107 resultados para photosensitizers


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Sonoluminescence (SL) involves the conversion of mechanical [ultra]sound energy into light. Whilst the phenomenon is invariably inefficient, typically converting just 10-4 of the incident acoustic energy into photons, it is nonetheless extraordinary, as the resultant energy density of the emergent photons exceeds that of the ultrasonic driving field by a factor of some 10 12. Sonoluminescence has specific [as yet untapped] advantages in that it can be effected at remote locations in an essentially wireless format. The only [usual] requirement is energy transduction via the violent oscillation of microscopic bubbles within the propagating medium. The dependence of sonoluminescent output on the generating sound field's parameters, such as pulse duration, duty cycle, and position within the field, have been observed and measured previously, and several relevant aspects are discussed presently. We also extrapolate the logic from a recently published analysis relating to the ensuing dynamics of bubble 'clouds' that have been stimulated by ultrasound. Here, the intention was to develop a relevant [yet computationally simplistic] model that captured the essential physical qualities expected from real sonoluminescent microbubble clouds. We focused on the inferred temporal characteristics of SL light output from a population of such bubbles, subjected to intermediate [0.5-2MPa] ultrasonic pressures. Finally, whilst direct applications for sonoluminescent light output are thought unlikely in the main, we proceed to frame the state-of-the- art against several presently existing technologies that could form adjunct approaches with distinct potential for enhancing present sonoluminescent light output that may prove useful in real world [biomedical] applications.

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A presente dissertação contempla estudos de reactividade na periferia e no interior do macrociclo corrólico, nomeadamente do 5,10,15- tris(pentafluorofenil)corrol. Nesses estudos foram estabelecidas novas rotas de síntese para a preparação de novos derivados tetrapirrólicos do tipo corrol, alguns deles com potencial aplicação medicinal. Na primeira parte, foi estudado o comportamento de 5,10,15- tris(pentafluorofenil)corrol como componente 2ʌ em reacções de cicloadição de Diels-Alder com hidrocarbonetos aromáticos policíclicos, designadamente antraceno, tetraceno, nafto[2,3-a]pireno e pentaceno. Estas reacções foram efectuadas em aquecimento clássico e com radiação de microondas. Desses estudos concluiu-se que todos os hidrocarbonetos aromáticos considerados, à excepção do nafto[2,3-a]pireno, reagem segundo reacções de Diels-Alder, mas apenas com o pentaceno se obtêm aductos provenientes de reacções de cicloadição [4+4]. Os resultados obtidos em algumas destas reacções levaram a um estudo aprofundado sobre a estabilidade do macrociclo considerado. Este estudo foi efectuado sob condições térmicas, sob a acção da luz e na presença de um agente promotor de radicais. Desses estudos concluiu-se que apenas com aquecimento clássico é possível obter o dímero com o anel ciclooctatetraeno ligado pelas posições C-2, C-2’ e C-18, C-18’ e o dímero assimétrico ligado pelas posições C-2 e C-3’. Na presença de luz ou na presença de agente promotor de radicais obtém-se o dímero simétrico ligado pelas posições C-3 e C-3’. O estudo do mecanismo da reacção de dimerização na presença de luz levou ainda à síntese de um corrol mono-iodado. Foi ainda analisado o comportamento de 5,10,15-tris(pentafluorofenil)corrol e de 5,10,15-tris(pentafluorofenil)corrolatogálio(III)(piridina) na presença de iletos de azometino. Destes estudos resultou o desenvolvimento de novas rotas de síntese para a obtenção de novos derivados do tipo amina e do tipo éter. Na terceira parte, descrevem-se estudos de complexação do 5,10,15- tris(pentafluorofenil)corrol com diferentes sais metálicos por espectrometria de massa. Foram usados como fontes de ionização o Electrospray e o LSIMS. Os resultados obtidos comprovaram que os metalocorróis obtidos na fonte são idênticos aos metalocorróis sintetizados. Na quarta parte deste trabalho foram sintetizados novos conjugados corrolciclodextrina por meio de reacções de substituição nucleófila. A actividade fotodinâmica destes derivados foi avaliada numa linha celular cancerígena. A estrutura dos compostos sintetizados foi estabelecida recorrendo a diversas técnicas espectroscópicas actuais, principalmente espectroscopia de Ressonância Magnética Nuclear (RMN de 1H, 13C e 19F, DEPT, COSY, HSQC, HMBC e NOESY), espectrometria de massa em LSIMS, ESI e MALDI e ainda recorrendo a espectrofotometria de Ultravioleta-Visível (UV-vis).

