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Adriblastina; Doxorubicin hydrochloride structure, CAS 25316-40-9

Adriblastina; Doxorubicin hydrochloride

CAS Number25316-40-9

SynonymsADM hydrochloride; DOX HCl; Adriamycin hydrochloride; ADRIACIN; MFCD00077757; Doxorubicin Hydrochloride; DOX,Hydroxydaunorubicin hydrochloride; Dox hydrochloride; ADR; Doxorubicin (Adriamycin) HCl; Lipodox; FI 106; 14-hydroxydaunomycin hydrochloride; Adriamycin HCl; fi6804; Rubex; Adriamycin RDF; Caely; DOX; CAELYX; EINECS 246-818-3; Adriamycin, hydrochloride; Ardriamycin; Adriamycin PFS; Adriblastin; Doxorubicin (Adriamycin); doxorubicin HCl; Hydroxydaunorubicin hydrochloride; Doxorubicin (hydrochloride)

Molecular FormulaC27H30ClNO11

Molecular Weight579.98

Purity98.0-102.0 (HPLC)%

Density

Boiling Point810.3ºC at 760 mmHg

Melting Point216 °C (dec.) (lit.)

Flash Point

Appearancesolid

EINECS246-818-3

MSDSChineseEnglish

SymbolTransport

Signal WordWarning

Cat. No.: 2A-9009069 Purity: 98.0-102.0 (HPLC)%
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Quality Control of [ 25316-40-9 ] Purity: 98.0-102.0 (HPLC)% SDS Specification MoL

