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Search for "“click” reaction" in Full Text gives 132 result(s) in Beilstein Journal of Organic Chemistry.

Superstructures with cyclodextrins: chemistry and applications III

  • Gerhard Wenz and
  • Eric Monflier

Beilstein J. Org. Chem. 2016, 12, 937–938, doi:10.3762/bjoc.12.91

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  • has been achieved in the synthesis of CD polyrotaxanes. The one-pot and one-step polyrotaxane synthesis of β-CDs was performed in aqueous solution by employing a click reaction [7] as well as by radical copolymerization [8]. Slide-ring gels, synthesized by the group of K. Ito through the crosslinking
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Editorial
Published 10 May 2016

Enabling technologies and green processes in cyclodextrin chemistry

  • Giancarlo Cravotto,
  • Marina Caporaso,
  • Laszlo Jicsinszky and
  • Katia Martina

Beilstein J. Org. Chem. 2016, 12, 278–294, doi:10.3762/bjoc.12.30

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  • -assisted click cluster synthesis. An example of the MW-promoted ‘cooperative’ click reaction of azido-CDs has recently been reported and offers useful synthetic insights into a specific labelling strategy [54]. The aforementioned reaction afforded a new series of antimicrobial γ-CD derivatives that
  • strongly disrupt bacterial membranes, and a series of persubstituted γ-CD derivatives bearing polyamino groups (77% yield) [55]. MW-promoted Cu-catalyzed click reaction for the preparation of second generation CD derivatives and hybrid structures The MW-promoted CuAAC between CD monoazides and acetylenic
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Published 15 Feb 2016

Recent advances in metathesis-derived polymers containing transition metals in the side chain

  • Ileana Dragutan,
  • Valerian Dragutan,
  • Bogdan C. Simionescu,
  • Albert Demonceau and
  • Helmut Fischer

Beilstein J. Org. Chem. 2015, 11, 2747–2762, doi:10.3762/bjoc.11.296

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  • triazolyl unit was first attached to the η4-cyclopentadiene CpCo(I) complex by click reaction of the corresponding alkyne precursor and then the triazolyl-Co scaffold was incorporated into the norbornene monomer 9 by conventional esterification. It is important to note that the cyclopentadienyl-cobalt-1,3
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Published 28 Dec 2015

Selectively fluorinated cyclohexane building blocks: Derivatives of carbonylated all-cis-3-phenyl-1,2,4,5-tetrafluorocyclohexane

  • Mohammed Salah Ayoup,
  • David B. Cordes,
  • Alexandra M. Z. Slawin and
  • David O'Hagan

Beilstein J. Org. Chem. 2015, 11, 2671–2676, doi:10.3762/bjoc.11.287

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  • illustrated in Scheme 4 [17]. Reduction of benzyl azide 21 to generate amine 27 as its hydrochloride salt was achieved by a Staudinger reduction in good yield [18]. Azide 21 was also amenable to a ‘clickreaction, in this case with the acetylenic protected amino acid 24 [19]. This gave the 1,2,3-triazol
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Published 21 Dec 2015

Exploring architectures displaying multimeric presentations of a trihydroxypiperidine iminosugar

  • Camilla Matassini,
  • Stefania Mirabella,
  • Andrea Goti,
  • Inmaculada Robina,
  • Antonio J. Moreno-Vargas and
  • Francesca Cardona

Beilstein J. Org. Chem. 2015, 11, 2631–2640, doi:10.3762/bjoc.11.282

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  • ). The low yield observed for the click reaction of the deprotected azido derivative 10 can be ascribed to the tricky purification of 11 that was recovered from silica gel only by eluting with 33% NH4OH due to its high basicity (see Experimental section). For this reason we decided to change the strategy
  • by performing the click reaction on the protected azido derivative 4, analogously to what reported with the tetravalent scaffold 5. Reaction of 4 (9 equiv) with the nonavalent alkyne scaffold 6 gave compound 12 in excellent 92% yield (Scheme 5). After treatment in acidic methanol at room temperature
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Published 16 Dec 2015

Synthesis of bi- and bis-1,2,3-triazoles by copper-catalyzed Huisgen cycloaddition: A family of valuable products by click chemistry

