HS-27
CAS No. 1562024-11-6
HS-27( —— )
Catalog No. M33552 CAS No. 1562024-11-6
HS-27 is a fluorescently-tethered inhibitor of Hsp90 with SNX-5422 tethered via a PEG linker to a fluorescein isothiocyanate or FITC. HS-27 can be used in see-and-treat paradigms.
Purity : >98% (HPLC)
COA
Datasheet
HNMR
HPLC
MSDS
Handing Instructions
| Size | Price / USD | Stock | Quantity |
| 2MG | 140 | In Stock |
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| 5MG | 215 | In Stock |
|
| 10MG | 345 | In Stock |
|
| 25MG | 593 | In Stock |
|
| 50MG | 822 | In Stock |
|
| 100MG | 1098 | In Stock |
|
| 500MG | Get Quote | In Stock |
|
| 1G | Get Quote | In Stock |
|
Biological Information
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Product NameHS-27
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NoteResearch use only, not for human use.
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Brief DescriptionHS-27 is a fluorescently-tethered inhibitor of Hsp90 with SNX-5422 tethered via a PEG linker to a fluorescein isothiocyanate or FITC. HS-27 can be used in see-and-treat paradigms.
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DescriptionHS-27, a fluorescently-tethered Hsp90 inhibitor, assays surface Hsp90 expression on intact tissue specimens. HS-27 is made up of the core elements of SNX-5422, an Hsp90 inhibitor, tethered via a PEG linker to a fluorescein derivative (fluorescein isothiocyanate or FITC), that binds to ectopically expressed Hsp90. HS-27 has potential use in a see-and-treat paradigm in breast cancer.
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In VitroHS-27 labels all receptor subtypes of breast cancer, but not normal cells, and specifically binds to Hsp90 expressed on the surface of breast cancer cells before being internalized. HS-27 fluorescence is greater in tumor than non-tumor tissue.
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In Vivo——
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Synonyms——
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PathwayCytoskeleton/Cell Adhesion Molecules
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TargetHSP
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RecptorHSP
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Research Area——
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Indication——
Chemical Information
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CAS Number1562024-11-6
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Formula Weight993.13
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Molecular FormulaC52H60N6O12S
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Purity>98% (HPLC)
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SolubilityIn Vitro:?DMSO : 100 mg/mL (100.69 mM; Ultrasonic )
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SMILESCc1nn(c2CC(C)(C)CC(=O)c12)-c1ccc(C(N)=O)c(NCCCOCCOCCOCCOCCOCCCNC(=S)Nc2ccc3c(c2)C(=O)OC32c3ccc(O)cc3Oc3cc(O)ccc23)c1
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Chemical Name——
Shipping & Storage Information
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Storage(-20℃)
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ShippingWith Ice Pack
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Stability≥ 2 years
Reference
1. Crouch BT, et al. Exploiting heat shock protein expression to develop a non-invasive diagnostic tool for breast cancer. Sci Rep. 2019 Mar 5;9(1):3461.?
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