Chemical & Physical Properties
CAS Number25316-40-9
Catalog No.2A-9009069
Chinese Name盐酸阿霉素
SynonymsADM hydrochloride; DOX HCl; Adriamycin hydrochloride; ADRIACIN; MFCD00077757; Doxorubicin Hydrochloride; DOX,Hydroxydaunorubicin hydrochloride; Dox hydrochloride; ADR; Doxorubicin (Adriamycin) HCl; Lipodox; FI 106; 14-hydroxydaunomycin hydrochloride; Adriamycin HCl; fi6804; Rubex; Adriamycin RDF; Caely; DOX; CAELYX; EINECS 246-818-3; Adriamycin, hydrochloride; Ardriamycin; Adriamycin PFS; Adriblastin; Doxorubicin (Adriamycin); doxorubicin HCl; Hydroxydaunorubicin hydrochloride; Doxorubicin (hydrochloride)
Molecular FormulaC27H30ClNO11
Molecular Weight579.98
Purity98.0-102.0 (HPLC)
Boiling Point810.3ºC at 760 mmHg
Melting Point216 °C (dec.) (lit.)
Appearancesolid
Water SolubilityH2O: 10 mg/mL, clear, red-orange
Storage Condition2-8℃
ApplicationDoxorubicin hydrochloride is a cytotoxic anthracycline antibiotic used to treat a variety of cancers. The possible mechanism by which Doxorubicin acts in cancer cells is by intercalating into DNA and
EINECS246-818-3
HTC2941909000
PubChem ID57650234
MDL NumberMFCD00077757
SMILESCl[H].COc1cccc2C(=O)c3c(O)c4C[C@](O)(C[C@H](O[C@H]5C[C@H](N)[C@H](O)[C@H](C)O5)c4c(O)c3C(=O)c12)C(=O)CO
InChI1S/C27H29NO11.ClH/c1-10-22(31)13(28)6-17(38-10)39-15-8-27(36,16(30)9-29)7-12-19(15)26(35)21-20(24(12)33)23(32)11-4-3-5-14(37-2)18(11)25(21)34;/h3-5,10,13,15,17,22,29,31,33,35-36H,6-9,28H2,1-2H3;1H/t10-,13-,15-,17-,22+,27-;/m0./s1
InChI KeyMWWSFMDVAYGXBV-RUELKSSGSA-N
Beilstein/REAXYS4229251
NACRES CodeNA.76
UNSPSC51281818
Hazard SymbolsTransport
MSDSmsds/9069_1_25316_40_9.pdf
BioactivityDoxorubicin hydrochloride is a cytotoxic anthracycline antibiotic for the treatment of multiple cancers. The possible mechanisms by which doxorubicin acts in the cancer cell are intercalation into DNA and disruption of topoisomerase-II-mediated DNA repair. Related Catalog Signaling Pathways >> Antibody-drug Conjugate >> ADC Cytotoxin Signaling Pathways >> Autophagy >> Autophagy Signaling Pathways >> Autophagy >> Mitophagy Signaling Pathways >> Cell Cycle/DNA Damage >> Topoisomerase Research Areas >> Cancer Natural Products >> Others Target Topoisomerase II In Vitro Combination of Doxorubicin and Simvastatin in the highest tested concentrations (2 μM and 10 μM, respectively) kills 97% of the Hela cells[2]. In Vivo Mice bearing PC3 xenografts are injected with 2, 4 or 8 mg/kg Doxorubicin and tumor volume is measured over time. A dose of 2 mg/kg does not affect tumor growth while higher dosages delay tumor growth initially (p<0.05 at days 18 and 22), 4 mg/kg or 8 mg/kg Doxorubicin significantly reduces levels of c-FLIP in PC3 xenografts[3]. A single intraperitoneal injection 10 mg/kg (Doxorubicin 1) is administered in rats, 10 daily intraperitoneal injections of 1 mg/kg (Doxorubicin 2), or in 5 weekly intraperitoneal injections of 2 mg/kg (Doxorubicin 3). An 80% mortality rate is observed at day 28 in Doxorubicin 1, whereas Doxorubicin 2 and Doxorubicin 3 reached 80% mortality at days 107 and 98, respectively. Fractional shortening decreased by 30% at week 2 in Doxorubicin DOX1, 55% at week 13 in Doxorubicin 2, and 42% at week 13 in Doxorubicin 3[4]. Cell Assay 160 μL of Hela cells suspension (3×104 cell/mL) is dispensed into three 96-well U-bottom microplates and incubated for 24 h at 37°C in a fully humidified atmosphere of 5% CO2. In plate 1, serial dilutions of Doxorubicin (20 μL; final concentration, 0.1-2 μM) and Simvastatin (20 μL; final concentration, 0.25-2 μM) are added to a final volume of 200 μL and incubated for another 72 h. In plates 2 and 3 serial dilutions of each drug (Simvastatin or Doxorubicin, 40 μL) are added. After an incubation period of 24 h, the medium is aspirated and the cells are washed in PBS. Then, serial dilutions of other drug (40 μL) are added and supplemented with culture medium to a final volume of 200 μL, and incubated for 48 h. Doxorubicin and Simvastatin are used individually as positive controls (40 μL in each well), and the cells treated only with solvent are considered as negative controls. To evaluate cell survival, 20 μL of MTT solution (5 mg/mL in PBS) is added to each well and incubated for 3 h. Then the media is replaced with 150 μL of DMSO, and complete solubilization of formazan crystals is achieved by repeated pipetting of the solution. Absorbance is then determined at 540 nm by an ELISA plate reader. Each drug concentration is assayed in 4 or 8 wells and repeated 3 times. The cytotoxic/cytostatic effect of Doxorubicin is expressed as the relative viability (% control) and calculated. Percentage of cell survival in the negative control is assumed as 100. Relative viability=(experimental absorbance-background absorbance)/ (absorbance of untreated controls-background absorbance)×100 %[2]. Animal Admin Mice[3] Athymic male nude mice (3-4 weeks old) are used. PC3 cells (4×106) are injected subcutaneously into the flanks of mice. Animals bearing tumors are randomly assigned to treatment groups (five or six mice per group) and treatment initated when xenografts reached volumes of about 100 mm3. Tumors are measured using digital calipers and volume calculated using the formula: Volume=Width2×Length×0.52, where width represents the shorter dimension of the tumor. Treatments are administered as indicated using