  • Zhan-Jiang Zheng,
  • Ding Wang,
  • Zheng Xu and
  • Li-Wen Xu

Beilstein J. Org. Chem. 2015, 11, 2557–2576, doi:10.3762/bjoc.11.276

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  • with different or same azides that require the deprotection of the second reactive site to liberate another alkyne moiety. In 2007, Monkowius et al. reported that the 4,4'-bitriazoles 3 could be synthesized by the two-fold click reaction between 1,3-butadiyne and substituted organic azides [17], and
  • (OAc)2·H2O (0.2 equiv). After the in situ deprotection with TBAF, followed by the CuI-catalyzed click reaction with another azide in THF in the presence of 1.2 equiv of 1,1,4,7,7-pentamethyldiethylenetriamine, the unsymmetrically 4,4'-bitriazoles 6 are obtained in good yield (52–86%, Scheme 3). Simpson
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Published 11 Dec 2015

Copper catalysis in organic synthesis

  • Sherry R. Chemler

Beilstein J. Org. Chem. 2015, 11, 2252–2253, doi:10.3762/bjoc.11.244

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  • . Some of the most highly cited papers of all time on this topic are reviews on conjugate addition, cross-coupling, and [3 + 2] “Clickreaction applied to bioconjugation. The growth in copper-catalyzed organic reactions may be driven by a couple of factors. First, copper chemistry is incredibly diverse
  • synthesis, amide bond formation and photochemical Click reaction development. I am grateful to the contributors and the reviewers who participated in the production of this Thematic Series. It is clear from the impact copper catalysis has had on organic synthesis that copper should be considered a first
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Published 19 Nov 2015

Easy access to heterobimetallic complexes for medical imaging applications via microwave-enhanced cycloaddition

  • Nicolas Desbois,
  • Sandrine Pacquelet,
  • Adrien Dubois,
  • Clément Michelin and
  • Claude P. Gros

Beilstein J. Org. Chem. 2015, 11, 2202–2208, doi:10.3762/bjoc.11.239

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  • and alkyne derivatives to further interconnect by microwave-assisted click reaction. Azidocorroles/porphyrins Azidocorrole 1 [9] was obtained by the condensation of the corresponding meso-mesityl-substituted dipyrromethane with 4-azidobenzaldehyde in the presence of a catalytic amount of
  • radiolabeled imaging agents with increasing frequency [7][32]. A methodology for the click reaction of azidocorrole or porphyrin has been recently developed in our laboratory [28][33]. We thus used similar conditions. The reactions were carried out in DMF, using excess of the alkyne derivative in the presence
  • Nicolas Desbois Sandrine Pacquelet Adrien Dubois Clement Michelin Claude P. Gros Université de Bourgogne Franche-Comté, ICMUB (UMR CNRS 6302), 9 Avenue Alain Savary, BP 47870, 21078 Dijon Cedex, France 10.3762/bjoc.11.239 Abstract The Cu(I)-catalysed Huisgen cycloaddition, known as “click
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Published 17 Nov 2015

Synthesis and spectroscopic properties of β-triazoloporphyrin–xanthone dyads

  • Dileep Kumar Singh and
  • Mahendra Nath

Beilstein J. Org. Chem. 2015, 11, 1434–1440, doi:10.3762/bjoc.11.155

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  • ) were synthesized in good yields by the “click reaction” of 3,6-diethynylxanthen-9-one (11) with copper and zinc azidoporphyrins, respectively. Further, the free-base diporphyrins 12b and 13b were obtained in 81% and 84% yields, respectively after the treatment of 12a with conc. H2SO4 at 0 °C and 13a
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Published 17 Aug 2015

Synthesis of alpha-tetrasubstituted triazoles by copper-catalyzed silyl deprotection/azide cycloaddition

  • Zachary L. Palchak,
  • Paula T. Nguyen and
  • Catharine H. Larsen

Beilstein J. Org. Chem. 2015, 11, 1425–1433, doi:10.3762/bjoc.11.154

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  • -deprotection with azide–alkyne cycloaddition, producing hindered triazoles in 6 hours. This tandem reaction was optimal with a copper(II) triflate and sodium ascorbate (NaAsc) as a mild reductant. The outcome that copper(II) triflate provides the highest yields for the one-pot deprotection/click reaction was
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Published 14 Aug 2015

