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Search for "indole synthesis" in Full Text gives 36 result(s) in Beilstein Journal of Organic Chemistry.

Thiadiazino-indole, thiadiazino-carbazole and benzothiadiazino-carbazole dioxides: synthesis, physicochemical and early ADME characterization of representatives of new tri-, tetra- and pentacyclic ring systems and their intermediates

  • Gyöngyvér Pusztai,
  • László Poszávácz,
  • Anna Vincze,
  • András Marton,
  • Ahmed Qasim Abdulhussein,
  • Judit Halász,
  • András Dancsó,
  • Gyula Simig,
  • György Tibor Balogh and
  • Balázs Volk

Beilstein J. Org. Chem. 2025, 21, 2220–2233, doi:10.3762/bjoc.21.169

Graphical Abstract
  • coloring indicates the permeability categories of the compounds. Synthesis of tri- and tetracyclic thiadiazinoindole dioxides 3. Synthesis of pentacyclic compounds 10. Yields of the one- and two-step variants of Fischer indole synthesis. Summary of physicochemical and early ADME characterization (measured
  • -1,2,3-benzothiadiazine 1,1-dioxide (4b), both described in our earlier publication [8]. Treatment of compounds 4a,b with hydrazine monohydrate afforded 8-hydrazino derivatives 5a,b as suitable starting materials for the construction of the indole structural element of compounds 3 by Fischer indole
  • synthesis [18][19][20][21]. Sudhakara et al. described the advantages of using bismuth nitrate as catalyst in the synthesis of hydrazones and in the one-pot Fischer synthesis of indoles from ketones and hydrazines [22][23]. Adopting this method, hydrazone intermediates 7a–j were obtained by treatment of
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Published 21 Oct 2025

Chiral phosphoric acid-catalyzed asymmetric synthesis of helically chiral, planarly chiral and inherently chiral molecules

  • Wei Liu and
  • Xiaoyu Yang

Beilstein J. Org. Chem. 2025, 21, 1864–1889, doi:10.3762/bjoc.21.145

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  • , the application of CPA catalysis in the asymmetric synthesis of other forms of molecular chirality has received less attention. While List and co-workers reported the first CPA-catalyzed asymmetric synthesis of helically chiral azahelicenes through the Fischer indole synthesis back in 2014 [12], the
  • synthesis of helically chiral, planarly chiral and inherently chiral molecules. General structure of CPAs and selected CPAs with various chiral scaffolds. Representative elements of molecular chirality. CPA-catalyzed asymmetric synthesis of azahelicenes via Fischer indole synthesis. CPA-catalyzed asymmetric
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Published 10 Sep 2025

Convenient alternative synthesis of the Malassezia-derived virulence factor malassezione and related compounds

  • Karu Ramesh and
  • Stephen L. Bearne

Beilstein J. Org. Chem. 2025, 21, 1730–1736, doi:10.3762/bjoc.21.135

Graphical Abstract
  • ]. Unfortunately, testing of malassezione is limited by the lack of a convenient synthesis. Indeed, beyond isolating the compound from cultured M. furfur [11][20], the only reported synthetic route to malassezione is via an iron-catalyzed Fukuyama-type indole synthesis, which afforded the compound in low yield [18
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Published 28 Aug 2025

Efficacy of radical reactions of isocyanides with heteroatom radicals in organic synthesis

  • Akiya Ogawa and
  • Yuki Yamamoto

Beilstein J. Org. Chem. 2024, 20, 2114–2128, doi:10.3762/bjoc.20.182

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  • isocyanides with diphosphines. Radical reaction of tin hydride and hydrosilane toward isocyanide. Isocyanide insertion into boron compounds. Isocyanide insertion into cyclic compounds containing boron units. Photoinduced hydrodefunctionalization of isocyanides. Tin hydride-mediated indole synthesis and cross
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Perspective
Published 26 Aug 2024

Multicomponent syntheses of pyrazoles via (3 + 2)-cyclocondensation and (3 + 2)-cycloaddition key steps

  • Ignaz Betcke,
  • Alissa C. Götzinger,
  • Maryna M. Kornet and
  • Thomas J. J. Müller