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Neste trabalho é descrita a síntese de novos derivados porfirínicos com potencial aplicação em terapia fotodinâmica (PDT) e como quimiossensores para o reconhecimento molecular de catiões metálicos. Os novos compostos foram preparados usando como “template” 2-formil-5,10,15,20-tetrafenilporfirina através de diferentes abordagens sintéticas, tais como, reações de cicloadição 1,3-dipolar ou reações do tipo condensação aldólica. Depois de uma breve introdução sobre porfirinas segue-se no capítulo 2 a descrição dos estudos de formilação de Vilsmeier-Haack dos complexos de Ni(II) e Cu(II) de meso-tetra-arilporfirinas realizados usando irradiação de microondas. Utilizando os complexos de Ni(II) e Cu(II) da 5,10,15,20-tetrafenilporfirina foram considerados vários solventes, potências de irradiação e tempos de reação; as melhores condições encontradas foram aplicadas a outras mesotetra- arilporfirinas. Os derivados formilados resultantes da reação de formilação de Vilsmeier-Haack com irradiação de micro-ondas foram isolados em bons rendimentos e com significativa redução no tempo de reação, que passou de horas, em condiçoes clássicas de aquecimento, para minutos sob irradiação de micro-ondas. O “scale-up” da reação, nas condições estabelecidas, mostrou ser eficiente não sendo a reação afetada pelo aumento da quantidade de porfirina. O capítulo 3 descreve a reação de ciclo-adição 1,3-dipolar de meso-tetraarilporfirinas com iminas de nitrilo, geradas in situ por desidrobromação de hidrazono-α-bromoglioxilatos de etilo na presença de base. A reação de iminas de nitrilo com 5,10,15,20-tetraquis(pentafluorofenil)porfirina, na presença de K2CO3 em tolueno a refluxo, permitiu isolar novas pirazoloclorinas em rendimentos moderados. Foram investigadas as propriedades fotofísicas das novas clorinas e os resultados sugerem que duas delas apresentam potencialidades para serem utilizadas em PDT. Este tipo de reações foi estendida ao complexo 2-vinil-5,10,15,20- tetrafenilporfirinatozinco(II); este complexo reagiu com as iminas de nitrilo obtendo-se os correspondentes derivados porfirina-pirazolina em rendimentos que variaram entre valores de bom e de excelente. A regioquímica dos derivados porfirina-pirazolina formados foi elucidada por RMN e confirmada por difração de raios-X. O tratamento dos derivados porfirina-pirazolina com DDQ proporciona os correspondentes derivados porfirina-pirazol com rendimentos de moderados a excelentes. Quando os derivados porfirina-pirazolina foram submetidos a condições de hidrólise básica, observou-se não só a hidrólise do grupo éster presente no anel pirazolínico mas também a concomitante oxidação desta unidade heterocíclica, isolando-se assim, num único passo reacional, novos derivados de tipo porfirinapirazol com um grupo carboxílico. A descomplexação dos complexos de Zn(II) foi realizada na presença de TFA, tendo-se isolado quantitativamente os respetivos derivados na forma de bases livres.Foram estudadas algumas das propriedades fotofísicas de todos os compostos obtidos, quer na forma de complexos de Zn(II), quer na forma de base livre. Duma forma geral, todos os compostos preparados mostraram ser bons geradores de oxigénio singleto, o que os torna interessantes para possível utilização como fotossensibilizadores em PDT. No capítulo 4 é descrita a reação de 2-formil-5,10,15,20-tetrafenilporfirina com aril-cetonas e acetato de amónio, na presença de La(OTf)3, o que permitiu isolar novas benzoporfirinas e 2-(2,6-diarilpiridina-4-il)porfirinas. Esta metodologia foi utilizada para preparar, pela primeira vez, uma 2-(2,2':6,2''- terpiridin-4-il)porfirina. As estruturas de duas das 2-(2,6-diarilpiridin-4- il)porfirinas foram confirmadas por difração de raios-X de cristal único. A metodologia descrita permite ainda preparar novos derivados de tipo porfirinacalcona, apenas com pequenos ajustes nas condições reacionais através de uma reação do tipo condensação aldólica. Os derivados do tipo porfirinacalcona foram posteriormente usados para preparar derivados do tipo porfirinapirazol 1,3,5-tri-substituídos em bons rendimentos, através de reação de condensação com fenil-hidrazina. Em cada um dos capítulos é descrito os procedimentos experimentais e a caracterização espectroscópica (RMN, UV-vis e massa) dos novos compostos isolados. Em alguns casos foi necessário o recurso a técnicas de RMN bidimensionais como COSY, NOESY, HSQC e HMBC. Os compostos preparados neste trabalho foram ainda objecto de estudos de avaliação das respetivas potencialidades para actuarem como quimiossensores para o reconhecimento de catiões metálicos, nomeadamente, Cu(II), Ag(I), Zn(II), Cd(II) e Hg(II). Assim no capítulo 5 é descrita a caracterização fotofísica dos compostos preparados no capítulo 4 e, os estudos destes como potenciais quimiossensores. Os estudos para verificar a potencialidade dos compostos como quimiossensores foram efectuados: i) em solução, através de titulações espectrofotométricas e espectrofluorimétricas, ii) no estado sólido, recorrendo à preparação de filmes de PMMA dopados com os ligandos porfirínicos em estudo e, iii) na fase gasosa, seguindo as titulações dos ligandos com metais por espectrometria de massa (MALDI-TOF-MS). Os compostos estudados mostraram ter capacidade para atuarem como quimiossensores de catiões metálicos capazes de distinguirem entre os iões Zn(II) e Hg(II).

