Ergosterol - 95%, high purity , CAS No.57-87-4

  • ≥95%
Item Number
E105721
Grouped product items
SKUSizeAvailabilityPrice Qty
E105721-1g
1g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$12.90
E105721-5g
5g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$47.90
E105721-25g
25g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$168.90
E105721-100g
100g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$605.90
View related series
Steroids

Basic Description

Synonyms14-((2E)(1R,4R)-1,4,5-trimethylhex-2-enyl)(1S,5S,2R,11R,14R,15R)-2,15-dimethyl tetracyclo[8.7.0.0<2,7>.0<11,15>]heptadeca-7,9-dien-5-ol | SCHEMBL43194 | Provitamin D 2 | Radia 7363 | Ergosta-5,7,22-trien-3-ol, (3b,22E)- | CCRIS 7220 | Q143263 | Z30RAY509F
Specifications & Purity≥95%
Biochemical and Physiological MechanismsErgosterol has a role in maintaining the integrity of the cell membrane and its fluidity. The sterol has anti-tumor and anti-inflammatory properties.
Storage TempProtected from light,Store at -20°C,Argon charged
Shipped InIce chest + Ice pads
Product Description

Dihexadecyl phosphate (DHP) is a negatively charged lipid that is used for the formation of model membranes.


product description:

Ergosterol or provitamin D2 is a biological precursor of Vitamin D2. It is found predominantly in cell membranes of fungi and protists such as trypanosomes.


application:

Ergosterol has been used:

as a component of yeast cell monolayer models, to study the effects of steroidal and triterpenoid saponins on the monolayers

as a standard sample, to isolate and identify a fungal metabolite fraction containing ergosterol

as a component of the culture medium to isolate the CYP51RNAi phenotype of Trypanosoma brucei gambiense, to verify ergosterol biosynthesis

Associated Targets(Human)

GAPDH Tchem Glyceraldehyde-3-phosphate dehydrogenase liver (1284 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
COLO 205 (50209 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
COLO 320 (353 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
MRC5 (9203 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
A549 (127892 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
NCI-H157 (619 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
HepG2 (196354 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
HeLa (62764 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
UGT1A1 Tchem UDP-glucuronosyltransferase 1-1 (448 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
SLCO1B1 Tchem Solute carrier organic anion transporter family member 1B1 (2672 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
SLCO1B3 Tchem Solute carrier organic anion transporter family member 1B3 (2517 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
HSPA5 Tchem 78 kDa glucose-regulated protein (3319 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
HSPA1A Tchem Heat shock 70 kDa protein 1A/1B (2 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
TPM1 Tbio Tropomyosin alpha-1 chain (2 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
TPM4 Tbio Tropomyosin alpha-4 chain (3 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID

Associated Targets(non-human)

Abcb1b P-glycoprotein 1 (174 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Nos2 Nitric oxide synthase, inducible (3573 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Hdac6 Histone deacetylase 6 (222 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Pseudomonas aeruginosa (123386 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Legionella pneumophila (143 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Salmonella typhimurium (15756 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Staphylococcus aureus (210822 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Escherichia coli (133304 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Salmonella typhi (4293 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Bacillus subtilis (32866 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Mycobacterium tuberculosis (203094 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Saccharomyces cerevisiae (19171 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Enterococcus faecalis (29875 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Priestia megaterium (1154 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Spinacia oleracea (250 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Pichia kudriavzevii (7448 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Penicillium chrysogenum (1593 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Microbotryum violaceum (192 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Candida albicans (78123 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
L5178Y (1809 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
PC-12 (7051 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
RAW264.7 (28094 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
BV-2 (3710 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
rep Replicase polyprotein 1ab (378 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Mycolicibacterium vaccae (371 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Sporobolomyces salmonicolor (103 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Dpysl2 Dihydropyrimidinase-related protein 2 (10 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
HSPA8 Heat shock cognate 71 kDa protein (1 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
Goffeauzyma gastrica (7 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID
SARS-CoV-2 (38078 Activities)
Activity TypeRelationActivity valueUnitsAction TypeJournalPubMed IddoiAssay Aladdin ID

Mechanisms of Action

Mechanism of ActionAction Typetarget IDTarget NameTarget TypeTarget OrganismBinding Site NameReferences