Beilstein J. Org. Chem. 2024, 20, 2024–2077, doi:10.3762/bjoc.20.178

Graphical Abstract
  • compounds 38 are also interesting building blocks in pyrazole synthesis. Through the reaction of 1,5-diaryl-1,3,5-pentanetriones 38 with hydrazines, Knorr synthesis of pyrazoles and Fischer indole synthesis can be combined in a pseudo-three-component fashion to give 5-(indol-3-yl)pyrazoles 39 (Scheme 11
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Published 16 Aug 2024

Harnessing the versatility of hydrazones through electrosynthetic oxidative transformations

  • Aurélie Claraz

Beilstein J. Org. Chem. 2024, 20, 1988–2004, doi:10.3762/bjoc.20.175

Graphical Abstract
  • versatile reagents in organic synthesis. They have for instance been frequently employed for the construction of azacycles through various cyclization protocols or cycloaddition reactions [6][7][8][9][10]. Early work in this field includes the well-known Fischer indole synthesis [11]. Additionally, they
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Published 14 Aug 2024

Carbonylative synthesis and functionalization of indoles

  • Alex De Salvo,
  • Raffaella Mancuso and
  • Xiao-Feng Wu

Beilstein J. Org. Chem. 2024, 20, 973–1000, doi:10.3762/bjoc.20.87

Graphical Abstract
  • -b]indol-1-ones. Indole synthesis by deoxygenation reactions of nitro compounds reported by Cenini et al. [21]. Indole synthesis by reduction of nitro compounds: approach reported by Watanabe et al. [22]. Indole synthesis from o-nitrostyrene compounds as reported by Söderberg and co-workers [23
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Published 30 Apr 2024

Consecutive four-component synthesis of trisubstituted 3-iodoindoles by an alkynylation–cyclization–iodination–alkylation sequence

  • Nadia Ledermann,
  • Alae-Eddine Moubsit and
  • Thomas J. J. Müller

Beilstein J. Org. Chem. 2023, 19, 1379–1385, doi:10.3762/bjoc.19.99

Graphical Abstract
  • [9][10][11] and their preparation is an evergreen in organic synthesis [12][13][14][15]. Although the classical Fischer indole synthesis provides a very reliable and broadly applicable access to indole derivatives [16][17][18], striving for new indole syntheses is ongoing. In particular, metal
  • -catalyzed processes for accessing indoles have become attractive alternatives over the past decades [19][20][21][22][23][24]. Besides Larock's indole synthesis employing alkyne anellation [25] and Cacchi's cyclization of ortho-alkynylanilines [20][22] catalytic syntheses of indoles from alkynes have become
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Published 14 Sep 2023

New synthesis of a late-stage tetracyclic key intermediate of lumateperone

  • Mátyás Milen,
  • Bálint Nyulasi,
  • Tamás Nagy,
  • Gyula Simig and
  • Balázs Volk

Beilstein J. Org. Chem. 2022, 18, 653–659, doi:10.3762/bjoc.18.66

Graphical Abstract
  • a Fischer indole synthesis. The inexpensive starting material, the efficient synthetic steps, and the avoidance of the borane-based reduction step provide a reasonable potential for scalability. Keywords: drug substance; indole synthesis; key intermediate; protecting group; telescoping
  • to the hydrazine derivative 4, followed by a Fischer indole synthesis with ethyl 4-oxopiperidine-1-carboxylate (5) provided tetracyclic compound 6. Its reduction with sodium cyanoborohydride in trifluoroacetic acid (TFA) to cis-indoline derivative (±)-7, followed by N-methylation [(±)-8] and
  • transformed into N-nitroso derivative 32 by treatment with sodium nitrite in aqueous acetic acid. The next two steps, reduction of the nitroso group to hydrazine derivative 33 and its coupling with piperidinone 5 in a Fischer indole synthesis, were telescoped to form tetracyclic product 34. The latter was
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Published 10 Jun 2022

Ready access to 7,8-dihydroindolo[2,3-d][1]benzazepine-6(5H)-one scaffold and analogues via early-stage Fischer ring-closure reaction

  • Irina Kuznetcova,
  • Felix Bacher,
  • Daniel Vegh,
  • Hsiang-Yu Chuang and
  • Vladimir B. Arion

