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1.
ChemMedChem ; 16(21): 3280-3292, 2021 11 05.
Article in English | MEDLINE | ID: mdl-34329530

ABSTRACT

Triple negative breast cancer (TNBC) is one of the breast cancers with poorer prognosis and survival rates. TNBC has a disproportionally high incidence and mortality in women of African descent. We report on the evaluation of Ru-IM (1), a water-soluble organometallic ruthenium compound, in TNBC cell lines derived from patients of European (MDA-MB-231) and African (HCC-1806) ancestry (including IC50 values, cellular and organelle uptake, cell death pathways, cell cycle, effects on migration, invasion, and angiogenesis, a preliminary proteomic analysis, and an NCI 60 cell-line panel screen). 1 was previously found highly efficacious in MDA-MB-231 cells and xenografts, with little systemic toxicity and preferential accumulation in the tumor. We observe a similar profile for this compound in the two cell lines studied, which includes high cytotoxicity, apoptotic behavior and potential antimetastatic and antiangiogenic properties. Cytokine M-CSF, involved in the PI3/AKT pathway, shows protein expression inhibition with exposure to 1. We also demonstrate a p53 independent mechanism of action.


Subject(s)
Antineoplastic Agents/pharmacology , Coordination Complexes/pharmacology , Imines/pharmacology , Phosphoranes/pharmacology , Rubidium/pharmacology , Triple Negative Breast Neoplasms/drug therapy , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/chemistry , Cell Cycle/drug effects , Cell Death/drug effects , Cell Line, Tumor , Cell Movement/drug effects , Cell Proliferation/drug effects , Coordination Complexes/chemical synthesis , Coordination Complexes/chemistry , Dose-Response Relationship, Drug , Drug Screening Assays, Antitumor , Humans , Imines/chemistry , Molecular Structure , Phosphoranes/chemistry , Rubidium/chemistry , Structure-Activity Relationship , Triple Negative Breast Neoplasms/metabolism , Triple Negative Breast Neoplasms/pathology
2.
J Mol Model ; 26(10): 269, 2020 Sep 14.
Article in English | MEDLINE | ID: mdl-32929576

ABSTRACT

Phosphorene ability for delivery of mercaptopurine and fluorouracil was investigated by the density functional theory (DFT) method. However, the effects of Na, Ca, and Fe as dopants on phosphorene electronic properties such as HOMO and LUMO energies, density of states, chemical potential, electrophilicity index, softness, hardness, and its ability for drug delivery were studied. Natural bond orbital (NBO) analysis was performed. Our findings indicate that metallic dopants can improve the ability of phosphorene. Calcium-doped phosphorene has the greatest adsorption energy.


Subject(s)
Calcium/chemistry , Drug Carriers/chemistry , Fluorouracil/administration & dosage , Iron/chemistry , Mercaptopurine/administration & dosage , Phosphoranes/chemistry , Sodium/chemistry , Antineoplastic Agents/administration & dosage , Drug Delivery Systems , Fluorouracil/chemistry , Mercaptopurine/chemistry , Models, Molecular , Molecular Conformation , Molecular Structure
3.
Molecules ; 25(17)2020 Sep 01.
Article in English | MEDLINE | ID: mdl-32883039

