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Search for "formal synthesis" in Full Text gives 41 result(s) in Beilstein Journal of Organic Chemistry.

Metal-catalyzed coupling/carbonylative cyclizations for accessing dibenzodiazepinones: an expedient route to clozapine and other drugs

  • Amina Moutayakine and
  • Anthony J. Burke

Beilstein J. Org. Chem. 2024, 20, 193–204, doi:10.3762/bjoc.20.19

Graphical Abstract
  • dibenzodiazepinones in good yields (up to 45%; 2 steps) and much milder conditions using copper as the catalyst. The synthetic utility of this novel strategy was showcased by demonstrating a formal synthesis for the antipsychotic drug clozapine and to an anticancer triazole–DBDAP hybrid. Keywords: Buchwald–Hartwig
  • good yield (this represented a formal synthesis to clozapine [26], if the procedure of Rao [27] is used, which entails heating 4e with 1-methylpiperidine and Ti(IV)Cl4, Scheme 4). Also compound 4a can be transformed to Hügel's 1,2,3-triazole-DBDAP using the methodology described in their report (Scheme
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Published 31 Jan 2024

Synthesis of ether lipids: natural compounds and analogues

  • Marco Antônio G. B. Gomes,
  • Alicia Bauduin,
  • Chloé Le Roux,
  • Romain Fouinneteau,
  • Wilfried Berthe,
  • Mathieu Berchel,
  • Hélène Couthon and
  • Paul-Alain Jaffrès

Beilstein J. Org. Chem. 2023, 19, 1299–1369, doi:10.3762/bjoc.19.96

Graphical Abstract
  • [61]. A first hemi-synthesis was reported by Demopoulos et al. [56] and by Blank et al. [62] and two formal syntheses were reported by Benveniste et al. [63][64]. The second formal synthesis starts from the glycerol ether lipid 2.1 that reacted with trityl chloride to yield 2.2. Then, the benzylation
  • work includes, in addition to the oxidation of such type of polyunsaturated EL incorporated in liposomes [99], the formal synthesis of some oxidized derivatives. As an illustration, lyso-PAF 15.1 (extracted from egg albumin) was acylated using Steglich conditions with ω-unsaturated carboxylic acid to
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Published 08 Sep 2023

Photoredox catalysis enabling decarboxylative radical cyclization of γ,γ-dimethylallyltryptophan (DMAT) derivatives: formal synthesis of 6,7-secoagroclavine

  • Alessio Regni,
  • Francesca Bartoccini and
  • Giovanni Piersanti

Beilstein J. Org. Chem. 2023, 19, 918–927, doi:10.3762/bjoc.19.70

Graphical Abstract
  • functionalized 3,4-fused tricyclic indoles with medium-sized rings (seven and eight), which have been largely neglected in previous studies, can be synthesized by this new protocol. Notably, the reaction has been successfully applied in the formal synthesis of (±)-6,7-secoagroclavine, a key intermediate for a
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Published 26 Jun 2023

Combretastatins D series and analogues: from isolation, synthetic challenges and biological activities

  • Jorge de Lima Neto and
  • Paulo Henrique Menezes

Beilstein J. Org. Chem. 2023, 19, 399–427, doi:10.3762/bjoc.19.31

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  • /formal synthesis of these compounds will be summarized and, finally, the biological activity and potential for therapeutic applications will be addressed. Thus, this review demonstrates not only the challenge in isolating these compounds, but also the synthetic complexity of preparing them in sufficient
  • equiv) in PhMe led to the corresponding macrolide 28 in 20% yield. Since the demethylation step of 28 was known [27], the authors described a formal synthesis of combretastatin D-2 (2, Scheme 6). Despite the low yield, the authors managed to bypass the dimerization reaction previously reported by Boger
  • , and the formal synthesis of 2 was achieved after 8 steps with an overall yield of 4.5%. Rychnovsky and Hwang hypothesized that the low yields from the Mitsunobu reaction in the previous synthesis of compound 2 were linked to the instability of the allylic oxyphosphonium ion formed with intermediates
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Published 29 Mar 2023

Combining the best of both worlds: radical-based divergent total synthesis

  • Kyriaki Gennaiou,
  • Antonios Kelesidis,
  • Maria Kourgiantaki and
  • Alexandros L. Zografos

