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Kasai, Naoya; Suzuki, Toshio published the article 《Production of chiral C3 and C4 units via microbial resolution of 2,3-dichloro-1-propanol, 3-chloro-1,2-propanediol and related halohydrins》. Keywords: microbial resolution fermentation chiral.They researched the compound: (R)-4-Hydroxydihydrofuran-2(3H)-one( cas:58081-05-3 ).Recommanded Product: 58081-05-3. Aromatic heterocyclic compounds can be divided into two categories: single heterocyclic and fused heterocyclic. In addition, there is a lot of other information about this compound (cas:58081-05-3) here.

The study and development of microbial methods for the industrial-scale production of C3 and C4 chiral synthetic units such as 2,3-dichloro-1-propanol (DCP), epichlorohydrin (EP), 3-chloro-1,2-propanediol (CPD), glycidol (GLD), 4-chloro-3-hydroxy-butyrate (CHB), 3-hydroxy-γ-butyrolactone (HL) is described. The following points are emphasized: overall strategy; screening, isolation, and cultivation of bacteria; control of fermentation reactions; and transfer from lab- to production-scale.

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In general, if the atoms that make up the ring contain heteroatoms, such rings become heterocycles, and organic compounds containing heterocycles are called heterocyclic compounds. An article called Total Synthesis of (+)-Mycotrienol and (+)-Mycotrienin I: Application of Asymmetric Crotylsilane Bond Constructions, published in 1998-05-06, which mentions a compound: 58081-05-3, Name is (R)-4-Hydroxydihydrofuran-2(3H)-one, Molecular C4H6O3, Related Products of 58081-05-3.

A highly convergent asym. synthesis of the ansamycin antibiotics (+)-mycotrienin I (I) [R = 2-(S)-cyclohexylcarbonylaminopropionyl] and (+)-mycotrienol I (R = H) has been achieved through the synthesis and coupling of the C9-C16 subunit II and the aromatic subunit III, resp. This article describes the complete details of that work as it illustrates the utility of our developing chiral (E)-crotylsilane bond construction methodol. in total synthesis. All four stereogenic centers were introduced using chiral allylsilane bond construction methodol. In the synthesis of subunit II, the C12 and C13 stereocenters were installed using an asym. crotylsilylation reaction to α-keto dibenzyl acetal MeCOCH(OCH2Ph)2. The C11 stereocenter was subsequently installed via a chelate-controlled addition of allyltrimethylsilane to establish the anti-1,3-diol system. The C14-C15 trisubstituted double bond was then installed via a reductive opening of α,β-unsaturated lactone (IV). Aromatic subunit III was chosen on the basis of its synthon equivalency to the amidobenzoquinone system of I. Subunit III was constructed in a concise six-step sequence which incorporates the C3 stereogenic center of the C1-C5 side chain. The C3 stereogenic center was established using a Weinreb amidation of 2,5-dimethoxy-3-phenylsulfonylmethylaniline with (+)-3R-methoxybutanolide, whose absolute stereochem. was derived using the crotylsilane methodol. The union of subunit II with aromatic subunit III was accomplished using a sulfone-based coupling strategy. Coupling product (V) was transformed through a sequence of steps to triene. Divergence from this advanced intermediate allows access to both natural products. The successful completion of the synthesis included the incorporation of the (E,E,E)-triene unit with simultaneous macrocyclization through a palladium (0)-catalyzed (Stille-type) coupling macrocyclization.

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Heterocyclic compounds can be divided into two categories: alicyclic heterocycles and aromatic heterocycles. Compounds whose heterocycles in the molecular skeleton cannot reflect aromaticity are called alicyclic heterocyclic compounds. Compound: 58081-05-3, is researched, Molecular C4H6O3, about Structural and stereoisomeric specificity of serum-borne sugar acids related to feeding control by rats, the main research direction is sugar acid appetite hypothalamus structure.Synthetic Route of C4H6O3.