ABSTRACT

A series of dinuclear copper(I) N,C,N- and P,C,P-carbodiphosphorane (CDP) complexes using multidentate ligands CDP(Py)2 (1) and (CDP(CH2PPh2)2 (13) have been isolated and characterized. Detailed structural information was gained by single-crystal XRD analyses of nine representative examples. The common structural motive is the central double ylidic carbon atom with its characteristic two lone pairs involved in the binding of two geminal L-Cu(I) fragments at Cu-Cu distances in the range 2.55-2.67 Å. In order to enhance conformational rigidity within the characteristic Cu-C-Cu triangle, two types of chelating side arms were symmetrically attached to each phosphorus atom: two 2-pyridyl functions in ligand CDP(Py)2 (1) and its dinuclear copper complexes 2-9 and 11, as well as two diphenylphosphinomethylene functions in ligand CDP(CH2PPh2)2 (13) and its di- and mononuclear complexes 14-18. Neutral complexes were typically obtained via the reaction of 1 with Cu(I) species CuCl, CuI, and CuSPh or via the salt elimination reaction of [(CuCl)2(CDP(Py)2] (2) with sodium carbazolate. Cationic Cu(I) complexes were prepared upon treating 1 with two equivalents of [Cu(NCMe)4]PF6, followed by the addition of either two equivalents of an aryl phosphine (PPh3, P(C6H4OMe)3) or one equivalent of bisphosphine ligands bis[(2-diphenylphosphino)phenyl] ether (DPEPhos), 4,5-bis(diphenylphosphino)-9,9-dimethylxanthene (XantPhos), or 1,1'-bis(diphenyl-phosphino) ferrocene (dppf). For the first time, carbodiphosphorane CDP(CH2PPh2)2 (13) could be isolated upon treating its precursor [CH(dppm)2]Cl (12) with NaNH2 in liquid NH3. A protonated and a deprotonated derivative of ligand 13 were prepared, and their coordination was compared to neutral CDP ligand 13. NMR analysis and DFT calculations reveal that the most stable tautomer of 13 does not show a CDP (or carbone) structure in its uncoordinated base form. For most of the prepared complexes, photoluminescence upon irradiation with UV light at room temperature was observed. Quantum yields (ΦPL) were determined to be 36% for dicationic [(CuPPh3)2(CDP(Py)2)](PF6)2 (4) and 60% for neutral [(CuSPh)2(CDP(CH2PPh2)2] (16).


Subject(s)
Copper/chemistry , Luminescence , Phosphoranes/chemistry , Ligands , Phosphoranes/chemical synthesis , Quantum Theory , Spectrum Analysis , Temperature , X-Ray Diffraction
4.
ACS Comb Sci ; 22(10): 475-494, 2020 10 12.
Article in English | MEDLINE | ID: mdl-32631055

ABSTRACT

N-Isocyaniminotriphenylphosphorane (NIITP) is a functionalized isonitrile that has been extensively applied in a variety of organic reactions during the last two decades. This Review summarizes the most important applications in organic synthesis of this versatile reactant, with the focus posed on mechanistic and methodological aspects allowing the generation of molecular diversity. NIITP combines the reactivity of isonitriles with that of phosphoranes to enable chemical transformations employed in the construction of compound libraries. Here, we cover from the initial applications of NIITP in the Nef isocyanide reaction to further derivations that render a variety of heterocyclic scaffolds. The presence of the isonitrile moiety in this singular compound makes possible the double addition of nucleophiles and electrophiles, which followed by inter(intra)molecular aza-Wittig type transformations enable several multicomponent and tandem processes. In particular, we stress the impact of NIITP in oxadiazole chemistry, from the early two-component transformations to recent examples of multicomponent reactions that take place in the presence of suitable electrophiles. In addition, we briefly describe the role of NIITP chemistry in generating skeletal and conformational diversity in cyclic peptides. The reaction of NIITP with alkynes is thoroughly revised, with particular emphasis on silver-catalyzed processes that have been developed in the last years. Biomedicinal applications of some reaction products are also mentioned along with a perspective of future applications of this reactant.


Subject(s)
Chemistry Techniques, Synthetic/methods , Phosphoranes/chemistry , Alkynes/chemistry , Carbodiimides/chemistry , Catalysis , Cyclization , Molecular Conformation , Molecular Structure , Nitriles/chemistry , Oxadiazoles/chemistry , Silver/chemistry , Small Molecule Libraries/chemical synthesis
5.
Org Lett ; 22(8): 2976-2980, 2020 04 17.
Article in English | MEDLINE | ID: mdl-32223201

ABSTRACT

The flexible variation of peptidomimetics is of great interest for the identification of optimized protein ligands. Here we present a general concept for introducing side-chain modifications into peptides using triarylphosphonium amino acids. Building blocks 4a and 4b are activated for amidation and incorporated into stable peptides. The obtained phosphoranylidene peptides undergo Wittig olefinations and 1,3-dipolar cycloaddition reactions, yielding peptidomimetics with vinyl ketones and 5-substituted 1,2,3-triazoles as non-native peptide side chains.


