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Search for "assembly" in Full Text gives 647 result(s) in Beilstein Journal of Organic Chemistry. Showing first 200.

Rhodopyran, a carboxylated hexahydrocyclopenta[b]pyran from Rhodococcus

  • Enjuro Harunari,
  • Sara Fushimi and
  • Yasuhiro Igarashi

Beilstein J. Org. Chem. 2026, 22, 1107–1113, doi:10.3762/bjoc.22.89

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  • order of ring closure, and the carbon assembly pattern remain unknown. Genome sequencing, biosynthetic gene cluster analysis, isotope-labeling experiments, and time-course metabolite profiling will be required to clarify the origin of 1. Conclusion In summary, rhodopyran (1) is a structurally
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Published 28 Jul 2026

Controlled supramolecular assemblies of luminescent tridentate cyclometalated alkynylgold(III) amphiphiles in aqueous media

  • Kelvin Sze-Yim Cai,
  • Brian Boyan Liu and
  • Franco King-Chi Leung

Beilstein J. Org. Chem. 2026, 22, 1097–1106, doi:10.3762/bjoc.22.88

Graphical Abstract
  • tridentate cyclometalated gold(III) amphiphile (GA) with flexible molecular structure modifications. Counterion exchange with sodium tosylate induces notable luminescent enhancement and enables control over supramolecular assembly processes. This approach drives a supramolecular assembly transformation of GA
  • from disordered nanosheets to well-ordered nanoribbons upon the additions of multiple equivalents of counterion, enabling a tunable pathway for controlled supramolecular transformation. Keywords: amphiphiles; gold(III) complex; luminescence; self-assembly; supramolecular chemistry; Introduction
  • in 2016, who introduced polyethylene glycol (PEG)-functionalized gold(III) complexes to improve the biocompatibility and aqueous solubility [50]. Later, Che and co-workers developed charged cyclometalated gold(III) complexes, achieving kinetically controlled self-assembly in mixed solvents of
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Published 23 Jul 2026

Amino acid-based surfactants: sustainable synthesis and antimicrobial mechanisms

  • Rafaela Gomes Bezerra,
  • Lourdes Pérez and
  • Francisco Fábio Oliveira de Sousa

Beilstein J. Org. Chem. 2026, 22, 1067–1085, doi:10.3762/bjoc.22.85

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  • antimicrobial efficacy of these surfactants is highly dependent on structural features, including hydrophobic tail length (C12–C16 chains show optimal activity) [18][19]; cationic charge localization (e.g., arginine’s guanide group vs lysine’s primary amine) [21][22] and self-assembly properties (e.g., CMC
  • values of 4–128 μg/mL against S. aureus and E. coli. These physicochemical characteristics favor membrane interaction, self-assembly, and the formation of stable supramolecular systems, supporting their potential for pharmaceutical and biomedical applications [23][54]. Among double-chain arginine
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Published 16 Jul 2026
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  • diazo compounds to 2-arylimidazolines. This general approach allowed the simple and efficient assembly of five novel types of tetraheterocyclic systems derived from 2,3-dihydroimidazo[2,1-a]isoquinolines fused with an additional five-, six-, or seven-membered cycle from readily available starting
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Published 30 Jun 2026

The role of spacer length and flexibility in peptide self-assembly

  • Julian Link,
  • Albin Lahu,
  • Manfred Wagner,
  • Tanja Weil and
  • David Y. W. Ng

Beilstein J. Org. Chem. 2026, 22, 986–996, doi:10.3762/bjoc.22.77

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  • Julian Link Albin Lahu Manfred Wagner Tanja Weil David Y. W. Ng Max Planck Institute for Polymer Research, Ackermannweg 10, D-55128 Mainz, Germany 10.3762/bjoc.22.77 Abstract Spacer length is a key molecular parameter governing the self-assembly of short peptides. Here, we investigate isoleucine
  • flexibility and directional non-covalent interactions, thereby dictating assembly pathways and material properties. The results establish a correlation between spacer length and assembly propensity, with the longest spacer (C6) consistently promoting aggregation more effectively than the intermediate analogue
  • (C3), whereas peptides containing the rigid C0-spacer fail to develop ordered nanostructures. These findings identify spacer length as a powerful design parameter for tuning peptide self-assembly across multiple length scales. Keywords: nanostructures; peptide amphiphiles; peptide nanofibers; self
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Published 25 Jun 2026

