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1

1928-, Dakshinamurti Krishnamurti, New York Academy of Sciences., and International Multidisciplinary Conference on Vitamin B6 (1989 : Philadelphia, Pa.), eds. Vitamin B6. New York, N.Y: New York Academy of Sciences, 1990.

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2

Jean, Pamplin, ed. Vitamin B6 therapy. Garden City Park, N.Y: Avery Pub. Group, 1999.

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3

Korpela, Timo K., and Philipp Christen, eds. Biochemistry of Vitamin B6. Basel: Birkhäuser Basel, 1987. http://dx.doi.org/10.1007/978-3-0348-9308-4.

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4

Marino, G., G. Sannia, and F. Bossa, eds. Biochemistry of Vitamin B6 and PQQ. Basel: Birkhäuser Basel, 1994. http://dx.doi.org/10.1007/978-3-0348-7393-2.

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5

Gaby, Alan. B6, the natural healer. New Canaan, Conn: Keats Pub., 1987.

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6

Ellis, John Marion. Diabetes, new therapies: Clinically proven usage of vitamin B6. [S.l.]: J.M. Ellis, 1995.

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7

Barnes, N. M. A study of vitamin B6 in total parenteral nutrition. Birmingham: Aston University. Department of Pharmaceutical Sciences., 1989.

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8

David, Dolphin, Poulson Rozanne, and Avramović Olga, eds. Vitamin B6 pyridoxal phosphate: Chemical, biochemical, and medical aspects. New York: Wiley, 1986.

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9

Nolan, Marie-Louise. Studies on the effects of pyridoxal-5'-phosphate on the aggregation of blood platelets. Dublin: University College Dublin, 1997.

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10

U, Gerbershagen H., Zimmermann M. 1933-, and World Congress on Pain. (5th : 1987 : Hamburg, Germany), eds. B-vitamins in pain: Hamburg, 2nd August 1987. Frankfurt am Main: PMI Verlag, 1988.

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11

Zöllner, N., H. Fassl, I. Jurna, K. F. Pietrzik, and M. Schattenkirchner, eds. Klinische Bedeutung von Vitamin B1, B6, B12 in der Schmerztherapie. Heidelberg: Steinkopff, 1988. http://dx.doi.org/10.1007/978-3-642-72427-5.

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12

Lorenc, R. S. Nutritional requirements for intestinal calcium and phosphate transport: Final annual report, July 1, 1985 - June 30, 1988. Warsaw, Poland: Hospital-Monument Child's Health Center, 1988.

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13

Iriarte, Ana, Marino Martinez-Carrion, and Herbert M. Kagan, eds. Biochemistry and Molecular Biology of Vitamin B6 and PQQ-dependent Proteins. Basel: Birkhäuser Basel, 2000. http://dx.doi.org/10.1007/978-3-0348-8397-9.

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14

1938-, Marino G., Sannia G, Bossa Francesco, and International Meeting on Vitamin B₆ and Carbonyl Catalysis (1994 : Capri, Italy), eds. Biochemistry of vitamin B₆ and PQQ. Basel: Birkhäuser Verlag, 1994.

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15

Aloba, Oladapo Babatunde. Nutritional status of B6 vitamers, vitamin B12 and folate in alcoholic patients. [Guildford]: University of Surrey, 1999.

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16

1945-, Korpela Timo, Christen Philipp 1937-, and International Union of Biochemistry, eds. Biochemistry of vitamin B6: Proceedings of the 7th International Congress on Chemical and Biological Aspects of Vitamin B6 Catalysis, held in Turku, Finland, June 22-26, 1987. Basel: Birkhäuser, 1987.

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17

Ellis, John Marion. Free of pain: B6 deficiency U.S.A. : the cause of soft tissue rheumatism. Dallas, Tex: Southwest Pub. Co., 1985.

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18

Parker, Philip M., and James N. Parker. Vitamin B6: A medical dictionary, bibliography, and annotated research guide to Internet references. San Diego, CA: ICON Health Publications, 2004.

