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1.
By reaction of 2-[(1RS, 2RS)-2-hydroxy-1-methyl-propyl]-2-phenyl-1,3-dithiane (1 a) withcis-2-butene oxide, subsequent reduction and acetalizationc-4,t-5-dimethyl-r-2,c-6-diphenyl-1,3-dioxane (3 a) andt-4,c-5-dimethyl-r-2,c-6-diphenyl-1,3-dioxane (3 b) were synthesized as model compounds. For the same purpose by aldol reaction of cyclohexanone and reduction (1RS, 2SR)-2[(RS)-hydroxy-(4-methoxyphenyl)methyl]cyclohexanol (7 a), (1RS, 2RS)-2[(SR)-hydroxy-(4-methoxyphenyl)methyl]cyclohexanol (8 a), and (1RS, 2RS)-2[(RS)-hydroxy-(4-nitrophenyl)methyl]cyclohexanol (8 b) and by acetalization (2 , 4 , 4 a, 8 a)-2,4-bis(4-methoxyphenyl)hexahydro-4H-1,3-benzodioxin (9 a) and (2 , 4 , 4 a, 8 a)-2,4-bis(4-nitrophenyl)hexahydro-4H-1,3-benzodioxin (10 b) were obtained. FromPrins reactions, starting with 2-butene3 a,c-4,c-5-dimethyl-r-2,c-6-diphenyl-1,3-dioxane (3 c),r-4,t-5-dimethyl-c-6-phenyl-1,3,2-dioxathiane-2,2-dioxide (4), and (2Z, 4E)-1,5-diphenyl-4-methyl-2,4-pentadien-1-on (5), and starting with cyclohexene (E)-3-(4-methoxybenzylidene)cyclohexenyl-4-methoxyphenyl ketone (11) have been isolated in low yields.
4. Mitt.:Griengl, H., Nowak, P., Mh. Chem.109, 11 (1978).  相似文献   

2.
Summary 4,4-Bis(trifluoromethyl)-1,3-diazabuta-1,3-dienes and ,-unsaturated heteromultiple bond systems react to givebis(trifluoromethyl) substituted heterocycles. The first step of the formal [4+2] cycloaddition represents aBaylis-Hillman reaction.
Prof. Dr. Rolf Huisgen zum 75. Geburtstag gewidmet  相似文献   

3.
Reaction of methyl -D-galactopyranoside (1) with two equivalents oft-butyldimethylchlorosilane yields methyl 2,6-bis-O-(tBDMSi)--D-galactopyranoside (1 b), methyl 3,6-bis-O-(tBDMSi)--D-galactopyranoside (1 c) and methyl 4,6-bis-O-(tBDMSi)--D-galactopyranoside (1 d). Likewise methyl -D-mannopyranoside (6) affords methyl 2,6-bis-O-(tBDMSi)--D-mannopyranoside (6 d) and methyl 3,6-bis-O-(tBDMSi)--D-mannopyranoside (6 b), which can be isomerised withTPP/DEAD to methyl 4,6-bis-O-(tBDMSi)--D-mannopyranoside (6 f). Methyl 6-O-(tBDMSi)--D-galactopyranoside (1 a) and methyl 6-O-(tBDMSi)--D-mannopyranoside (6 a) can be prepared from1 or6 with one equivalent oft-butyldimethylchlorosilane.Without an external nucleophile the sugar derivatives1 a and1 b react withTPP/DEAD to form the 3,4-carbonato--D-galactopyranosides1 h and1 i and the 3,4-carbonato-2-O-ethoxycarbonyl--D-galactoside (1 j). In contrast to the formation of the compound1 i by means ofTPP/DEAD the reaction of1 a withTPP and Di-t-butyl-azodicarboxylate (DTBAD) yields the 2,3-anhydro--D-taloside (4 b) and only a small amount of1 i. The epoxide4 b can be cleaved withp-nitrobenzoylchloride/pyridine to the 3-chloro-3-deoxy-2,6-di-O-p-nitrobenzoyl--D-idoside (5). Reaction of1 c and1 d withTPP/DEAD yields the 2,3-anhydro--D-gulopyranoside (2), which can be transformed with NaN3/NH4Cl to the 2-azido-2-deoxy--D-idopyranoside (3).Likewise6 a and6 d can be converted to the 3,4-anhydro--D-talosides (7 a and7 b). Reaction of7 b or6 d withTPP/DEAD/NH3 leads to 3,4-anhydro-2-azido-2-deoxy--D-galactopyranoside (8) and 3-azido-3-deoxy--D-altropyranoside (10), resp.The epoxide7 b is opened with NaN3/NH4Cl to the 4-azido-4-deoxymannosides (11 a and11 c) and the 3-azido-3-deoxy--D-idopyranoside (12), while the epoxide8 affords the 2,4-di-azido-2,4-dideoxy--D-glucopyranoside (9).Structures were elucidated by1H-NMR-analysis of the corresponding acetates.
H. H. Brandstetter undE. Zbiral, Helv., im Druck.  相似文献   