Beilstein J. Org. Chem. 2023, 19, 1–26, doi:10.3762/bjoc.19.1

Graphical Abstract
  • cyclization of aldehyde 135, obtained also from 131, provided the pentacyclic core of (−)-strempeliopine (136) as a single diastereoisomer in 65% yield. Then, Barton’s radical deoxygenation resulted in the total synthesis of 136. Further, FGI of both diastereoisomers of 130 allowed the formal synthesis of
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Published 02 Jan 2023

Total synthesis of grayanane natural products

  • Nicolas Fay,
  • Rémi Blieck,
  • Cyrille Kouklovsky and
  • Aurélien de la Torre

Beilstein J. Org. Chem. 2022, 18, 1707–1719, doi:10.3762/bjoc.18.181

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  • fit with the requisites of modern organic synthesis, as it requires over 40 steps to synthesize grayanotoxin II and was performed in racemic form (in the case of the formal synthesis), it represents an impressive piece of synthetic work. Achieving the synthesis of such a complex structure represented
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Published 12 Dec 2022

Vicinal ketoesters – key intermediates in the total synthesis of natural products

  • Marc Paul Beller and
  • Ulrich Koert

Beilstein J. Org. Chem. 2022, 18, 1236–1248, doi:10.3762/bjoc.18.129

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  • alcohol 56, which was dehydroxylated to the diastereomeric cations VIII and IX. Friedel–Crafts reaction gave diastereomeric lactones 57 and 58. The major diastereomer 58 could be converted to the complex polyphenol (−)-hopeanol (59) in seven further steps. (+)-Camptothecin In the formal synthesis of the
  • α-ketoester in the synthesis of jatrophane diterpenoids [22]. Grignard addition to an α-ketoester and subsequent Friedel–Crafts cyclization in the synthesis of (−)-hopeanol (59) [24]. Diastereoselective addition to an auxiliary modified α-ketoester in the formal synthesis of (+)-campthotecin (65
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Published 15 Sep 2022

Advances in mercury(II)-salt-mediated cyclization reactions of unsaturated bonds

  • Sumana Mandal,
  • Raju D. Chaudhari and
  • Goutam Biswas

Beilstein J. Org. Chem. 2021, 17, 2348–2376, doi:10.3762/bjoc.17.153

Graphical Abstract
  • )-salt-mediated cyclized ring formation in the syntheses of (±)-fastigilin C and (−)-fastigilin C. Formal synthesis of (±)-thallusin. Total synthesis of hippuristanol and its analog. Total synthesis of solanoeclepin A. a) Synthesis of Hg(OTf)2-catalyzed azaspiro structure for the formation of natural
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Published 09 Sep 2021

Progress in the total synthesis of inthomycins

  • Bidyut Kumar Senapati

Beilstein J. Org. Chem. 2021, 17, 58–82, doi:10.3762/bjoc.17.7

Graphical Abstract
  • ,E,E)-triene (rac)-11 in 50% yield [59]. Since triene (rac)-11 has been previously transformed into inthomycin C, this study demonstrated the formal synthesis of racemic inthomycin C ((rac)-3) [21][22][43][50]. An interesting application of the O-directed free radical hydrostannation reaction was
  • followed by immediate TBS ether formation produced (+)-110a in 82% yield over 2 steps. Wittig olefination of (+)-110a with phosphonate 111 furnished the desired (E)-(+)-112a, which was then converted into Hatakeyama’s enynol (−)-82b using a four-step sequence to complete the formal synthesis of inthomycin
  • formal synthesis of inthomycin C ((−)-3). In 2018, Donohoe et al. demonstrated a tin-free, short and efficient total synthesis of inthomycin C ((−)-3) by comprising the three key steps of C−C bond-forming reactions: i) a vinylogous Mukaiyama aldol reaction, ii) an olefin cross-metathesis reaction, and
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Published 07 Jan 2021

All-carbon [3 + 2] cycloaddition in natural product synthesis

  • Zhuo Wang and
  • Junyang Liu

Beilstein J. Org. Chem. 2020, 16, 3015–3031, doi:10.3762/bjoc.16.251

Graphical Abstract
  • -workers applied the enantioselective [3 + 2] annulation to complete the formal synthesis of (−)-ditryptophenaline (12) [46] (Scheme 7C). The synthesis began with the catalytic asymmetric [3 + 2] annulation of symmetric isoindigo 104 and allene 101 with chiral phosphine catalyst 102 to give spirocyclic
  • cycle. (C) Application of phosphine-catalyzed asymmetric [3 + 2] annulation to prepare the chiral adduct 105 with symmetric isoindigo 104 in the formal synthesis of (−)-ditryptophenaline (12). (A) Rhodium-catalyzed intracmolecular [3 + 2] cycloaddition [49]. (B) The proposed catalytic cycle of the
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Published 09 Dec 2020