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Cationic porphyrins have been widely used as photosensitizers (PSs) in the inactivation of microorganisms, both in biofilms and in planktonic forms. However, the application of curcumin, a natural PS, in the inactivation of biofilms, is poorly studied. The objectives of this study were (1) to evaluate and compare the efficiency of a cationic porphyrin tetra (Tetra-Py+-Me) and curcumin in the photodynamic inactivation of biofilms of Pseudomonas spp and the corresponding planktonic form; (2) to evaluate the effect of these PSs in cell adhesion and biofilm maturation. In eradication assays, biofilms of Pseudomonas spp adherent to silicone tubes were subjected to irradiation with white light (180 J cm-2) in presence of different concentrations (5 and 10 μM) of PS. In colonization experiments, solid supports were immersed in cell suspensions, PS was added and the mixture experimental setup was irradiated (864 J cm-2) during the adhesion phase. After transference solid supports to new PS-containing medium, irradiation (2592 J cm-2) was resumed during biofilm maturation. The assays of inactivation of planktonic cells were conducted in cell suspensions added of PS concentrations equivalent to those used in experiments with biofilms. The inactivation of planktonic cells and biofilms (eradication and colonization assays) was assessed by quantification of viable cells after plating in solid medium, at the beginning and at the end of the experiments. The results show that porphyrin Tetra-Py+-Me effectively inactivated planktonic cells (3.7 and 3.0 log) and biofilms of Pseudomonas spp (3.2 and 3.6 log). In colonization assays, the adhesion of cells was attenuated in 2.2 log, and during the maturation phase, a 5.2 log reduction in the concentration of viable cells was observed. Curcumin failed to cause significant inactivation in planktonic cells (0.7 and 0.9 log) and for that reason it was not tested in biofilm eradication assays. In colonization assays, curcumin did not affect the adhesion of cells to the solid support and caused a very modest reduction (1.0 log) in the concentration of viable cells during the maturation phase. The results confirm that the photodynamic inactivation is a promising strategy to control installed biofilms and in preventing colonization. Curcumin, however, does not represent an advantageous alternative to porphyrins in the case of biofilms of Pseudomonas spp.