4.
The relative thermodynamic stabilities of 4,7-dihydro-1,3-dioxepin (4,6-dioxacycloheptene, 1a) and 4,5-dihydro-1,3-dioxepin (3,5-dioxacycloheptene, 1b), and of a number of their 2-substituted derivatives, have been determined by base-catalyzed chemical equilibration in DMSO solution. Without exception, the 4,5-dihydro isomer is the dominating species at thermodynamic equilibrium. The relative stability of the b form is promoted by the presence of a single alkyl group on C-2, whereas two alkyl groups on C-2 have an opposite effect. In general, the thermodynamic parameters H m and Sm , of isomerization vary unexpectedly with the pattern of substitution at C-2. These trends appear to be derived from significant substituent-induced conformational changes in the b isomer, as suggested by 13C and 17O NMR chemical shift data.  相似文献   

5.
5-Hydroxy-p-menth-6-en-2-one (1) and 10-hydroxy-4-cadinen-3-one (2) were isolated from pyrolytic products of Incense Aden (gum resin ofBoswellia carteri Birdw.). The relative and absolute configurations of these compounds were determined on the basis of spectral and chemical evidences.
Für Darstellung und Auftrennung des Weihrauchpyrolysates einschließlich der SC-Vortrennung siehe  相似文献   

6.
Summary In an attempt to develop potential inhibitors ofUDP-glucuronosyltransferase, some 5-O-amino acid derivatives of uridine were synthesized. N-protectedL-amino acids were coupled at the 5-O-position of 2,3-O-isopropylideneuridine by esterification employing the method of symmetrical anhydrides in presence of 4-dimethylaminopyridine, 5-O-(N-benzyloxycarbonyl-O-tert.butyl-L-threonl)-23-O-isopropylideneuridine (1), 5-O-(N-tert.butyloxycarbonyl-O-benzyl-L-seryl)-2,3-O-isopropylideneuridine and (2), 5-O-(N-tert.butyloxycarbonyl-L-valyl)-2,3-O-isopropylideneuridine (3), and 5-O-(N-tert.butyloxycarbonyl-L-valyl)-2,3-O-isopropylideneuridine (4) were obtained in good yield after column chromatography on silica gel. The treatment of2 withTFA/CH2Cl2 (6:1) at room temperature for 30 min led to a selective removal of theBoc group without deblocking of the 2,3-O-isopropylidene group of uridine. Treatment of2 withTFA/H2O (5:1) at room temperature for 1 h, however, released bothBoc and 2,3-isopropylidene groups. TheZ group of1 was deprotected by catalytic hydrogenolysis over 10% Pd/C/ammonium formate.
Synthese von 5-O-Aminosäurederivaten des Uridins als potentielle Inhibitoren derUDP-Glukuronosyl-Transferase
Zusammenfassung In einem Versuch, potentielle Inhibitoren derUDP-Glukuronosyl-Transferase zu entwickeln, wurden einige 5-O-Aminosäurederivate des Uridins synthetisiert. N-GeschützteL-Aminosäuren wurden durch Veresterung mit der 5-O-Position des 2,3-isopropylidenuridins gekuppelt (Methode der symmetrischen Anhydride in der Gegenwart von 5-Dimethylaminopyridin). Solcherweise wurden 5-O-(N-Benzyloxycarbonyl-O-tert.butyl-L-threonly)-2,3-O-isopropylidenuridin (1), 5-O-(N-tert.Butyloxycarbonyl-O-benzyl-L-seryl)-2,3-O-isopropylidenuridin (2), 5-O-(N-tert.Butyloxycarbonyl-L-leucyl)-2,3-O-isopropylidenuridin (3) und 5-O-(N-tert.Butyloxycarbonyl-L-valyl)-2,3-O-isopropylidenuridine (4) nach Säulenchromatographie (Kieselgel) in guter Ausbeute hergestellt. Die Behandlung von2 mitTFA/CH2Cl2 (6:1) bei Zimmertemperatur (30 min) führte zu einer selektiven Abspaltung derBoc-Gruppe ohne Deblockierung der 2,3-O-Isopropylidengruppe des Uridins. Eine Behandlung von2 mitTFA/H2O (5:1) bei Zimmertemperatur für 1 Stunde führte hingegen zur Abspaltung sowohl derBoc als auch der 2,3-O-Isopropylidengruppe. DieZ-Gruppe von1 wurde durch katalytische Hydrogenolyse auf 10% Pd/C/Ammoniumformiat abgespalten.
  相似文献   