A review of the total syntheses of triptolide

  • Xiang Zhang,
  • Zaozao Xiao and
  • Hongtao Xu

Beilstein J. Org. Chem. 2019, 15, 1984–1995, doi:10.3762/bjoc.15.194

Graphical Abstract
  • the reported procedure finalized the synthesis of triptolide. Overall, the first asymmetric total synthesis of (−)-triptonide (19 steps, 0.06% yield) and formal synthesis of triptolide were realized from ʟ-dehydroabietic acid (26). Although the overall yield of the synthesis is very low, the authors
  • -elimination and acid hydrolysis to give the key triptophenolide methyl ether (8) in racemic form (16.5%). In 2008, Sherburn and co-workers developed an approach to the formal synthesis of triptolide (Figure 2, route G, Scheme 5) [71]. Key features of the synthesis include two intermolecular Diels–Alder
  • oxidation of the tertiary radical and reduction of the [Au-Au]3+ ion could give the cyclization product and regenerate the dimeric gold photocatalyst. Later, the utility of this photoredox methodology was demonstrated in a concise formal synthesis of triptolide (1) via the reaction of bromobutenolide 19
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Published 22 Aug 2019

N-(1-Phenylethyl)aziridine-2-carboxylate esters in the synthesis of biologically relevant compounds

  • Iwona E. Głowacka,
  • Aleksandra Trocha,
  • Andrzej E. Wróblewski and
  • Dorota G. Piotrowska

Beilstein J. Org. Chem. 2019, 15, 1722–1757, doi:10.3762/bjoc.15.168

Graphical Abstract
  • ring opening at the less substituted carbon and effective deoxygenation performed at the C2 substituent [39]. This strategy was applied in the formal synthesis of (R,R)-formoterol (14) and (R)-tamsulosin (15) (Scheme 5) which have been used as therapeutic drugs for many years [40][41]. They are
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Published 23 Jul 2019

Metal-free formal synthesis of phenoxazine

  • Gabriella Kervefors,
  • Antonia Becker,
  • Chandan Dey and
  • Berit Olofsson

Beilstein J. Org. Chem. 2018, 14, 1491–1497, doi:10.3762/bjoc.14.126

Graphical Abstract
  • Gabriella Kervefors Antonia Becker Chandan Dey Berit Olofsson Department of Organic Chemistry, Arrhenius Laboratory, Stockholm University, SE-106-91 Stockholm, Sweden 10.3762/bjoc.14.126 Abstract A transition metal-free formal synthesis of phenoxazine is presented. The key step of the sequence is
  • cyclization step. Attempts to perform the cyclization with t-BuOK and DMEDA only resulted in byproduct formation. The deprotection of 2 is reported to proceed in high yield [18], and the synthesis of 2 hence constitutes a metal-free formal synthesis of phenoxazine (1). The complete route is depicted in Scheme
  • expect the methodology to be applicable also for phenoxazine derivatives. Conclusion A transition metal-free formal synthesis of phenoxazine is presented, relying on the O-arylation of phenol 4 with unsymmetrical diaryliodonium salt 5a to provide substituted diaryl ether 3 as the key step. This species
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Published 20 Jun 2018

Synthesis of chiral 3-substituted 3-amino-2-oxindoles through enantioselective catalytic nucleophilic additions to isatin imines

  • Hélène Pellissier

Beilstein J. Org. Chem. 2018, 14, 1349–1369, doi:10.3762/bjoc.14.114

Graphical Abstract
  • -donating and electron-withdrawing groups. The lowest yield (51%) was obtained in the reaction of a fluorinated isatin imine (R1 = Me, R2 = 7-F). The utility of this methodology was demonstrated by its application in the formal synthesis of the anticancer agent AG-041R. Furthermore, several of the formed
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Published 06 Jun 2018

Useful access to enantiomerically pure protected inositols from carbohydrates: the aldohexos-5-uloses route

  • Felicia D’Andrea,
  • Giorgio Catelani,
  • Lorenzo Guazzelli and
  • Venerando Pistarà