Total synthesis of the capsular polysaccharide repeating unit towards the development of a glycoconjugate vaccine against Klebsiella pneumoniae ST512

  • Shuo Zhang,
  • Ondřej Daněk and
  • Peter H. Seeberger

Beilstein J. Org. Chem. 2026, 22, 821–827, doi:10.3762/bjoc.22.64

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  • assembly and subsequent functionalization of long oligosaccharide chains are hampered by their intrinsically low reactivity [29]. Overcoming these challenges relying on a linear strategy employing four key building blocks 1–4, we describe the first chemical synthesis of the hexasaccharide repeating unit
  • ). Finally, protection of the hydroxy groups with benzyl ethers furnished building block 3 in 83% yield. With the building blocks in hand, the assembly of the hexasaccharide was pursued as outlined in Scheme 2. The synthesis commenced with the coupling of monosaccharides 1 and 2 promoted by NIS/TfOH followed
  • -throughput screening, a series of analogues including di-, tri-, tetra-, and pentasaccharides were synthesized (Scheme 3). We utilized the intermediate products from the assembly of the hexasaccharide repeating unit 20. The protecting groups of disaccharide 13 were removed by treatment with sodium methoxide
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Published 29 May 2026

Synthesis and structural elucidation of a novel bis-spirooxindole from isatin and ethylenediamine

  • Irene Moreno-Gutiérrez,
  • Josefa L. López-Martínez,
  • Sonia Berenguel-Gómez,
  • Irene Torres-García,
  • Duane Choquesillo-Lazarte,
  • Manuel Muñoz-Dorado,
  • Miriam Álvarez-Corral and
  • Ignacio Rodríguez-García

Beilstein J. Org. Chem. 2026, 22, 813–820, doi:10.3762/bjoc.22.63

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  • , these results show that the reaction of isatin with ethylenediamine can be directed toward different structural outcomes depending on stoichiometry. Simple control of stoichiometry governs whether the system evolves through a conventional diimine pathway or diverges toward the assembly of a highly
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Published 27 May 2026

Synthesis and biological evaluation of new brassinosteroid analogs with C-22 benzoate function

  • María Núñez,
  • Camila Escobar,
  • Mario Párraga,
  • Mauricio Soto,
  • Luis Espinoza-Catalán,
  • Katy Díaz and
  • Andrés F. Olea

Beilstein J. Org. Chem. 2026, 22, 753–762, doi:10.3762/bjoc.22.57

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  • structurally and functionally comprehensive model system resolved by X-ray crystallography. Unlike BRL1 and BRL3, for which only monomeric ectodomain structures are available, the 4M7E structure enables modeling of the full receptor–co-receptor assembly required for the “molecular glue” mechanism involving
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Published 18 May 2026

Synthesis of heterocycles based on azomethine ylides from α-amino acids (or amines) and carbonyl compounds

  • Ekaterina V. Berezhnaya,
  • Alexander I. Ponyaev,
  • Vitali M. Boitsov and
  • Alexander V. Stepakov

Beilstein J. Org. Chem. 2026, 22, 705–741, doi:10.3762/bjoc.22.55

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  • hypothesized that when ligand L8 is utilized, throughout the entire catalytic cycle both the nitrogen and phosphorus atoms of the ligand maintain their coordination to copper. The final product 16 is formed as a consequence of electron redistribution within the metal-ligand assembly, coupled with steric
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Published 13 May 2026

Harnessing light energy with molecules

  • Grace G. D. Han,
  • Mogens Brøndsted Nielsen and
  • Hermann A. Wegner

Beilstein J. Org. Chem. 2026, 22, 680–682, doi:10.3762/bjoc.22.52

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  • larger systems or smart materials [9]. Photoswitches are, for example, relevant functional units for information storage or molecular electronic devices. They can serve to control ion transport, molecular assembly/disassembly, or the relative movement of units within molecular machines. In a Review
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Published 04 May 2026

Advantages of PROTACs in achieving selective degradation of homologous protein families

