546 Anorganische Chemie
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- D-3057-2014 (1)
Organosilicon compounds 8, 9 and 10 with potential curare-like action and their precursors 0, 6 and 7 were synthesized for the first time. 0-10 were characterized by their physical and chemical properties, and their structures were confirmed by analyses, IH NMR and mass spectroscopy (only for 0-7). The pharmacological and toxicological data of 8, 9 and 10 are reported.
Sila-difenidol (6b), a sila-analogue of the drug difenidol (6a), was synthesized according to Scheme 1. 6b and its new precursors 3 and 5 were characterized by their physical and chemical properties, and their structures confirmed by elementary analyses, 1H NMR and mass spectroscopy. 6 b crystallizes orthorhombic \(P2_12_12_1\) with a = 11.523(1), b = 14.366(4), c = 11.450(1) Å, Z = 4, \(D_{ber} = 1.14 gcm^{-3}\). The structure was refined to R = 0.050 for 1897 reflexions. A strong nearly linear intramolecular O-H···N hydrogen bond of 2.685 Å is observed. The anticholinergic, histaminolytic and musculotropic spasmolytic activities of 6 a and 6 b are reported.
In the course of systematic studies on sila-substituted drugs the nifedipine-like 1.4-dihydropyridine derivatives 4a, 4b and 4c were prepared and investigated with respect to sila-substitution effects. By X-ray diffraction analyses 4a, 4b and 4c were found to be isostructural. The C/Si-analogues exhibit similar spasmolytic activities (in vitro, guinea pig ileum), comparable with that of nifedipine. However, the compounds differ substantially in their in vivo activity, as measured by the antihypertensive effect on the renal-hypertensive rat. The experimental results are discussed with respect to the carbon/silicon exchange.
The potentially curare-like silicon compounds 8a- 8f were synthesized and investigated with respect to their structure-activity relationships. The conformations of the compounds in the solid state and in solution were studied by X-ray diffraction analysis (8a- 8e) and IR NMR spectroscopy (8a- 8f), respectively. The muscle relaxing properties of 8a- 8f were investigated on the mouse. The observed structure-activity relationships are not in accordance with the classical "14 Å model" for neuromuscular blocking agents.
The trimethylsilylalkyl acetoacetates 1 b and 2 b as well as their carba analogues 1 a and 2 a have been reduced microbiologically by Kloeckera corticis (ATCC 20109), leading to the corresponding ( + )-3(S)-hydroxybutanoates 3b, 4b, 3a, and 4a. The enantiomeric purity was found to be 80% (3a, 3b, 4b) and 65% (4a), respectively. The reduction of lb and 2b is - to our knowledge - the first example for a controlled microbiological transformation of organosilicon substrates.
In the course of systematic investigations on sila-substituted parasympatholytics the diphenyl(2-aminoethoxymethyl)silanols 3b and 4b (and its carbon analogue 4a) were synthesized and characterized by their physical and chemical properties. In the solid state 4a and 4b form strong O-H---N hydrogen bonds, which are intramolecular (4a) and intermolecular (4b), respectively. 4a and 4b were found to be weak antimuscarinic agents (4b >4a) and strong papaverine-like spasmolytics (4a ≈4b).
The 2,2,5,5-tetraorganyl-1,4-dioxa-2,5-disilacyclohexanes 2a-2c were prepared by condensation of the corresponding (hydroxymethyl)diorganylsilanes 1 a-1 c. The constitution of the heterocycles was confirmed by elemental analyses, cryoscopic measurements, mass spectrometry, and NMR-spectroscopic \((^1H, ^{13}C)\) investigations. The molecular structure of 2 b was determined by X-ray diffraction analysis.
The synthesis and the thermal behaviour of the (methylphenylsilyl)methyl carbonates \(CH_3(C_6H_5)Si(H)CH_2OC(O)X (6: X = OCH_3; 7: X = Cl; 8: X = N(CH_3)_2)\) is described. 8 rearranges in toluene solution at 100 °C quantitatively to give the carbam oyloxysilane \(C_6H_5(CH_3)_2SiOC(O)N(CH_3)_2\) (11), whereas neat 6 and 7 at 135 °C undergo quantitative formation of \(C_6H_5(CH_3)_2SiOCH_3\) (12) and \(C_6H_5(CH_3)_2SiCl\) (13), respectively. The formation of 12 and 13 is explained by a rearrangement reaction (by analogy to the rearrangement of 8), follow ed by a decarboxylation. The thermally induced transformations 6 →12, 7 →13, and 8 →11 were found to be first-order reactions with half-lifes of ~2.6 h (135 °C, neat), ~4.5 h (135 °C, neat), and ~3.7 h (100 °C, in toluene), respectively.