Beilstein J. Org. Chem. 2016, 12, 2343–2350, doi:10.3762/bjoc.12.227

Graphical Abstract
  • stereocentres, represents a general access to inositol derivatives. In particular, in a complete stereoselective fashion, inositols of six different configurations characterised by the 2,3,6-cis arrangement of three substituents were obtained from aldohexos-5-uloses. Furthermore, the formal synthesis of L-chiro
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Published 08 Nov 2016

The direct oxidative diene cyclization and related reactions in natural product synthesis

  • Juliane Adrian,
  • Leona J. Gross and
  • Christian B. W. Stark

Beilstein J. Org. Chem. 2016, 12, 2104–2123, doi:10.3762/bjoc.12.200

Graphical Abstract
  • for divalent cations. It is commonly used to both modify intracellular Ca2+ concentrations and to investigate Ca2+ transport across biological membranes [58]. In 2011, Kocienski and co-workers reported on a formal synthesis of ionomycin using an auxiliary-directed, diastereoselective permanganate
  • 17 could successfully be converted into alcohol 18, an intermediate in the previously reported total synthesis of ionomycin (19) by Kocienski and co-workers [60] and also in the preceding syntheses developed by the group of Evans [61] and the Hanessian group [62], thus completing a formal synthesis
  • successfully applied to the total syntheses of two more mono-THF acetogenins, cis-uvariamicin I and cis-reticulatacin, by the Brown group [85]. A formal synthesis of cis-solamin A (29) was published in 2005 by the Donohoe group, employing their Os(VI)-catalyzed oxidative cyclization of 5,6-dihydroxyalkenes as
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Published 30 Sep 2016

The synthesis of functionalized bridged polycycles via C–H bond insertion

  • Jiun-Le Shih,
  • Po-An Chen and
  • Jeremy A. May

Beilstein J. Org. Chem. 2016, 12, 985–999, doi:10.3762/bjoc.12.97

Graphical Abstract
  • limitations. Bridged rings from N–H bond insertions. The synthesis of deoxystemodin. A model system for ingenol. Formal synthesis of platensimycin. The formal synthesis of gerryine. Copper-catalyzed bridged-ring synthesis. Factors influencing insertion selectivity. Bridged-lactam formation. The total
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Published 17 May 2016

Catalytic asymmetric formal synthesis of beraprost

  • Yusuke Kobayashi,
  • Ryuta Kuramoto and
  • Yoshiji Takemoto

Beilstein J. Org. Chem. 2015, 11, 2654–2660, doi:10.3762/bjoc.11.285

Graphical Abstract
  • (1). Retrosynthetic analysis of beraprost (1). Preparation of Michael precursors 7 and 8. First attempt at the synthesis of 2 from 6. Achievement of a formal synthesis of 2. Optimization of asymmetric intramolecular oxa-Michael reaction. Supporting Information Supporting Information File 476
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Published 18 Dec 2015

Recent applications of ring-rearrangement metathesis in organic synthesis

  • Sambasivarao Kotha,
  • Milind Meshram,
  • Priti Khedkar,
  • Shaibal Banerjee and
  • Deepak Deodhar

Beilstein J. Org. Chem. 2015, 11, 1833–1864, doi:10.3762/bjoc.11.199

Graphical Abstract
  • system intact, this protocol opened an efficient strategy for the formal synthesis of porantheridine and a total synthesis of andrachcinidine (Scheme 63). They also reported the formal synthesis of (±)-porantheridine (301) and total synthesis of (±)-8-epihalosaline (300) via a sequential NDA reaction and
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Published 07 Oct 2015

Diastereoselective and enantioselective conjugate addition reactions utilizing α,β-unsaturated amides and lactams

  • Katherine M. Byrd

Beilstein J. Org. Chem. 2015, 11, 530–562, doi:10.3762/bjoc.11.60

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Published 23 Apr 2015

Formal total syntheses of classic natural product target molecules via palladium-catalyzed enantioselective alkylation

  • Yiyang Liu,
  • Marc Liniger,
  • Ryan M. McFadden,
  • Jenny L. Roizen,
  • Jacquie Malette,
  • Corey M. Reeves,
  • Douglas C. Behenna,
  • Masaki Seto,
  • Jimin Kim,
  • Justin T. Mohr,
  • Scott C. Virgil and
  • Brian M. Stoltz

