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Traumatic Acid,6402-36-4

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  • ¥950 - 1650
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  • HY-119358
  • 2025年12月05日
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    • 文献和实验
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    • 保存条件

      4°C, sealed storage, away from moisture

    • 库存

      货期:1-2天

    • 供应商

      MedChemExpress LLC

    • CAS号

      6402-36-4

    • 规格

      10 mM * 1 mL/50 mg/100 mg

    规格:10 mM * 1 mL产品价格:¥1050.0
    规格:50 mg产品价格:¥950.0
    规格:100 mg产品价格:¥1650.0

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    Traumatic Acid

    CAS No. : 6402-36-4

    MCE 国际站:Traumatic Acid

    产品活性:Traumatic Acid 是一种伤口愈合剂,也是细胞分裂素 (植物激素)。Traumatic Acid 能增强培养的人类皮肤成纤维细胞的胶原蛋白的生物合成。Traumatic Acid 可抑制 MCF-7 乳腺癌细胞的存活率并增强细胞凋亡和氧化应激。Traumatic Acid 可用于癌症、血液循环系统疾病 (包括动脉高血压),以及与氧化应激和胶原蛋白生物合成障碍有关的皮肤病的研究。

    研究领域:Immunology/Inflammation  |  NF-κB  |  Metabolic Enzyme/Protease  |  Apoptosis

    作用靶点:Reactive Oxygen Species  |  Apoptosis

    In Vitro: Traumatic Acid (0.1, 1 µM; 5 days) significantly increases cell number in fibroblasts.
    Traumatic Acid (0.1, 1 µM; 5 days) increases content of GPX activity and reduced glutathione, as well as decreases membrane phospholipid peroxidation in fibroblasts.
    Traumatic Acid (0.1, 1 µM; 5 days) enhances the production and secretion of medium collagen in medium of fibroblasts.
    Traumatic Acid (100, 200, 400, 600 µM; 48 h) significantly decreases live cell number, especially after 48h treatment at 100µM and 200µM in MCF-7 cells.
    Traumatic Acid (50-600 µM; 24, 48 h) causes dose-and time-dependent reduction in cell viability and induces apoptosis in MCF-7 cells.
    Traumatic Acid (50-200 µM; 24, 48 h) results in an oxidative damage of protein in MCF-7 cells.
    Traumatic Acid (100, 200 µM; 24, 48 h) efficiently enhances oxidative stress level in MCF-7 cells.

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    图标文献和实验
    相关实验
    • 愈伤酸 traumatic acdi

      愈伤酸 traumatic acdi HOOC— CH= CH—( CH2 ) 8 — COOH为愈伤激素之一。 1939年, J. English、 J. Bonner、 A. J. Haagensmit从菜豆( Phaseolus vulgaris cv Kent-ucky Wonder)的果实中分离得到结晶,并确定了结构。如将其水溶液涂在幼嫩菜豆荚的内侧或涂在马铃薯块茎切块的切面上,则可诱发细胞分裂和细胞伸长,谷氨酸和蔗糖可促进这种作用。愈伤素除了对随着组织损伤的细胞

    • Electrophysiological Approaches in Traumatic Brain Injury

      This chapter briefly reviews electrophysiological applications in experimental models of traumatic brain injury (TBI). The review was restricted to studies where rodents were used in one of the more common in vivo models of TBI

    • Morphological Assessments of Traumatic Brain Injury

      This chapter reviews documented methods for tracking morphological damage across the neurovascular unit following experimental models of focal or diffuse traumatic brain injury. Sections within this chapter focus on the chronology

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