Calcein-AM - ≥90% (HPLC), high purity , CAS No.148504-34-1

36 Citations
  • ≥90%(HPLC)
Item Number
C273362
Grouped product items
SKUSizeAvailabilityPrice Qty
C273362-1mg
1mg
In stock
$383.90
C273362-5mg
5mg
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$1,333.90


Basic Description

SynonymsCalcein AM | Calcein-AM | 148504-34-1 | Glycine, N,N'-[[3',6'-bis(acetyloxy)-3-oxospiro[isobenzofuran-1(3H),9'-[9H]xanthene]-2',7'-diyl]bis(methylene)]bis[N-[2-[(acetyloxy)methoxy]-2-oxoethyl]-, 1,1'-bis[(acetyloxy)methyl] ester | acetyloxymethyl 2-[[2-(acetyloxy
Specifications & Purity≥90%(HPLC)
Storage TempStore at -20°C,Argon charged
Shipped InIce chest + Ice pads
Product Description

Calcein, AM is a cell staining reagent that can fluorescently label living cells. After it penetrates the cell membrane and enters the cell, it is cleaved by the intracellular esterase to form Calcein, which is retained in the cell and emits strong green fluorescence. Compared with other similar reagents (such as BCECF, AM and CFDA), Calcein, AM has very low cytotoxicity. The excitation and emission wavelengths of Calcein are 490 nm and 515 nm, respectively.

Calcein, AM only stain live cells. PI, which is a nuclear staining dye, cannot pass through the cell membrane of living cells. It passes through the disordered area of the dead cell membrane to reach the nucleus, and is embedded in the cell’s DNA double helix to generate red fluorescence (excitation: 535 nm, emission: 617 nm). PI only stains dead cells. Since both Calcein and PI-DNA can be excited at 490 nm, a fluorescence microscope can be used to observe live and dead cells simultaneously. With 545 nm excitation, only dead cells can be observed. Based on the above characteristics, Calcein, AM and PI are often combined to double stain live and dead cells.

Due to the different optimal staining conditions for different cell lines, we recommend determining the appropriate concentrations of Calcein, AM and PI individually.

 

Instructions                                                                              

(1) Prepare 1 mM Calcein, AM solution with DMSO, and dilute it with PBS to make 1-50 μM Calcein, AM solution.

(2) Add 1/10 of the volume of the cell culture medium Calcein, AM solution to the cell culture medium. b)

(3) Incubate the cells at 37°C for 15-30 minutes.

(4) Wash the cells twice with PBS or an appropriate buffer.

(5) Observe the cells with a fluorescence microscope with a filter with excitation wavelength of 490 nm and emission wavelength of 515 nm.

a) If it is difficult for Calcein and AM to enter cells, you can use surfactants such as Pluronic F127.

b) It is also possible to use 1/10 concentration of Calcein, AM solution instead of medium.

Associated Targets(Human)

A498 (42825 Activities)
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ACHN (49357 Activities)
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CAKI-1 (44928 Activities)
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CCRF-CEM (65223 Activities)
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COLO 205 (50209 Activities)
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DU-145 (51482 Activities)
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OVCAR-3 (48710 Activities)
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OVCAR-8 (47708 Activities)
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PC-3 (62116 Activities)
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RXF 393 (41971 Activities)
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EKVX (44102 Activities)
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HCT-116 (91556 Activities)
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HOP-92 (41141 Activities)
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IGROV-1 (47897 Activities)
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HOP-62 (47048 Activities)
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MDA-MB-435 (38290 Activities)
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MDA-N (28205 Activities)
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Malme-3M (44254 Activities)
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MDA-MB-231 (73002 Activities)
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SNB-75 (44215 Activities)
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Names and Identifiers

IUPAC Name acetyloxymethyl 2-[[2-(acetyloxymethoxy)-2-oxoethyl]-[[3',6'-diacetyloxy-7'-[[bis[2-(acetyloxymethoxy)-2-oxoethyl]amino]methyl]-3-oxospiro[2-benzofuran-1,9'-xanthene]-2'-yl]methyl]amino]acetate
INCHI InChI=1S/C46H46N2O23/c1-25(49)60-21-64-41(55)17-47(18-42(56)65-22-61-26(2)50)15-31-11-35-39(13-37(31)68-29(5)53)70-40-14-38(69-30(6)54)32(12-36(40)46(35)34-10-8-7-9-33(34)45(59)71-46)16-48(19-43(57)66-23-62-27(3)51)20-44(58)67-24-63-28(4)52/h7-14H,15-24H2,1-6H3
InChi Key BQRGNLJZBFXNCZ-UHFFFAOYSA-N
Canonical SMILES CC(=O)OCOC(=O)CN(CC1=CC2=C(C=C1OC(=O)C)OC3=C(C24C5=CC=CC=C5C(=O)O4)C=C(C(=C3)OC(=O)C)CN(CC(=O)OCOC(=O)C)CC(=O)OCOC(=O)C)CC(=O)OCOC(=O)C
Isomeric SMILES CC(=O)OCOC(=O)CN(CC1=CC2=C(C=C1OC(=O)C)OC3=C(C24C5=CC=CC=C5C(=O)O4)C=C(C(=C3)OC(=O)C)CN(CC(=O)OCOC(=O)C)CC(=O)OCOC(=O)C)CC(=O)OCOC(=O)C
PubChem CID 390986
Molecular Weight 994.87

