Catalog No. B8209

Nile Red

(别名:尼罗红

一种检测脂滴的红色荧光探针

Nile Red
规格价格货期数量
10mg
¥363.00
现货
50mg
¥590.00
现货
100mg
¥727.00
现货
500mg
¥1272.00
现货
CAS号:7385-67-3纯度:98.43%
仅用于科研,不用于诊疗。未经明确授权不得转售。
A
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特色产品

Annexin V-FITC/PI Apoptosis Kit
Annexin V-FITC/PI Apoptosis Kit
用于双染检测细胞凋亡和坏死
- 在10-20分钟内完成染色
- 适用于流式细胞仪和荧光显微镜检测
- 准确区分活细胞/凋亡细胞/坏死细胞
Phos binding reagent (Phosbind) acrylamide
Phos binding reagent (Phosbind) acrylamide
分离和检测磷酸化/非磷酸化蛋白
- 新型的磷酸盐结合标签和功能分子
- 用于免疫印迹和质谱分析等后续操作
- 适用于30 KDa-130 KDa大小的蛋白
Cell Counting Kit-8 (CCK-8)
Cell Counting Kit-8 (CCK-8)
用于细胞增殖和细胞毒性试验
- 比MTT,MTS或WST-1更敏感
- 对细胞无毒性
- 步骤更简单,无需有机溶剂
Cy5 TSA Fluorescence System Kit
Cy5 TSA Fluorescence System Kit
Cy5荧光标记的酪胺信号放大系统
- 检测ICC/IHC/ISH中的低丰度靶点
- 可将信号灵敏度提高100倍
- 同时保持稳定的特异性和分辨率
EZ Cap™ Cy5 Firefly Luciferase mRNA (5-moUTP)
EZ Cap™ Cy5 Firefly Luciferase mRNA (5-moUTP)
用于观察mRNA运送,定位,翻译
- 具有Cap1结构的荧光素酶mRNA
- 提供更高的转录效率并抑制免疫激活
- 使用5-moUTP和Cy5-utp修饰
HotStart™ 2X Green qPCR Master Mix
HotStart™ 2X Green qPCR Master Mix
用于荧光定量目标DNA或cDNA
- 通过热启动机制优化扩增特异性
- 优异的扩增效率、可重复性和稳定性
- 卓越的灵敏度和准确性,操作简单
HyperScribe™ T7 High Yield Cy5 RNA Labeling Kit Plus
HyperScribe™ T7 High Yield Cy5 RNA Labeling Kit Plus
高效的Cy5修饰RNA转录试剂盒
- 适合原位/Northernblot杂交实验
- 优化的缓冲液和T7 RNA聚合酶混合物
- 20 μL反应体系可获得更高的RNA产量

产品描述

Nile Red是一种用于检测细胞内脂质的荧光染料,特别适用于脂滴的成像。这种染料能够特异性地与细胞内的脂质结合,发出强烈的荧光信号,便于在显微镜下观察脂质的分布和动态变化。Nile Red在细胞代谢和脂质储存研究中具有重要价值。

产品性质

物理外观深绿色固体
CAS号7385-67-3
分子式C20H18N2O2
分子量318.37
化学名称9-(diethylamino)-5H-benzo[a]phenoxazin-5-one
溶解度≥2.56 mg/mL in DMSO; insoluble in EtOH; insoluble in H2O
SMILESCCN(CC)c(cc1O2)ccc1N=C(c1c3cccc1)C2=CC3=O
存储条件-20°C
运输条件蓝冰
注意事项如需配成储存母液,请分装保存,避免反复冻融。

产品应用 (实验数据来自文献,APExBIO并未验证,仅供参考)

IC50和靶点

生物活性描述尼罗河红是一种强荧光染色剂;用于检测存在疏水环境的细胞内脂滴。

质量控制

APExBIO 顾客使用本产品发表的 12 篇科研文献

1. Shaokun Huang, Xuan Shan, et al. "Integrative analysis identified THBS1 as a key prognostic biomarker with therapeutic vulnerability in patients with laryngeal cancer." Transl Cancer Res. 2025 Oct 31;14(10):6723-6737. PMID: 41234877

2. Penelope E. Jankoski, Abdul-Razak Masoud, et al. "Bioactive Supramolecular Polymers for Skin Regeneration Following Burn Injury." Biomacromolecules. 2025 Aug 11;26(8):5471-5482. PMID: 40669455

3. Penelope E. Jankoski, Zacchaeus M. Wallace, et al. "Combating Reactive Oxygen Species (ROS) with Antioxidant Supramolecular Polymers." ACS Appl Mater Interfaces. 2025 Jun 4;17(24):35275–35287. PMID: 40462549

4. Qiushi Zheng, Chao Li, et al. "Candida auris cells form giant lipid droplets to survive in harsh environments." Commun Biol. 2025 May 22;8(1):783. PMID: 40404799

5. Ronit Vogt Sionov, Maya Korem, et al. "Cannabidiol (CBD) Acts as an Antioxidant on Gardnerella vaginalis, Resulting in Reduced Metabolic Activity, Loss of Survivability, and Elimination of Biofilms." Antibiotics (Basel). 2025 Feb 1;14(2):136. PMID: 40001381

6. Ronit Vogt Sionov, et al. "Anti-Bacterial and Anti-Biofilm Activities of Arachidonic Acid against the Cariogenic Bacterium Streptococcus mutans." Front Microbiol. 2024 Feb 26:15:1333274. PMID: 38596377

7. Ye Zhu, et al. "Metabarcoding Analysis of Microorganisms Inside Household Washing Machines in Shanghai, China." Microorganisms. 2024 Jan 13;12(1):160. PMID: 38257987

8. Jun Zhao, Rui Wang, et al. "Suppression of AQP7 is Crucial for Proliferation and Lipid Metabolism in ccRCC." Research Square. 13 Mar, 2024

9. Nathanyel Sebbane, Itzhak Abramovitz, et al. "Mechanistic Insight into the Anti-Bacterial/Anti-Biofilm Effects of Low Chlorhexidine Concentrations on Enterococcus faecalis—In Vitro Study." Microorganisms 2024, 12(11), 2297

10. Athira Venugopal, Ronit Vogt Sionov, et al. "The V-Shaped Structuring Regulated via the LuxS-Dependent Quorum-Sensing Pathway Is Associated With Lactiplantibacillus plantarum Survivability in Acidic Environments." FOOD FRONTIERS. 25 November 2024

11. Badri Parshad, Andrew George Baker, et al. "Improved Therapeutic Efficiency of Senescent Cell-specific, Galactose-Functionalized Micelle Nanocarriers." SMALL. 18 December 2024

12. Goldie Wolfson, Ronit Vogt Sionov, et al. "Anti-Bacterial and Anti-Biofilm Activities of Anandamide against the Cariogenic Streptococcus mutans." Int J Mol Sci. 2023 Mar 24;24(7):6177. PMID: 37047147

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*在配置溶液时,请务必参考产品标签上、MSDS / COA(可在Apexbio的产品页面获得)批次特异的分子量使用本工具。
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