Beilstein J. Org. Chem. 2022, 18, 143–151, doi:10.3762/bjoc.18.15

Graphical Abstract
  • -phenylhydrazine in acetic acid that delivers methyl 2-(1-benzyl-3-(2-nitrophenyl)-1H-indol-2-yl)acetate in 55% yield. Keywords: anticancer; Fischer indole synthesis; Heck reaction; heterocyclic compounds; indolobenzazepines; latonduines; paullones; Introduction Indolobenzazepines are fused heterocyclic
  • as the key intermediate. The third pathway (c) was centered around a ring-closure reaction via lactam-bond formation from a precursor that contains a carboxylic ester in position 2 and an o-aniline moiety in position 3 of the indole ring by Fischer indole synthesis from methyl 4-(2-nitrophenyl)-3
  • ) was confirmed by the successful preparation of two closely related analogues, namely 3b, bearing a bromo substituent at position 11 of the backbone C (Scheme 6), and 3c, with an 8-membered azocinone ring instead of the 7-membered one. The synthesis of 3b started with a Fischer indole synthesis from
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Published 26 Jan 2022

Catalyzed and uncatalyzed procedures for the syntheses of isomeric covalent multi-indolyl hetero non-metallides: an account

  • Ranadeep Talukdar

Beilstein J. Org. Chem. 2021, 17, 2102–2122, doi:10.3762/bjoc.17.137

Graphical Abstract
  • only, thus stating the requirement of acid for this Fischer indole synthesis. Elemental sulfur has also been utilized in preparing bis(indol-3-yl)sulfides under transition-metal compound catalyzed spontaneous oxidation of the central chalcogen atom. Such reactions were carried out by Shibahara (2014
  • . Synthesis of bis(indol-3-yl)sulfides using N-silylated 3-bromoindole 93. Fischer indole synthesis of bis(indol-3-yl)sulfides using thio diketones. Oxidative synthesis of bis(indol-3-yl)sulfides using indoles and elemental sulfur. Synthesis of bis(indol-3-yl)sulfides using sulfoxides as sulfur source
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Published 19 Aug 2021

Synthesis of 1-indolyl-3,5,8-substituted γ-carbolines: one-pot solvent-free protocol and biological evaluation

  • Premansh Dudhe,
  • Mena Asha Krishnan,
  • Kratika Yadav,
  • Diptendu Roy,
  • Krishnan Venkatasubbaiah,
  • Biswarup Pathak and
  • Venkatesh Chelvam

Beilstein J. Org. Chem. 2021, 17, 1453–1463, doi:10.3762/bjoc.17.101

Graphical Abstract
  • decomposition of N-pyridylbenzotriazoles. Later, the reaction conditions were modified to make this reaction more versatile and operationally simple such as by the use of microwave irradiation [12]. Meanwhile, the Fischer indole synthesis was successfully extended for the synthesis of significant biologically
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Published 17 Jun 2021

When metal-catalyzed C–H functionalization meets visible-light photocatalysis

  • Lucas Guillemard and
  • Joanna Wencel-Delord

Beilstein J. Org. Chem. 2020, 16, 1754–1804, doi:10.3762/bjoc.16.147

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Published 21 Jul 2020

Tuneable access to indole, indolone, and cinnoline derivatives from a common 1,4-diketone Michael acceptor

  • Dalel El-Marrouki,
  • Sabrina Touchet,
  • Abderrahmen Abdelli,
  • Hédi M’Rabet,
  • Mohamed Lotfi Efrit and
  • Philippe C. Gros

Beilstein J. Org. Chem. 2020, 16, 1722–1731, doi:10.3762/bjoc.16.144

Graphical Abstract
  • antibacterial, antifungal, anticancer, or anti-inflammatory agents or even on the central nervous system [7][12][13]. Several routes have been reported to access these key compounds, the most developed being for the indole [14] derivatives using the Fischer indole synthesis involving sigmatropic rearrangements
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Published 17 Jul 2020

Palladium-catalyzed regio- and stereoselective synthesis of aryl and 3-indolyl-substituted 4-methylene-3,4-dihydroisoquinolin-1(2H)-ones