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Certificate of Analysis(COA)

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2 results found

Lot NumberCertificate TypeDateItem
I2308218Certificate of AnalysisSep 11, 2023 C273362
F2306048Certificate of AnalysisJun 08, 2023 C273362

Chemical and Physical Properties

Sensitivitylight sensitive;Moisture sensitive

Related Documents

Citations of This Product

1. Kai Yue, Chao Yang, Yu You, Xueying Wang, Xinxin Zhang.  (2023)  Experimental Investigation of Temperature Influence on Nanoparticle Adhesion in an Artificial Blood Vessel.  International Journal of Nanomedicine,      [PMID:36711003]
2. Xiaofang Du, Rong Zou, Kun Du, Dabing Huang, Chunguang Miao, Bensheng Qiu, Weiping Ding, Chengpan Li.  (2023)  Modeling Colorectal Cancer-Induced Liver Portal Vein Microthrombus on a Hepatic Lobule Chip.  ACS Applied Materials & Interfaces,  15  (49): (56859–56868).  [PMID:38033197]
3. Chunhong Sui, Yijia Luo, Xiao Xiao, Jiaxue Liu, Xiaotong Shao, Yingxue Xue, Cheng Wang, Wenliang Li.  (2023)  A Photothermal Therapy Study Based on Electrospinning Nanofibers Blended and Coated with Polydopamine Nanoparticles.  ChemistrySelect,  (40): (e202302998).  [PMID:16214896]
4. Meng-Wen Ma, Kai-Lin He, Chao-Qing Li, Xiao-Ting Xie, Sui Zhou, Bin Zhang, Xiao-Lin Hou, Cheng Li, Yuan-Di Zhao, Ling-Li Dong, Bo Liu.  (2023)  Multifunctional platinum-tellurium nanorods modified with hyaluronic acid remove reactive oxygen species to improve the photothermal treatment of rheumatoid arthritis.  CHEMICAL ENGINEERING JOURNAL,  475  (13): (146450).  [PMID:10644996]
5. Li Zhang, Qian Dong, Yumin Hao, Zihan Wang, Wenjuan Dong, Yang Liu, Yueping Dong, Hongpeng Wu, Shaomin Shuang, Chuan Dong, Zhuo Chen, Xiaojuan Gong.  (2023)  Drug-Primed Self-Assembly of Platinum-Single-Atom Nanozyme to Regulate Cellular Redox Homeostasis Against Cancer.  Advanced Science,    (5): (2302703).  [PMID:37697645]
6. Pengyu Zang, Yaqian Du, Chenghao Yu, Dan Yang, Shili Gai, Lili Feng, Shikai Liu, Piaoping Yang, Jun Lin.  (2023)  Photothermal-Actuated Thermoelectric Therapy by Harnessing Janus-Structured Ag–Ag2S Nanoparticles with Enhanced Antitumor Efficacy.  CHEMISTRY OF MATERIALS,    (23):   [PMID:19011241]
7. Minglu Tang, Zhengya Yue, Jialun Li, Tiedong Sun, Chunxia Chen.  (2023)  Nanozymes Based on MXene Nanosheets Decorated with Pt Nanoparticles for Hyperthermal-Enhanced Cascade Catalytic Therapy of Tumors.  ACS Applied Nano Materials,  (15): (14609–14616).  [PMID:]
8. Li Shibo, Li Chengpan, Khan Muhammad Imran, Liu Jing, Shi Zhengdi, Gao Dayong, Qiu Bensheng, Ding Weiping.  (2023)  Microneedle array facilitates hepatic sinusoid construction in a large-scale liver-acinus-chip microsystem.  Microsystems & Nanoengineering,  (1): (1-14).  [PMID:37303831]
9. Jun Cao, Tao Zhang, Wei Zhu, Houbin Li, Aiguo Shen.  (2023)  A cooling-driven self-adaptive and removable hydrogel coupled with combined chemo-photothermal sterilization for promoting infected wound healing.  Nanoscale,      [PMID:37340945]
10. Jie Cheng, Jinxin Yan, Ying Liu, Jiangzhou Shi, Haoyu Wang, Hanyang Zhou, Yinglin Zhou, Tongcun Zhang, Lina Zhao, Xianbin Meng, Haipeng Gong, Xinxiang Zhang, Haichuan Zhu, Peng Jiang.  (2023)  Cancer-cell-derived fumarate suppresses the anti-tumor capacity of CD8+ T cells in the tumor microenvironment.  Cell Metabolism,  35  (961-978.e10).  [PMID:37178684]
11. Ruoxi Zhao, Haixia Zhu, Lili Feng, Yanlin Zhu, Bin Liu, Chenghao Yu, Shili Gai, Piaoping Yang.  (2023)  2D Piezoelectric BiVO4 Artificial Nanozyme with Adjustable Vanadium Vacancy for Ultrasound Enhanced Piezoelectric/Sonodynamic Therapy.  Small,    (2301349).  [PMID:37127877]
12. Zhilin Dai, Chengpan Li, Zhengdi Shi, Shibo Li, Tianzhi Luo, Weiping Ding.  (2023)  A glomerulus chip with spherically twisted cell-laden hollow fibers as glomerular capillary tufts.  Biofabrication,  15  (3): (35004).  [PMID:36898152]
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References