  • Luxi Yang,
  • Xinfei Mao,
  • Jingyi Zhang,
  • Jing Shu,
  • Wenhai Huang,
  • Xiaowu Dong,
  • Yinqiao Chen and
  • Mingfei Wu

Beilstein J. Org. Chem. 2026, 22, 628–661, doi:10.3762/bjoc.22.49

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  • optimization often prioritizes the linker fragment, as its length and composition are critical determinants of target selectivity [39]. Recent evidence underscores the pivotal role of the linker in promoting the assembly of "positive cooperative" ternary complexes [40], wherein the linker participates in
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Published 27 Apr 2026

Towards the targeted protein degradation of CK2: design and synthesis of CAM4066-based PROTACs

  • Sophie Day-Riley,
  • Sona Krajcovicova,
  • Aryaman Raj Sokhal,
  • Jan L. Venne,
  • Paul Brear,
  • Marko Hyvönen,
  • Benjamin C. Whitehurst,
  • Jason S. Carroll and
  • David R. Spring

Beilstein J. Org. Chem. 2026, 22, 611–619, doi:10.3762/bjoc.22.47

Graphical Abstract
  • problems [6]. The ATP-site binder and αD-site binder fragments were prepared using literature procedures from the original development of 1. The modified linking portion containing the new secondary amine was incorporated into the general assembly 2 to afford a CAM4066-derived scaffold suitable for PROTAC
  • synthesis see Supporting Information File 1, section 1.3). In parallel, PEG-based linkers bearing terminal alkyne handles were synthesised for modular CuAAC-based PROTAC assembly. The αD binder 16 had been synthesised via a two-step reaction. First, the phenolic group of 15 was converted into the
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Published 22 Apr 2026

Molecular tweezer–peptide conjugates disrupt the protein–protein interaction between survivin and histone H3 essential in mitosis

  • Catherine Gsell,
  • Philipp Rebmann,
  • Karina Opara,
  • Christine Beuck,
  • Peter Bayer,
  • David Bier,
  • Ingrid R. Vetter and
  • Thomas Schrader

Beilstein J. Org. Chem. 2026, 22, 557–567, doi:10.3762/bjoc.22.41

Graphical Abstract
  • ; protein–protein interaction; mitosis; X-ray crystallography; Introduction The fundamental process of mitosis is controlled by a very large protein complex called the kinetochore, formed by self-assembly from hundreds of single protein components [1]. For the intricate regulation of the various phases of
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Published 27 Mar 2026

Modern synthetic pathways towards eribulin and its subunits

  • Sebastian Dominik Graf

Beilstein J. Org. Chem. 2026, 22, 495–526, doi:10.3762/bjoc.22.37

Graphical Abstract
  • approaches is rigorously ongoing. Recent procedures mainly focus on more efficient and scalable techniques for the assembly of the 4 key fragments of eribulin. But also new pathways for the total synthesis have emerged in the last decade. In this review the latest advancements towards the construction of
  • modern approaches towards the key fragments and total synthetic strategies for 1 in recent years. Review In 2016, Konda and co-workers reported two approaches for the assembly of the tetrasubstituted tetrahydrofuran unit of 1 (Scheme 2 and Scheme 3) [72]. For the first path, (S,S)-tartaric acid (13) was
  • and addition of vinylmagnesium bromide, 21 was received and dihydroxylated towards 22 in 5:1 dr. The second path towards 27 commenced with the assembly of 23 from 14 via Bn-protection, following oxidation and Horner–Wadsworth–Emmons (HWE) reaction (Scheme 3). Stereospecific vinylation with a Gilman
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Published 19 Mar 2026

Recent advances in the stereoselective synthesis of distal biaxially chiral molecules

  • Fanxing Zhou,
  • Chen Zhang,
  • Lingyu Sun,
  • Yiyun Fang,
  • Siming Zheng,
  • Lina Hu,
  • Mengyang Shen,
  • Zhen Zhao,
  • Wei Xu,
  • Yunqiang Sun and
  • Zi-Qiang Rong