Five subtypes of muscarinic receptors have been distinguished by pharmacological and molecular biological methods. This report characterizes the muscarinic subtype present in human gastric mucosa by radioligand binding studies. The receptor density was 27 ± 6 fmol/mg protein and the tritiated ligand N-methylscopolamine had an affinity of (Kn) 0.39 ± 0.08 nM (n = 11). The M1 receptor selective antagonist pirenzepine and the M2 receptor selective ligand AF-DX 116 had low affinities of 148 ± 32 nM (n = 13) and 4043 ± 1011 nM (n = 3) K n , respectively. The glandular M3 antagonists hexahydrosiladifenidol and silahexocyclium had high affinities ofKn 78 ± 23 nM (n = 5) and 5.6 ± 1.8 nM (n = 3). The agonist carbachol interacted with a single low-affinity site and binding was insensitive to modulation by guanine nucleotides. Antagonist and agonist binding studies thus showed an affinity profile typical of M3 receptors of the glandular type.
Muscarinic receptors mediating acid secretion in isolated rat gastric parietal cells are of M3 type
(1990)
Five subtypes of muscarinic receptors have been identified by pharmacological and molecular biological methods. The muscarinic receptor subtype mediating acid secretion at the level of the parietal cell was unknown. Therefore, this study was performed to characterize muscarinic receptors on rat gastric parietal cells using the 3 subtype-selective antagonists hexahydrosiladifenidol and silahexocyclium, which have high affinity for glandular M3 subtypes, and AF-DX 116, which has high affinity to cardiac M2 receptors. The affinity of these antagonists was determined by radioligand binding experiments. In addition, their inhibitory potency on carbachol-stimulated inositol phosphate production was investigated. Inhibition of carbachol-stimulated aminopyrine uptake was used as an indirect measure of proton production. Both M3 antagonists, hexahydrosiladifenidol and silahexocyclium, had nanomolar affinities for parietal cell muscarinic receptors and potently antagonized inositol phosphate production with nanomolar Ki values. Silahexocyclium similarly antagonized aminopyrine accumulation while hexahydrosiladifenidol behaved as a noncompetitive antagonist. AF-DX 116 was a low-affinity ligand and a weak competitive antagonist at parietal-cell muscarinic receptors. It was concluded that muscarinic M3 receptors mediate acid secretion probably by activation of the phosphoinositide second messenger system in rat gastric parietal cells.
Studies were performed in the rabbit aortic rings, precontracted with norepinephrine, to determine the subtype(s) of muscarinic receptors involved in endothelium-dependent relaxation and contraction in the absence of endothelium elicited by cholinergic stimuli. Acetylcholine (ACh) and arecaidine propargyl ester (APE), a M2 and M3 agonist, produced a dose-dependent relaxation and contraction in endothelium-intact and endothelium-denuded rabbit aortic rings, respectively. Both of these responses were blocked by the muscarinic receptor antagonist atropine. M1 selective agonist McN-A-343 [4-[N-(3-chlorophenyl)carbamoyloxy]-2-butinyltrimethylammonium+ ++ chloride] did not produce any effect on the tone of precontracted aortic rings. ACh- and APE-induced relaxation in aortic rings with intact endothelium was selectively blocked by M3 receptor antagonists hexahydrosila-difenidol and p-fluoro-hexahydro-sila-difenidol (pA2 of 7.84 and 7.18) but not by M1 antagonist pirenzepine or M2 receptor antagonists AF-DX 116 [11-(2-[(diethylamino)methyl]- 1-piperidinyl]acetyl)-5, 11-dihydro-6H-pyrido-[2,3-b][1,4]-benzo-diazepin-6-one] and methoctramine. ACh- and APE-induced contraction was inhibited by M2 receptor antagonists AF-DX 116 and methoctramine (pA2 of 7.11 and 6.71) but not by pirenzepine, hexahydro-sila-difenidol or p-fluoro-hexahydro-sila-difenidol. ACh- and APE-induced relaxation or contraction were not altered by nicotinic receptor antagonist hexamethonium or cyclooxygenase inhibitor indomethacin. These data suggest that relaxation elicited by cholinergic stimulin in endothelium-intact aortic rings is mediated via release of endothelium-derived relaxing factor consequent to activation of M3 receptors located on endothelial cells, whereas the contraction in aortic rings denuded of their endothelium is mediated via stimulation of M2 receptors located on smooth muscle cells.