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19

International Symposium on Vitamin B₆ and Carbonyl Catalysis (8th 1990 Osaka, Japan). Enzymes dependent on pyridoxal phosphate and other carbonyl compounds as cofactors: Proceedings of the 8th International Symposium on Vitamin B₆ and Carnonyl Catalysis, held in Osaka, Japan, October 15-19, 1990. Oxford [England]: Pergamon Press, 1991.

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20

Torshin, Ivan Y. Magnesium and pyridoxine: Fundamental studies and clinical practice. Hauppauge, NY: Nova Science Publishers, 2009.

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21

Knöll, Lydia. Zur wachstumsbeeinflussenden Wirkung von 4-deoxy-Pyridoxin [deoxy-Pyridoxin] auf Vitamin-B6-abhängig [Vitamin-B-abhängig] wachsende Mammakarzinome des Menschen im Nacktmaustransplantat. [s.l.]: [s.n.], 1989.

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22

Nancy, Bruning, and Cooney Craig, eds. Methylation miracle. New York: St. Martin's Paperbacks, 1999.

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23

Beg, Mohammed Asim. Host-parasite relationships in vitamin B6 deficient cotton rats (sigmodon hispidus) infected with litomosoides carinii (nematoda, filarioidea). Salford: University of Salford, 1993.

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24

Biochemistry of Vitamin B6. Island Press, 1987.

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25

Gluckman, Sir Peter, Mark Hanson, Chong Yap Seng, and Anne Bardsley. Vitamin B6 (pyridoxine) in pregnancy and breastfeeding. Oxford University Press, 2015. http://dx.doi.org/10.1093/med/9780198722700.003.0010.

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Vitamin B6 is required for the activity of a large number of enzymes with varied essential functions. Along with other B vitamins, it is involved in the metabolism of homocysteine to cysteine; if this reaction is disrupted, blood homocysteine levels rise, along with increased risks for cardiovascular disease, neuropsychiatric problems, and other adverse effects. Elevated homocysteine in pregnancy it is associated with anaemia, pre-eclampsia, preterm birth, and low birthweight. Vitamin B6 deficiency can also affect fetal brain development, as well as weight gain and linear growth in infancy. Although vitamin B6 is widely available in foods, mild to moderate deficiency is still common, even in developed countries. A #amp;#x2018;Mediterranean-style#amp;#x2019; diet is recommended to supply sufficient amounts of vitamin B6. In individuals with an adequate and balanced diet and healthy lifestyle, supplementation is generally unnecessary.
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26

MEHTA, Romil. Vitamin B5+b6+b7+b9. Independently Published, 2019.

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27

Gaby, Alan. The Doctor's Guide to Vitamin B6. Rodale Pr, 1990.

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28

Agriculture Committee. Vitamin B6 (House of Commons Papers). Stationery Office Books, 1998.

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29

Ellis, John. Vitamin B6 Therapy: Nature's Versatile Healer. Avery, 1998.

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30

Marino, G., G. Sannia, and F. Bossa. Biochemistry of Vitamin B6 and PQQ. Birkhäuser, 2012.

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31

Marino, G., G. Sannia, and F. Bossa. Biochemistry of Vitamin B6 and PQQ. Birkhauser Verlag, 2012.

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32

Agriculture Committee. Vitamin B6 (House of Commons Papers). Stationery Office Books, 1998.

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33

Biochemistry of Vitamin B6 and PQQ. Island Press, 1994.

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34

REYNOLDS, RD. Reynolds Vitamin B-6 - Its Role in Health and Disease. John Wiley & Sons Inc, 1986.

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35

LEKLEM, JE. Leklem: Clinical & Physiological Applications of Vitamin B-6 (Pro Germany August 1987). John Wiley & Sons Inc, 1988.

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36

Silva, Aminda De, J. A. Saunders, and M. A. Stroud. Vitamin deficiencies. Edited by Patrick Davey and David Sprigings. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780199568741.003.0333.