Beilstein J. Org. Chem. 2026, 22, 461–479, doi:10.3762/bjoc.22.34

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  • assembly of complex distal biaxial architectures that are difficult to access via direct or stepwise axis formation alone. In 2019, Bertuzzi and co-workers achieved the first enantioselective synthesis of an axially chiral indole–quinoline system (Scheme 25) [64]. They employed a central-to-axial oxidative
  • biaryl compounds. Highly enantioselective C–H arylation of heteroarenes. Synthesis of novel axially chiral N-arylcarbazole skeletons by the assembly of azidonaphthalenes and carbazoles through chiral phosphoric acid catalysis. Catalytic enantioselective synthesis of axially chiral polycyclic aromatic
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Published 16 Mar 2026

Concept-driven strategies in target-oriented synthesis

  • David Yu-Kai Chen,
  • Chao Li and
  • Yefeng Tang

Beilstein J. Org. Chem. 2026, 22, 451–454, doi:10.3762/bjoc.22.32

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  • complex organic architectures have witnessed remarkable achievements in recent years, continuously redefining the boundaries of creativity, efficiency, and practicality. On the other hand, it has been suggested that the field of complex molecular assembly is transitioning (or ought to transition) from an
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Published 13 Mar 2026

Synthesis and anti-cancer activity of naphthalimide–organylselanyl conjugates

  • Rajkumar Ravi and
  • Selvakumar Karuthapandi

Beilstein J. Org. Chem. 2026, 22, 416–435, doi:10.3762/bjoc.22.29

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  • geometry around the selenium atom. The structure reveals the four distinct intermolecular interactions that facilitate the self-assembly in the crystal packing. The first is a chalcogen bonding interaction (Se···Se) [53], as shown in Figure 2b, in which one aryl selenide molecule linearly connects to
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Published 09 Mar 2026

A mild and atom-efficient four-component cascade strategy for the construction of biologically relevant 4-hydroxyquinolin-2(1H)-one derivatives

  • Dmitrii A. Grishin,
  • Kseniia I. Sharkovskaia,
  • Ilya G. Kolmakov,
  • Daria A. Ipatova,
  • Rostislav A. Petrov,
  • Nikolai D. Dagaev,
  • Dmitry A. Skvortsov,
  • Maria G. Khrenova,
  • Valeriy V. Andreychev,
  • Sergei A. Evteev,
  • Yan A. Ivanenkov,
  • Roman L. Antipin,
  • Olga А. Dontsova and
  • Elena K. Beloglazkina

Beilstein J. Org. Chem. 2026, 22, 244–256, doi:10.3762/bjoc.22.18

Graphical Abstract
  • , enabling the one-pot combination of three or more reactants to form multiple bonds in a single step [4][5][6][7][8]. This approach not only facilitates the rapid assembly of structurally complex and functionally diverse molecules, but also aligns with the principles of green and sustainable chemistry
  • synthetic accessibility of structurally diversified 4-hydroxyquinolinone derivatives remains a key limitation for systematic biological exploration. Despite the broad utility of MCRs in medicinal chemistry, no general and operationally simple method has been reported for the modular assembly of 4
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Published 09 Feb 2026

Screwing the helical chirality through terminal peri-functionalization

  • Devesh Chandra,
  • Sachin and
  • Upendra Sharma

Beilstein J. Org. Chem. 2026, 22, 205–212, doi:10.3762/bjoc.22.14

Graphical Abstract
  • components in organic field effect transistors (OFETs), molecular wires, and chiral conductive materials [19][20][21]. Furthermore, helicenes are widely explored in chiroptical sensing, molecular recognition, and supramolecular self-assembly, enabling the construction of next generation responsive materials
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Published 28 Jan 2026

Recent advancements in the synthesis of Veratrum alkaloids

  • Morwenna Mögel,
  • David Berger and
  • Philipp Heretsch

Beilstein J. Org. Chem. 2025, 21, 2657–2693, doi:10.3762/bjoc.21.206

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  • dense stereochemistry and, thus, have stood long as benchmarks in chemical synthesis. Recently, these steroid alkaloids gained popularity as challenging targets in total synthesis, with a clear shift toward convergent strategies. Not only do these syntheses feature rapid assembly of their challenging
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Published 10 Dec 2025

Efficient solid-phase synthesis and structural characterization of segetalins A–H, J and K