1 We studied the effect of temperature on the binding to rat heart \(M_2\) muscarinic receptors of antagonists related to the carbon/silicon pairs pridinol/sila-pridinol and diphenidol/sila-diphenidol (including three germanium compounds) and six structurally related pairs of enantiomers [(R)- and (S)-procyclidine, (R)- and (S)-trihexyphenidyl, (R)- and (S)-tricyclamol, (R)- and (S)-trihexyphenidyl methiodide, (R)- and (S)-hexahydro-diphenidol and (R)- and (S)-hexbutinol]. Binding affinities were determined in competition experiments using \([^3H]\)-N-methyl-scopolamine chloride as radioligand. The reference drugs were scopolamine and N-methyl-scopolamine bromide.
2 The affinity of the antagonists either increased or decreased with temperature, van 't Hoff plots were linear in the 278–310°K temperature range. Binding of all antagonists was entropy driven. Enthalpy changes varied from large negative values (down to \(−29 kJ mol^{−1}\)) to large positive values (up to \(+ 30 kJ mol^{−1}\)).
3 (R)-configurated drugs had a 10 to 100 fold greater affinity for \(M_2\) receptors than the corresponding (S)-enantiomers. Enthalpy and entropy changes of the respective enantiomers were different but no consistent pattern was observed.
4 When silanols \((R_3SiOH)\) were compared to carbinols \((R_3COH)\), the affinity increase caused by C/Si exchange varied between 3 and 10 fold for achiral drugs but was negligible in the case of chiral drugs. Silanols induced more favourable enthalpy and less favourable entropy changes than the corresponding carbinols when binding. Organogermanium compounds \((R_4Ge)\) when compared to their silicon counterparts (R4Si) showed no significant difference in affinity as well as in enthalpy and entropy changes.
5 Exchange of a cyclohexyl by a phenyl moiety was associated with an increase or a decrease in drug affinity (depending on the absolute configuration in the case of chiral drugs) and generally also with a more favourable enthalpy change and a less favourable entropy change of drug binding.
6 Replacement of a pyrrolidino by a piperidino group and increasing the length of the alkylene chain bridging the amino group and the central carbon or silicon atom were associated with either an increase or a decrease of entropy and enthalpy changes of drug binding. However, there was no clear correlation between these structural variations and the thermodynamic effects.
7 Taken together, these results suggest that hydrogen bond-forming OH groups and, to a lesser extent, polarizable phenyl groups contribute significantly to the thermodynamics of interactions between these classes of muscarinic antagonists and \(M_2\) muscarinic receptors.
1 We have compared the binding properties of several hexocyclium and sila-hexocyclium derivatives to muscarinic Ml receptors (in rat brain, human neuroblastoma (NB-OK I) cells and calf superior cervical ganglia), rat heart M2 receptors, rat pancreas M3 receptors and M4 receptors in rat striatum, with their functional antimuscarinic properties in rabbit vas deferens (Ml/M4-like), guinea-pig atria (M2), and guinea-pig ileum (M3) muscarinic receptors.
2 Si la-substitution (C/Si exchange) of hexocyclium (~ sila-hexocyclium) and demethyl-hexocyclium (~demethyl-sila-hexocyclium) did not significantly affect their affinities for muscarinic receptors. By contrast, sila-substitution of demethoxy-hexocyclium increased its affinity 2 to 3 fold for all the muscarinic receptor subtypes studied.
3 The p-fluoro- and p-chloro-derivatives of sila-hexocyclium had lower affinities than the parent
compound at the four receptor subtypes, in binding and pharmacological studies.
4 In binding studies, o-methoxy-sila-hexocyclium (Ml = M4 ~ M3 ~ M2) had a much lower affinity than sila-hexocyclium for the four receptor subtypes, and discriminated the receptor subtypes more poorly than sila-hexocyclium (Ml = M3> M4> M2)' This is in marked contrast with the very clear selectivity of demethoxy-sila-hexocyclium for the prejunctional MtlM4-like heteroreceptors in rabbit vas deferens.
5 The tertiary amines demethyl-hexocyclium, demethyl-sila-hexocyclium and demethyl-o-methoxy-silahexocyclium had 10 to 30 fold lower affinities than the corresponding quaternary ammonium derivatives.
Im Rahmen dieser Arbeit konnten im Ersten Teil durch Anwendung verschiedener Synthesestrategien neuartige ansa-Halbsandwichkomplexe der sechsten, achten und zehnten Gruppe der Übergangsmetalle synthetisiert und umfassend charakterisiert werden. Die dargestellten Verbindungen wurden in Reaktivitätsstudien auf ihr Verhalten gegenüber Chalkogenen, sowie gegenüber niedervalenten späten Übergangsmetallkomplexen untersucht. Weiterhin wurden die erhalten Komplexe auf ihrer Eignung als mögliche Vorstufen für metallhaltige Polymere hin untersucht. Dabei wurden verschiedene Polymerisationsmethoden wie thermische, katalytische oder anionische induzierte Ringöffnungsreaktion eingesetzt und die erhaltenen Polymere mit Hilfe der Gelpermeations-Chromatographie auf ihr Molekulargewicht bzw. auf ihre Polydisperisität hin untersucht.