Subject(s)
Aldehydes/chemistry , Amino Acids/chemistry , Peptides/chemistry , Peptidomimetics/chemical synthesis , Phosphoranes/chemistry , Cycloaddition Reaction , Molecular Conformation , Peptidomimetics/chemistry
6.
ACS Nano ; 13(11): 13217-13224, 2019 11 26.
Article in English | MEDLINE | ID: mdl-31622080

ABSTRACT

Phosphorene is a two-dimensional material that has many advantageous electronic, electrochemical, and optical properties. However, phosphorene possesses a relatively poor stability in ambient atmosphere. This disadvantage limits its application in several systems and particularly in electrochemical biosensors. Here we evaluate phosphorene as an electrochemical biosensing platform in two different mediator-based oxidoreductase enzymatic systems (glucose oxidase (GOx) and peroxidase from horseradish (HRP)), in which their detection is based on the reduction or oxidation of a mediator. In both cases, the used mediator is the same, ferrocene methanol (FcMeOH). Enhanced electrochemical activity is observed only in the reductive system (HRP-based biosensor) when compared to the oxidative counterpart (GOx-based biosensor). This phenomenon is attributed to the fact that in a reductive environment the phosphorene structure remains intact, while in an oxidative potential, the phosphorene is readily oxidized. In this way, the electroactivity of phosphorene as a sensing platform is strongly dependent on the type of mediator-based enzymatic system. These findings of binary nature of phosphorene are of high importance for construction of phosphorene-sensing platforms and in the development of enzyme logic systems.


Subject(s)
Biosensing Techniques , Hydrogen Peroxide/analysis , Oxidoreductases/metabolism , Phosphoranes/metabolism , Glucose/analysis , Glucose/metabolism , Hydrogen Peroxide/metabolism , Oxidation-Reduction , Oxidoreductases/chemistry , Phosphoranes/chemistry
7.
J Am Chem Soc ; 141(33): 13222-13233, 2019 08 21.
Article in English | MEDLINE | ID: mdl-31352780

ABSTRACT

Synthetic strategies to yield molecular complexes of high-valent lanthanides, other than the ubiquitous Ce4+ ion, are exceptionally rare, and thorough, detailed characterization in these systems is limited by complex lifetime and reaction and isolation conditions. The synthesis of high-symmetry complexes in high purity with significant lifetimes in solution and the solid state is essential for determining the role of ligand-field splitting, multiconfigurational behavior, and covalency in governing the reactivity and physical properties of these potentially technologically transformative tetravalent ions. We report the synthesis and physical characterization of an S4 symmetric, four-coordinate tetravalent terbium complex, [Tb(NP(1,2-bis-tBu-diamidoethane)(NEt2))4] (where Et is ethyl and tBu is tert-butyl). The ligand field in this complex is weak and the metal-ligand bonds sufficiently covalent so that the tetravalent terbium ion is stable and accessible via a mild oxidant from the anionic, trivalent, terbium precursor, [(Et2O)K][Tb(NP(1,2-bis-tBu-diamidoethane)(NEt2))4]. The significant stability of the tetravalent complex enables its thorough characterization. The stepwise development of the supporting ligand points to key ligand control elements for further extending the known tetravalent lanthanide ions in molecular complexes. Magnetic susceptibility, electron paramagnetic resonance (EPR) spectroscopy, X-ray absorption near-edge spectroscopy (XANES), and density functional theory studies indicate a 4f7 ground state for [Tb(NP(1,2-bis-tBu-diamidoethane)(NEt2))4] with considerable zero-field splitting, demonstrating that magnetic, tetravalent lanthanide ions engage in covalent metal-ligand bonds. This result has significant implications for the use of tetravalent lanthanide ions in magnetic applications since the observed zero-field splitting is intermediate between that observed for the trivalent lanthanides and for the transition metals. The similarity of the multiconfigurational behavior in the ground state of [Tb(NP(1,2-bis-tBu-diamidoethane)(NEt2))4] (measured by Tb L3-edge XAS) to that observed in TbO2 implicates ligand control of multiconfigurational behavior as a key component of the stability of the complex.


