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1.
Rev Sci Instrum ; 91(4): 043301, 2020 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-32357746

RESUMO

Pickup spectroscopy is a means of determining the abundance, mass, charge, and lifetime of ions oscillating in electrostatic ion beam traps. Here, we present a framework for describing the harmonic height distribution of the Fourier transform of the pickup signal and discuss the importance of the pickup positioning, bunch dynamics, and pickup width on the harmonic height distribution. We demonstrate the methodology using measurements from a newly constructed electrostatic ion beam trap.

2.
J Phys Chem A ; 120(16): 2547-9, 2016 04 28.
Artigo em Inglês | MEDLINE | ID: mdl-27046667

RESUMO

Previous studies have shown that the gas-phase fragmentation of the retinal chromophore after S0-S1 photoexcitation results in a prominent fragment of mass 248 which cannot be explained by the cleavage of any single bond along the polyene chain. It was therefore theorized that the fragmentation mechanism involves a series of isomerizations and cyclization processes, and two mechanisms for these processes were suggested. Here we used isotope labeling MS-MS to provide conclusive support for the fragmentation mechanism suggested by Coughlan et al. (J. Phys. Chem. Lett. 2014, 5, 3195).


Assuntos
Marcação por Isótopo , Retina/química , Rodopsina/química , Ciclização , Estereoisomerismo , Espectrometria de Massas em Tandem
3.
Photochem Photobiol ; 90(4): 796-800, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24588634

RESUMO

Singlet oxygen, created in photosensitization, peroxidizes unsaturated fatty acids of the membrane's lipids. This generates alcoholic or aldehyde groups at double bonds' breakage points. In a previous study, we examined the leakage of a K(+) -induced cross-membrane electric potential of liposomes that undergo photosensitization. The question remains to what extent peroxidized lipids can compromise the stability of the membrane. In this study, we studied the effect of the oxidatively modified lipids PGPC and ALDOPC in the membrane on its stability, by monitoring the membrane electric potential with the potentiometric dye DiSC(2)(5). As the content of the modified lipids increases the membrane becomes less stable, and even at just 2% of the modified lipids the membrane's integrity is affected, in respect to the leakage of ions through it. When the liposomes that contain the modified lipids undergo photosensitization by hematoporphyrin, the lipid bilayer becomes even more unstable and passage of ions is accelerated. We conclude that the existence of lipids with a shortened fatty acid that is terminated by a carboxylic acid or an aldehyde and more so when photosensitized damage occurs to unsaturated fatty acids in lecithin, add up to a critical alteration of the membrane, which becomes leaky to ions.


Assuntos
Peroxidação de Lipídeos , Lipídeos/química , Lipossomos/química , Processos Fotoquímicos , Íons , Membranas Artificiais
4.
Photochem Photobiol ; 89(3): 619-24, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23278678

RESUMO

There is evidence indicating that the cellular locus of PDT action by amphiphilic sensitizers are the cellular membranes. The photosensitization process causes oxidative damage to membrane components that can result in the cell's death. However, it was not yet established whether lipid oxidation can cause free passage of molecules through the membrane and, as a result, be the primary cause of the cell's death. In this work, we studied the effect of liposomes' lipid composition on the kinetics of the leakage of three fluorescent dyes, calcein, carboxyfluorescein and DTAF, which were trapped in the intraliposomal aqueous phase, after photosensitization with the photosensitizer deuteroporphyrin. We found that as the degree of fatty acid unsaturation increased, the photosensitized passage of these molecules through the lipid bilayer increased. We also found that the rate of leakage of these molecules was affected by their size and bulkiness as well as by their net electric charge. In liposomes that are composed of a lipid mixture similar to that of natural membranes, the observed passage of molecules through the membrane is slow. Thus, the photodynamic damage to lipids does not appear to be severe enough to be an immediate, primary cause of cell death in biological photosensitization.