Names and Identifiers

IUPAC Name (3S,9S,10R,13R,14R,17R)-17-[(E,2R,5R)-5,6-dimethylhept-3-en-2-yl]-10,13-dimethyl-2,3,4,9,11,12,14,15,16,17-decahydro-1H-cyclopenta[a]phenanthren-3-ol
INCHI InChI=1S/C28H44O/c1-18(2)19(3)7-8-20(4)24-11-12-25-23-10-9-21-17-22(29)13-15-27(21,5)26(23)14-16-28(24,25)6/h7-10,18-20,22,24-26,29H,11-17H2,1-6H3/b8-7+/t19-,20+,22-,24+,25-,26-,27-,28+/m0/s1
InChi Key DNVPQKQSNYMLRS-APGDWVJJSA-N
Canonical SMILES CC(C)C(C)C=CC(C)C1CCC2C1(CCC3C2=CC=C4C3(CCC(C4)O)C)C
Isomeric SMILES C[C@H](/C=C/[C@H](C)C(C)C)[C@H]1CC[C@@H]2[C@@]1(CC[C@H]3C2=CC=C4[C@@]3(CC[C@@H](C4)O)C)C
WGK Germany 3
PubChem CID 444679
UN Number 2811
Molecular Weight 396.65
Beilstein 2338604
Reaxy-Rn 2338604

Certificates

Certificate of Analysis(COA)

Enter Lot Number to search for COA:

Find and download the COA for your product by matching the lot number on the packaging.

6 results found

Lot NumberCertificate TypeDateItem
E2306195Certificate of AnalysisMay 09, 2023 E105721
E2306196Certificate of AnalysisMay 09, 2023 E105721
J2220196Certificate of AnalysisOct 26, 2022 E105721
J2220197Certificate of AnalysisOct 26, 2022 E105721
J2220199Certificate of AnalysisOct 26, 2022 E105721
J2220208Certificate of AnalysisOct 26, 2022 E105721

Chemical and Physical Properties

Solubilityinsoluble in DMSO; insoluble in EtOH; insoluble in H2O
SensitivitySensitive to humidity, heat, air, and light
Specific Rotation[α]-112.5 ° (C=1, THF)
Boil Point(°C)250°C
Melt Point(°C)156-158°C

Safety and Hazards(GHS)

Pictogram(s) GHS06
Signal Danger
Hazard Statements

H413:May cause long lasting harmful effects to aquatic life

H300:Fatal if swallowed

Precautionary Statements

P273:Avoid release to the environment.

P321:Specific treatment (see ... on this label).

P405:Store locked up.

P501:Dispose of contents/container to ...

P264:Wash hands [and …] thoroughly after handling.

P270:Do not eat, drink or smoke when using this product.

P330:Rinse mouth.

P301+P316:IF SWALLOWED: Get emergency medical help immediately.