Im zweiten Teil dieser Arbeit konnten verschiedene neuartige Basenaddukte von Tetrabromdiboran(4) dargestellt und charakterisiert werden. Durch schrittweise Reduktion gelang die Synthese basenstabilisierter neutraler Diborene auf einer bisher unbekannten Syntheseroute. Durch die erschöpfende Reduktion von [B2Br4(IDip)2] konnte erstmals ein basenstabilisiertes Diborin außerhalb einer inerten Edelgasmatrix isoliert und charakterisiert werden. Zum Verständnis der Bindungssituation sowie der Konstitution in Lösung und Festkörper wurden umfangreiche physikochemische und theoretische Studien angefertigt. Die erhaltenen Daten belegen die Synthese von [B2(IDip)2] mit einer Bindungsordnung von drei entlang der zentralen B2-Einheit. Es wurden umfangreiche Reaktivitätsstudien gegenüber verschiedenen Substraten durchgeführt. Die Umsetzung von [B2(IDip)2] mit CO lieferte ein basenstabilisiertes Bis-boralacton, bei dessen Bildung eine gänzlich unbekannte CO-Verknüpfungsreaktion auftritt, welche für Hauptgruppenelementverbindungen bisher nicht beobachtet werden konnte. Im Zuge mechanistischer Studien gelang der Nachweis eines Reaktionsintermediates. Weiterhin zeigt das Diborin [B2(IDip)2] (140) eine interessante Koordinationschemie gegenüber Kupfer(I)-Verbindungen. Dabei gelang die Darstellung von tri- und dinuklearen Kupfer(I)-Komplexen von [B2(IDip)2]. Diese wurden durch multinukleare NMR-Spektroskopie sowie mit Hilfe der Röntgenstrukturanalyse umfassend charakterisiert.
Aminoborylenkomplexe der Gruppe 6 [(OC)5M=BN(SiMe3)2] (M = Cr, Mo, W) reagieren mit Übergangsmetallkomplexen unter Transfer der Boryleneinheit bzw. in Transmetallierungsreaktionen und bilden dabei neuartige Borylenkomplexe. In dieser Dissertation wird die Synthese, Charakterisierung und Reaktivität der auf diesem Wege dargestellten Verbindungen - unter anderem Hydridoborylenkomplexe, Bis(borylen)komplexe und borylensubstituierte MOLPs - beschrieben.
The aim of this work was to synthesize and functionalize different bio-relevant nanomaterials like silica-coated superparamagnetic iron oxide nanoparticles (SPIONs) as contrast agents for T2 magnetic resonance imaging (MRI) and detonation nanodiamond (DND) with the neurohormone peptide allatostatin 1 (ALST1) and a fluorescent dye. Analytical techniques for the determination and quantification of surface functional groups like amines, azides, and peptides were also developed and established.
Thus, in the first part of the work, a TGF-1 binding peptide and allatostatin 1 (ALST1), both supposed to act as active tumour targeting vectors, were synthesized by solid-phase peptide synthesis (SPPS) and characterized by high pressure liquid chromatography (HPLC) and mass spectrometry. Then, azide-functionalized silica nanoparticles were synthesized by the Stöber process and characterized by transmission electron microscopy (TEM) and infrared spectroscopy (IR). The surface loading of amine and azide groups was determined by a new protocol. The azide groups were reduced with sodium boronhydride to amine and then functionalized with Fmoc-Rink Amide linker according to a standard SPPS protocol. Upon cleavage of Fmoc by piperidine, the resulting dibenzofulvene and its piperidine adduct were quantified by UV/Vis spectroscopy and used to determine the amount of amine groups on the nanoparticle surface. Then, ALST1 and related tyrosine- and phenylalanine substituted model peptides were conjugated to the azide-functionalized silica nanoparticles by copper(I)-catalyzed azide-alkyne dipolar cycloaddition (CuAAC). The successful peptide conjugation was demonstrated by the Pauly reaction, which however is only sensitive to histidine- and tyrosine-containing peptides. As a more general alternative, the acid hydrolysis of the peptides to their individual amino acid building blocks followed by derivatization with phenyl isothiocyanate (PITC) allowed the separation, determination, and quantification of the constituent amino acids by HPLC.