Synthesis of γ-hydroxypropyl P-chirogenic (±)-phosphorus oxide derivatives by regioselective ring-opening of oxaphospholane 2-oxide precursors

  • Iris Binyamin,
  • Shoval Meidan-Shani and
  • Nissan Ashkenazi

Beilstein J. Org. Chem. 2015, 11, 1332–1339, doi:10.3762/bjoc.11.143

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  • ., after the "click" reaction) [61]. Conclusion In this work, we demonstrated the generality and the versatility of oxaphospholanes such as 4 and 5 to serve as precursors for the synthesis of γ-hydroxypropyl (±)-phosphinates and phosphine oxides, respectively, using Grignard reactions. Noteworthy is the
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Published 30 Jul 2015

Selected synthetic strategies to cyclophanes

  • Sambasivarao Kotha,
  • Mukesh E. Shirbhate and
  • Gopalkrushna T. Waghule

Beilstein J. Org. Chem. 2015, 11, 1274–1331, doi:10.3762/bjoc.11.142

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  • (Scheme 51). [3 + 2] Cycloaddition (1,3-dipolar cycloaddition/click reaction): In 2010, Raghunathan and co-workers [185] have synthesized a C2-symmetric triazolophane by a copper(I)-catalyzed azide-alkyne cycloaddition, involving a click reaction. The dipropargyl fluorenyl derivative 299 was prepared from
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Published 29 Jul 2015

Synthesis of novel N-cyclopentenyl-lactams using the Aubé reaction

  • Madhuri V. Shinde,
  • Rohini S. Ople,
  • Ekta Sangtani,
  • Rajesh Gonnade and
  • D. Srinivasa Reddy

Beilstein J. Org. Chem. 2015, 11, 1060–1067, doi:10.3762/bjoc.11.119

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  • literature and the data were compared with that reported [34]. The structure of the minor diastereomer (±)-4’ was assigned based on 2D NMR correlations. Secondly, the azido alcohol (±)-3 was subjected to a click reaction with phenylacetylene under standard conditions and the resulting two compounds, (±)-5
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Published 23 Jun 2015

Synthesis of carbohydrate-scaffolded thymine glycoconjugates to organize multivalency

  • Anna K. Ciuk and
  • Thisbe K. Lindhorst

Beilstein J. Org. Chem. 2015, 11, 668–674, doi:10.3762/bjoc.11.75

Graphical Abstract
  • )-catalyzed click reaction [21][22]. Before, the acid-labile isopropylidene protecting group was removed using 10% TFA in dichloromethane leading to mannoside 4, and then the azide function in 4 was converted in a Staudinger reduction [23] with simultaneous Boc-protection giving rise to mannoside 5 in high
  • for eventual immobilisation of the final thymine glycoconjugate on a surface or for conjugation to another multivalent compound. For the click reaction of 5 with the thymine derivative 6, copper sulfate and sodium ascorbate were used. The conjugation product 7 was obtained in 71% yield and showed good
  • (Scheme 2). Staudinger reduction of the azide group and Boc-protection in the same pot gave 9 and subsequent click reaction with the thymine derivative 6 the isopropylidene-protected dimeric thymine glycoconjugate 10 in good yield. This could be alkylated employing the bromoethyl mannoside 11 [11] in an
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Published 07 May 2015

Functionalized branched EDOT-terthiophene copolymer films by electropolymerization and post-polymerization “click”-reactions

  • Miriam Goll,
  • Adrian Ruff,
  • Erna Muks,
  • Felix Goerigk,
  • Beatrice Omiecienski,
  • Ines Ruff,
  • Rafael C. González-Cano,
  • Juan T. Lopez Navarrete,
  • M. Carmen Ruiz Delgado and
  • Sabine Ludwigs

Beilstein J. Org. Chem. 2015, 11, 335–347, doi:10.3762/bjoc.11.39

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  • and alkynes (“click”-reaction) is a commonly used reaction in post-polymerization processes [39][40]. In the case of the azidomethyl-modified EDOT (EDOT-N3) building block different approaches of modifying the corresponding polymer PEDOT-N3 have been conducted so far, including the modification of
  • during the polymerization process. In a next step we further transferred the copolymerization approach to the azidomethyl-substituted EDOT-N3 monomer which allows for the straightforward modification with various alkynes by Cu(I)-catalyzed 1,3-dipolar cycloaddition (“click”-reaction) [57]. For the
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Published 11 Mar 2015