7.
A convenient synthesis of linear pyranocoumarins, viz., 8,8-dimethyl-2H,8H-benzo[1,2-b; 5,4-b]dipyran-2-one (xanthyletin,1) and 8,8-dimethyl-3-phenyl-2H,8H-benzo[1,2-b; 5,4-b]dipyran-2-one (3-phenylxanthyletin,2) is described. The key steps are blocking the 8-position of appropriate 7-hydroxy-2H-1-benzopyran-2-one derivatives with iodine and 1,1-dimethyl-2-propynylation followed by cyclisation.
Ein einfacher Syntheseweg zu linearen Pyranocumarinen. Xanthyletin und 3-Phenylxanthyletin
Zusammenfassung Es wird ein vorteilhafter Weg zur Synthese von linearen Pyranocumarinen am Beispiel von Xanthyletin und 3-Phenylxanthyletin gezeigt. Das Syntheseprinzip besteht in einer Blockierung der 8-Position des entsprechenden 7-Hydroxy-2H-1-benzopyran-2-ons mit Jod und einer 1,1-Dimethyl-2-propinylierung mit nachfolgender Cyclisierung.
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8.
Summary The cycloaddition of 3-hydroxyglycosyl-N-methylnitrone (1) to N-arylmaleimides gave thesyn isoxazolidines6, whereas 3-acetoxyglycosyl-N-methylnitrone (2) afforded theanti isoxazolidines8 and10. The formation of6 was rationalized by anexo attack, stereoelectronically preferred through the hydrogen bond between the pentose hydroxyl group and one of the carbonyl groups of N-arylmaleimide. The sterically preferredendo attack avoiding the repulsions between N-arylmaleimide and sugar moiety was proposed for addition of2. The structure and steric configuration of the products have been assigned on the basis of1H- and13C-NMR spectroscopy, mainly by nuclear Overhauser effect difference spectroscopy. AM1 calculations of the nitrones and MM2 calculations of the adducts were performed.
Darstellung und Stereoselektivität der 1,3-dipolaren Cycloaddition von C-Glycosyl-Nitronen an N-Arylmaleimiden
Zusammenfassung Die Cycloaddition von 3-Hydroxyglycosyl-N-methylnitron (1) an N-Arylmaleimide gab diesyn-Isoxazolidine6, mit 3-Acetoxyglycosyl-N-methylnitron (2) wurden hingegen dieanti-Isoxazolidine8 und10 erhalten. Die Bildung von6 wurde mit einemexo-Angriff erklärt, der stereoelektronisch wegen einer Wasserstoffbrückenbindung zwischen der Hydroxylgruppe der Pentose und einer Carbonylgruppe des N-Arylmaleimides bevorzugt wird. Für die Addition von2 wurde ein sterisch bevorzugterendo-Angriff vorgeschlagen, da dabei ungünstige Wechselwirkungen zwischen der N-Arylmaleimid- und der Zuckereinheit vermieden werden. Die Struktur und Stereochemie der Produkte wurde mittels1H- und13C-NMR unter Verwendung von NOE-Differenzmessungen ermittelt. Es wurden auch AM1-Rechnungen für die Nitrone und MM2-Rechnungen für die Addukte durchgeführt.
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9.
The title compound,1, slowly decomposes in solution by autodixation, especially in daylight. The chemism of this photoinduced autoxidation has been investigated.Upon irradiation1 passes to the brick red isolable dienol2. The quantum yield is 0.3 at 313 nm in methanol. In solution an equilibrium is set up within several minutes between2 and the colorless deconjugated3. Unpolar or moderately polar solvents shift the equilibrium completely to3, whereas in highly polar solvents2 and3 coexist. In the dark the equilibrium12 (ca. 501 in methanol) is established very slowly.3 upon irradiation reacts further to dimer8. 2 instantaneously reacts with oxygen. With high oxygen concentrations, hydroperoxide9 is formed, with lower ones dehydrodimer10, inter alia.9 and10 may further form12, 14, and15. These reactions, together with ESR spectroscopy, point to a central role of the free radical13 both in the autoxidation and in the reaction1014.Basic catalysis sets up an equilibrium between1 and its dimer,17. The photoreaction12 has been investigated by sensitizing and quenching experiments.
34. Mitteilung:J. Bitter, J. Leitich, H. Partale, O. E. Polansky, W. Riemer, U, Ritter-Thomas, B. Schlamann undB. Stilkerieg, Chem. Ber., im Druck.  相似文献   

