20

Sodano, Federica, and Maria Grazia Rimoli, eds. Carbohydrate-Based Drugs. MDPI, 2024. http://dx.doi.org/10.3390/books978-3-7258-0465-8.

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21

(Editor), Anatole A. Klyosov, Zbigniew J. Witczak (Editor), and David Platt (Editor), eds. Carbohydrate Drug Design (Acs Symposium Series). An American Chemical Society Publication, 2006.

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22

Yin, Jian, Jing Zeng, and De-Cai Xiong, eds. Carbohydrate-Based Drugs Discovery. MDPI, 2024. http://dx.doi.org/10.3390/books978-3-7258-0431-3.

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23

Martinez, Ana, F. Javier Canada, Sonsoles Martin-Santamaria, Jesús Jimenez-Barbero, and David Thurston. Carbohydrates in Drug Design and Discovery. Royal Society of Chemistry, The, 2015.

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24

Davis, Ben, Amelia Pilar Rauter, F. Javier Canada, Sonsoles Martin-Santamaria, and Marco Marradi. Carbohydrates in Drug Design and Discovery. Royal Society of Chemistry, The, 2015.

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25

Martinez, Ana, F. Javier Canada, Jesús Jimenez-Barbero, Sonsoles Martin-Satamaria, and David Thurston. Carbohydrates in Drug Design and Discovery. Royal Society of Chemistry, The, 2015.

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26

Carbohydrate-based vaccines. American Chemical Society, 2008.

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27

Delannoy, Philippe, Amelia Pilar Rauter, Laura Cipolla, Thisbe Lindhorst, and Slawomir Jarosz. Carbohydrate Chemistry: Volume 37. Royal Society of Chemistry, The, 2011.

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28

Boons, Geert-Jan, and Zhongwu Guo. Carbohydrate-Based Vaccines and Immunotherapies. Wiley & Sons, Incorporated, John, 2009.

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29

Boons, Geert-Jan, and Zhongwu Guo. Carbohydrate-Based Vaccines and Immunotherapies. Wiley & Sons, Incorporated, John, 2009.

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30

Wong, Chi-Huey. Carbohydrate-Based Drug Discovery. Wiley & Sons, Incorporated, John, 2006.

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31

Wong, Chi-Huey. Carbohydrate-Based Drug Discovery. Wiley & Sons, Limited, John, 2005.

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32

Cipolla, Laura. Carbohydrate Chemistry: State of the Art and Challenges for Drug Development. World Scientific Publishing Co Pte Ltd, 2015.

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33

Polysaccharide materials: Performance by design. American Chemical Society, 2009.

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34

Seeberger, Peter H., and Christoph Rademacher. Carbohydrates as Drugs. Springer, 2014.

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35

Seeberger, Peter H., and Christoph Rademacher. Carbohydrates As Drugs. Springer, 2014.

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36

Seeberger, Peter H., and Christoph Rademacher. Carbohydrates as Drugs. Springer, 2016.

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37

Wong, Chi‐Huey, ed. Carbohydrate‐Based Drug Discovery. Wiley, 2003. http://dx.doi.org/10.1002/3527602437.

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38

Carbohydrate-based Drug Discovery. Wiley-VCH, 2003.

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39

Witczak, Zbigniew. Carbohydrates in Drug Design. Taylor & Francis Group, 1997.

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40

Witczak, Zbigniew. Carbohydrates in Drug Design. Taylor & Francis Group, 1997.

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41

Lee, Gregory. Epitope/Peptide-Based Monoclonal Antibodies for Immunotherapy of Ovarian Cancer. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190248208.003.0007.

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Two monoclonal antibodies, RP215 and GHR106, were selected, respectively, for the research and development of anti-cancer drugs targeting ovarian cancer and other types of human cancer. RP215 was shown to react with a carbohydrate-associated epitope located mainly in the variable regions of immunoglobulin heavy chains expressed on the surface of almost all cancer cells in humans. GHR106 was generated against a synthetic peptide corresponding to N1-29 amino acid residues in the extracellular domains of human GnRH receptor, which is surface-expressed by most cancer cells as well as the anterior
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42

Carbohydrates in Drug Discovery and Development. Elsevier, 2020. http://dx.doi.org/10.1016/c2016-0-04093-7.

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43

Tiwari, Vinod K. Carbohydrates in Drug Discovery and Development: Synthesis and Application. Elsevier, 2020.

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44

Tiwari, Vinod K. Carbohydrates in Drug Discovery and Development: Synthesis and Application. Elsevier, 2020.

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45

Cipolla, Laura. Carbohydrate Chemistry: State of the Art and Challenges for Drug Development. IMPERIAL COLLEGE PRESS, 2015. http://dx.doi.org/10.1142/p1013.

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46

Nicholson, Grainne, and George M. Hall. Neuroendocrine physiology in anaesthetic practice. Edited by Jonathan G. Hardman. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780199642045.003.0008.

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This chapter describes the hormonal, metabolic, and inflammatory response to surgery—commonly known as the surgical stress response. The changes in protein, carbohydrate, and fat metabolism to provide fuel for oxidation are outlined as well as changes in salt and water metabolism. Psychological sequelae of fatigue and malaise are also common in patients undergoing surgery. Attenuating the metabolic and endocrine changes associated with surgery may reduce postoperative morbidity and expedite recovery; the choice of anaesthetic drugs and techniques (regional vs general anaesthesia) and the incre
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47

Solid Support Oligosaccharide Synthesis and Combinatorial Carbohydrate Libraries. Wiley & Sons Canada, Limited, John, 2004.

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48

(Editor), Klaus Bock, and Henrik Klausen (Editor), eds. Complex Carbohydrates in Drug Research: Structural and Functional Aspects (Alfred Benzon Symposium Series). Wiley-Blackwell, 1994.

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49

Hepatic encephalopathy: Management with lactulose and related carbohydrates. Medi-Ed Press, 1988.

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50

Nikravan, Sara, and Frederick Mihm. Pathophysiology and management of functional endocrine tumours in the critically ill. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199600830.003.0264.

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Thyroid hormones act on most tissues via nuclear T3 receptors. Thyroid hormones stimulate oxygen consumption and heat production, influence cell growth and maturation (central nervous system, bone), and modulate metabolism (carbohydrates, lipids, proteins, drugs). Treatment for presumed thyroid disease frequently has to be initiated before the results of diagnostic tests are available. Treatment of hyperthyroidism should result in the reduction of serum thyroid hormone levels and their action on peripheral tissues with concurrent treatment of the precipitating event. In severe hypothyroidism t
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