Articulated rods – a novel class of molecular rods based on oligospiroketals (OSK)

  • Pablo Wessig,
  • Roswitha Merkel and
  • Peter Müller

Beilstein J. Org. Chem. 2015, 11, 74–84, doi:10.3762/bjoc.11.11

Graphical Abstract
  • defined a 1,2,3-triazole containing linkage between two piperidine rings as the flexible joint F, which should be easily accessible by copper-catalyzed cycloaddition between an azide G and a terminal alkyne H (CuAAC, “Clickreaction) [16]. Primary alcohols I serve as “protected” azides accessible by
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Published 16 Jan 2015

Conjugates of methylated cyclodextrin derivatives and hydroxyethyl starch (HES): Synthesis, cytotoxicity and inclusion of anaesthetic actives

  • Lisa Markenstein,
  • Antje Appelt-Menzel,
  • Marco Metzger and
  • Gerhard Wenz

Beilstein J. Org. Chem. 2014, 10, 3087–3096, doi:10.3762/bjoc.10.325

Graphical Abstract
  • ] and its Cu+-catalyzed version, called click reaction [31][32], is of special interest because this coupling proceeds rapidly and specific in aqueous media and tolerates many functional groups. Mono-6-azido-6-deoxy-β-CD was already coupled by the click reaction to propargylated dextrane by Nielsen et
  • propargyl ether leading to a highly water soluble polymer 3 with DSHES(propargyl) = 0.55. Coupling of the CD azides 1a and 1b to the propargylated HES was performed by Cu+-catalyzed [2 + 3] cycloaddition, the so-called click reaction, leading to the corresponding triazol groups (Scheme 3). The standard
  • polymer backbone by the click-reaction is a very efficient way to synthesise polymeric hosts with both low toxicity and excellent binding potential. The conjugate of DIMEB and HES 5a is regarded as a good candidate for oral or parenteral delivery of hydrophobic drugs. Experimental Complexation of
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Published 19 Dec 2014

Synthesis of divalent ligands of β-thio- and β-N-galactopyranosides and related lactosides and their evaluation as substrates and inhibitors of Trypanosoma cruzi trans-sialidase

  • María Emilia Cano,
  • Rosalía Agusti,
  • Alejandro J. Cagnoni,
  • María Florencia Tesoriero,
  • José Kovensky,
  • María Laura Uhrig and
  • Rosa M. de Lederkremer

Beilstein J. Org. Chem. 2014, 10, 3073–3086, doi:10.3762/bjoc.10.324

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  • infection process. Experimental The synthetic general methods are described in the Supporting Information File 1. Synthesis of compounds 10, 12, 15, 17, 20 and 22. General procedure for the click reaction [43][44]. The corresponding azido-saccharides 9 or 14 [34] (0.20 mmol) and N-linked glycosides 3 or 6
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Published 19 Dec 2014

Synthesis of aromatic glycoconjugates. Building blocks for the construction of combinatorial glycopeptide libraries

  • Markus Nörrlinger and
  • Thomas Ziegler

Beilstein J. Org. Chem. 2014, 10, 2453–2460, doi:10.3762/bjoc.10.256

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  • hydrogenation of the latter with Lindlar catalyst afforded 7 almost quantitatively. Likewise, copper(I)-catalyzed 1,3-dipolar cycloaddition (Click reaction) [15][16][17][18] of 5 with Fmoc-protected propargylamine afforded first t-butyl benzoate 8 in 87% yield. Hydrogenation of the latter with Pd on charcoal
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Published 22 Oct 2014

Solution phase synthesis of short oligoribonucleotides on a precipitative tetrapodal support

  • Alejandro Gimenez Molina,
  • Amit M. Jabgunde,
  • Pasi Virta and
  • Harri Lönnberg