10.
3-Oxo-1,3-oxathiane (1) and its monomethyl derivatives were prepared by oxidation of the corresponding 1,3-oxathianes. The structural analysis was carried out by1H and13C NMR, FTIR, and mass spectrometry. At 298 K compound1 was a 1 1 (at 173 K a 3 1) mixture of the SO(ax) and SO(eq) chair forms. The major oxidation products of methyl 1,3-oxathianes attained exclusively the SO(ax), Me(eq) chair forms except that of the 5-methyl derivative, which consisted of 7% of the SO(eq), Me(ax) chair conformation in CDCl3 solution. The minor products of oxidation existed in anancomeric SO(eq), Me(eq) chair conformations. The oxidation of 2-methyl- 1,3-oxathiane, however, led to 3,3-dioxo derivative (6) in addition to thetrans [SO(eq)] monoxide. The crystal structures of6 andtrans-3-oxo-5-methyl-1,3-oxathiane were solved by X-ray diffractometry.  相似文献   

11.
The reaction of diethyl bromomalonate (1) or diethyl diazomalonate (6) with benzoyl isothiocyanate (2) proceeds via the carbene intermediates4, 7 or12 to afford the 1,3-dithiole5, the 2-oxazoline8 or the 1,3-oxathioles9 depending upon the catalyst employed. In contrast, the bis(ethoxycarbonyl)methylpyridinium bromides14 upon treatment with benzoyl isocyanates15 in pyridine give rise to vinylene dipyridinium dibromides18.
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12.
Summary Different functionalized alkyl 3-oxo-butyrates (2) were reacted with 5-amino-3-Q-1H-1,2,4-triazoles (1) to yield3 and4 type 1,2,4-triazolo[1,5-a]pyrimidinones. In case of2 (R 1=methyl,R 2=1-ethoxycarbonylethyl,R 3=ethyl) beside the corresponding derivative4 the unexpected 5,6-dihydro-6,8-dimethyl-7-ethoxycarbonyl-3-methylthio-1,2,4-triazolo[4,3-a]-1,3-diazepin-5(9H)-one (7) was isolated, representing a novel ring system.
Über Triazole, 19. Mitt.: Die Reaktion von 5-Amino-1,2,4-triazolen mit funktionalisierten Acetoessigestern
Zusammenfassung Verschiedene funktionalisierte 3-Oxo-buttersäurealkylester (2) wurden mit 5-Amino-3-Q-1H-1,2,4-triazolen (1) umgesetzt, wobei 1,2,4-Triazolo[1,5-a]pyrimidinone der Typen3 und4 erhalten wurden. Im Fall von2 (R 1=Methyl,R 2=1-Ethoxycarbonylethyl,R 3=Ethyl) wurde neben dem erwarteten Derivat4 das unerwartete 5,6-Dihydro-6,8-dimethyl-7-ethoxycarbonyl-3-me-thylthio-1,2,4-triazolo[4,3-a]-1,3-diazepin-5(9H)-on (7) isoliert, welches ein neues Ringsystem darstellt.
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13.
Summary (Z)-Narceine imide (1) reacted with 1,2-epoxypropane to narceone imide (2) and with an excess of epoxide to N-(2-hydroxypropyl)narceone imide (3). Cyclization of3 in acidic media afforded two isomers of 8,14-dimethyl-11,12-methylenedioxy-3,4,10-trimethoxyindano[1,2:2,3]morpholino[3,4-a]isoindolin-5-ones16 and17 which differed in the spatial orientation of the C-8-CH3. Narceonic acid (18) cyclized into the isochroman-3-spiro-3-phthalide derivative19.
Reaktion des (Z)-Narceinimid mit 1,2-Epoxypropan
