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Isoxazolidines intramolecular cycloadditions

The reaction of nitrones with allenes produced three main products an azepine, a pyrrolidinone and an isoxazolidine (Scheme 155) (79JOC4213). The intramolecular cycloaddition of nitrones (529) produced different products depending on the length of n (Scheme 156) (78H(10)257). [Pg.109]

Recently, dipolarophile 1)13 (fumaronitrile) (777) has been used in the synthesis of indolizine lactone (677). Both, intermolecular and intramolecular cycloadditions were studied. Intermolecular 1,3-cycloaddition of nitrone (671) to D13 led to the formation of isoxazolidine (672). Subsequent deprotection and esterification of the obtained alcohol (673) with (674) gave isoxazolidine (675) in 65% yield. Ester (675), when refluxed in xylene for 10 min, after elimination of fumaronitrile by cyclo-reversion, underwent spontaneously intramolecular cycloaddition to give the tricyclic cycloadduct (676) in 84% yield (Scheme 2.291). [Pg.364]

A trihydroxyindolizidine lactone is obtained by elaboration of an isoxazolidine synthesized by a domino stereoselective retrocycloaddition/intramolecular cycloaddition process of an enantiopure pyrroline-iV-oxide <2006TA292>. [Pg.400]

There have been simultaneous reports of the intramolecular cycloaddition of alkenyl nitrones bearing alkenylsulfide (202,203) or alkenylsulfone substitutents (Scheme 1.40) (203). In both cases, the isolated products were the corresponding fused bicyclic isoxazolidine adducts 178 and 179, respectively. [Pg.33]

Elsewhere, Heaney et al. (313-315) found that alkenyloximes (e.g., 285), may react in a number of ways including formation of cyclic nitrones by the 1,3-APT reaction (Scheme 1.60). The benzodiazepinone nitrones (286) formed by the intramolecular 1,3-APT will undergo an intermolecular dipolar cycloaddition reaction with an external dipolarophile to afford five,seven,six-membered tricyclic adducts (287). Alternatively, the oximes may equilibrate to the corresponding N—H nitrones (288) and undergo intramolecular cycloaddition with the alkenyl function to afford five,six,six-membered tricyclic isoxazolidine adducts (289, R = H see also Section 1.11.2). In the presence of an electron-deficient alkene such as methyl vinyl ketone, the nitrogen of oxime 285 may be alkylated via the acyclic version of the 1,3-APT reaction and thus afford the N-alkylated nitrone 290 and the corresponding adduct 291. In more recent work, they prepared the related pyrimidodiazepine N-oxides by oxime-alkene cyclization for subsequent cycloaddition reactions (316). Related nitrones have been prepared by a number of workers by the more familiar route of condensation with alkylhydroxylamines (Scheme 1.67, Section 1.11.3). [Pg.51]

Saito et al. (351a) reported the previously unprecedented formation of a 4,5-fused bicyclic isoxazolidine by an intramolecular cycloaddition reaction (Scheme 1.68). [Pg.56]

The intramolecular cycloaddition of a silyl nitronate bearing a dipolarophilic appendage provides easy access to fused, bicyclic isoxazolidines (22). This process, in general, is very facile, and has allowed the use of unfunctionalized alkenes as dipolarophiles (Table 2.39) (106,124). Thus, a silyl nitronate bearing an allyl group will undergo the [3 + 2] cycloaddition at room temperature over 15 h to provide the corresponding isoxazoline upon acidic workup in moderate yield. [Pg.123]

Tamura et al. (170-172) discovered that, when reactions of ester-substituted nitrones with allylic alcohols are performed in the presence of an equimolar amount of titanium tetraisopropoxide under heating or at room temperature, transesterification takes place to form new nitrones bearing an inner alkene dipolarophile. The resulting nitrone substrates undergo regio- and stereoselective intramolecular cycloaddition reactions to give the ring-fused isoxazolidines (Scheme 11.52). This tandem transesterification/[3 + 2]-cycloaddition method leads to the selective... [Pg.801]

Intramolecular cycloaddition of nitrone (7) led to the diastereomeric fused isoxazolidines (8a) and (8b) in an 82 18 ratio (Scheme 2).7a The authors suggested cyclization through competing conformational isomers A and B as a rationale of the cyclization outcome. Notably, absence of the franj-alkenyl methyl... [Pg.1113]


See other pages where Isoxazolidines intramolecular cycloadditions is mentioned: [Pg.290]    [Pg.295]    [Pg.297]    [Pg.560]    [Pg.564]    [Pg.564]    [Pg.13]    [Pg.14]    [Pg.28]    [Pg.32]    [Pg.37]    [Pg.48]    [Pg.55]    [Pg.59]    [Pg.105]    [Pg.106]    [Pg.320]    [Pg.1165]    [Pg.23]    [Pg.24]    [Pg.38]    [Pg.42]    [Pg.47]    [Pg.58]    [Pg.65]    [Pg.69]    [Pg.1077]   


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