  • Valeria Nori,
  • Antonio Arcadi,
  • Armando Carlone,
  • Fabio Marinelli and
  • Marco Chiarini

Beilstein J. Org. Chem. 2020, 16, 1084–1091, doi:10.3762/bjoc.16.95

Graphical Abstract
  • propargylic 2-halobenzamides unsubstituted at the propargyl carbon, allowing the synthesis of isoquinolinones without substituents at C-3; but the present methodology overcame these limitations. Moreover, the previously developed strategy of indole synthesis through an aminopalladation/reductive elimination
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Published 20 May 2020

Design and synthesis of diazine-based panobinostat analogues for HDAC8 inhibition

  • Sivaraman Balasubramaniam,
  • Sajith Vijayan,
  • Liam V. Goldman,
  • Xavier A. May,
  • Kyra Dodson,
  • Sweta Adhikari,
  • Fatima Rivas,
  • Davita L. Watkins and
  • Shana V. Stoddard

Beilstein J. Org. Chem. 2020, 16, 628–637, doi:10.3762/bjoc.16.59

Graphical Abstract
  • acrylate aldehyde 9 in 61% yield. The next step involved the crucial reductive amination reaction between aldehyde 9 with indolamine 10, which had been obtained via Fischer indole synthesis – the reaction of phenylhydrazine with 5-chloro-2-pentanone [35]. Initial reduction attempts using sodium
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Published 07 Apr 2020

Recent developments in photoredox-catalyzed remote ortho and para C–H bond functionalizations

  • Rafia Siddiqui and
  • Rashid Ali

Beilstein J. Org. Chem. 2020, 16, 248–280, doi:10.3762/bjoc.16.26

Graphical Abstract
  • scaffolds in their structures [104][105][106][107]. By employing dual photoredox catalysis, in 2016, Fabry et al. reported the cyclization of substituted anilides with alkynes to produce indoles [108]. Unlike previously reported syntheses, viz, an indole synthesis by the Fagnou group utilizing a large
  • amount of copper as an oxidant [109][110], this reaction was carried out under mild reaction conditions in the presence of photoredox catalyst 10 and a Rh catalyst (Scheme 7). They also reported another Pd-catalyzed indole synthesis with photoredox catalyst 9, similar to the Rh-catalyzed synthesis [108
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Published 26 Feb 2020

Synthesis of aryl-substituted thieno[3,2-b]thiophene derivatives and their use for N,S-heterotetracene construction

  • Nadezhda S. Demina,
  • Nikita A. Kazin,
  • Nikolay A. Rasputin,
  • Roman A. Irgashev and
  • Gennady L. Rusinov

Beilstein J. Org. Chem. 2019, 15, 2678–2683, doi:10.3762/bjoc.15.261

Graphical Abstract
  • ketones were used to synthesize new N,S-heterotetracenes, namely 9H-thieno[2',3':4,5]thieno[3,2-b]indoles by their treatment with arylhydrazines in accordance with the Fischer indolization reaction. Keywords: Fiesselmann thiophene synthesis; Fischer indole synthesis; N,S-heteroacene; thieno[3,2-b
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Published 12 Nov 2019

CF3SO2X (X = Na, Cl) as reagents for trifluoromethylation, trifluoromethylsulfenyl-, -sulfinyl- and -sulfonylation. Part 1: Use of CF3SO2Na

  • Hélène Guyon,
  • Hélène Chachignon and
  • Dominique Cahard

Beilstein J. Org. Chem. 2017, 13, 2764–2799, doi:10.3762/bjoc.13.272

Graphical Abstract
  • stoichiometric amounts of oxidant and further transformation of the azotrifluoromethyl products allowed a Fisher indole synthesis. From a mechanistic point of view, the excited photocatalyst was oxidised by the aryldiazonium salt to produce [Ru(bpy)3]3+ (bpy: 2,2’-bipyridine) as the oxidant to generate the CF3
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Published 19 Dec 2017

