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Pentacycles

Total syntheses of tazettine and 6a-epi-pretazettine have been carried out by application of the Pd-catalyzed cydization of 169, in which a single pentacyclic product 170 was obtained, establishing a preference for an eclipsed orientation of the Pd—C (7-bond and alkene 7r-bond in the key intramolecular insertion step[l40]. [Pg.153]

Dibenz[yellow-green colour (due to other pentacyclic impurities) has been removed by crystn from benzene or by selective oxidation with lead tetraacetate in acetic acid [Moriconi et al. J Am Chem Soc 82 3441 7960]. [Pg.191]

The pentacyclic plant alkaloid camptothecin has been a popular synthetic target because of its antitumor activity. Retrosynthetic disconnection to tricyclic intermediate A and chiral lactone B followed from multistrategic planning. [Pg.143]

A variety of l,2,3,4-tetrahydro-j8-carbolines have been prepared from 3-piperidone phenylhydrazone derivatives. Used initially to obtain pentacyclic derivatives (35) related to the yohimbe alkaloids, this route was later extended to the synthesis of tetracyclic compounds (36). l-Methyl-5,6,7,8-tetrahydro-j8-carboline (37) was prepared in low yield by heating cyclohexanone 2-methyl-3-pyridylhydrazone with zinc chloride, a synthesis probably based on the similar preparation of the tetracyclic compound 38 starting from the corresponding quinolylhydrazine. Abramovitch and Adams extended this approach to the cyclization of cyclohexanone 3-pyri-dylhydrazone (39) itself. The main product was 6,7,8,9-tetrahydro-8-carboline (40), a smaller amount of the j8-isomer (41) also being obtained. This provides a convenient and readily reproducible route to the otherwise difficultly accessible 8-carboline ring system. The favored attack at carbon-2 over carbon-4 of the pyridine nucleus... [Pg.92]

R" = CH20H). The use of sodium borohydride in place of lithium aluminum hydride did not lead to ring closure but to 3-[j8-(A-l,2,3,4-tetrahydroisoquinolyl)ethyl]indole derivatives (53). Reductive cyclization by means of lithium aluminum hydride of the j8-(3-indolyl)ethyl-l-isoquinoline (52) to the pentacyclic tetrahydro-j8-carboline 49 (R = R = R" = H) has been reported. Strong acid alone sufficed to convert 52 into 54, the 0x0 derivative of 49. ... [Pg.95]

The first direct approach to a pentacyclic system, based on the condensation product 101 of tryptamine with a homophthalic acid or anhydride, was introduced by Clemo and Swan and extended to reduced and substituted homophthalates. Esterification of... [Pg.109]

Similar oxidative reactions have been studied more thoroughly in the pentacyclic series of tetrahydro-j8-carbolines, and general methods are available. [Pg.115]

Polycyclic derivatives have been prepared by straightforward amide formation. The tetracyclic amide 166 was obtained by reductive cyclization of 3-o-nitrophenylindole-2-carboxylic acid (165).22 When l-(2 -ethoxycarbonylskatyl)isoquinoline (167) was heated the pentacyclic j8-carboline derivative 168 was formed. If,... [Pg.121]

Acylation of j8-carboline under Schotten-Baumann conditions yields the ind-N-, cy derivative. An intramolecular acylation of the cis-isomer of 278 to yield 279 has been carried out (see Section V). On the other hand, intramolecular acylation at the pyr-N of a j8-carboline, in the instance of the spontaneous cyclization of 281 to the pentacyclic compound 282, has been reported. [Pg.151]

A number of pentacyclic quaternary j8-carbolinium derivatives undergo reactions in which the hetero ring is cleaved. Thus semper-virine (286) is converted in poor yield into the indole derivative 287 on catalytic hydrogenolysis with Raney nickel. Alstonine and serpentine yield the analogous product on treatment with selenium. [Pg.152]

Mannich reaction, and this method has recently been extended and repeatedly applied (see Section IV, B, 2). It involves treating a 1-m-hydroxybenzyl-1,2,3,4-tetrahydro-jS-carboline derivative (389) with formaldehyde at pH 4.4. When the aqueous solution of the hydrochloride of the hydroxymethyl derivative so formed is made basic with sodium carbonate, the pentacyclic base (390) precipitates. [Pg.177]

In a modified approach, the carbolinyl acetate 393 underwent a Mannich reaction with formaldehyde and acetone to give the keto ester 396 which, with base, cyclized to the diketone 397. This diketone (397) has recently been used to prepare a number of interesting pentacyclic compounds. [Pg.179]

Intramolecular amide formation has also been used recently to obtain new pentacyclic ring systems, e.g. 408a. [Pg.181]

The intramolecular cyclization of enolate of l-tryptophyl-3-((3-ketobutyl) pyridinium bromide (160) afforded enamine 161, which undergoes stereoselective acid cyclization with cone. HCl to give the pentacyclic ketone 162 (Catalytic hydrogenation of 162 led to (d,l)-pseudoyohimbone (163) (76JA3645). Again, H3-H15 were found to have the tmns configuration in 162. [Pg.301]

The iminium salt 165, derived from acid treatment of 1,4-dihydropyridine 164, on intramolecular cyclization on the indole nucleus gave pentacyclic compound 166 (83T3673). The tmns stereochemistry of H3 and H9 in 166 (biogenetic... [Pg.301]

Pictet-Spengler syntheses of tryptamines containing hydroxy group at N atom of the side chain, and their transformation to tri-, tetra-, and pentacyclic systems related to eudistomins 98H(49)499. [Pg.227]

Total synthesis of fumitremorgins and verruculogens, tremorgenic my cotoxins— pentacyclic systems with (3-carboline fragments 97H(46)673. [Pg.240]

