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1.
Inorg Chem ; 62(42): 17207-17218, 2023 Oct 23.
Artigo em Inglês | MEDLINE | ID: mdl-37815813

RESUMO

Zn2+-responsive magnetic resonance imaging (MRI) contrast agents are typically composed of a Gd chelate conjugated to a Zn2+-binding moiety via a linker. They allow for Zn2+ detection in the presence of human serum albumin (HSA). In order to decipher the key parameters that drive their Zn2+-dependent MRI response, we designed a pyridine-based ligand, PyAmC2mDPA, and compared the properties of GdPyAmC2mDPA to those of analogue complexes with varying Gd core, Zn-binding moiety, or linker sizes. The stability constants determined by pH potentiometry showed the good selectivity of PyAmC2mDPA for Gd3+ (log KGd = 16.27) versus Zn2+ (log KZn = 13.58), proving that our modified Zn2+-binding DPA moiety prevents the formation of previously observed dimeric species. Paramagnetic relaxation enhancement measurements indicated at least three sites that are available for GdPyAmC2mDPA binding on HSA, as well as a 2-fold affinity increase when Zn2+ is present (KD = 170 µM versus KDZn = 60 µM). Fluorescence competition experiments provided evidence of the higher affinity for site II vs site I, as well as the importance of both the Zn-binding part and the Gd core in generating enhanced HSA affinity in the presence of Zn2+. Finally, an analysis of nuclear magnetic relaxation dispersion (NMRD) data suggested a significantly increased rigidity for the Zn2+-bound system, which is responsible for the Zn2+-dependent relaxivity response.


Assuntos
Gadolínio , Albumina Sérica Humana , Humanos , Gadolínio/química , Imageamento por Ressonância Magnética/métodos , Relação Estrutura-Atividade , Meios de Contraste/química , Quelantes/química , Zinco/química
2.
Chem Commun (Camb) ; 59(86): 12883-12886, 2023 Oct 26.
Artigo em Inglês | MEDLINE | ID: mdl-37818645

RESUMO

We present the in vitro characterisation of a Gd3+-based contrast agent that responds to Zn2+ upon interaction with Human Serum Albumin. We show that the contradictory in vivo behaviour is related to Gd3+-accumulation in Zn-rich tissues. This highlights the importance of the biodistribution of such contrast agents.


Assuntos
Meios de Contraste , Zinco , Humanos , Distribuição Tecidual , Imageamento por Ressonância Magnética
3.
Dalton Trans ; 52(19): 6260-6266, 2023 May 16.
Artigo em Inglês | MEDLINE | ID: mdl-37129192

RESUMO

Two zinc finger peptides, namely ZFQDLn and ZFQELn (Ln = Tb or Gd), with an appended Ln3+ chelate and a phosphoserine able to coordinate the Ln3+ ion are presented. The two peptides differ by the amino acid anchorage of the chelate, either aspartate (D) or glutamate (E). Both peptides are able to bind Zn2+ and adopt the ßßα fold. Interestingly, ZFQETb shows a decrease in sensitized Tb3+ luminescence upon Zn2+ binding whereas ZFQDTb does not. The luminescence change upon Zn2+ binding is attributed to a change in hydration number (q) of the Tb3+ ion due to the decoordination of the phosphoserine from the Ln3+ ion upon Zn2+ binding and peptide folding. This process is highly sensitive to the length of the linker between the Ln chelate and the peptidic backbone. The magnetic properties of the gadolinium analogue ZFQEGd were studied. An impressive relaxivity increase of 140% is observed at 60 MHz and 25 °C upon Zn2+ binding. These changes can be attributed to a combined increase effect of the hydration number of Gd3+ and of the rigidity of the system upon Zn2+ binding. Phantom MR images at 9.4 T show a clear signal enhancement in the presence of Zn2+. These zinc finger peptides offer a unique platform to design such Zn-responsive probes.