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A importância médica do sangue associada ao risco de doenças infeciosas levou a um melhoramento das técnicas de rastreio de patogénicos no sangue doado. No entanto, devido aos períodos de "janela", durante o qual os agentes infeciosos não podem ser detetados, a desinfeção de sangue e seus derivados assume uma importância vital. Considerando que as técnicas convencionais de desinfeção (tratamento com solvente-detergente ou irradiação com UV ou radiação gama) pode ser empregue em concentrados de plasma ou de proteínas, o efeito colateral associado aos respetivos tratamentos não permite a sua utilização em frações celulares. Consequentemente, é necessário o desenvolvimento de uma nova alternativa eficaz para inativar microrganismos em sangue. Uma boa estratégia que merece ser considerada baseia-se na terapia fotodinâmica antimicrobiana (aPDT). aPDT envolve a interação entre a luz e um fotossensibilizador (PS) na presença de oxigénio molecular. Esta interação produz espécies reativas de oxigénio (ROS), que causam danos oxidativos às moléculas microbianas necessárias à sobrevivência do microrganismo. Em alguns países, esta metodologia já está aprovada para descontaminação de plasma, utilizando azul de metileno ou psoraleno como PSs. O objetivo deste estudo foi avaliar a adequação de de estrutura do tipo ftalocianina (Pc) e porfirina (Por) para desinfeção fotodinâmica de hemoderivados. Plasma e sangue total foram infetados com 108 unidades formadoras de colónias (CFU) / mL de Escherichia coli e após incubação com os derivados Pc e Por em estudo, expostos respetivamente a luz vermelha ou a luz branca com uma irradiância de 150 W/m2durante 270 min. As concentrações de E. coli viáveis foram determinadas a 0, 30, 60, 90, 180 e 270 min e comparadas com as obtidas nos controlos claro (amostras irradiadas na ausência de PS) e controlos escuro (amostras incubadas com PS mas não irradiadas). O efeito do tratamento aPDT nas células do sangue (glóbulos vermelhos e brancos) também foi avaliado. Os resultados obtidos mostram que, em todos os componentes do sangue, a Por em estudo é mais eficaz na inativação de E. coli que o derivado Pc. Após o tratamento aPDT, o número de células vermelhas e brancas no sangue é semelhante aos valores observados nas amostras de controlo. A eficiente inativação de células de E. coli e a ausência de efeito sobre as células de sangue transformam os derivados porfirínicos e ftalocianinas potenciais candidatos a serem utilizados com fotossensibilizadores na desinfeção fotodinâmica de produtos derivados do sangue.