Mechanochemical synthesis of small organic molecules

  • Tapas Kumar Achar,
  • Anima Bose and
  • Prasenjit Mal

Beilstein J. Org. Chem. 2017, 13, 1907–1931, doi:10.3762/bjoc.13.186

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  • particles [146]. Mechanochemical synthesis of 1,2-di-substituted benzimidazoles [149]. Mechanochemical click reaction using an alumina-supported Cu-catalyst [152]. Mechanochemical click reaction using copper vial [155]. Mechanochemical indole synthesis [157]. Mechanochemical synthesis of chromene [158
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Published 11 Sep 2017

Synthesis of benzothiophene and indole derivatives through metal-free propargyl–allene rearrangement and allyl migration

  • Jinzhong Yao,
  • Yajie Xie,
  • Lianpeng Zhang,
  • Yujin Li and
  • Hongwei Zhou

Beilstein J. Org. Chem. 2017, 13, 1866–1870, doi:10.3762/bjoc.13.181

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  • . Synthesis of 1-methylindole phosphine oxides. Reaction conditions: 3 (0.5 mmol), (EtO)2PCl (0.6 mmol), Et3N (1.5 mmol), and THF (2.0 mL) at −78 °C. Yields are isolated yield. Proposal of applicable β-sulfonium carbanion. Proposal of indole synthesis via allenylphosphonates. Optimization of the reaction
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Published 06 Sep 2017

A speedy route to sterically encumbered, benzene-fused derivatives of privileged, naturally occurring hexahydropyrrolo[1,2-b]isoquinoline

  • Olga Bakulina,
  • Alexander Ivanov,
  • Vitalii Suslonov,
  • Dmitry Dar’in and
  • Mikhail Krasavin

Beilstein J. Org. Chem. 2017, 13, 1413–1424, doi:10.3762/bjoc.13.138

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  • non-classical inputs for the Joullié–Ugi reaction and for subsequent preparation [28] of sterically encumbered, constrained peptidomimetic frameworks. Diversely substituted indolenines 9 are easy to prepare via the Fischer indole synthesis [26] and their use in the CCR can be expected to result in
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Published 18 Jul 2017

Study on the synthesis of the cyclopenta[f]indole core of raputindole A

  • Nils Marsch,
  • Mario Kock and
  • Thomas Lindel

Beilstein J. Org. Chem. 2016, 12, 334–342, doi:10.3762/bjoc.12.36

Graphical Abstract
  • PMB group, because the oxidation potential of DMB ethers is lower and the cleavage was expected to be more facile [45]. Indole synthesis from DMB-protected 13 and subsequent Boc protection afforded 16 (58%). Alkynylation and desilylation of 16 to 19 and coupling of 19 with ketone 6 proceeded smoothly
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Published 23 Feb 2016

Synthesis of constrained analogues of tryptophan

  • Elisabetta Rossi,
  • Valentina Pirovano,
  • Marco Negrato,
  • Giorgio Abbiati and
  • Monica Dell’Acqua

Beilstein J. Org. Chem. 2015, 11, 1997–2006, doi:10.3762/bjoc.11.216

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  • from the biological evaluation to the chemistry of tryptophan analogues, the above described two categories were synthesized according to the Pictet–Spengler reaction or by Fischer indole synthesis [11][12][13][14]. However, Fischer indolization suffers from the lack of regioselectivity depending on
  • intermolecular [4 + 2]-cycloaddition of 2-vinylindoles and methyl 2-acetamidoacrylate. Although the reaction requires a stoichiometric amount of EtAlCl2 as promoter, it presents several advantages with respect to classical Fischer indole synthesis, normally adopted for the preparation of these derivatives [11
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Published 27 Oct 2015

An improved procedure for the preparation of Ru(bpz)3(PF6)2 via a high-yielding synthesis of 2,2’-bipyrazine

  • Danielle M. Schultz,
  • James W. Sawicki and
  • Tehshik P. Yoon

Beilstein J. Org. Chem. 2015, 11, 61–65, doi:10.3762/bjoc.11.9

Graphical Abstract
  • couplings [13][14], and photooxygenation reactions [15][16]. Similarly, Zheng has reported oxidatively initiated indole synthesis [17] and [3 + 2] cycloaddition [18][19] reactions using photocatalyst 2. Finally, a variety of transition metal complexes bearing bipyrazyl ligands have been prepared and
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Published 14 Jan 2015
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