Assuntos
Gadolínio , Elementos da Série dos Lantanídeos , Gadolínio/química , Zinco/química , Elementos da Série dos Lantanídeos/química , Fosfosserina , Imageamento por Ressonância Magnética/métodos , Peptídeos , Dedos de Zinco
4.
Chemistry ; 29(14): e202203667, 2023 Mar 07.
Artigo em Inglês | MEDLINE | ID: mdl-36606721

RESUMO

Alzheimer's disease (AD) is an incurable neurodegenerative disease that leads to the progressive and irreversible loss of mental functions. The amyloid beta (Aß) peptide involved in the disease is responsible for the production of damaging reactive oxygen species (ROS) when bound to Cu ions. A therapeutic approach that consists of removing Cu ions from Aß to alter this deleterious interaction is currently being developed. In this context, we report the ability of five different 12-membered thiaazacyclen ligands to capture Cu from Aß and to redox silence it. We propose that the presence of a sole sulfur atom in the ligand increases the rate of Cu capture and removal from Aß, while the kinetic aspect of the chelation was an issue encountered with the 4N parent ligand. The best ligand for removing Cu from Aß and inhibiting the associated ROS production is the 1-thia-4,7,10-triazacyclododecane [3N1S]. Indeed the replacement of more N by S atoms makes the corresponding Cu complexes easier to reduce and thus able to produce ROS on their own. In addition, the ligand with three sulfur atoms has a weaker affinity for CuII than Aß, and is thus unable to remove Cu from CuAß.


Assuntos
Doença de Alzheimer , Doenças Neurodegenerativas , Humanos , Peptídeos beta-Amiloides/química , Espécies Reativas de Oxigênio/metabolismo , Ligantes , Doença de Alzheimer/metabolismo , Cobre/química
5.
Molecules ; 27(22)2022 Nov 15.
Artigo em Inglês | MEDLINE | ID: mdl-36432004

RESUMO

Amino-terminal CuII and NiII (ATCUN) binding sequences are widespread in the biological world. Here, we report on the study of eight ATCUN peptides aimed at targeting copper ions and stopping the associated formation of reactive oxygen species (ROS). This study was actually more focused on Cu(Aß)-induced ROS production in which the Aß peptide is the "villain" linked to Alzheimer's disease. The full characterization of CuII binding to the ATCUN peptides, the CuII extraction from CuII(Aß), and the ability of the peptides to prevent and/or stop ROS formation are described in the relevant biological conditions. We highlighted in this research that all the ATCUN motifs studied formed the same thermodynamic complex but that the addition of a second histidine in position 1 or 2 allowed for an improvement in the CuII uptake kinetics. This kinetic rate was directly related to the ability of the peptide to stop the CuII(Aß)-induced production of ROS, with the most efficient motifs being HWHG and HGHW.


Assuntos
Doença de Alzheimer , Humanos , Espécies Reativas de Oxigênio , Peptídeos/farmacologia , Histidina , Cinética
6.
Inorg Chem ; 60(11): 7650-7659, 2021 Jun 07.
Artigo em Inglês | MEDLINE | ID: mdl-33983723

RESUMO

The interpeptidic CuII exchange rate constants were measured for two Cu amyloid-ß complexes, Cu(Aß1-16) and Cu(Aß1-28), to fluorescent peptides GHW and DAHW using a quantitative tryptophan fluorescence quenching methodology. The second-order rate constants were determined at three pH values (6.8, 7.4, and 8.7) important to the two Cu(Aß) coordination complexes, components Cu(Aß)I and Cu(Aß)II. The interpeptidic CuII exchange rate constant is approximately 104 M-1 s-1 but varies in magnitude depending on many variables. These include pH, length of the Aß peptide, location of the anchoring histidine ligand in the fluorescent peptide, number of amide deprotonations required in the tryptophan peptide to coordinate CuII, and interconversion between Cu(Aß)I and Cu(Aß)II. We also present EPR data probing the CuII exchange between peptides and the formation of ternary species between Cu(Aß) and GHW. As the nonfluorescent GHK and DAHK peptides are important motifs found in the blood and serum, their ability to sequester CuII ions from Cu(Aß) complexes may be relevant for the metal homeostasis and its implication in Alzheimer's disease. Thus, their kinetic CuII interpeptidic exchange rate constants are important chemical rate constants that can help elucidate the complex CuII trafficking puzzle in the synaptic cleft.