Subject(s)
Coordination Complexes/chemistry , Terbium/chemistry , Coordination Complexes/chemical synthesis , Electron Spin Resonance Spectroscopy , Ligands , Models, Molecular , Phosphoranes/chemical synthesis , Phosphoranes/chemistry , X-Ray Absorption Spectroscopy
8.
J Mol Graph Model ; 89: 96-101, 2019 06.
Article in English | MEDLINE | ID: mdl-30884451

ABSTRACT

Two-dimensional black phosphorus (phosphorene) has drawn much attention in recent years due to its excellent electronic and optical properties. In this manuscript, we employ ab initio calculations to investigate the structural origin of the phosphorene/perovskite heterostructure. The calculations suggest that the chemical stability and the mechanical stability depend on the surface terminations, and the mechanical stability of the phosphorene/perovskite heterojunction should be further improved. The weak interactions between the P atoms in the phosphorene and the under-coordinated Pb atoms at the perovskite surfaces, as well as the weak interfacial charge transfer characters, are proposed to be mainly responsible for the moderate heterostructure stability. Suggestions to improve the stability of the heterojunction are provided. This study helps the fundamental understanding of the interaction between the phosphorene and the halide perovskite materials, and could provide a foundation for the better understanding of the low-dimensional materials in perovskite-based optoelectronic devices.


Subject(s)
Calcium Compounds/chemistry , Molecular Structure , Oxides/chemistry , Phosphoranes/chemistry , Solar Energy , Titanium/chemistry , Chemical Phenomena , Structure-Activity Relationship
9.
Org Biomol Chem ; 17(2): 315-320, 2019 01 02.
Article in English | MEDLINE | ID: mdl-30543240

ABSTRACT

Nucleotide prodrugs (ProTides) based on phosphate or phosphonate compounds are potent and successfully marketed antiviral drugs. Although their biological properties are well explored, experimental evidence on the mechanism of their activation pathway is still missing. In this study, we synthesized two ProTide analogues, which can be activated by UV light. Using 31P and 13C NMR spectroscopy with in situ irradiation, we followed the ProTide activation pathway in various solvents, and we detected the first proposed intermediate and the monoamidate product. Furthermore, we used mass spectrometry (MS) coupled with infrared spectroscopy in the gas phase to detect and to characterize the elusive cyclic pentavalent phosphorane and cyclic acyl phosphoramidate intermediates. Our combined NMR and MS data provided the first experimental evidence of the cyclic intermediates in the activation pathway of ProTide prodrugs.


Subject(s)
Antiviral Agents/chemistry , Nucleotides/chemistry , Phosphoranes/chemistry , Prodrugs/chemistry , Amides/chemistry , Cyclization , Magnetic Resonance Spectroscopy , Phosphoric Acids/chemistry , Photolysis , Ultraviolet Rays
10.
J Am Chem Soc ; 140(26): 8114-8118, 2018 07 05.
Article in English | MEDLINE | ID: mdl-29923715

ABSTRACT

The synthesis and reactivity of an NPN-chelating ligand containing a nontrigonal phosphorous triamide center (L1 = P(N( o-N(2-pyridyl)C6H4)2) is reported. Metalation of L1 with RuCl2(PPh3)3 gives RuCl2(PPh3)(L1) (2). By contrast, metalation of L1 with RuHCl(CO)(PPh3)3 yields RuCl(CO)(PPh3)(L1H) (3), a chelated 10-P-5 ruthenahydridophosphorane, via net insertion into the Ru-H bond. Hydride abstraction from 3 with Ph3CPF6 gives [RuCl(CO)(PPh3)(L1)]PF6 (4); reaction of 4 with NaBH4 returns 3.