Zusammenfassung (Z)-Narceinimid (1) reagierte mit 1,2-Epoxypropan zu Narceonimid (2) und bei Überschuß von Epoxid zu N-(2-Hydroxypropyl)narceonimid (3). Cyclisierung der letztgenannten Verbindung in Anwesenheit von Mineralsäuren fürhrte zu zwei Indano[1,2:2,3]morpholino[3,4-a]isoindol-5-on-Isomeren16 und17. Narceonsäure (18) wurde zu dem Isochroman-3-spiro-1-phthalid19 umgewandelt.
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14.
Partial O-alkylation of 1,3:2,4-di-O-ethylidene-D-glucitol (1a), 1,2-O-isopropylidene-3-O-methyl--D-glucofuranose (1b), andR-(+)-1-O-benzylglycerol (1c) with benzyl chloride in a KOH/DMSO system results in products of monoalkylation at the secondary (4a–c) and at the primary hydroxyl (2a–c) in ratios of over 955 (a), 21 (b), and 11 (c), whereas (±)propane-1,2-diol (1d) gives only the product of 1-O-benzylation (2d). A qualitatively similar result is observed upon O-alkylation of diols (1a–e) with 2-methoxyethanol tosylate.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 4, pp. 776–781, April, 1993.  相似文献   

15.
Starting from (+) (2R) methyl 5-ethyl-2,2-spirobiindane-5-carboxylate of known enantiomeric purity 79 optically active, configurationally correlated 5,5,6-trisubstituted 2,2-spirobiindanes (2–7) were prepared for the purpose of testing a shortened polynomal Ansatz for chirality functions. Their optical rotations and1H-nmr spectra are reported.In this context several 6-substituted 5-ethylindanes (1) were prepared as model compounds for synthetic transformations.
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16.
Reaction of the vicinal diols of steroids1, 5, 7, 10, 13, and16 with TPP/DEAD yields both regio-and stereospecifically the oxosteroids2, 6, 8, 11, 14, and15 by displacement of an axial hydrogen and extrusion ofTPPO besides the cholest-4-en-6-ols9 and12 and the cyclic carbonate3. 16, 17-androstandiol16 gives only the cyclic carbonate17. The different structures of the carbohydrates withcis-diol arrangement19 and21 lead exclusively to cyclic carbonates20 and22 in moderate yields. Treatment of1 with TPP/DEAD/HN3 affords 3-azido-2-hydroxycholestane4 in addition to the above mentioned2.
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17.
Zusammenfassung Es werden die Kondensationsprodukte von Aceton und drei alicyclischen Ketonen sowie deren N-substituierten Ketiminen mit Indandion-(1,3) beschrieben. Das Umsetzungsprodukt aus Indandion-(1,3) und Aceton wird als 1,1-Dimethyl-2,3,9,9a-tetrahydro-3-[2-indandion-(1,3)-yliden]-1H-fluorenon-(9) (10) erkannt.
Reaction of some ketones and ketimines with indandion-(1,3)
The reaction of 1.3-indandione with acetone, three alicyclic ketones as well as the respective N-substituted ketimines is reported of and the properties of the products of condensation are described. The product of the reaction between 1.3-indandione and acetone is 1.1-dimethyl-2.3.9.9a-tetrahydro-3-[1.3-indandione-ylidene-(2)]-1H-fluoren-9-one (10).


