Determine the necessary mass, volume, or concentration for preparing a solution.
BioReagent, Biological Stain, for microscopy, 1.0 mg/mL Biological Stain,BioReagent,顕微鏡用 for sensitive chromatographic and analytical workflows requiring minimal baseline interference.
Store at 2-8°C,Protected from light Ships Wet ice Check lot-specific COA for exact specifications.
SDS, COA, datasheet, and spec sheet available for download. Lot-specific COA accessible via lot number lookup.
Cited in 9 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.
Acridine Orange (AO), a tricyclic heteroaromatic dye, is a metachromatic fluorescent dye. Capable of penetrating cell membranes, it stains nuclear DNA and RNA, and is therefore widely used for intracellular DNA and RNA detection.
AO binds to nucleic acids in two major modes:
1. Intercalative binding: AO intercalates between base pairs of double‑stranded nucleic acids. This mode mainly occurs with DNA, giving green fluorescence with an emission peak at 530 nm upon excitation.
2. Electrostatic attraction: Positively‑charged AO binds electrostatically to negatively‑charged phosphate groups of single‑stranded nucleic acids. This mode predominates for RNA binding, producing red fluorescence with an emission peak at 640 nm; weak binding yields orange‑yellow or orange‑red fluorescence.
Accordingly, AO exhibits green fluorescence when intercalated into double‑stranded DNA, and orange‑yellow or orange‑red fluorescence when bound to single‑stranded DNA or RNA.
Acridine Orange Staining Solution (1 mg/mL) is a stock solution and shall be diluted to an appropriate working concentration before use. AO is frequently applied in double staining together with EB. Since EB only labels dead cells with orange‑yellow fluorescence, normal cells, apoptotic cells and necrotic cells can be distinguished.
Instructions for Use
1. Harvest cells. Fix cells in advance for flow cytometry analysis. Wash cells once with PBS, count and adjust cell density to 10⁶ cells/mL.
2. Add adequate AO staining solution (1 mg/mL) into cell suspension to reach a final AO concentration of 8.5‑17 μg/mL, mix gently.
3. Incubate for 15‑20 min at room temperature in the dark. Mount aliquots onto glass slides with coverslips or proceed to flow cytometric analysis.
4. Observe under a fluorescence microscope (excitation filter: 488 nm; barrier filter: 515 nm), perform counting and image acquisition.
Precautions
1. AO staining solution (1 mg/mL) contains no permeabilizing agent and is seldom used alone.
2. AO‑EB double staining enables differentiation of normal, apoptotic and necrotic cells.
3. Better results can be obtained using a refrigerated centrifuge.
4. Minimize reagent exposure to intense light during manipulation.
5. Wear laboratory coat and disposable gloves for personal safety.
Staining Results
|
| カノニカル・スマイル | CN(C)C1=CC2=C(C=C1)C=C3C=CC(=CC3=N2)N(C)C |
|---|---|
| IUPAC Name | 3-N,3-N,6-N,6-N-tetramethylacridine-3,6-diamine |
| InChIKey | DPKHZNPWBDQZCN-UHFFFAOYSA-N |
| INCHI | 1S/C17H19N3/c1-19(2)14-7-5-12-9-13-6-8-15(20(3)4)11-17(13)18-16(12)10-14/h5-11H,1-4H3 |
| 異性体SMILES | CN(C)C1=CC2=C(C=C1)C=C3C=CC(=CC3=N2)N(C)C |
| WGKドイツ | 3 |
| RTECS | AR7600000 |
| 分子量 | 265.35 |
| Reaxy-Rn | 20916 |
| Reaxys-RN_link_address | https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=20916&ln= |
Comprehensive hazard, handling, storage, and regulatory compliance document.
Download SDS →Lot-specific quality data. Enter your lot number to retrieve the exact COA.
Look up COA →Full quality attributes and acceptance criteria for this grade.