Subject(s)
Organometallic Compounds/chemical synthesis , Phosphoranes/chemistry , Phosphorus/chemistry , Transition Elements/chemistry , Ligands , Molecular Structure , Organometallic Compounds/chemistry
11.
Chemosphere ; 185: 509-517, 2017 Oct.
Article in English | MEDLINE | ID: mdl-28715762

ABSTRACT

Polychlorinated dibenzo-p-dioxins (PCDDs) are highly toxic to humans. The search for novel and effective methods and materials for detecting or removing these gas pollutants is becoming more important and urgent. With its high specific surface area, abundance, and variety of potential applications, phosphorene has attracted much research interest. In this study, density functional theory was used to study the interactions between a doped phosphorene sheet and a tetrachlorodibenzo-p-dioxin (TCDD) molecule. The initial configurations of the TCDD and metallic (Ca or Ti) or nonmetallic (S and Se) dopants were investigated during the TCDD-phosphorene interaction study. Adsorption energy, isosurface of electron density difference, and density of states analysis were utilized to explore the interactions between TCDD and phosphorene. The results indicated that Ca dopant effectively improved the interaction between TCDD and phosphorene. Se dopant reduced the interaction between TCDD and phosphorene. Combining interactions between TCDD and the pristine, Ca-doped, and Se-doped phosphorenes, phosphorene could be a promising candidate for TCDD sensing and removal.


Subject(s)
Environmental Pollutants/isolation & purification , Environmental Restoration and Remediation/methods , Fullerenes/chemistry , Phosphoranes/chemistry , Polychlorinated Dibenzodioxins/isolation & purification , Adsorption , Calcium , Environmental Pollutants/chemistry , Gases/isolation & purification , Humans , Polychlorinated Dibenzodioxins/chemistry , Quantum Theory , Selenium , Sulfur , Titanium
12.
Molecules ; 21(11)2016 Nov 21.
Article in English | MEDLINE | ID: mdl-27879636

ABSTRACT

This review presents synthetic procedures applied to the preparation of chiral (mainly optically active) pentacoordinated, hypervalent mono and bicyclic phosphoranes. The mechanisms of their stereoisomerization and their selected interconversions are also presented.


Subject(s)
Phosphoranes/chemistry , Anions/chemistry , Chemistry Techniques, Synthetic , Cycloaddition Reaction , Hydrolysis , Phosphoranes/chemical synthesis , Stereoisomerism
13.
Biosens Bioelectron ; 80: 331-338, 2016 Jun 15.
Article in English | MEDLINE | ID: mdl-26852202

ABSTRACT

Cancer, as one of the leading causes of death in the world, is caused by malignant cell division and growth that depends on rapid DNA replication. To develop anti-cancer drugs this feature of cancer could be exploited by utilizing DNA-damaging molecules. To achieve this, the paraben substituted cyclotetraphosphazene compounds have been synthesized for the first time and their effect on DNA (genotoxicity) has been investigated. The conventional genotoxicity testing methods are laborious, take time and are expensive. Biosensor based assays provide an alternative to investigate this drug/compound DNA interactions. Here for the first time, a new, easy and rapid screening method has been used to investigate the DNA damage, which is based on an automated biosensor device that relies on the real-time electrochemical profiling (REP™) technology. Using both the biosensor based screening method and the in vitro biological assay, the compounds 9 and 11 (propyl and benzyl substituted cyclotetraphosphazene compounds, respectively), have resulted in higher DNA damage than the others with 65% and 80% activity reduction, respectively.


Subject(s)
Biosensing Techniques/instrumentation , DNA Damage/drug effects , Parabens/chemistry , Parabens/pharmacology , Phosphoranes/chemistry , Phosphoranes/pharmacology , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/chemistry , Antineoplastic Agents/pharmacology , DNA/genetics , Equipment Design , Humans , Models, Molecular , Mutagenicity Tests , Neoplasms/drug therapy , Neoplasms/genetics , Parabens/chemical synthesis , Phosphoranes/chemical synthesis
14.
Dalton Trans ; 45(5): 1810-22, 2016 Feb 07.
Article in English | MEDLINE | ID: mdl-26525036

ABSTRACT

Hexachlorocyclotriphosphazene is an old compound which affords very new properties in the field of dendrimers. Indeed, it can be used as a branching point for the rapid synthesis of highly dense dendrimers, but also for the synthesis of dendrimers having precisely one function different from all the others. These types of dendrimers are useful in the field of materials, affording highly reusable catalysts, chemical sensors, or supports for cell cultures. However, the most developed uses concern fluorescence. These dendrimers have been used for in vivo imaging, and for trying to elucidate biological mechanisms, in particular for anti-inflammatory dendrimers. This review will display important examples in the field.


