Msr-Ratio
CAS No. 2290635-22-0
Msr-Ratio( —— )
Catalog No. M35161 CAS No. 2290635-22-0
Msr-Ratio (Msr-green) (Msr-green) is a ratiometric fluorescent probe specifically designed for the detection of methionine sulfoxide reductase (MSR) activity.
Purity : >98% (HPLC)
COA
Datasheet
HNMR
HPLC
MSDS
Handing Instructions
| Size | Price / USD | Stock | Quantity |
| 2MG | 78 | Get Quote |
|
| 5MG | 112 | Get Quote |
|
| 10MG | 178 | Get Quote |
|
| 25MG | 292 | Get Quote |
|
| 50MG | 401 | Get Quote |
|
| 100MG | 569 | Get Quote |
|
| 500MG | 1188 | Get Quote |
|
| 1G | Get Quote | Get Quote |
|
Biological Information
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Product NameMsr-Ratio
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NoteResearch use only, not for human use.
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Brief DescriptionMsr-Ratio (Msr-green) (Msr-green) is a ratiometric fluorescent probe specifically designed for the detection of methionine sulfoxide reductase (MSR) activity.
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DescriptionMsr-Ratio (Msr-green) is a ratiometric fluorescent probe of methionine sulfoxide reductase (λex=375 nm, λem=550 nm). Msr-Ratio is used for monitoring the enzyme activity in vitro and in live cells.
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In VitroMsr-Ratio is converted to its corresponding sulfide form bymethionine sulfoxide reductase. Msr-Ratio displays favorable properties such as a nearly 400-fold fluorescence change, fast response rate (<30 min), large Stokes shift (120 nm), and green emission (550 nm).There is a very weak background signal in live HL60 cells after the addition of Msr-Ratio. As the Msr-Ratio (10 μM) incubation time increased in cells from 0 to 8 h, the fluorescence signal constantly strengthened.
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In Vivo——
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Synonyms——
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PathwayOthers
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TargetOther Targets
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RecptorOthers
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Research Area——
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Indication——
Chemical Information
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CAS Number2290635-22-0
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Formula Weight310.37
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Molecular FormulaC18H14O3S
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Purity>98% (HPLC)
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Solubility——
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SMILESO=C1C=2C(OC(/C=C/C3=CC=C(S(C)=O)C=C3)=C1)=CC=CC2
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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. Liangwei Zhang, et al. A ratiometric fluorescent probe of methionine sulfoxide reductase with an improved response rate and emission wavelength. Chem Commun (Camb). 2019 Jan 29;55(10):1502-1505.?
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