Beilstein J. Org. Chem. 2014, 10, 2501–2512, doi:10.3762/bjoc.10.261

Graphical Abstract
  • [43], completing the formal synthesis of (−)-quinic acid (21). Additionally, one could in principle also access the less commercially abundant antipode (+)-quinic acid (21) using the catalyst (R)-t-Bu-PHOX. C) Dysidiolide Dysidiolide (29, Scheme 6) was isolated from the marine sponge Dysidea etheria
  • synthesis. This formal synthesis shows the power of the enantioselective allylic alkylation to access formerly racemic constructs as single enantiomers; Danishefsky’s synthesis is now rendered enantioselective. D) Aspidospermine The aspidosperma alkaloids have garnered much attention as beautiful targets
  • the natural product. Contrasting Meyers’ approach, which employed a chiral auxiliary as part of 39, we thought a catalytic enantioselective alkylation strategy would be ideal for a formal total synthesis of natural (−)-aspidospermine (36) via the antipode of 38. The formal synthesis began with 1,3
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Published 28 Oct 2014

Chiral phosphines in nucleophilic organocatalysis

  • Yumei Xiao,
  • Zhanhu Sun,
  • Hongchao Guo and
  • Ohyun Kwon

Beilstein J. Org. Chem. 2014, 10, 2089–2121, doi:10.3762/bjoc.10.218

Graphical Abstract
  • (Scheme 34). Chiral 2-alkyl-substituted 3-pyrrolines are highly valuable building blocks that can be further transformed into various biologically useful molecules. For example, with this reaction as a key step, a concise formal synthesis of (+)-trachelanthamidine was accomplished, highlighting the
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Published 04 Sep 2014

Relay cross metathesis reactions of vinylphosphonates

  • Raj K. Malla,
  • Jeremy N. Ridenour and
  • Christopher D. Spilling

Beilstein J. Org. Chem. 2014, 10, 1933–1941, doi:10.3762/bjoc.10.201

Graphical Abstract
  • combing organic fragments in natural product synthesis, the value of vinylphosphonates as synthetic intermediates would increase if their reactivity could be enhanced to a level where they would participate in cross metathesis reactions. As an example, we recently described a method for the formal
  • synthesis of centrolobine (8) [9], an antileishmananial compound isolated from the heartwood of various Centrolobium species [12][13][14][15][16] (Scheme 2). The cis-THP substituted vinylphosphonate 5, formed by a stereospecific palladium-catalyzed cyclization of phosphono allylic carbonate 4, was cleaved
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Published 19 Aug 2014

Structure elucidation of female-specific volatiles released by the parasitoid wasp Trichogramma turkestanica (Hymenoptera: Trichogrammatidae)

  • Armin Tröger,
  • Teris A. van Beek,
  • Martinus E. Huigens,
  • Isabel M. M. S. Silva,
  • Maarten A. Posthumus and
  • Wittko Francke

Beilstein J. Org. Chem. 2014, 10, 767–773, doi:10.3762/bjoc.10.72

Graphical Abstract
  • approach includes a formal synthesis of optically active A and B. Until now, we did not find suitable conditions to separate the enantiomers of the tetramethyldiene 22 and the respective allyl alcohol 23 (or corresponding derivatives thereof) in order to assign the absolute configuration of the natural
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Published 02 Apr 2014

Recent applications of the divinylcyclopropane–cycloheptadiene rearrangement in organic synthesis

  • Sebastian Krüger and
  • Tanja Gaich

Beilstein J. Org. Chem. 2014, 10, 163–193, doi:10.3762/bjoc.10.14

Graphical Abstract
  • (51) could be accessed after 10 or 7 steps respectively. Piers and co-workers were the first to examine the DVCPR as a key step in the formal synthesis of (±)-quadrone (55, see Scheme 9) [49], and the total syntheses of sinularene (59) [50], prezizanol (63) and prezizaene (64) [51]. The synthesis of
  • ). Davies and co-worker [91][92] investigated the formal synthesis of the sequiterpene-hydroquinone derivative frondosin B (99, see Scheme 12) [93] via an enantioselective cyclopropanation of trans-piperylene and subsequent divinylcyclopropane rearrangement, to further demonstrate the versatility of their
  • over several steps (77% over three steps and 98% over two steps, respectively). Overman’s total synthesis of scopadulcic acid B. Davies’ total syntheses of tremulenolide A and tremulenediol A. Davies formal [4 + 3] cycloaddition approach towards the formal synthesis of frondosin B. Davies and Sarpongs
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Published 16 Jan 2014
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