Subject(s)
Dendrimers/chemistry , Phosphoranes/chemistry , Dendrimers/pharmacology , Humans , Nanostructures/chemistry , Phosphoranes/pharmacology
15.
J Med Chem ; 58(15): 5825-41, 2015 Aug 13.
Article in English | MEDLINE | ID: mdl-26147404

ABSTRACT

New organometallic gold(III) and platinum(II) complexes containing iminophosphorane ligands are described. Most of them are more cytotoxic to a number of human cancer cell lines than cisplatin. Cationic Pt(II) derivatives 4 and 5, which differ only in the anion, Hg2Cl6(2-) or PF6(-) respectively, display almost identical IC50 values in the sub-micromolar range (25-335-fold more active than cisplatin on these cell lines). The gold compounds induced mainly caspase-independent cell death, as previously reported for related cycloaurated compounds containing IM ligands. Cycloplatinated compounds 3, 4, and 5 can also activate alternative caspase-independent mechanisms of death. However, at short incubation times cell death seems to be mainly caspase dependent, suggesting that the main mechanism of cell death for these compounds is apoptosis. Mercury-free compound 5 does not interact with plasmid (pBR322) DNA or with calf thymus DNA. Permeability studies of 5 by two different assays, in vitro Caco-2 monolayers and a rat perfusion model, have revealed a high permeability profile for this compound (comparable to that of metoprolol or caffeine) and an estimated oral fraction absorbed of 100%, which potentially makes it a good candidate for oral administration.


Subject(s)
Antineoplastic Agents/pharmacology , Gold/chemistry , Phosphoranes/chemistry , Platinum/chemistry , Animals , Antineoplastic Agents/chemistry , Cations , Cattle , Cell Line, Tumor , Crystallography, X-Ray , Cyclization , DNA/drug effects , Drug Screening Assays, Antitumor , Humans , Molecular Structure , Rats
16.
Angew Chem Int Ed Engl ; 54(34): 9954-7, 2015 Aug 17.
Article in English | MEDLINE | ID: mdl-26138611

ABSTRACT

A highly E-selective and enantioselective conjugate addition of 2-benzyloxythiazol-5(4H)-ones to ß-substituted alkynyl N-acyl pyrazoles is achieved under the catalysis of a P-spiro chiral iminophosphorane. Simultaneous control of the newly generated central chirality and olefin geometry is possible with a wide array of the alkynyl Michael acceptors possessing different aromatic and aliphatic ß-substituents, as well as the various α-amino acid-derived thiazolone nucleophiles. This protocol provides access to structurally diverse, optically active α-amino acids bearing a geometrically defined trisubstituted olefinic component at the α-position.


Subject(s)
Alkynes/chemistry , Phosphoranes/chemistry , Alkenes/chemistry , Amino Acids/chemistry , Catalysis , Electrons , Molecular Structure , Stereoisomerism
17.
Org Biomol Chem ; 13(16): 4737-42, 2015 Apr 28.
Article in English | MEDLINE | ID: mdl-25805021

ABSTRACT

4'-(Hydroxymethyl)uridylyl-3',5'-thymidine, an RNA model bearing an extra hydroxymethyl group at the 4'-position of the 3'-linked nucleoside, has been prepared and its cleavage and isomerization reactions studied over a wide pH range (from 0 to 12). Overall, the pH-rate profiles of these reactions were very similar to those of uridylyl-3',5'-uridine (UpU) - only a very modest acceleration was observed under acidic and neutral conditions. Evidently, hydrogen bond assistance by the additional hydroxymethyl function does not play a significant role.