WGK Germany 3
Reaxy-Rn 2338604
Merck Index 3659

Related Documents

Citations of This Product

1. Yuhong Chen, Ying Gao, Mingan Yuan, Zhaisheng Zheng, Junfeng Yin.  (2023)  Anti-Candida albicans Effects and Mechanisms of Theasaponin E1 and Assamsaponin A.  INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES,  24  (11): (9350).  [PMID:37298302] [10.3390/ijms24119350]
2. Zhonghua Dong, Xiao Sun.  (2023)  Chemical components in artificial Cordyceps sinensis and their effects on fibrosis.  Chinese Herbal Medicines,      [PMID:38375041] [10.1016/j.chmed.2022.11.008]
3. Han Wu, Hao-Nan Liu, Ai-Min Ma, Jian-Zhong Zhou, Xiu-Dong Xia.  (2022)  Synergetic effects of Lactobacillus plantarum and Rhizopus oryzae on physicochemical, nutritional and antioxidant properties of whole-grain oats (Avena sativa L.) during solid-state fermentation.  LWT-FOOD SCIENCE AND TECHNOLOGY,  154  (112687).  [PMID:] [10.1016/j.lwt.2021.112687]
4. Xin Yang, Zejun Pei, Renjing Hu, Zhehao Zhang, Zaixiang Lou, Xin Sun.  (2021)  Study on the Inhibitory Activity and Possible Mechanism of Myriocin on Clinically Relevant Drug-Resistant Candida albicans and Its Biofilms.  BIOLOGICAL & PHARMACEUTICAL BULLETIN,  44  (3): (305-315).  [PMID:33441497] [10.1248/bpb.b20-00246]
5. Zhifeng Cai, Liangliang Wu, Jierui Xi, Erxiao Hao, Kaifei Qi.  (2021)  Green and facile synthesis of polyethyleneimine-protected fluorescent silver nanoclusters for the highly specific biosensing of curcumin.  COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,  615  (126228).  [PMID:] [10.1016/j.colsurfa.2021.126228]
6. Dong Zhonghua, Iqbal Sajid, Zhao Zhongxi.  (2020)  Preparation of Ergosterol-Loaded Nanostructured Lipid Carriers for Enhancing Oral Bioavailability and Antidiabetic Nephropathy Effects.  AAPS PHARMSCITECH,  21  (2): (1-11).  [PMID:31932990] [10.1208/s12249-019-1597-3]
7. Sun Xiao, Feng Xiuli, Zheng Dandan, Li Ang, Li Chunyan, Li Siying, Zhao Zhongxi.  (2019)  Ergosterol attenuates cigarette smoke extract-induced COPD by modulating inflammation, oxidative stress and apoptosis in vitro and in vivo.  CLINICAL SCIENCE,  133  (13): (1523-1536).  [PMID:31270147] [10.1042/CS20190331]
8. Jin-Xiu Liang, Qun-Qun Zhang, Yan-Fei Huang, Han-Qing Pang, Xin-Guang Liu, Wen Gao, Ping Li, Hua Yang.  (2019)  Comprehensive chemical profiling of monascus-fermented rice product and screening of lipid-lowering compounds other than monacolins.  JOURNAL OF ETHNOPHARMACOLOGY,  238  (111879).  [PMID:30991138] [10.1016/j.jep.2019.111879]
9. Kedong Tai, Fuguo Liu, Xiaoye He, Peihua Ma, Like Mao, Yanxiang Gao, Fang Yuan.  (2018)  The effect of sterol derivatives on properties of soybean and egg yolk lecithin liposomes: Stability, structure and membrane characteristics.  FOOD RESEARCH INTERNATIONAL,  109  (24).  [PMID:29803447] [10.1016/j.foodres.2018.04.014]
10. Fang Fang, Bingye Dai, Guang Zhao, Hua Zhao, Chao Sun, Hui Liu, Mo Xian.  (2016)  In depth understanding the molecular response to the enhanced secretion of fatty acids in Saccharomyces cerevisiae due to one-step gene deletion of acyl-CoA synthetases.  PROCESS BIOCHEMISTRY,  51  (1162).  [PMID:] [10.1016/j.procbio.2016.05.017]
11. Cheng Zhengjun.  (2012)  Interaction of ergosterol with bovine serum albumin and human serum albumin by spectroscopic analysis.  MOLECULAR BIOLOGY REPORTS,  39  (10): (9493-9508).  [PMID:22733490] [10.1007/s11033-012-1814-6]
12. Zhuomin Zhang, Wei Tan, Yuling Hu, Gongke Li.  (2011)  Simultaneous determination of trace sterols in complicated biological samples by gas chromatography–mass spectrometry coupled with extraction using β-sitosterol magnetic molecularly imprinted polymer beads.  JOURNAL OF CHROMATOGRAPHY A,  1218  (4275).  [PMID:21632061] [10.1016/j.chroma.2011.05.022]
13. Hui Wang, Jin Qi, Tian Xu, Ji-Hua Liu, Min-Jian Qin, Dan-Ni Zhu, Bo-Yang Yu.  (2010)  Effects of Storage Condition Factors on Fungal Invasion of Radix Ophiopogonis.  JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY,  58  (9): (5432–5437).  [PMID:20397649] [10.1021/jf9044588]
14. Jianbin Ye,Zhan Zhang,Ji Yan,Hui Hao,Xiangzhen Liu,Zongcan Yang,Ke Ma,Xuepeng Yang,Duobin Mao,Hao Zhou.  (2016-12-14)  Degradation of phytosterols in tobacco waste extract by a novel Paenibacillus sp..  Biotechnology and applied biochemistry,  64  ((6)): (843-850).  [PMID:27958658]

