SIGMA T9531-10MG 二水海藻糖 6138-23-4
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SIGMA T9531-10MG 二水海藻糖 6138-23

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  • ¥138
  • Sigma-Aldrich
  • 进口
  • T9531-10MG
  • 2025年07月19日
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 保存条件

      常温

    • 保质期

      根据瓶身LOT号查询

    • 英文名

      D-(+)-Trehalose dihydrate

    • 库存

      有现货

    • 供应商

      浙江羽翔生物科技有限公司

    • CAS号

      6138-23-4

    • 规格

      10MG

    属性

    生物来源

    Saccharomyces cerevisiae

    质量水平

    300

    方案

    ≥99% (HPLC)

    表单

    powder

    旋光性

    [α]20/D 174 to 182 °, c = 7% (w/v) in water

    技术

    HPLC: suitable
    PCR: suitable
    cell based assay: suitable
    cryopreservation: suitable

    杂质

    ≤5.0% EtOH
    <20 ppm Trace metals

    颜色

    white

    mp

    97-99  °C

    溶解性

    water: 50 mg/mL, clear, colorless

    应用

    advanced drug delivery
    agriculture
    cell analysis
    life science and biopharma
    sample preparation

    储存温度

    room temp

    SMILES字符串

    [H]O[H].[H]O[H].OC[C@H]1O[C@H](O[C@H]2O[C@H](CO)[C@@H](O)[C@H](O)[C@H]2O)[C@H](O)[C@@H](O)[C@@H]1O

    InChI

    1S/C12H22O11.2H2O/c13-1-3-5(15)7(17)9(19)11(21-3)23-12-10(20)8(18)6(16)4(2-14)22-12;;/h3-20H,1-2H2;2*1H2/t3-,4-,5-,6-,7+,8+,9-,10-,11-,12-;;/m1../s1

    InChI key

    DPVHGFAJLZWDOC-PVXXTIHASA-N

    一般描述

    海藻糖,也称为真菌糖或海藻糖,是一种常见于真菌、细菌和无脊椎动物中的非还原性葡萄糖二糖。它在这些生物中的存在突出了它在各种生物过程中的重要性以及在生化研究和细胞培养研究中的潜在应用。

    应用

    D-(+)-海藻糖二水合物可用于:

    • 作为转录因子 EB (TFEB),研究其对人矽肺肺泡巨噬细胞自噬-溶酶体系统的影响
    • 作为喷雾干燥蛋白质制剂中的稳定赋形剂
    • 作为冷冻保护剂,研究其对小鼠睾丸细胞悬浮液的影响

    生化/生理作用

    D-(+)-海藻糖具有抗干燥和冷冻保存活性。它作为渗透剂和应激保护剂,并有助于碳的储存和运输。海藻糖用于食品、化妆品和制药行业。它对于某些被称为脱水生物的昆虫和植物在高脱水率等恶劣环境下的生存起着至关重要的作用。

    制备说明

    通过离子交换色谱制备。

    分析说明

    金属离子含量更低。

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    图标文献和实验
    该产品被引用文献

    Trehalose alleviates apoptosis by protecting the autophagy-lysosomal system in alveolar macrophages during human silicosis.

    Life sciences (2020-07-06)
    Shiyi Tan, Shang Yang, Gang Chen, Li Zhu, Zhiqian Sun, Shi Chen
    PMID32621922
    摘要

    Alveolar macrophages (AMs) are the primary targets of silicosis. Blockade of autophagy may aggravate the apoptosis of AMs. Trehalose (Tre), a transcription factor EB (TFEB) activator, may impact the autophagy-lysosomal system in AMs during silicosis. However, the mechanism by which Tre acts upon AMs in silicosis is unknown. We collected AMs from twenty male workers exposed to silica and divided them into observer and silicosis patient groups. AMs from the two groups were then exposed to Tre. Western blot was used to measure the expression of autophagy-associated proteins. Lysosomal-associated membrane protein 1 (LAMP1) expression was observed using immunofluorescence and western blot. Apoptosis of the AMs was detected by TUNEL assay and western blot. Tre induced localization of TFEB to the nucleus in the AMs of both groups. After Tre exposure, LAMP1 levels increased and LC3 levels decreased in the AMs of both groups, suggesting that Tre may increase the function of the autophagy-lysosomal system. The LC3-II/I ratio in the Tre-exposed AMs was lower than in the AMs not exposed to Tre. The LC3-II/I ratio in AMs subjected to Tre plus Bafilomycin (Baf) was higher than the ratio in cells exposed to Tre or Baf individually. Additionally, p62 levels decreased after Tre stimulation in the AMs of both groups. This indicates that Tre may accelerate the process of autophagic degradation. We also found decreased levels of cleaved caspase-3 after Tre treatment in the AMs of both groups. However, p-mTOR (Ser2448) and p-mTOR (Ser2481) levels did not change significantly after Tre treatment, suggesting that the mTOR signaling pathway was not affected by Tre treatment. Our findings suggest that the restoration of autophagy-lysosomal function by Tre may be a potential protective strategy against silicosis.

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    文献支持
    SIGMA T9531-10MG 二水海藻糖 6138-23-4
    ¥138