View spec sheet →Taxonomy Tree
| Kingdom | Organic compounds |
|---|---|
| Superclass | Organoheterocyclic compounds |
| 分類 | Quinolines and derivatives |
| Subclass | Benzoquinolines |
| Intermediate Tree Nodes | Not available |
| Direct Parent | Acridines |
| Alternative Parents | Aminoquinolines and derivatives Dialkylarylamines Pyridines and derivatives Benzenoids Heteroaromatic compounds Azacyclic compounds Organopnictogen compounds Hydrocarbon derivatives |
| Molecular Framework | Aromatic heteropolycyclic compounds |
| Substituents | Acridine - Aminoquinoline - Dialkylarylamine - Tertiary aliphatic/aromatic amine - Benzenoid - Pyridine - Heteroaromatic compound - Tertiary amine - Azacycle - Organic nitrogen compound - Organopnictogen compound - Hydrocarbon derivative - Organonitrogen compound - Amine - Aromatic heteropolycyclic compound |
| 説明 | This compound belongs to the class of organic compounds known as acridines. These are organic compounds containing the acridine moiety, a linear tricyclic heterocycle which consists of two benzene rings joined by a pyridine ring. |
| External Descriptors | aminoacridines - tertiary amino compound - aromatic amine |
| 感度 | Light-sensitive |
|---|---|
| 融点(°C) | 165°C(dec.)(lit.) |
| 1. Yiyun Liu, Qi-Ping Tang, Si-Jia Zuo, Yuan Ding, Feng-Yi Guo, Bao-Fu Zhang, Qin-Hong Zhou, Dongmei Xie, De-Sheng Pei. (2025) Synergistic neurotoxicity of polystyrene nanoparticles and MEHP in zebrafish (Danio rerio). ENVIRONMENTAL POLLUTION, [PMID:40609886] [10.1016/j.envpol.2025.126765] |
| 2. Juan Wu, Xi Wang, Binglong Zhu, Qinting He, Yaheng Zhang, Wei Jiang. (2022) Synthesis and characterization of magnetic polymeric nanocomposites for pH-sensitive controlled release of methotrexate. JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, [PMID:35727073] [10.1080/09205063.2022.2093053] |
| 3. Ying Gong, Jiping Chen, Rongping Pu. (2019) The enhanced removal and phytodegradation of sodium dodecyl sulfate (SDS) in wastewater using controllable water hyacinth. INTERNATIONAL JOURNAL OF PHYTOREMEDIATION, [PMID:31044608] [10.1080/15226514.2019.1606779] |
| 4. Dong Zhou. (2018) Ecotoxicity of bisphenol S to Caenorhabditis elegans by prolonged exposure in comparison with bisphenol A. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 37 (10): (2560-2565). [PMID:29923629] [10.1002/etc.4214] |
| 5. Juan Wu, Wei Jiang, Yewen Shen, Wei Jiang, Renbing Tian. (2016) Synthesis and characterization of mesoporous magnetic nanocomposites wrapped with chitosan gatekeepers for pH-sensitive controlled release of doxorubicin. Materials Science & Engineering C-Materials for Biological Applications, [PMID:27770872] [10.1016/j.msec.2016.08.054] |
| 6. Ruijing Li, Weili Yang, Xingxue Yan, Xinkui Zhou, Xiaorui Song, Cuihua Liu, Yaodong Zhang, Jitong Li. (2024) Folic acid mitigates the developmental and neurotoxic effects of bisphenol A in zebrafish by inhibiting the oxidative stress/JNK signaling pathway. ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, [PMID:39566264] [10.1016/j.ecoenv.2024.117363] |
| 7. Yue Tao, Xiaodong Yi, Yanyan Gu, Rongyi Yang, Zixu Li, Xiangyong Guo, Donglin Zhao, Ying Zhang. (2024) Neurotoxicity of dibutyl phthalate in zebrafish larvae: Decreased energy acquisition by neurons. FOOD AND CHEMICAL TOXICOLOGY, [PMID:38621509] [10.1016/j.fct.2024.114666] |
| 8. Wang Xi, Wu Juan, Sun Haibin, Lu Bingyan, Huang Jingjing, Liu Qiaoling, Li Tingting. (2025) Fabrication of Ag-armed iron oxide magnetic Janus nanoparticles for enhanced elimination of robust biofilm under magnetic field. JOURNAL OF MATERIALS SCIENCE, [PMID:] [10.1007/s10853-025-10983-7] |
| 9. Ruijing Li, Weili Yang, Lijuan Zheng, Xingxue Yan, Cuihua Liu, Yaodong Zhang, Jitong Li. (2025) Gastrodin alleviates alcohol-induced developmental and neurotoxic effects in zebrafish larvae by suppressing ferroptosis via regulating the Nrf2/GPX4 signaling pathway. TOXICOLOGY AND APPLIED PHARMACOLOGY, [PMID:41371372] [10.1016/j.taap.2025.117684] |
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