Subject(s)
Dinucleoside Phosphates/chemical synthesis , Esters/chemistry , Thymidine/chemistry , Thymidine/chemical synthesis , Uridine/chemistry , Catalysis , Chromatography, High Pressure Liquid , Hydrogen Bonding , Hydrogen-Ion Concentration , Hydrolysis , Kinetics , Nucleosides/chemistry , Organophosphates/chemistry , Phosphoranes/chemistry , RNA/chemistry , Ribonucleosides/chemistry
18.
ACS Appl Mater Interfaces ; 7(8): 4990-7, 2015 Mar 04.
Article in English | MEDLINE | ID: mdl-25651861

ABSTRACT

Functionalized and monodisperse nanoshells have attracted significant attention owing to their well-defined structure, unique properties, and wide range of potential applications. Here, the synthesis of cross-linked organic-inorganic hybrid nanoshells with strong fluorescence properties was reported via a facile precipitation polymerization of hexachlorocyclotriphosphazene (HCCP) and fluorescein on silica particles used as templates. The resulting poly(cyclotriphosphazene-co-fluorescein) (PCTPF) nanoshells were firm cross-linked shells with ∼2.2 nm mesopores that facilitated the transport of drug molecules. The fluorescent nanoshells also exhibited excellent water dispersibility and biocompatibility; thus, they can be considered as ideal drug vehicles with high doxorubicin storage capacity (26.2 wt %) and excellent sustained release (up to 14 days). Compared to doxorubicin (DOX) alone, the PCTPF nanoshells more efficiently delivered DOX into and killed cancer cells. Moreover, the PCTPF nanoshells also exhibited remarkable fluorescent emission properties and improved photobleaching stability in both suspension and solid state owing to the covalent immobilization of fluorescein in the highly cross-linked organic-inorganic hybrids. The exceptional fluorescent properties enabled the release of DOX as well as the distribution of nanoshells and DOX to be monitored.


Subject(s)
Drug Carriers/chemistry , Fluorescent Dyes/chemistry , Nanoshells/chemistry , Antineoplastic Agents/chemistry , Antineoplastic Agents/pharmacology , Cell Survival/drug effects , Doxorubicin/chemistry , Doxorubicin/pharmacology , Fluorescein/chemistry , Fluorescent Dyes/metabolism , HeLa Cells , Humans , Microscopy, Fluorescence , Nanoshells/ultrastructure , Phosphoranes/chemistry , Porosity , Silicon Dioxide/chemistry
19.
Inorg Chem ; 54(1): 334-41, 2015 Jan 05.
Article in English | MEDLINE | ID: mdl-25521276

ABSTRACT

Octachlorocyclotetraphosphazene (1) was reacted with butylamines [n-butyl, i-butyl, sec-butyl, and t-butyl] in a 1:0.8 mol ratio in THF to obtain cyclotetraphosphazenes bearing a P-NH group, N4P4Cl7(NHR) [R = n-butyl (2a), i-butyl (2b), sec-butyl (2c), t-butyl (2d)](2a-d). The cyclotetraphosphazene derivatives 2a, 2b, and 2c were treated with sodium hydride giving rise to a new type of cyclophosphazene compounds (P8N8 ring) consisting of three fused tetramer rings (3a-c). Whereas reaction of sodium hydride with the t-butylaminocyclophosphazene derivative (2d) gave a P-O-P bridged compound (4) presumably as a result of hydrolysis reaction associated with moisture in the solvent. It is likely that the 16-membered cyclooctaphosphazene derivatives (3a-c) are formed by a proton abstraction/chloride ion elimination, intramolecular nucleophilic attack, ring opening and intermolecular condensation processes, respectively.


Subject(s)
Butylamines/chemistry , Phosphoranes/chemical synthesis , Protons , Chlorides/chemistry , Crystallography, X-Ray , Furans/chemistry , Phosphoranes/chemistry , Sodium Compounds/chemistry
20.
Chem Commun (Camb) ; 50(85): 12927-9, 2014 Nov 04.
Article in English | MEDLINE | ID: mdl-25215857

ABSTRACT

Cycloisomerisation of γ-alkynoic acids into cyclic enol-lactones was conveniently performed, for the first time, in the eutectic mixture 1ChCl/2Urea under standard bench experimental conditions (at room temperature, under air and in the absence of co-catalysts) by using a new iminophosphorane-Au(I) complex as the catalyst. Furthermore, the catalytic system could be recycled up to four runs.


Subject(s)
Acids/chemistry , Alkynes/chemistry , Lactones/chemistry , Organogold Compounds/chemistry , Pentanoic Acids/chemistry , Phosphoranes/chemistry , Catalysis , Cyclization , Green Chemistry Technology , Imines/chemistry , Isomerism , Solvents , Urea/chemistry
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