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Vitamins are organic compounds required by the body in small amounts to perform specific cellular functions. Nine vitamins (thiamine (vitamin B1), riboflavin (vitamin B2), pyridoxine (vitamin B6), cyanocobalamin (vitamin B12), niacin (nicotinic acid; vitamin B3), pantothenic acid (vitamin B5), biotin (vitamin B7; vitamin H), folic acid (folate; vitamin B9), and ascorbic acid (vitamin C)) are water soluble, while four (vitamins A, D, E, and K) are fat soluble. The importance of vitamins was first appreciated through recognition of their clinical deficiency state. However, this approach has led to the concept that the primary purpose of a vitamin is to prevent the associated clinical deficiency state and, consequently, unless patients exhibit signs of a specific clinical deficiency state, they are thought to be replete in the corresponding vitamin. This is a misunderstanding. In reality, most vitamins have many different functions which are incompletely understood, and impaired biochemical function and even functional problems affecting metabolic, immunological, or cognitive status can occur with marginal vitamin depletion long before overt clinical deficiency becomes evident. A high index of suspicion is thus essential in all patients who have malnutrition or malabsorption, to ensure that levels that might compromise health, resistance to disease, and recovery from injury or illness are not left untreated.
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37

(Editor), Ana Iriarte, Herbert M. Kagan (Editor), and Marino Martinez-Carrion (Editor), eds. Biochemistry and Molecular Biology of Vitamin B6 and Pqq-Dependent Proteins. Birkhauser, 2000.

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38

(Editor), Ana J. Iriarte, Herbert M. Kagan (Editor), and Marino Martinez-Carrion (Editor), eds. Biochemistry and Molecular Biology of Vitamin B6 and PQQ-dependent Proteins. Birkhäuser Basel, 2000.

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39

Vitamin B-6: Its role in health and disease : Proceedings of a Conference on Vitamin B-6 Nutrition and Metabolism, held at the Banff Conference Centre, ... (Current topics in nutrition and disease). Liss, 1985.

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40

Bills, Nathan D. In vivo and in vitro determination of the bioavailability of vitamin B-6 from plant foods containing pyridoxine glucoside. 1990.

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41

Chen, Wen-shan Chou. Effect of glycosylated vitamin B-6 intake on the excretion of vitamin B-6 in women. 1992.

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42

Cho, Youn-ok. The effect of vitamin B-6 deficiency on carnitine metabolism during fasting in rats. 1987.

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43

Cho, Youn-ok. The effect of vitamin B-6 deficiency on carnitine metabolism during fasting in rats. 1987.

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44

Martinson, Kerry Elizabeth. Changes in plasma pyridoxal 5'-phosphate and red blood cell pyridoxal 5'-phosphate concentration during an oral glucose tolerance test in persons with diabetes mellitus. 1994.

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45

Huang, Ying-Hui. The effect of two levels of glucose ingestion on plasma pyridoxal 5-̓phosphate concentration. 2000.

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46

Hansen, Christine M. Effect of vitamin B-6 intake, protein intake and bioavailability on vitamin B-6 status for women. 1995.

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47

Hansen, Christine M. Effect of vitamin B-6 intake, protein intake and bioavailability on vitamin B-6 status for women. 1995.

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48

Misulis, Karl E., and E. Lee Murray. Nutritional Deficiencies and Toxicities. Edited by Karl E. Misulis and E. Lee Murray. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780190259419.003.0029.

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Nutritional disorders are often encountered in hospital neurology practice, especially deficiencies of vitamins B1 and B12. Medical conditions can predispose to nutritional disorders. This chapter discusses the presentation, diagnosis, and management of B12 deficiency, B1 deficiency, protein-energy malnutrition, folate deficiency especially in the context of pregnancy, B6 deficiency, B6 toxicity, copper deficiency, and vitamin D deficiency. Wernicke encephalopathy and Korsakoff syndrome are also discussed.
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49

Beilstein, Michael A. Effect of vitamin B-6 status on Selenium metabolism in the rat. 1990.

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50

Beilstein, Michael A. Effect of vitamin B-6 status on Selenium metabolism in the rat. 1990.

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