In a more general approach toward pentacyclic heteroaromatics from tricyclic ketones, treatment of the N-methylated derivative of 112 with p-tolylhydrazine, followed by Fischer indolization of the resulting phenylhydrazone in a mixture of trifluoroacetic acid and acetic acid, produced only a low yield of 114, although this method proved to be considerably mrae efficient for synthesis of analogous systems containing other heteroatoms than nitrogen (98SC1239). [Pg.24]

Similarly, iV,A/ -dimethyl-3,3 -bisindolylmethane (169) has been used in a related experiment, where treatment thereof with trifluoroacetic fflihydride (TFAA) in diethyl ether at room temperature yielded a mixture of products from which the trifluoromethyl-substituted indolo[3,2-b]carbazole 170 was isolated as the major pentacyclic component, accompanied by the hydroxy derivative 171 as well as small amounts of the indolo[2,3-h]carbazole 146 (Scheme 20). The precursor 169 could also be prepared in situ from A-methylindol-3-methanol under... [Pg.35]

As shown in Scheme 26, Papaverine hydrochloride yields a separable mixture of Protopapaverine (67) and the salt norpapaverinium chloride (68) when heated slightly beyond its melting point for several minutes. Molecule 67 can exist as conjugated mesomeric betaine 67A (7-hydroxy form) or as 2-substituted-2//-isoquinolin-6-one 67B (6-hydroxy form) (66TL1177). Similar structures were described as zwitterionic pentacyclic... [Pg.138]

A 14 1 mixture of ( )- and (Z)-phenylhydrazones 249 and 250 was obtained from 2-[A-(cyclohex-2-en-l-yl)]-3-formyl-4/7-pyrido[l, 2-n]pyrimi-din-4-one 248 with PhNHNH2. Pentacyclic compound 251 was obtained from both ( )- and (Z)-phenylhydrazones 249 and 250 by heating in boiling EtOH (96T901). [Pg.225]

Irradiating 7-substituted 2,4-diphenyl-6,7-dihydropyrido[2, l-n]phthalazi-nium perchlorates 62 in EtOH by 365 nm afforded pentacyclic derivatives 63 (94MI1). [Pg.237]

Scheme 1). Introduction of a jt bond into the molecular structure of 1 furnishes homoallylic amine 2 and satisfies the structural prerequisite for an aza-Prins transform.4 Thus, disconnection of the bond between C-2 and C-3 affords intermediate 3 as a viable precursor. In the forward sense, a cation ji-type cyclization, or aza-Prins reaction, could achieve the formation of the C2-C3 bond and complete the assembly of the complex pentacyclic skeleton of the target molecule (1). Reduction of the residual n bond in 2, hydro-genolysis of the benzyl ether, and adjustment of the oxidation state at the side-chain terminus would then complete the synthesis of 1. [Pg.466]


See other pages where Pentacycles is mentioned: [Pg.33]    [Pg.441]    [Pg.284]    [Pg.88]    [Pg.1104]    [Pg.517]    [Pg.292]    [Pg.160]    [Pg.177]    [Pg.31]    [Pg.152]    [Pg.153]    [Pg.154]    [Pg.223]    [Pg.248]    [Pg.34]    [Pg.461]    [Pg.465]   
See also in sourсe #XX -- [ Pg.550 ]




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7,9-Disubstituted pentacyclic

Alkanes pentacyclic—

C2-symmetric chiral pentacyclic

Cationic pentacycles

Condensed thiophene systems, tetra- and pentacyclic

Herbert Recent Advances in the Total Synthesis of Pentacyclic Aspidosperma Alkaloids

Indole alkaloids pentacyclic

Klemm, L, H., Syntheses of Tetracyclic and Pentacyclic Condensed Thiophene

Klemm, L. H., Syntheses of Tetracyclic and Pentacyclic Condensed Thiophene Systems

Methylation reactions, pentacyclic

Of tetracyclic and pentacyclic condensed

Of tetracyclic and pentacyclic condensed thiophene systems

Other Pentacyclic Triterpenes

Pentacyclic C35 bacteriohopane skeleton

Pentacyclic Triterpenes, Hopane Type

Pentacyclic alkaloids

Pentacyclic and Higher Systems

Pentacyclic carbocycles

Pentacyclic compounds

Pentacyclic condensed thiophenes, synthesis

Pentacyclic diazo

Pentacyclic hydrocarbons, structure

Pentacyclic indole

Pentacyclic ketone

Pentacyclic oxindole alkaloids

Pentacyclic skeleton

Pentacyclic system

Pentacyclic triterpenes

Pentacyclic triterpenes betulin

Pentacyclic triterpenes betulinic acid

Pentacyclic triterpenes boswellic acid

Pentacyclic triterpenes hydroxylation

Pentacyclic triterpenes lupeol

Pentacyclic triterpenes metabolites

Pentacyclic triterpenes oleanolic acid

Pentacyclic triterpenes ursolic acid

Pentacyclic triterpenoid esters

Pentacyclic triterpenoids

Pentacyclic triterpenoids hopane

Pentacyclic triterpenoids lupane

Pentacyclization

Quinolines pentacyclic

Subject pentacyclic

Synthesis of tetracyclic and pentacyclic condensed

Synthesis, of tetracyclic and pentacyclic

Synthesis, of tetracyclic and pentacyclic condensed thiophene systems

Terpanes pentacyclic

Tetracyclic and Pentacyclic Triterpenes

Tosylimines, pentacyclic

Triterpanes, pentacyclic

Triterpene glycosides, pentacyclic

Triterpenes pentacyclic, squalene-derived

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