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Photodegradation is considered to be one of the most important processes of elimination of pharmaceutical drugs from natural water matrices. The high consumption and discharge of these substances, in particular antidepressants, to the aquatic environment supports the need to study degradation processes. This dissertation aimed at studying the direct and indirect photodegradation of sertraline, an antidepressant known for its persistence in the environment, and the evaluation of the influence of environmentally relevant factors in its photodegradation. The photodegradation experiments were developed under simulated solar light and the irradiation times converted to summer sunny days (SSD), an equivalent time in natural environmental conditions. The direct photodegradation was evaluated in solutions of sertraline prepared in ultrapure water and the indirect photodegradation was studied through the addition of photosensitizers (humic substances, Fe(III), nitrates and oxygen). Further irradiation studies were perfomed in aqueous samples collected from two wastewater treatment plants, Vouga river and Ria de Aveiro. The samples were chemically characterized (dissolved organic carbon, nitrates and nitrites and iron determination and UV/Vis spectroscopy). The quantification of sertraline was done by HPLC-UV and photoproducts from direct photodegradation were identified by electrospray mass spectrometry. An observed direct photodegradation rate of sertraline of 0.0062 h-1 was determined, corresponding to a half-life time of 111 h (equivalent to 29 SSD). A significant influence of photosensitizers was observed, the best results being achieved in irradiations of sertraline with humic acids, obtaining a half-life time of 12 h. This was attributed to the hydrophobicity of this substance and higher absortivity in the UV/Vis wavelength, which promote processes of indirect photodegradation. The degradation of sertraline in natural samples was also enhanced comparatively to the direct photodegradation, achieving half-life times between 10 and 25h; the best results were achieved in samples from the primary treatment of a wastewater treatment plant and Ria de Aveiro, with half-life times of 10 and 16 h, respectively. A total of six photoproducts formed during the direct photodegradation of sertraline were identified, three of which were not yet identified in the literature. The main factors contributing to the degradation of sertraline were analysed but this was not fully accomplished, requiring further studies of the composition of the natural matrices and the combined influence of distinct photosensitizers during the irradiation. Nevertheless, it was concluded that the photodegradation of sertraline is greatly influenced by indirect photodegradation processes, promoted by the presence of photosensitizers.

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The quantum yields of singlet oxygen production and lifetimes at the gas–solid interface in silica gel material are determined. Different photosensitizers (PS) are encapsulated in parallelepipedic xerogel monoliths (PS-SG). PS were chosen according to their known photooxidation properties: 9,10-dicyanoanthracene (DCA), 9,10-anthraquinone (ANT), and a benzophenone derivative, 4-benzoyl benzoic acid (4BB). These experiments are mainly based on time-resolved 1O2 phosphorescence detection, and the obtained FD and tD values are compared with those of a reference sensitizer for production, 1H-phenalen-1- one (PN), included in the same xerogel. The trend between their ability to oxidize organic pollutants in the gas phase and their efficiency for production is investigated through photooxidation experiments of a test pollutant dimethylsulfide (DMS). The FD value is high for DCA-SG relative to the PN reference, whereas it is slightly lower for 4BB-SG and for ANT-SG. FD is related to the production of sulfoxide and sulfone as the main oxidation products for DMS photosensitized oxidation. Additional mechanisms, leading to C!S bond cleaveage, appear to mainly occur for the less efficient singlet oxygen sensitizers 4BB-SG and ANTSG.

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Psoralens are well-known photosensitizers, and 8- methoxypsoralen and 4,5',8-trimethylpsoralen are widely used in photomedicine as "psoralens plus UVA therapy" (PUVA), in photopheresis, and in sterilization of blood preparations. In an attempt to improve the therapeutic efficiency of PUVA therapy and photopheresis, four poly(ethylene glycol) (PEG)-psoralen conjugates were synthesized to promote tumor targeting by the enhanced permeability and retention (EPR) effect. Peptide linkers were used to exploit specific enzymatic cleavage by lysosomal proteases. A new psoralen, 4-hydroxymethyl-4', 8-dimethylpsoralen (6), suitable for polymer conjugation was synthesized. The hydroxy group allowed exploring different strategies for PEG conjugation, and linkages with different stability such ester or urethanes were obtained. PEG (5 kDa) was covalently conjugated to the new psoralen derivative using four different linkages, namely, (i) direct ester bond (7), (ii) ester linkage with a peptide spacer (8), (iii) a carbamic linker (9), and (iv) a carbamic linker with a peptide spacer (12). The stability of these new conjugates was assessed at different pHs, in plasma and following incubation with cathepsin B. Conjugates 7 and 8 were rapidly hydrolyzed in plasma, while 9 was stable in buffer and in the presence of cathepsin B. As expected, only the conjugates containing the peptide linker released the drug in presence of cathepsin B. In vitro evaluation of the cytotoxic activity in the presence and absence of light was carried out in two cell lines (MCF-7 and A375 cells). Conjugates 7 and 8 displayed a similar activity to the free drug (probably due to the low stability of the ester linkage). Interestingly, the conjugates containing the carbamate linkage (9 and 12) were completely inactive in the dark (IC50 > 100 mu M in both cell lines). However, antiproliferative activity become apparent after UV irradiation. Conjugate 12 appears to be the most promising for future in vivo evaluation, since it was relatively stable in plasma, which should allow tumor targeting and drug release to occur by cathepsin B-mediated hydrolysis.