vehicle (PBS containing 0.1% BSA), Doxorubicin (2-8 mg/kg), Apo2L/TRAIL (500 μg/animal), or a combination of 4 mg/kg Doxorubicin followed by 500 μg Apo2L/TRAIL. Doxorubicin is administered systemically whereas Apo2L/TRAIL is given either intra-tumorally or systemically. All treatments are given once. Mice are monitored daily for signs of adverse effects (listlessness and scruffy apparance). Treatments seemed to be well tolerated. The mean±SEM is calculated for each data point. Differences between treatment groups are analyzed by the student t-test. Differences are considered significant when P<0.05. Rats[4] Thirty male Sprague-Dawley rats weighing 250 to 300 g are randomly assigned to 1 of 3 experimental groups: Doxorubicin schedule 1 (Doxorubicin 1, n=10), Doxorubicin schedule 2 (Doxorubicin 2, n=10), or Doxorubicin schedule 3 (Doxorubicin 3, n=10). For all Doxorubicin treatment schedules, the cumulative dose of Doxorubicin is 10 mg/kg. Schedule 1 involves a single bolus intraperitoneal injection of Doxorubicin at 10 mg/kg. Schedule 2 involves 10 intraperitoneal injections of Doxorubicin at 1 mg/kg for 10 consecutive days. Schedule 3 involves 5 intraperitoneal injections of Doxorubicin at 2 mg/kg, once each week, for 5 wk. Immediately before the first Doxorubicin treatment and at weekly intervals after beginning Doxorubicin treatment, blood pressure and cardiac function are assessed in all surviving animals as long as there are at least 3 rats per group. References [1]. Nitiss JL, et al. Targeting DNA topoisomerase II in cancer chemotherapy.Nat Rev Cancer. 2009 May;9(5):338-50. [2]. Sadeghi-Aliabadi H, et al. Cytotoxic evaluation of doxorubicin in combination with simvastatin against human cancer cells. Res Pharm Sci. 2010 Jul;5(2):127-33. [3]. El-Zawahry A, et al. Doxorubicin increases the effectiveness of Apo2L/TRAIL for tumor growth inhibition of prostate cancerxenografts. BMC Cancer. 2005 Jan 7;5:2. [4]. Hayward R, et al. Doxorubicin cardiotoxicity in the rat: an in vivo characterization. J Am Assoc Lab Anim Sci. 2007 Jul;46(4):20-32. Chemical & Physical Properties Boiling Point 810.3ºC at 760 mmHg Melting Point 216ºC Molecular Formula C27H30ClNO11 Molecular Weight 579.980 Flash Point 443.8ºC Exact Mass 579.150757 PSA 206.07000 LogP 1.50360 Vapour Pressure 9.64E-28mmHg at 25°C InChIKey MWWSFMDVAYGXBV-RUELKSSGSA-N SMILES COc1cccc2c1C(=O)c1c(O)c3c(c(O)c1C2=O)CC(O)(C(=O)CO)CC3OC1CC(N)C(O)C(C)O1.Cl Storage condition 2-8°C Water Solubility H2O: 10 mg/mL, clear, red-orange
Use ofDoxorubicin hydrochloride is a cytotoxic anthracycline antibiotic for the treatment of multiple cancers. The possible mechanisms by which doxorubicin acts in the cancer cell are intercalation into DNA and disruption of topoisomerase-II-mediated DNA repair. Properties Articles494 Name adriamycin, hydrochloride Synonym More Synonyms Doxorubicin Hydrochloride Biological Activity Description Doxorubicin hydrochloride is a cytotoxic anthracycline antibiotic for the treatment of multiple cancers. The possible mechanisms by which doxorubicin acts in the cancer cell are intercalation into DNA and disruption of topoisomerase-II-mediated DNA repair. Related Catalog Signaling Pathways >> Antibody-drug Conjugate >> ADC Cytotoxin Signaling Pathways >> Autophagy >> Autophagy Signaling Pathways >> Autophagy >> Mitophagy Signaling Pathways >> Cell Cycle/DNA Damage >> Topoisomerase Research Areas >> Cancer Natural Products >> Others Topoisomerase II In Vitro Combination of Doxorubicin and Simvastatin in the highest tested concentrations (2 μM and 10 μM, respectively) kills 97% of the Hela cells[2]. References [1]. Nitiss JL, et al. Targeting DNA topoisomerase II in cancer chemotherapy.Nat Rev Cancer. 2009 May;9(5):338-50. [2]. Sadeghi-Aliabadi H, et al. Cytotoxic evaluation of doxorubicin in combination with simvastatin against human cancer cells. Res Pharm Sci. 2010 Jul;5(2):127-33. [4]. Hayward R, et al. Doxorubicin cardiotoxicity in the rat: an in vivo characterization. J Am Assoc Lab Anim Sci. 2007 Jul;46(4):20-32. Chemical & Physical Properties Exact Mass 579.150757 PSA 206.07000 LogP 1.50360 InChIKey MWWSFMDVAYGXBV-RUELKSSGSA-N
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Transport InfoShipping Name: UN
MSDS Transport InfoModule 14. Shipping information 14.1 UN dangerous goods number European Land Transport Dangerous Regulations: -International Maritime Dangerous Regulations: -International Air Transport Dangerous Regulations: - 14.2 United Nations shipping name European Land Transport Dangerous Regulations: Non-dangerous goods IMDG Code: Non-dangerous goods International air transport dangerous goods regulations: non-dangerous goods 14.3 Transport hazard categories European Land Transport Dangerous Regulations: -International Maritime Dangerous Regulations: -International Air Transport Dangerous Regulations: - 14.4 Package group European Land Transport Dangerous Regulations: -International Maritime Dangerous Regulations: -International Air Transport Dangerous Regulations: - 14.5 Environmental hazards European Land Transport Danger Regulations: No International Maritime Danger Regulations International Air Transport Danger Regulations: No Marine pollutants (yes/no): No 14.6 Special reminder to users No data available
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