  • Liangyu Liu,
  • Wanqiu Lu,
  • Quanping Guo and
  • Zhaoqing Xu

Beilstein J. Org. Chem. 2025, 21, 2612–2617, doi:10.3762/bjoc.21.202

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  • (Scheme 1). Building upon previous work [17][18][19], we focused on optimizing key parameters: resin selection, Fmoc deprotection conditions, coupling reagents for linear assembly, and crucially, the cyclization step. Cost-effectiveness and commercial availability led us to select 2-chlorotrityl chloride
  • resin as the solid support, enabling mild cleavage of the partially protected linear peptide precursor [21]. Efficient Fmoc deprotection was achieved using a solution of 1% pyridine and 1% 1,8-diazabicyclo[5.4.0]undec-7-ene (DBU) in N,N-dimethylformamide (DMF) [22]. For the assembly of the linear
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Published 27 Nov 2025

Recent advances in total synthesis of illisimonin A

  • Juan Huang and
  • Ming Yang

Beilstein J. Org. Chem. 2025, 21, 2571–2583, doi:10.3762/bjoc.21.199

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  • configuration. Kalesse and co-workers accomplished the first asymmetric total synthesis of (−)-illisimonin A based on strategies involving spiro substructure assembly and rearrangement. Consideration of the biosynthetic pathway of illisimonin A inspired Yang and co-workers to develop a bioinspired synthetic
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Published 20 Nov 2025

Total syntheses of highly oxidative Ryania diterpenoids facilitated by innovations in synthetic strategies

  • Zhi-Qi Cao,
  • Jin-Bao Qiao and
  • Yu-Ming Zhao

Beilstein J. Org. Chem. 2025, 21, 2553–2570, doi:10.3762/bjoc.21.198

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  • function as an engine, consistently pushing the boundaries of the discipline. From the early synthesis of simple molecules to the current precise assembly of complex natural products and functional materials, the iteration of methods and optimization of strategies have always been key to breaking through
  • and structurally established [16][17][18]. Structurally, ryanodine (1) and related diterpenoid natural products feature a 6-5-5-5-6 pentacyclic core skeleton containing 11 stereocenters, eight of which are quaternary carbons. A key structural feature is the assembly of a polycyclic cage-like framework
  • approach is akin to “taking an elevator”, prioritizing the rapid assembly of the molecular core skeleton before undertaking precise late-stage functionalization. This strategy has proven highly successful for synthesizing complex terpenoids, as exemplified by the Baran group’s 2013 total synthesis of
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Published 19 Nov 2025

Synthesis and characterization of a isothiouronium-calix[4]arene derivative: self-assembly and anticancer activity

  • Giuseppe Granata,
  • Loredana Ferreri,
  • Claudia Giovanna Leotta,
  • Giovanni Mario Pitari and
  • Grazia Maria Letizia Consoli

Beilstein J. Org. Chem. 2025, 21, 2535–2541, doi:10.3762/bjoc.21.195

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  • potential to load drug molecules in the bioactive nanoassembled structure. Keywords: anticancer agent; calixarene; nanostructure; self-assembly; Introduction Cancer remains one of the leading causes of morbidity and mortality worldwide. Despite significant advancements in chemotherapy, more effective and
  • anticancer activity. The synthesis and structural characterization of compound 3 were carried out, and its self-assembly behavior in aqueous medium was investigated using dynamic light scattering (DLS) and electrophoretic light scattering (ELS). The anticancer potential of compound 3 was assessed in human
  • functionalization of the calix[4]arene skeleton blocked in cone conformation, as evidenced by the AX system (3.13 and 4.26 ppm) for the bridged CH2 protons. Spontaneous self-assembly Due to the amphiphilic nature, compound 3 could spontaneously self-assemble in aqueous medium. This was confirmed by dynamic light
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Published 14 Nov 2025

Assembly strategy for thieno[3,2-b]thiophenes via a disulfide intermediate derived from 3-nitrothiophene-2,5-dicarboxylate

  • Roman A. Irgashev

Beilstein J. Org. Chem. 2025, 21, 2489–2497, doi:10.3762/bjoc.21.191

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Published 11 Nov 2025
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