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Photosensitized oxidation of guanine is an important route to DNA damage. Ruthenium polypyridyls are very useful photosensitizers as their reactivity and DNA-binding properties are readily tunable. Here we show a strong difference in the reactivity of the two enantiomers of [Ru(TAP)2(dppz)]2+, by using time-resolved visible and IR spectroscopy. This reveals that the photosensitized one-electron oxidation of guanine in three oligonucleotide sequences proceeds with similar rates and yields for bound delta-[Ru(TAP)2(dppz)]2+, whereas those for the lambda enantiomer are very sensitive to base sequence. It is proposed that these differences are due to preferences of each enantiomer for different binding sites in the duplex.

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We have investigated a possible correlation between the photostability and photodynamic efficacy for different photosensitizers; hematoporphyrin derivatives and chlorines. To perform such analysis, we combined the depth of necrosis (d (nec)) measurement, expressed by the light threshold dose and a photodegradation parameter, measured from investigation of photosensitizer degradation in solution. The d (nec) analysis allows us to determine the light threshold dose and compare its value with the existent results in the literature. The use of simple models to understand basic features of Photodynamic Therapy (PDT) may contribute to the solid establishment of dosimetry in PDT, enhancing its use in the clinical management of cancers and others lesions. Using hematoporphyrin derivatives and chlorines photosensitizers we investigated their properties related to the photodegradation in solution and the light threshold dose (D (th)) in rat livers.

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PhotogemA (R) is a hematoporphyrin derivative that has been used as a photosensitizer in experimental and clinical Photodynamic Therapy (PDT) in Brazil. Photosensitizers are degraded under illumination. This process, usually called photobleaching, can be monitored by decreasing in fluorescence intensities and includes the following photoprocesses: photodegradation, phototransformation, and photorelocalization. Photobleaching of hematoporphyrin-type sensitizers during illumination in aqueous solution is related not only to photodegradation but is also followed by the formation of photoproducts with a new fluorescence band at around 640-650 nm and with increased light absorption in the red spectral region at 640 nm. In this study, the influence of pH on the phototransformation process was investigated. PhotogemA (R) solutions, 40 mu g/ml, were irradiated at 514 nm with intensity of 100 mW/cm(2) for 20 min with different pH environments. The controls were performed with the samples in the absence of light. The PhotogemA (R) photodegradation is dependent on the pH. The behavior of photodegradation and photoproducts formation (monitored at 640 nm) is distinct and depends on the photosensitizer concentration. The processes of degradation and photoproducts formation were monitored with Photogemin the concentration of 40 mu g/mL since that demonstrated the best visualization of both processes. While below pH 5 the photodegradation occurred, there was no detectable presence of photoproducts. The increase of pH led to increase of photoproducts formation rate with photodegradation reaching the highest value at pH 10. The increase of photoproducts formation and instability of PhotogemA (R) from pH 6 to pH 10 are in agreement with the desired properties of an ideal photosensitizer since there are significant differences in pH between normal (7.0 < pH < 8.6) and tumor (5.8 < pH < 7.9) tissues. It is important to know the effect of pH in the process of phototransformation (degradation and photoproduct formation) of the molecule since low pH values promotes increase in the proportion of aggregates species in solution and high pH values promotes increase in the proportion of monomeric species. There must be an ideal pH interval which favors the phototransformation process that is correlated with the singlet oxygen formation responsible by the photodynamic effect. These differences in pH between normal and tumor cells can explain the presence of photosensitizers in target tumor cells, making PDT a selective therapy.