1. Kai Yue, Chao Yang, Yu You, Xueying Wang, Xinxin Zhang.  (2023)  Experimental Investigation of Temperature Influence on Nanoparticle Adhesion in an Artificial Blood Vessel.  International Journal of Nanomedicine,      [PMID:36711003]
2. Xiaofang Du, Rong Zou, Kun Du, Dabing Huang, Chunguang Miao, Bensheng Qiu, Weiping Ding, Chengpan Li.  (2023)  Modeling Colorectal Cancer-Induced Liver Portal Vein Microthrombus on a Hepatic Lobule Chip.  ACS Applied Materials & Interfaces,  15  (49): (56859–56868).  [PMID:38033197]
3. Chunhong Sui, Yijia Luo, Xiao Xiao, Jiaxue Liu, Xiaotong Shao, Yingxue Xue, Cheng Wang, Wenliang Li.  (2023)  A Photothermal Therapy Study Based on Electrospinning Nanofibers Blended and Coated with Polydopamine Nanoparticles.  ChemistrySelect,  (40): (e202302998).  [PMID:16214896]
4. Meng-Wen Ma, Kai-Lin He, Chao-Qing Li, Xiao-Ting Xie, Sui Zhou, Bin Zhang, Xiao-Lin Hou, Cheng Li, Yuan-Di Zhao, Ling-Li Dong, Bo Liu.  (2023)  Multifunctional platinum-tellurium nanorods modified with hyaluronic acid remove reactive oxygen species to improve the photothermal treatment of rheumatoid arthritis.  CHEMICAL ENGINEERING JOURNAL,  475  (13): (146450).  [PMID:10644996]
5. Li Zhang, Qian Dong, Yumin Hao, Zihan Wang, Wenjuan Dong, Yang Liu, Yueping Dong, Hongpeng Wu, Shaomin Shuang, Chuan Dong, Zhuo Chen, Xiaojuan Gong.  (2023)  Drug-Primed Self-Assembly of Platinum-Single-Atom Nanozyme to Regulate Cellular Redox Homeostasis Against Cancer.  Advanced Science,    (5): (2302703).  [PMID:37697645]
6. Pengyu Zang, Yaqian Du, Chenghao Yu, Dan Yang, Shili Gai, Lili Feng, Shikai Liu, Piaoping Yang, Jun Lin.  (2023)  Photothermal-Actuated Thermoelectric Therapy by Harnessing Janus-Structured Ag–Ag2S Nanoparticles with Enhanced Antitumor Efficacy.  CHEMISTRY OF MATERIALS,    (23):   [PMID:19011241]
7. Minglu Tang, Zhengya Yue, Jialun Li, Tiedong Sun, Chunxia Chen.  (2023)  Nanozymes Based on MXene Nanosheets Decorated with Pt Nanoparticles for Hyperthermal-Enhanced Cascade Catalytic Therapy of Tumors.  ACS Applied Nano Materials,  (15): (14609–14616).  [PMID:]
8. Li Shibo, Li Chengpan, Khan Muhammad Imran, Liu Jing, Shi Zhengdi, Gao Dayong, Qiu Bensheng, Ding Weiping.  (2023)  Microneedle array facilitates hepatic sinusoid construction in a large-scale liver-acinus-chip microsystem.  Microsystems & Nanoengineering,  (1): (1-14).  [PMID:37303831]
9. Jun Cao, Tao Zhang, Wei Zhu, Houbin Li, Aiguo Shen.  (2023)  A cooling-driven self-adaptive and removable hydrogel coupled with combined chemo-photothermal sterilization for promoting infected wound healing.  Nanoscale,      [PMID:37340945]
10. Jie Cheng, Jinxin Yan, Ying Liu, Jiangzhou Shi, Haoyu Wang, Hanyang Zhou, Yinglin Zhou, Tongcun Zhang, Lina Zhao, Xianbin Meng, Haipeng Gong, Xinxiang Zhang, Haichuan Zhu, Peng Jiang.  (2023)  Cancer-cell-derived fumarate suppresses the anti-tumor capacity of CD8+ T cells in the tumor microenvironment.  Cell Metabolism,  35  (961-978.e10).  [PMID:37178684]
11. Ruoxi Zhao, Haixia Zhu, Lili Feng, Yanlin Zhu, Bin Liu, Chenghao Yu, Shili Gai, Piaoping Yang.  (2023)  2D Piezoelectric BiVO4 Artificial Nanozyme with Adjustable Vanadium Vacancy for Ultrasound Enhanced Piezoelectric/Sonodynamic Therapy.  Small,    (2301349).  [PMID:37127877]
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Solution Calculators