Mit 3 Abbildungen  相似文献   

18.
Substituted azafulvenes were generated by dehydrogenation of 5-methyl-substituted pyrromethenones withDDQ and characterized by UV- and1H-NMR-spectroscopy. Their electrophilic properties were demonstrated using several quenchers and furthermore they were used for a synthesis of verdinoid bile pigments (which easily can be converted to rubinoid systems by the action of NaBH4) with nearly any desired unsymmetrical alkyl substitution patter: The azafulvene spezies was generated by the action ofDDQ on a 5-methylpyrromethenone and was quenched by an 5-unsubstituted pyrromethenone. The resulting rubinoid adduct was dehydrogenated immediatly byDDQ — yields were good to high.
39. Mitt.:Falk, H., Höllbacher, G., Hofer, O., Müller, N., Mh. Chem.112, 391 (1981).  相似文献   

19.
Summary The structure of four new pyoverdins (Pf12-IA, -IIA, -IB und IIB) isolated from the culture medium ofPseudomonas fluorescens 12 was elucidated by combination of spectroscopic methods and degradation reactions. The pyoverdins comprise (1S)-5-amino-2,3-dihydro-8,9-dihydroxy-1H-pyrimido[1,2-a]quinoline-1-carboxylic acid whose amino group carries a 3-carboxypropanoyl-(IA), succinamoyl- (IIA), 4-carboxy-4-oxobutanoyl- (IB) or L-4-amino-4-carboxybutanoylresidue (II B) and whose carboxyl group is bound amidically to the N-terminus of D-Ser-L-Lys-Gly-. According to the short-hand-nomenclature suggested in [2, 3] the pyoverdins may be described as pyoverdin-Q-sKGOsSGK*oES*-SUC(IA), pyoverdin-Q-sKGOsSGK*o-ES*-SUCA (IIA), pyoverdin-Q-sKGOsSGK*oES*-KGL (IB) and pyoverdin-Q-sKGOsSGK*oES*-GLU (IIB). The pyoverdins described here possess the most complex structure encountered so far as their peptide part comprises eleven amino acids and the cyclo-tetrapeptide substructure. In addition, they are of special interest as for the first time glutamic acid could be identified as a chromophore side chain which is the key compound for the citric acid cycle to which belong all dicarboxylic acids found so far in pyoverdins.

Verwendete Abkürzungen ASK Acylseitenkette - Chr Chromophor1 a - (HO)Chr Chromophor1 b - Dns Dansyl-Rest - DP Dansylpeptid - EDTA Ethylendiamintetraessigsäure - FAB Fast Atom Bombardment (PI=positive Ionen) - (HO)Orn N5-Hydroxyornithin - (CHO, HO)Orn N5-Formyl-N5-hydroxyornithin - PITC Phenylisothiocyanat - RP-HPLC Reversed-Phase High Performance Liquid Chromatography - Kgl -Ketoglutarsäure bzw. 4-Carboxy-4-oxobutanoyl-Rest - R t Retentionszeit - Suc Bernsteinsäure bzw. 3-Carboxypropanoyl-Rest - Suca Succinamoyl-Rest - Suci Succinimido-Rest - TAB Trifluoracetyl-n-butylester - TEA Triethylamin  相似文献   

20.
Summary Steroid ketoximes were reduced with sodium tetrahydroborate in the presence of nickel chloride or molybdenum trioxide. These processes yielded 17- and 20-aminosteroids (1c–5c) in higher yields than common reduction methods.
Steroide, 53. Mitt.: Neue Wege zu Aminosteroiden
Zusammenfassung Oxime von Ketosteroiden wurden mit NaBH4 in Gegenwart von NiCl2 und MoO3 reduziert. Dieses Verfahren lieferte 17- und 20-Aminosteroide(1c–5c) in größeren Ausbeuten als übliche Methoden.
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