In the second part of the work, amine- and azide-functionalized silica-coated superparamagnetic iron oxide nanoparticles (SPIONs) were synthesized by co-precipitation and subsequent silica-coated based on the Stöber process and characterized by TEM and IR. The amine surface loading was determined by the method already established for the pure silica systems. The azide surface loading could also be quantified by reduction with sodium boronhydride to amine groups and then conjugation to Fmoc-Rink amide linker. Upon cleavage of Fmoc with piperidine, the total amine surface loading was obtained. The amount of azide surface groups was then determined from the difference of the total amine surface loading and the amine surface loading. Thus, it was possible to quantify both amine and azide surface groups on a single nanoparticle system. Superparamagnetic iron oxide nanoparticles (SPIONs) are potent T2 contrast agents for magnetic resonance imaging (MRI). Due to their natural metabolism after injection into the blood stream, SPIONs mostly end up inside macrophages, liver, spleen or kidneys. To generate a potential target-specific SPION-based T2 contrast agent for MRI, the neurohormone peptide ALST1 was conjugated by CuAAC to the azide- and amine functionalized superparamagnetic iron oxide nanoparticles, since ALST1 is supposed to target difficult-to-treat neuroendocrinic tumours due to its analogy to galanin and somastatin receptor ligands. The organic fluorescent dye cyanine 5 (Cy5) was also conjugated to the silica-coated superparamagnetic iron oxide nanoparticles (SPIONs) via a NHS-ester to the amines to enable cell uptake studies by fluorescence microscopy. These constructs were characterized by TEM, dynamic light scattering (DLS), and IR. The amino acids of the conjugated ALST1 were determined by the HPLC method as described before for peptide-modified silica nanoparticle surfaces. Then, the relaxivity r2 was measured at 7 T. However, a r2 value of 27 L/mmolFe·s for the dual ALST1-/Cy5-functionalized silica-coated SPIONs was not comparable to T2 contrast agents in clinical use, since their relaxivity is commonly determined at 1.5 T, and no such instrument was available. However, it can be assumed that the synthesized dual
ALST1-/Cy5-functionalized silica-coated SPION would show a lower r2 at 1.5 T than at 7T. Commercial T2 MRI contrast agents like VSOP-C184 from Ferropharm show at r2 values of about 30 L/mmolFe·s at 1.5 T. Still, the relaxivity of the new material has some potential for application as a T2 contrast agent. Then, the material was used in cell uptake studies by fluorescence microscopy with the conjugated Cy5 dye as a probe. The dual
ALST1-/Cy5-functionalized silica-coated SPION showed a high degree of agglomeration with no cellular uptake unlike described for ALST1-functionalized nanoparticles in literature. It is assumed that upon agglomeration of the particles, constructs form which are unable to be internalized by the cellular endocytotic pathways anymore. As a future perspective, the tendency of the particle to agglomerate should be reduced by changing the coating material to polyethylene glycol (PEG) or chitosan, which are known to be bio-compatible, bio-degradable and prevent agglomeration.
In the third part of the work, the rhenium compound [ReBr(CO)3(L)] with L = 2-phenyl-1H-imidazo[4,5-f][1,10]phenanthroline and its manganese analogue were synthesized by heating the ligand and rhenium pentacarbonyl bromide or and manganese pentacarbonyl bromide respectively, in toluene. However, [MnBr(CO)3(L)] was unstable upon illumination by UV light at 365 nm. Thus, it was dismissed for further application. The photophysical properties of [ReBr(CO)3(L)] were explored, by determination of the excited-state life time by the time-correlated single-photon counting (TCSPC) method and the quantum yield by a fluorescence spectrometer equipped with an integration sphere. A value of = 455 ns, a Stokes shift of 197 nm and a rather low quantum yield =were found. Metal complexes are supposed to have superior properties compared to organic dyes due to their large Stokes shifts, long excited-state life times, and high quantum yields. Thus, amine- and azide-functionalized detonation nanodiamond (DND) as an alternative biological inert carrier system was functionalized with ALST1 to enhance its cell uptake properties. A luminescent probe for cell uptake studies using fluorescence microscopy was also attached, either based on the new rhenium complex or the commercially available organic dye Cy5, respectively. The aldehyde-functionalized rhenium complex was conjugated to the DND via oxime ligation, which is known to be a mild and catalyst-free conjugation method. The amount of peptide ALST1 on the DND was analyzed and quantified after acid hydrolysis and PITC derivatization by HPLC as described before. Then, the ALST1-/luminescent probe-functionalized DND was investigated for its photophysical properties by fluorescence spectroscopy. The Cy5-functionalized material showed a slightly lower fluorescence performance in aqueous solution than reported in literature and commercial suppliers with a life time < 0.4 ns and quantum yields not determinable by integration sphere due to the week signal intensity. The rhenium complex-functionalized material had a very low signal intensity in only aqueous medium, and thus determination of life times and quantum yield by fluorescence spectroscopy was not possible. After incubation with MDA-MB 231 cells, the Cy5-functionalized DND could easily be detected due to its red fluorescence. However, it was not possible to visualize the rhenium complex-functionalized DND with fluorescence microscopy due to the low fluorescence intensity of the complex in aqueous medium and the lack of proper filters for the fluorescence microscope. Cy5-functionalized DND did not show any cellular uptake in fluorescence microscopy after conjugation with ALST1. Since the nanodiamond surface is known to strongly adsorb peptides and proteins, it is assumed that the peptide chain is oriented perpendicular to the nanoparticle surface and thus not able to interact with cell membrane receptors to promote cell uptake of the particles. As a future perspective, the ALST1-promoted cellular uptake of the DND should be improved by using different linker systems for peptide conjugation to prevent adsorption of the peptide chain on the particle surface.