Assuntos
Peptídeos beta-Amiloides/metabolismo , Cobre/metabolismo , Fluorescência , Peptídeos/metabolismo , Triptofano/metabolismo , Peptídeos beta-Amiloides/química , Cobre/química , Espectroscopia de Ressonância de Spin Eletrônica , Fluorometria , Conformação Molecular , Peptídeos/química , Espectrofotometria Ultravioleta , Triptofano/química
7.
Pharmaceuticals (Basel) ; 13(12)2020 Nov 30.
Artigo em Inglês | MEDLINE | ID: mdl-33266014

RESUMO

Zinc and copper are essential cations involved in numerous biological processes, and variations in their concentrations can cause diseases such as neurodegenerative diseases, diabetes and cancers. Hence, detection and quantification of these cations are of utmost importance for the early diagnosis of disease. Magnetic resonance imaging (MRI) responsive contrast agents (mainly Lanthanide(+III) complexes), relying on a change in the state of the MRI active part upon interaction with the cation of interest, e.g., switch ON/OFF or vice versa, have been successfully utilized to detect Zn2+ and are now being developed to detect Cu2+. These paramagnetic probes mainly exploit the relaxation-based properties (T1-based contrast agents), but also the paramagnetic induced hyperfine shift properties (paraCEST and parashift probes) of the contrast agents. The challenges encountered going from Zn2+ to Cu2+ detection will be stressed and discussed herein, mainly involving the selectivity of the probes for the cation to detect and their responsivity at physiologically relevant concentrations. Depending on the response mechanism, the use of fast-field cycling MRI seems promising to increase the detection field while keeping a good response. In vivo applications of cation responsive MRI probes are only in their infancy and the recent developments will be described, along with the associated quantification problems. In the case of relaxation agents, the presence of another method of local quantification, e.g., synchrotron X-Ray fluorescence, single-photon emission computed tomography (SPECT) or positron emission tomography (PET) techniques, or 19F MRI is required, each of which has its own advantages and disadvantages.

8.
Chemistry ; 25(35): 8236-8239, 2019 Jun 21.
Artigo em Inglês | MEDLINE | ID: mdl-30990914

RESUMO

Many smart magnetic resonance imaging (MRI) probes provide response to a biomarker based on modulation of their rotational correlation time. The magnitude of such MRI signal changes is highly dependent on the magnetic field and the response decreases dramatically at high fields (>2 T). To overcome the loss of efficiency of responsive probes at high field, with fast-field cycling magnetic resonance imaging (FFC-MRI) we exploit field-dependent information rather than the absolute difference in the relaxation rate measured in the absence and in the presence of the biomarker at a given imaging field. We report here the application of fast field-cycling techniques combined with the use of a molecular probe for the detection of Zn2+ to achieve 166 % MRI signal enhancement at 3 T, whereas the same agent provides no detectable response using conventional MRI. This approach can be generalized to any biomarker provided the detection is based on variation of the rotational motion of the probe.


Assuntos
Complexos de Coordenação/química , Gadolínio/química , Zinco/análise , Biomarcadores/análise , Técnicas Biossensoriais/métodos , Complexos de Coordenação/síntese química , Campos Eletromagnéticos , Ligantes , Limite de Detecção , Imageamento por Ressonância Magnética/métodos , Sondas Moleculares/química , Albumina Sérica Humana/química , Termodinâmica
9.
Chem Commun (Camb) ; 54(55): 7597-7600, 2018 Jul 05.
Artigo em Inglês | MEDLINE | ID: mdl-29789839

RESUMO

We propose quantitative assessment of zinc by combining nuclear and MR imaging. We use a cocktail of a Gd3+-complex providing a Zn2+-dependent MRI response and its 165Er3+ analogue allowing for concentration assessment. 165Er is readily obtained in a cyclotron and purified, which is indispensable for successful quantification of metal ions.

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