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{(3aR,4R,5R,6aS)-5-(Tetrahydro-pyran-2-yloxy)-4-[(E)-(S)-3-(tetrahydro-pyran-2-yloxy)-oct-1-enyl]-1,3a,4,5,6,6a-hexahydro-pentalen-2-yl}-acetic acid (1S,2R)-2-(1-methyl-1-phenyl-ethyl)-cyclohexyl ester is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

208389-28-0

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  • {(3aR,4R,5R,6aS)-5-(Tetrahydro-pyran-2-yloxy)-4-[(E)-(S)-3-(tetrahydro-pyran-2-yloxy)-oct-1-enyl]-1,3a,4,5,6,6a-hexahydro-pentalen-2-yl}-acetic acid (1S,2R)-2-(1-methyl-1-phenyl-ethyl)-cyclohexyl ester

    Cas No: 208389-28-0

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  • Zhejiang Haizhou Pharmaceutical Co., Ltd.
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  • {(3aR,4R,5R,6aS)-5-(Tetrahydro-pyran-2-yloxy)-4-[(E)-(S)-3-(tetrahydro-pyran-2-yloxy)-oct-1-enyl]-1,3a,4,5,6,6a-hexahydro-pentalen-2-yl}-acetic acid (1S,2R)-2-(1-methyl-1-phenyl-ethyl)-cyclohexyl ester

    Cas No: 208389-28-0

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  • No requirement

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  • Shanghai Norky Pharmaceutical Co., LTD.
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208389-28-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 208389-28-0 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 2,0,8,3,8 and 9 respectively; the second part has 2 digits, 2 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 208389-28:
(8*2)+(7*0)+(6*8)+(5*3)+(4*8)+(3*9)+(2*2)+(1*8)=150
150 % 10 = 0
So 208389-28-0 is a valid CAS Registry Number.

208389-28-0Upstream product

208389-28-0Downstream Products

208389-28-0Relevant articles and documents

Asymmetric Synthesis of 3-Oxacarbacyclin and 3-Oxaisocarbacyclin by a Common Enantioselective Deprotonation Based Route

Vaulont, Irene,Gais, Hans-Joachim,Reuter, Norbert,Schmilz, Elmar,Ossenkamp, Rainer K. L.

, p. 805 - 826 (2007/10/03)

Asymmetric total syntheses of 3-oxacarbacyclin (4) and 3-oxaisocarbacyclin (5) have been achieved by a new and common route. The key step of these syntheses is an enantioselective deprotonation of the prochiral ketone 25 with lithium (R,R)-bis(phenylethyl)amide (12) in the presence of LiCl. Treatment of the thus formed enolate 26 with ClSiEt3 gave the enol ether 27 of 92% ee in 94% yield. Deprotonation of the analogous prochiral ketone 9 with 12 in the presence of LiCl followed by reaction of the enolate 13 with ClSiEt3 led to isolation of the silyl enol ether 8b of 92% ee in 95% yield. A study of the deprotonation of 9 with the chiral lithium amides 14-19 showed that 12 in combination with LiCl is the optimal base in terms of enantioselectivity and accessibility. The ω-side chain in 4 and 5 was established by a Mukaiyama reaction of 27 with the unsaturatcd aldehyde 28, leading to ketone 39 of 90% de, in combination with a stereoselective Pd-catalyzed allylic rearrangement of acetate 47 to the isomeric acetate 48 and a Mitsunobu reaction of the allylic alcohol 49. The key step in the construction of the α-side chain in 4 is a Horner-Wadsworth-Emmons reaction of ketone 7c with the 8-phenylnormenthol-containing phosphonoacetate 56 which gave ester 60 of 90% de. Ester 60 was obtained diastereomerically pure by chromatography in 72% yield from 7c. Reduction of 60 furnished the allylic alcohol 62 which was converted to 4 in a standard fashion. It is at the stage of the α,ss-unsaturated ester 60 where divergence into synthesis of 5 was made. Selective isomerization of 60 to the ss,γ-unsaturated ester 66 of 97% ie in 91% yield was accomplished by deprotonation of 60 with 12 to enolate 65 and its subsequent regioselective protonation. By a similar reaction sequence the isomeric α,ss-unsaturated ester 61 was converted to the ss,γ-unsaturated ester 69 of 97% ie in 88% yield. Reduction of 66 afforded the homoallylic alcohol 71 which was converted to 5 in a standard fashion.

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