The new analytical methods for amino-, azide-, and peptide-functionalized nanoparticles have great potential to assist in the quantification of nanoparticle surface modifications by UV/Vis spectroscopy and HPLC. The determination of surface amine and azide groups based on the cleavage of conjugated Fmoc-Rink amide linker and detected by UV/Vis spectroscopy is applicable to all amine-/azide-functionalized nanomaterials. However, particles which form very stable suspension with the cleavage mixture can cause quantification problems due to scattering, making an accurate quantification of dibenzofulvene and its piperidine adduct impossible. The detection of tyrosine- and histidine-containing peptides based on the Pauly reaction is well-suited as a fast and easy-to-perform qualitative demonstration of successful peptide surface conjugation. However, its major drawback as a colourimetric approach is that coloured particles cannot be evaluated by this method. The amino acid analysis based on HPLC after acid hydrolysis of peptides conjugated to nanoparticle surfaces to its individual building blocks and subsequent derivatization with PITC, can be used on all nanomaterials with peptide or protein surface modification. It allows detection of amino acids down to picomolar concentrations and even enables analysis of very small peptide surface loadings. However, the resulting HPLC traces are difficult to analyze.
Three new analytical methods based on UV/Vis and HPLC techniques have been developed and established. They assisted in the characterization of the synthesized DND and SPIONs with dual functionalization by ALST1 and Cy5 or [ReBr(CO)3(L)], respectively. However, the nanomaterials showed no cellular uptake due to a high tendency to agglomerate. The cellular uptake should be improved and the tendency to agglomerate of the SPIONs should be reduced by changing the surface coating from silica to either PEG or chitosan. Furthermore, different linker systems for connecting peptides to DND surfaces should be synthesized and evaluated to reduce potential peptide chain adsorption.
Diese Arbeit befasst sich mit der Verwendung einer solvensfreien Synthesese zur Darstellung koordinationspolymerer Verbindungen basierend auf den 3d-Übergangsmetallen Mn, Fe, Co und Zn und N-heterozyklischen, aminischen Ligandenschmelzen. Die eingesetzten Metalle wurden entweder in ihrer elementaren Form in einer bereits bekannten, redox-basierten Synthese oder als Metallchloride in einer adduktbasierten Synthese verwendet. Synthesen mit den Liganden Imidazol (ImH), Pyrazol (PzH), Benzimidazol (bzImH), 1,2,3-Triazol (1,2,3-TzH), 1,2,4,-Triazol (1,2,4-TzH) und Piperazin (pipz) führten zu verschiedenen neuen Verbindungen und Kristallstrukturen, speziell bei Verwendung des Liganden pipz. Die erhaltenen Produkte wurden für Untersuchungen von Struktureigenschafts-beziehungen hinsichtlich des Polarisationsverhaltens und im Falle der 1,2,3-Triazolate für eine Untersuchung von Photolumineszenzeigenschaften in Abhängigkeit von Physisorptionsprozessen verwendet.
Unter den Piperazin-Verbindungen findet sich eine starke Varianz im Bereich des polymeren Charakters und des Vernetzungsgrades, welcher von Komplexen (null-dimensional) wie [CoCl2(pipz)] (26) and [ZnCl2(pipz)] (27) über Stränge (eindimensional) wie 1∞[ÜMCl2(py)2(pipz)] (ÜM = Mn (29), Fe (30), Co (31)) bis hin zu Netzen (zweidimensional) wie 2∞[Fe2Cl4(pipz)3]∙(pipz) (25) und Gerüsten (dreidimensional) wie 3∞[FeCl2(pipz)] (32) reicht. Thermoanalyse und darauf basierende Veränderungen in den Reaktionsbedingungen ermöglichen es, die Zusammenhänge zwischen den einzelnen Phasen aufzuzeigen und ihre thermodynamischen Stabilitäten zu untersuchen, was nicht nur für die Piperazin-Verbindungen, sondern auch für andere Systeme gelang, von denen die größte Gruppe die Imidazolate des Typs 3∞[ÜM3(Im)6(ImH)2] (ÜM = Mn (1), Fe (2), Co (3)) waren.