References

1. Yuhong Chen, Ying Gao, Mingan Yuan, Zhaisheng Zheng, Junfeng Yin.  (2023)  Anti-Candida albicans Effects and Mechanisms of Theasaponin E1 and Assamsaponin A.  INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES,  24  (11): (9350).  [PMID:37298302] [10.3390/ijms24119350]
2. Zhonghua Dong, Xiao Sun.  (2023)  Chemical components in artificial Cordyceps sinensis and their effects on fibrosis.  Chinese Herbal Medicines,      [PMID:38375041] [10.1016/j.chmed.2022.11.008]
3. Han Wu, Hao-Nan Liu, Ai-Min Ma, Jian-Zhong Zhou, Xiu-Dong Xia.  (2022)  Synergetic effects of Lactobacillus plantarum and Rhizopus oryzae on physicochemical, nutritional and antioxidant properties of whole-grain oats (Avena sativa L.) during solid-state fermentation.  LWT-FOOD SCIENCE AND TECHNOLOGY,  154  (112687).  [PMID:] [10.1016/j.lwt.2021.112687]
4. Xin Yang, Zejun Pei, Renjing Hu, Zhehao Zhang, Zaixiang Lou, Xin Sun.  (2021)  Study on the Inhibitory Activity and Possible Mechanism of Myriocin on Clinically Relevant Drug-Resistant Candida albicans and Its Biofilms.  BIOLOGICAL & PHARMACEUTICAL BULLETIN,  44  (3): (305-315).  [PMID:33441497] [10.1248/bpb.b20-00246]
5. Zhifeng Cai, Liangliang Wu, Jierui Xi, Erxiao Hao, Kaifei Qi.  (2021)  Green and facile synthesis of polyethyleneimine-protected fluorescent silver nanoclusters for the highly specific biosensing of curcumin.  COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,  615  (126228).  [PMID:] [10.1016/j.colsurfa.2021.126228]
6. Dong Zhonghua, Iqbal Sajid, Zhao Zhongxi.  (2020)  Preparation of Ergosterol-Loaded Nanostructured Lipid Carriers for Enhancing Oral Bioavailability and Antidiabetic Nephropathy Effects.  AAPS PHARMSCITECH,  21  (2): (1-11).  [PMID:31932990] [10.1208/s12249-019-1597-3]
7. Sun Xiao, Feng Xiuli, Zheng Dandan, Li Ang, Li Chunyan, Li Siying, Zhao Zhongxi.  (2019)  Ergosterol attenuates cigarette smoke extract-induced COPD by modulating inflammation, oxidative stress and apoptosis in vitro and in vivo.  CLINICAL SCIENCE,  133  (13): (1523-1536).  [PMID:31270147] [10.1042/CS20190331]
8. Jin-Xiu Liang, Qun-Qun Zhang, Yan-Fei Huang, Han-Qing Pang, Xin-Guang Liu, Wen Gao, Ping Li, Hua Yang.  (2019)  Comprehensive chemical profiling of monascus-fermented rice product and screening of lipid-lowering compounds other than monacolins.  JOURNAL OF ETHNOPHARMACOLOGY,  238  (111879).  [PMID:30991138] [10.1016/j.jep.2019.111879]
9. Kedong Tai, Fuguo Liu, Xiaoye He, Peihua Ma, Like Mao, Yanxiang Gao, Fang Yuan.  (2018)  The effect of sterol derivatives on properties of soybean and egg yolk lecithin liposomes: Stability, structure and membrane characteristics.  FOOD RESEARCH INTERNATIONAL,  109  (24).  [PMID:29803447] [10.1016/j.foodres.2018.04.014]
10. Fang Fang, Bingye Dai, Guang Zhao, Hua Zhao, Chao Sun, Hui Liu, Mo Xian.  (2016)  In depth understanding the molecular response to the enhanced secretion of fatty acids in Saccharomyces cerevisiae due to one-step gene deletion of acyl-CoA synthetases.  PROCESS BIOCHEMISTRY,  51  (1162).  [PMID:] [10.1016/j.procbio.2016.05.017]
11. Cheng Zhengjun.  (2012)  Interaction of ergosterol with bovine serum albumin and human serum albumin by spectroscopic analysis.  MOLECULAR BIOLOGY REPORTS,  39  (10): (9493-9508).  [PMID:22733490] [10.1007/s11033-012-1814-6]
12. Zhuomin Zhang, Wei Tan, Yuling Hu, Gongke Li.  (2011)  Simultaneous determination of trace sterols in complicated biological samples by gas chromatography–mass spectrometry coupled with extraction using β-sitosterol magnetic molecularly imprinted polymer beads.  JOURNAL OF CHROMATOGRAPHY A,  1218  (4275).  [PMID:21632061] [10.1016/j.chroma.2011.05.022]
13. Hui Wang, Jin Qi, Tian Xu, Ji-Hua Liu, Min-Jian Qin, Dan-Ni Zhu, Bo-Yang Yu.  (2010)  Effects of Storage Condition Factors on Fungal Invasion of Radix Ophiopogonis.  JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY,  58  (9): (5432–5437).  [PMID:20397649] [10.1021/jf9044588]
14. Jianbin Ye,Zhan Zhang,Ji Yan,Hui Hao,Xiangzhen Liu,Zongcan Yang,Ke Ma,Xuepeng Yang,Duobin Mao,Hao Zhou.  (2016-12-14)  Degradation of phytosterols in tobacco waste extract by a novel Paenibacillus sp..  Biotechnology and applied biochemistry,  64  ((6)): (843-850).  [PMID:27958658]

Solution Calculators