Specificity of chem. structures and stereoisomers among serum-borne short-chain organic acids in rats were assessed for their effects on feeding behavior and humoral factors by infusion into the rat 3rd cerebroventricle. Infusion of glyceric acid (1.0 μmol), 3,4-dihydroxybutanoic acid γ-lactone (3,4-DB), or 3,4,5-trihydroxypentanoic acid γ-lactone (2.50 μmol) immediately before the dark phase decreased food intake for, at most, 24 h. These acids did not affect drinking or ambulation. Initial feeding, not necessarily accompanied by periprandial drinking, was induced after infusion of 2,4-dihydroxy-butanoic acid γ-lactone, 2,4,5-trihydroxypentanoic acid γ-lactone (2,4,5-TP), or exogenous 2,4,5,6-tetrahydroxyhexanoic acid γ-lactone (2.50 μmol) in the light phase. Of these acids, 3,4-DB most potently suppressed and 2,4,5-TP most potently enhanced feeding. Of these, the 2S,4S-isomer and the 3S-isomer were the most potent of 2,4,5-TP and 3,4-DB, resp. Only the 2S,4S-isomer of 2,4,5-TP induced hypoglycemia with hyperinsulinemia, whereas opposite effects were produced by the 3S-isomer of 3,4-DB. The positions of the hydroxyl groups on 4-butanolide and the S- and S,S-stereoisomers are important in modulating food intake through the hypothalamus.

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Computed Properties of C4H6O3. So far, in addition to halogen atoms, other non-metallic atoms can become part of the aromatic heterocycle, and the target ring system is still aromatic. Compound: (R)-4-Hydroxydihydrofuran-2(3H)-one, is researched, Molecular C4H6O3, CAS is 58081-05-3, about (R)-Ethyl 4-tert-butoxy-3-hydroxybutanoate, a versatile chiral building block for EPC (enantiomerically pure compound) syntheses, by yeast reduction of ethyl 4-tert-butoxy-3-oxobutanoate.

Treatment of ROCH2COCH2CO2R1 (I; R = Me3C, R1 = Et) with baker’s yeast and sucrose in H2O at 28° for 4 days gave 72% (R)-ROCH2CH(OH)CH2CO2R1 (II; R = Me3C, R1 = Et) in 97% enantiomeric excess. Similar treatment of I (R = Me3C, R1 = Me; R = PhCH2, R1 = Et) gave 70 and 58% II in 82 and 56% enantiomeric excess resp.

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Synthetic Route of C4H6O3. The fused heterocycle is formed by combining a benzene ring with a single heterocycle, or two or more single heterocycles. Compound: (R)-4-Hydroxydihydrofuran-2(3H)-one, is researched, Molecular C4H6O3, CAS is 58081-05-3, about A modular approach to marine macrolide construction. 2. Concise stereocontrolled synthesis of the C17-C28 (CD) spiroacetal component. Author is Paquette, Leo A.; Braun, Alain.

The CD spiroacetal ring system (I) of altohyrtin A, which houses one-fifth of the stereogenic centers resident in the macrolide, has been synthesized through a combination of aldol condensations having different stereocontrol elements.

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Quality Control of (R)-4-Hydroxydihydrofuran-2(3H)-one. Aromatic compounds can be divided into two categories: single heterocycles and fused heterocycles. Compound: (R)-4-Hydroxydihydrofuran-2(3H)-one, is researched, Molecular C4H6O3, CAS is 58081-05-3, about Synthesis of a new cerebroside isolated from Typhonium giganteum Engl. Author is Chen, Xue-Song; Wu, Yu-Lin; Chen, Di-Hua.

The stereoselective synthesis of typhoniside, a new cerebroside isolated from Typhonium giganteum Engl. was accomplished. Cerebrosides are a kind of glycolipids highly enriched on the surface of myelin-producing cells and are composed by C18-4, 8-sphingadienine, α-hydroxy acid and a saccharide head. In this paper, C18-4, 8-sphingadienine was synthesized from D-xylose via a SN2 type reaction. α-Hydroxy acid was prepared from (R)-4-hydroxyte-trahydrofuran-2-one, which in turn could be obtained from L-ascorbic acid.

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Most of the compounds have physiologically active properties, and their biological properties are often attributed to the heteroatoms contained in their molecules, and most of these heteroatoms also appear in cyclic structures. A Journal, Tetrahedron Letters called Magnesium ethoxide mediated lactone aminolysis with aminoheterocycles, Author is Mercado-Marin, Eduardo V.; Chheda, Pratik Rajesh; Faulkner, Andrea; Carrera, Diane, which mentions a compound: 58081-05-3, SMILESS is O=C1OC[C@H](O)C1, Molecular C4H6O3, COA of Formula: C4H6O3.