Der erfolgreiche Zusatz von geringen Mengen Mn2+ in das MOF 3∞[Zn(1,2,3-Tz)2] (21) führt zur Bildung der Phase 3∞[Zn0,9Mn0,1(1,2,3-Tz)2] (22) und zur Aktivierung von Photolumineszenz unter Beibehaltung von Mikroporosität. Das erhaltene lumineszierende, mikroporöse Gerüst wurde als Modellsystem für die Analyse von Lumineszenzänderungen während der Physisorption verschiedener Analysegase und bei unterschiedlichen Temperaturen verwendet. Die erhaltenen Ergebnisse können eine wichtige Rolle bei der Charakterisierung potentieller Sensormaterialien spielen und sind weiterhin ein möglicher Ausgangspunkt für mechanistische Überlegungen bei diesen hochinteressanten Struktureigenschaftsbeziehungen.
Die erfolgreiche Redoxreaktion elementarer Metalle mit den Liganden ImH, PzH, bzImH und 1,2,3-TzH erlaubte eine Untersuchung dielektrischer Eigenschaften einer Gruppe von verwandten Verbindungen bezüglich verschiedener Probenformen (Pulverschüttungen gegenüber gepressten Pellets) und Strukturmerkmale wie Rigidität der Kristallstrukturen. Diese Eigenschaften wurden darüber hinaus auch temperaturabhängig in einem Bereich von -100 °C bis 150 °C untersucht. Weiterhin konnte mit Untersuchungen an den MOFs 3∞[ÜM(1,2,3-Tz)2] (ÜM = Mn (18), Fe (19), Co (20), Zn (21)) auch ein Beitrag zu einem Feld der MOF-Chemie geleistet werden, welches bereits stark diskutiert wurde, jedoch bislang nur sehr schwach erforscht ist.
Novel manganese(I) tricarbonyl complexes based on the tridentate bis(pyrazolyl)ethylamine (bpea) ligand with pendant functionalized phenyl groups were synthesized and conjugated to biological carrier systems like peptides and dendrimers. Their dark stability establishes them as CORM prodrugs. The monomers show a faster CO-release compared to the peptide and dendrimer conjugates. However, both monomers and peptide conjugates release two equivalents of CO upon photoactivation at 365 nm. The dendrimer conjugates can deliver up to seven equivalents of CO due to the higher number of Mn(CO)3 moieties per molecular unit. In the future, the biological activity of the conjugates needs to be further explored to establish the targeted delivery of CO to cells and tissues.
Die vorliegende Arbeit beschreibt die Synthese von linearen und verzweigten funktionalisierten siliciumhaltigen Synthesebausteinen unter Verwendung der 2,4,6-Trimethoxyphenyl-Schutzgruppe sowie die Synthese cyclischer siliciumhaltiger Synthese-bausteine unter Verwendung eines Donor-stabilisierten Silylens. Diese Forschungsarbeit leistet daher sowohl einen Beitrag zur Schutzgruppenchemie des Siliciums als auch zur Chemie des nieder- bzw. höhervalenten Siliciums. Alle Zielverbindungen sowie die entsprechenden isolierten Vorstufen wurden durch NMR-Spektroskopie in Lösung (1H-, 13C- und 29Si-NMR) und Elementaranalysen (C, H, N; außer 15 und 16) charakterisiert. Die Verbindungen 34, 36, 41, 42, 45, 48, 52, 54 und 55 wurden zusätzlich durch NMR-Spektroskopie im Festkörper (13C-, 15N- und 29Si-VACP/MAS-NMR) untersucht, und die Verbindungen 1–6, 9, 18, 25, 29, 34, 36, 41, 42, 45, 48, 52, 54 und 55 wurden außerdem durch Einkristall-Röntgenstrukturanalyse charakterisiert.
In der vorliegenden Arbeit wird die Darstellung und Charakterisierung von Komplexen, Koordinationspolymeren und MOFs auf der Basis von dreiwertigen Lanthanidchloriden und verschiedenen verbrückenden Azin- und Diazin-Liganden beschrieben. Ziel war es neuartige Koordinationspolymere mit effektiven Photolumineszenzeigenschaften zu generieren.