Assuntos
Deuteroporfirinas/química , Lipossomos/química , Lipídeos de Membrana/química , Fármacos Fotossensibilizantes/química , Membrana Celular/química , Permeabilidade da Membrana Celular , Difusão , Fluoresceínas/química , Corantes Fluorescentes/química , Interações Hidrofóbicas e Hidrofílicas , Cinética , Eletricidade Estática
5.
J Phys Chem B ; 114(31): 10097-104, 2010 Aug 12.
Artigo em Inglês | MEDLINE | ID: mdl-20536150

RESUMO

Hydrophobic or amphiphilic tetrapyrrole sensitizers are taken up by cells and are usually located in cellular lipid membranes. Singlet oxygen is photogenerated by the sensitizer, and it diffuses in the membrane and causes oxidative damage to membrane components. This damage can occur to membrane lipids and to membrane-localized proteins. Depolarization of the Nernst electric potential on cells' membranes has been observed in cellular photosensitization, but it was not established whether lipid oxidation is a relevant factor leading to abolishing the resting potential of cells' membranes and to their death. In this work, we studied the effect of liposomes' lipid composition on the kinetics of hematoporphyrin-photosensitized dissipation of K(+)-diffusion electric potential that was generated across the membranes. We employed an electrochromic voltage-sensitive spectroscopic probe that possesses a high fluorescence signal response to the potential. We found a correlation between the structure and unsaturation of lipids and the leakage of the membrane, following photosensitization. As the extent of nonconjugated unsaturation of the lipids is increased from 1 to 6 double bonds, the kinetics of depolarization become faster. We also found that the kinetics of depolarization is affected by the percentage of the unsaturated lipids in the liposome: as the fraction of the unsaturated lipids increases, the leakage through the membrane is enhanced. When liposomes are composed of a lipid mixture similar to that of natural membranes and photosensitization is being carried out under usual photodynamic therapy (PDT) conditions, photodamage to the lipids is not likely to cause enhanced permeability of ions through the membrane, which would have been a mechanism that leads to cell death.


Assuntos
Membrana Celular/metabolismo , Lipossomos/química , Lipossomos/metabolismo , Lipídeos de Membrana/química , Fármacos Fotossensibilizantes/metabolismo , Difusão , Ácidos Graxos Insaturados/química , Ácidos Graxos Insaturados/metabolismo , Cinética , Lecitinas/química , Lecitinas/metabolismo , Lipídeos de Membrana/metabolismo , Potenciais da Membrana , Potássio/metabolismo , Compostos de Quinolínio/metabolismo , Espectrometria de Fluorescência
6.
Chem Phys Lipids ; 155(1): 38-42, 2008 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-18606157

RESUMO

In this study we investigated, spectroscopically, the effect of electrolytes on the partitioning of hematoporphyrin IX (HP) and hypericin (Hy) into non-charged lipid vesicles. Our aim was to assess the salting-out effect of electrolytes on membrane-partitioning. We titrated aqueous solutions of HP and Hy with lecithin liposomes, at different concentrations of several monovalent and divalent electrolytes in the suspension. The partitioning constant of HP to lecithin liposomes increased from 3.3 (mL/mg) in water containing only 5mM buffer to 8.7 (mL/mg) at 0.36M KCl. KF had a similar effect. NaCl caused a 3-fold increase in the partitioning of Hy to liposomes. MgSO(4) and MgCl(2) also increased the partitioning of HP, by a factor of more than 4 and this occurred already at 0.03M concentration. We analyze the comparative effects of the electrolytes in relation to the Hofmeister series. The salting-out effect could be utilized to enhance the uptake of HP and Hy, and possibly other photosensitizers as well, by artificial and natural membranes.


Assuntos
Eletrólitos/química , Lipossomos/química , Membranas/química , Físico-Química/métodos , Concentração de Íons de Hidrogênio , Cinética , Lecitinas/química , Lipídeos/química , Modelos Químicos , Fármacos Fotossensibilizantes/farmacologia , Cloreto de Potássio/química , Cloreto de Sódio/farmacologia , Soluções , Espectrofotometria Ultravioleta/métodos , Água/química
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