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Photosensitizers used in PDT suffer degradation by light. In this work, photobleaching of Photogem((R)) (PG), Photofrin((R)) (PF), and Photosan((R)) (PS), hematoporphyrin derivatives, were induced by light in the presence or absence of 1% Triton X-100. The degradation efficiency in the absence of 1% Triton X-100 follows the sequence: Pf > PF > Ps, which means that PF presented a greater degradation than PF and PS. Forever, in the presence of the surfactant the degradation efficiency is different: PF congruent to PS > PF. Besides aggregation susceptibility, studies in cell culture (tumor and non tumor cells) and in animals (depth of necrosis) were performed, trying to correlate the stability of these photosensitizers with their photodynamic effect. The results suggest that PF presents higher light induced photo-cytotoxicity than PF and PS for both types of cells. For the depth of necrosis studies, more aggregated photosensitizer showed a longer time to accumulate in liver (30 min for PG, 120 h for PF and 720 h for PS). The, to establish an ideal dosimetry in PDT, one must consider the intrinsic physical chemistry characteristics of the photosensitizer as well as their ability to undergo photobleaching.

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Syntheses of two water-soluble phthalocyanines (Pc) containing 5-aminolevulinic acid (ALA) linked to the core structure are described. These compounds were prepared by using original functionalizations, and they present remarkable structural and photophysical features, indicating that they could be applied to photodynamic therapy (PDT).

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The present study is focused on developing a nanoparticle carrier for the photosensitizer protoporphyrin IX for use in photodynamic therapy. The entrapment of protoporphyrin IX (Pp IX) in silica spheres was achieved by modification of Pp IX molecules with an organosilane reagent. The immobilized drug preserved its optical properties and the capacity to generate singlet oxygen, which was detected by a direct method from its characteristic phosphorescence decay curve at near-infrared and by a chemical method using 1,3-diphenylisobenzofuran to trap singlet oxygen. The lifetime of singlet oxygen when a suspension of Pp IX-loaded particles in acetonitrile was excited at 532 nm was determined as 52 mu s, which is in good agreement with the value determined for methylene blue in acetonitrile solution under the same conditions. The Pp IX-loaded silica particles have an efficiency of singlet oxygen generation (eta Delta) higher than the quantum yield of free porphyrins. This high efficiency of singlet oxygen generation was attributed to changes on the monomer-dimer equilibrium after photosentisizer immobilization.

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We present a study on whether and to what extent subcellular localization may compete favorably with photosensitization efficiency with respect to the overall efficiency of photoinduced cell death. We have compared the efficiency with which two cationic photosensitizers, namely methylene blue (MB) and crystal violet (CV), induce the photoinduced death of human cervical adenocarcinoma (HeLa) cells. Whereas MB is well known to generate singlet oxygen and related triplet excited species with high quantum yields in a variety of biological and chemical environments (i.e., acting as a typical type II photosensitizer), the highly mitochondria-specific CV produces triplet species and singlet oxygen with low yields, acting mostly via the classical type I mechanism (e.g., via free radicals). The findings described here indicate that the presumably more phototoxic type II photosensitizer (MB) does not lead to higher degrees of cell death compared to the type I (CV) photosensitizer. In fact, CV kills cells with the same efficiency as MB, generating at least 10 times fewer photoinduced reactive species. Therefore, subcellular localization is indeed more important than photochemical reactivity in terms of overall cell killing, with mitochondrial localization representing a highly desirable property for the development of more specific/efficient photosensitizers for photodynamic therapy applications. (C) 2011 Elsevier Inc. All rights reserved.