Es konnten 44 neue organisch-anorganische Hybridmaterialien präsentiert werden. Der Fokus der Arbeit lag neben der strukturellen Charakterisierung auf der Bestimmung der Photolumineszenzeigenschaften und der Betrachtung der thermischen Eigenschaften der Verbindungen.
Bei solvothermalen Reaktionen von wasserfreien Lanthanidchloriden mit den Liganden 4,4‘-Bipyridin (bipy) und Pyridin (py) konnten die dinuklearen Komplexe [Ln2Cl6(bipy)(py)6] mit Ln = Y, Pr, Nd, Sm-Yb, die strangartigen Koordinationspolymere 1∞[LnCl3(bipy)(py)2]·(py) mit Ln = Gd-Er, Yb und 1∞[Lu2Cl5(bipy)2 (py)4]1∞[LuCl4(bipy)], sowie das 2D-Netzwerk 2∞[Ce2Cl6(bipy)4]·(py) synthetisiert und mithilfe der Röntgeneinkristallstrukturanalyse charakterisiert werden. Spektroskopische Untersuchungen an den Verbindungen ergaben außergewöhnliche Photolumineszenzeigenschaften auf der Basis von Ln3+-Ionen mit Emissionen im UV-VIS und NIR-Bereich. Im Falle des dinuklearen Komplexes konnten mithilfe der Ionen Y3+, Gd3+, Tb3+ und Eu3+ Lichtemission in den RGB-Grundfarben generiert werden.
Der Einfluss salzsaurer Bedingungen führt zur Bildung der pyridiniumhaltigen Nebenphasen [Hpy]1∞[LnCl4(bipy)] mit Ln = Y, Tb), Yb, Lu, [Hpy]22∞[Sm2Cl8(bipy)3]·2(py) und [Hdpa] [EuCl4(dpa)].
Unter der Verwendung einer Schmelzsyntheseroute wurden die Verbindungen 3∞[La2Cl6(bipy)5] ·4(bipy) 2∞[Ln2Cl6(bipy)3]·2(bipy) mit Ln = Nd, Sm-Dy, Er, Yb und eine Dotierreihe mit Ln = Gd2-x-yEuxTy (x,y = 0-1), welche vor einigen Jahren im Arbeitskreis von Prof. Müller-Buschbaum et al. entdeckt wurden, dargestellt. Der Fokus der Arbeit lag hierbei auf der Bestimmung der Photolumineszenzeigenschaften der Netzwerke, wobei vor allem bei der Dotierreihe unter der Verwendung von Ln3+-zentrierter Emission ein stufenloses Farbtuning der Emissionsfarbe von grün nach rot erreicht werden konnte. Zusätzlich wurden an diesen Verbindungen systematische Untersuchungen zur strukturellen Aufklärung, der bei höheren Temperaturen entstehenden Netzwerk- und Gerüstverbindungen, durchgeführt. Hierbei konnten Kondensationsprodukte wie 3∞[LaCl3(bipy)], 2∞[Ln3Cl9(bipy)3] mit Ln = Pr, Sm, 2∞[Ho2Cl6(bipy)2] und 2∞[Gd2Cl6(qtpy)(bpy)]·(bipy) strukturell aufgeklärt werden.
Die Übertragung der solvothermalen Syntheseroute unter der Verwendung von Pyridin auf die gegenüber bipy verlängerten Azin-Liganden Dipyridylethen (dpe) bzw. –ethan (dpa) erwies sich als erfolgreich und resultierte in eine Erweiterung der Strukturchemie durch die Darstellung der lumineszierenden Koordinations-polymere 2∞[La2Cl6(dpe)3(py)2]·(dpe), 1∞[LnCl3(dpe)(py)2]·0.5(dpe)0.5(py) mit Ln = Eu, Gd, Er, 2∞[LaCl3(dpa)2]·(dpa) und 1∞[LnCl3(dpa)(py)2]·0.5(dpa)0.5(py) mit Ln = Gd, Er. Eine Verkürzung des bipy-Liganden in Form der Di-Azinen wie Pyrazin (pyz), Pyrimidin (pym) und Pyridazin (pyd) und deren Umsetzung mit LnCl3 führte zur Bildung von Komplexen und polymeren Strukturen wie 3∞[LaCl3(pyz)], [Ln2Cl6(pyz)(py)6]·2(pyz) mit Ln = Sm, Er, 1∞[Sm2Cl6(μ-pym)2(pym)3]·(pym), [Er2Cl6(pym)6] und [ErCl3(η-pyd)(pyd)2] mit Lumineszenzeigenschaften auf der Basis der jeweiligen Liganden und Ln3+-Ionen.