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N-(-)-ацетилнейраминовой кислоты структурированное изображение

N-(-)-ацетилнейраминовой кислоты

  • английское имяN-Acetylneuraminic acid
  • CAS №131-48-6
  • CBNumberCB6713403
  • ФормулаC11H19NO9
  • мольный вес309.27
  • EINECS205-023-1
  • номер MDLMFCD00006620
  • файл Mol131-48-6.mol
химическое свойство
Температура плавления 184-186 °C
альфа -32 º (c=2,water)
Температура кипения 449.56°C (rough estimate)
плотность 1.3580 (rough estimate)
показатель преломления -32 ° (C=1, H2O)
температура хранения -20°C
растворимость 50 g/L (20°C)
пка 2.41±0.54(Predicted)
форма synthetic, crystalline
цвет White to Off-White
оптическая активность -32
Биологические источники synthetic
Растворимость в воде 50 g/L (20 ºC)
Чувствительный Air Sensitive
Мерк 14,8484
БРН 1716283
Стабильность Stable. Incompatible with strong oxidizing agents.
ИнЧИКей SQVRNKJHWKZAKO-PFQGKNLYSA-N
LogP -1.897 (est)
Справочник по базе данных CAS 131-48-6(CAS DataBase Reference)
Словарь онкологических терминов NCI sialic acid
FDA UNII GZP2782OP0
Код УВД M09AX05
Система регистрации веществ EPA Neuraminic acid, N-acetyl- (131-48-6)
UNSPSC Code 85151701
NACRES NA.79
больше
Заявления об опасности и безопасности
Коды опасности Xi
Заявления о рисках 36/37/38
Заявления о безопасности 22-24/25-36-26
WGK Германия 3
F 3-10-23
Примечание об опасности Irritant
TSCA Yes
кода HS 29329970
NFPA 704:
0
0 0

рисовальное письмо(GHS)

  • рисовальное письмо(GHS)

    GHS hazard pictograms

  • сигнальный язык

    предупреждение

  • вредная бумага

    H319:При попадании в глаза вызывает выраженное раздражение.

  • оператор предупредительных мер

    P264:После работы тщательно вымыть кожу.

    P280:Использовать перчатки/ средства защиты глаз/ лица.

    P305+P351+P338:ПРИ ПОПАДАНИИ В ГЛАЗА: Осторожно промыть глаза водой в течение нескольких минут. Снять контактные линзы, если Вы ими пользуетесь и если это легко сделать. Продолжить промывание глаз.

    P337+P313:Если раздражение глаз не проходит обратиться за медицинской помощью.

N-(-)-ацетилнейраминовой кислоты MSDS

N-(-)-ацетилнейраминовой кислоты химические свойства, назначение, производство

Описание

N-acetylneuraminic acid is an N-acyl derivative of neuraminic or acid amino sugar derivative, derived from N-acetylmannosamine and pyruvic acid. It is an important constituent of glycoproteins and glycolipids. N-acetylneuraminic acid occurs in many polysaccharides, glycoproteins, and glycolipids in animals and bacteria.

Физические свойства

The numbering of the sialic acid structure begins at the carboxylate carbon and continues around the chain. The configuration which places the carboxylate in the axial position is the alpha-anomer.
The alpha-anomer is the form that is found when sialic acid is bound to glycans, however, in solution it is mainly (over 90 %) in the beta-anomeric form. A bacterial enzyme with sialic acid mutarotase activity, NanM, has been discovered which is able to rapidly equilibrate solutions of sialic acid to the resting equilibrium position of around 90 % beta 10 % alpha.

Биосинтез

In bacterial systems, sialic acids are biosynthesized by an aldolase enzyme. The enzyme uses a mannose derivative as a substrate, inserting three carbons from pyruvate into the resulting sialic acid structure. These enzymes can be used for chemoenzymatic synthesis of sialic acid derivatives.

Биологические функции

Sialic acid-rich glycoproteins (sialoglycoproteins) bind selectin in humans and other organisms. Metastatic cancer cells often express a high density of sialic acid-rich glycoproteins. This overexpression of sialic acid on surfaces creates a negative charge on cell membranes. This creates repulsion between cells (cell opposition) and helps these late-stage cancer cells enter the blood stream.
Sialic acid also plays an important role in human influenza infections.
Many bacteria also use sialic acid in their biology, although this is usually limited to bacteria that live in association with higher animals (deuterostomes). Many of these incorporate sialic acid into cell surface features like their lipopolysaccharide and capsule, which helps them evade the innate immune response of the host.[6] Other bacteria simply use sialic acid as a good nutrient source, as it contains both carbon and nitrogen and can be converted to fructose-6- phosphate, which can then enter central metabolism.
Sialic acid-rich oligo saccharides on the glyco conjugates ( glyco lipids, glyco proteins, proteoglycans) found on surface membranes help keep water at the surface of cells . The sialic acid - rich regions contribute to creating a negative charge on the cells' surfaces. Since water is a polar molecule with partial positive charges on both hydrogen atoms, it is attracted to cell surfaces and membranes. This also contributes to cellular fluid uptake.
Sialic acid can "hide" mannose antigens on the surface of host cells or bacteria from mannose - binding lectin . This prevents activation of complement.
Sialic acid in the form of poly sialic acid is an unusual posttranslational modification that occurs on the neural cell adhesion molecules (NCAMs). In the synapse, the strong negative charge of the polysialic acid prevents NCAM cross-linking of cells.

в пробирке

N-Acetylneuraminic acid (0 - 2 mg/mL, 2 days) has no effect on cell proliferation but significantly decreases the tyrosinase protein level, the number of melanosomes, and the p62 protein level and increases the CCT3, CCT5, and LC3-II protein levels and mRNA levels in B16 melanoma cells.
N-Acetylneuraminic acid (0 - 500 μM, 12 h) specifically binds to RhoA and Cdc42 and activates cardiomyocytes' Rho/ROCK-JNK/ERK signaling.

N-(-)-ацетилнейраминовой кислоты поставщик

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