A mild method for the aminolysis of lactones with aminoheterocycles in the presence of magnesium ethoxide was described. A wide range of electronically diverse aminoheterocycles and substituted lactones successfully participated in this transformation to furnish the resulting amido-alc. products. Further application of this method to the synthesis of chiral α-amino amides derivatives was also described.

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Ishibashi, Fumito; Hayashita, Mami; Okazaki, Momotoshi; Shuto, Yoshihiro published an article about the compound: (R)-4-Hydroxydihydrofuran-2(3H)-one( cas:58081-05-3,SMILESS:O=C1OC[C@H](O)C1 ).COA of Formula: C4H6O3. Aromatic heterocyclic compounds can be classified according to the number of heteroatoms or the size of the ring. The authors also want to convey more information about this compound (cas:58081-05-3) through the article.

Short enantiomeric syntheses of the 1-hydroxy/acetoxy-3,7-dioxabicyclo[3.3.0]octane lignans, (+)-paulownin (I, R1 = R2 = R3 = H), and (+)-phrymarin I (I, R1 = R2 = OMe, R3 = Ac) and II (I, R1 = OMe, R2 = H, R3 = Ac), were accomplished by starting from the chiral synthon, (R)-(+)-3-hydroxybutanolide, and employing photocyclization as the key step.

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The chemical properties of alicyclic heterocycles are similar to those of the corresponding chain compounds. Compound: (R)-4-Hydroxydihydrofuran-2(3H)-one, is researched, Molecular C4H6O3, CAS is 58081-05-3, about Honaucins A-C, Potent Inhibitors of Inflammation and Bacterial Quorum Sensing: Synthetic Derivatives and Structure-Activity Relationships, the main research direction is honaucin structure activity relationship inflammation.SDS of cas: 58081-05-3.

Honaucins A-C were isolated from the cyanobacterium Leptolyngbya crossbyana which was found overgrowing corals on the Hawaiian coast. Honaucin A consists of (S)-3-hydroxy-γ-butyrolactone and 4-chlorocrotonic acid, which are connected via an ester linkage. Honaucin A and its two natural analogs exhibit potent inhibition of both bioluminescence, a quorum-sensing-dependent phenotype, in Vibrio harveyi BB120 and lipopolysaccharide-stimulated nitric oxide production in the murine macrophage cell line RAW264.7. The decrease in nitric oxide production was accompanied by a decrease in the transcripts of several proinflammatory cytokines, most dramatically interleukin-1β. Synthesis of honaucin A, as well as a number of analogs, and subsequent evaluation in anti-inflammation and quorum-sensing inhibition bioassays revealed the essential structural features for activity in this chem. class and provided analogs with greater potency in both assays.

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Formula: C4H6O3. The fused heterocycle is formed by combining a benzene ring with a single heterocycle, or two or more single heterocycles. Compound: (R)-4-Hydroxydihydrofuran-2(3H)-one, is researched, Molecular C4H6O3, CAS is 58081-05-3, about Single-step conversion of chiral carnitine and derivatives into (S)- and (R)-β-substituted γ-butyrolactones. Author is Calvisi, Giuseppina; Catini, Roberto; Chiariotti, Wilma; Giannessi, Fabio; Muck, Sandra; Tinti, Maria Ornella; De Angelis, Francesco.

An efficient 1-step conversion of chiral carnitine and its derivatives into stereoisomerically pure (S)- and (R)-β-substituted γ-butyrolactones by cyclocondensation is described. (S)- or (R)-carnitine and (R)-aminocarnitine give β-hydroxy-γ-butyrolactone and β-amino-γ-butyrolactone in 82 and 77% yield, resp., with retention. (R)-(acetylamino)carnitine gives (R)-β-acetylamino-γ-butyrolactone in 90% yield, while (R)-acetylcarnitine gives 2(5H)-furanone under the same reaction conditions in 77% yield via cyclization and subsequent elimination. (R)-N-benzyloxycarnitinamide gives a mixture of pyrrolidinone (11% yield) and furanoyl imidate (50% yield) derivatives

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