Beilstein J. Org. Chem. 2014, 10, 2279–2285, doi:10.3762/bjoc.10.237

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  • support by a Cu(I) catalyzed click reaction and conventional phosphoramidite chemistry is then applied. The advantage of this support is that the small molecular reagents and byproducts are removed in each coupling cycle by two fully quantitative precipitations from MeOH, one after oxidation and the
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Published 29 Sep 2014

Convergent synthetic methodology for the construction of self-adjuvanting lipopeptide vaccines using a novel carbohydrate scaffold

  • Vincent Fagan,
  • Istvan Toth and
  • Pavla Simerska

Beilstein J. Org. Chem. 2014, 10, 1741–1748, doi:10.3762/bjoc.10.181

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  • clickreaction [20] was employed to couple multiple copies of purified B cell peptide antigens onto the carbohydrate core and lipidic adjuvanting moiety. This type of convergent approach has a number of advantages over the previously described divergent route. Since each component is synthesized
  • building block 1 reported here is concise and efficient, involving only one chromatographic step and takes advantage of the highly efficient “clickreaction. Synthesis of lipo-amino acid Lipidation of peptides is important as it is often used to improve stability and permeability of potential therapeutics
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Published 30 Jul 2014

Clicked and long spaced galactosyl- and lactosylcalix[4]arenes: new multivalent galectin-3 ligands

  • Silvia Bernardi,
  • Paola Fezzardi,
  • Gabriele Rispoli,
  • Stefania E. Sestito,
  • Francesco Peri,
  • Francesco Sansone and
  • Alessandro Casnati

Beilstein J. Org. Chem. 2014, 10, 1672–1680, doi:10.3762/bjoc.10.175

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  • and pyridine 7:3 as previously described for compound 8. The CuAAC “clickreaction was carried out as previously described for the galacto-clusters 9 and 13 and afforded the cone calix[4]arene 16 (Scheme 3) and 1,3-alternate calix[4]arene 19 (Scheme 4) in 46% isolated yield. Microwave irradiation
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Published 23 Jul 2014

The search for new amphiphiles: synthesis of a modular, high-throughput library

  • George C. Feast,
  • Thomas Lepitre,
  • Xavier Mulet,
  • Charlotte E. Conn,
  • Oliver E. Hutt,
  • G. Paul Savage and
  • Calum J. Drummond

Beilstein J. Org. Chem. 2014, 10, 1578–1588, doi:10.3762/bjoc.10.163

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  • delivery. Many other fields have utilised the copper-catalysed azide–alkyne cycloaddition (CuAAC) ‘clickreaction [16][17] to generate libraries of compounds, including enzyme inhibitors [18][19][20], catalysis ligands [21][22][23] and metal frameworks [24][25]. We have recently demonstrated that a
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Published 10 Jul 2014

Synthesis and solvodynamic diameter measurements of closely related mannodendrimers for the study of multivalent carbohydrate–protein interactions

  • Yoann M. Chabre,
  • Alex Papadopoulos,
  • Alexandre A. Arnold and
  • René Roy

Beilstein J. Org. Chem. 2014, 10, 1524–1535, doi:10.3762/bjoc.10.157

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  • -products together with a better assessment of complete surface group modifications. Hence, known 14 [36] was first cycloadded to mannosylazide 3 under the above CuAAc conditions. The “click reaction” proceeded exceptionally efficiently and provided bromoacylated dendron precursor 18 in 94% yield
  • shown). Synthesis of mannosylated trimers 5 and 9 using trimesic acid core transformed into propargylated (2) and azidopropylated (6) scaffolds and then coupled by “click chemistry” with either 2-azidoethyl (3) or propargyl (7) mannopyranosides. Divergent CuAAc “click reaction” between propargylated
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Published 04 Jul 2014

Carbohydrate PEGylation, an approach to improve pharmacological potency

  • M. Eugenia Giorgi,
  • Rosalía Agusti and
  • Rosa M. de Lederkremer

Beilstein J. Org. Chem. 2014, 10, 1433–1444, doi:10.3762/bjoc.10.147

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  • increase solubility [8], prolong the in vivo action [9] or for targeting drug delivery [10] has been described. The potent anti-inflammatory drug dexamethasone was coupled to a multifunctional PEG, prepared by a click reaction, for treatment of rheumatoid arthritis [11]. A heterobifunctional PEG has been
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Published 25 Jun 2014
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