Newly formulated 5% 5-aminolevulinic acid photodynamic therapy on Candida albicans
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01.03.2020 |
Greco G.
Di Piazza S.
Chan J.
Zotti M.
Hanna R.
Gheno E.
Zekiy A.
Pasquale C.
De Angelis N.
Amaroli A.
|
Photodiagnosis and Photodynamic Therapy |
10.1016/j.pdpdt.2019.10.010 |
0 |
Ссылка
© 2019 Elsevier B.V. Background: A large number of systemic diseases can be linked to oral candida pathogenicity. The global trend of invasive candidiasis has increased progressively and is often accentuated by increasing Candida albicans resistance to the most common antifungal medications. Photodynamic therapy (PDT) is a promising therapeutic approach for oral microbial infections. A new formulation of 5-aminolevulinic acid (5%ALA) in a thermosetting gel (t) (5%ALA-PTt) was patented and recently has become available on the market. However, its antimicrobial properties, whether mediated or not by PDT, are not yet known. In this work we characterised them. Methods: We isolated a strain of C. albicans from plaques on the oral mucus membrane of an infected patient. Colonies of this strain were exposed for 1 24 h, to 5%ALA-PTt, 5%ALA-PTt buffered to pH 6.5 (the pH of the oral mucosa) (5%ALA-PTtb) or not exposed (control). The 1 h-exposed samples were also irradiated at a wavelength of 630 nm with 0.14 watts (W) and 0.37 W/cm2 for 7 min at a distance of <1 mm. Results and conclusion: The 5% ALA-PTt preparation was shown to be effective in reducing the growth of biofilm and inoculum of C. albicans. This effect seems to be linked to the intrinsic characteristics of 5%ALA-TPt, such acidic pH and the induction of free radical production. This outcome was significantly enhanced by the effect of PDT at relatively short incubation and irradiation times, which resulted in growth inhibition of both treated biofilm and inoculum by ∼80% and ∼95%, respectively.
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Newly formulated 5% 5-aminolevulinic acid photodynamic therapy on Candida albicans
|
01.03.2020 |
Greco G.
Di Piazza S.
Chan J.
Zotti M.
Hanna R.
Gheno E.
Zekiy A.
Pasquale C.
De Angelis N.
Amaroli A.
|
Photodiagnosis and Photodynamic Therapy |
10.1016/j.pdpdt.2019.10.010 |
0 |
Ссылка
© 2019 Elsevier B.V. Background: A large number of systemic diseases can be linked to oral candida pathogenicity. The global trend of invasive candidiasis has increased progressively and is often accentuated by increasing Candida albicans resistance to the most common antifungal medications. Photodynamic therapy (PDT) is a promising therapeutic approach for oral microbial infections. A new formulation of 5-aminolevulinic acid (5%ALA) in a thermosetting gel (t) (5%ALA-PTt) was patented and recently has become available on the market. However, its antimicrobial properties, whether mediated or not by PDT, are not yet known. In this work we characterised them. Methods: We isolated a strain of C. albicans from plaques on the oral mucus membrane of an infected patient. Colonies of this strain were exposed for 1 24 h, to 5%ALA-PTt, 5%ALA-PTt buffered to pH 6.5 (the pH of the oral mucosa) (5%ALA-PTtb) or not exposed (control). The 1 h-exposed samples were also irradiated at a wavelength of 630 nm with 0.14 watts (W) and 0.37 W/cm2 for 7 min at a distance of <1 mm. Results and conclusion: The 5% ALA-PTt preparation was shown to be effective in reducing the growth of biofilm and inoculum of C. albicans. This effect seems to be linked to the intrinsic characteristics of 5%ALA-TPt, such acidic pH and the induction of free radical production. This outcome was significantly enhanced by the effect of PDT at relatively short incubation and irradiation times, which resulted in growth inhibition of both treated biofilm and inoculum by ∼80% and ∼95%, respectively.
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Newly formulated 5% 5-aminolevulinic acid photodynamic therapy on Candida albicans
|
01.03.2020 |
Greco G.
Di Piazza S.
Chan J.
Zotti M.
Hanna R.
Gheno E.
Zekiy A.
Pasquale C.
De Angelis N.
Amaroli A.
|
Photodiagnosis and Photodynamic Therapy |
10.1016/j.pdpdt.2019.10.010 |
0 |
Ссылка
© 2019 Elsevier B.V. Background: A large number of systemic diseases can be linked to oral candida pathogenicity. The global trend of invasive candidiasis has increased progressively and is often accentuated by increasing Candida albicans resistance to the most common antifungal medications. Photodynamic therapy (PDT) is a promising therapeutic approach for oral microbial infections. A new formulation of 5-aminolevulinic acid (5%ALA) in a thermosetting gel (t) (5%ALA-PTt) was patented and recently has become available on the market. However, its antimicrobial properties, whether mediated or not by PDT, are not yet known. In this work we characterised them. Methods: We isolated a strain of C. albicans from plaques on the oral mucus membrane of an infected patient. Colonies of this strain were exposed for 1 24 h, to 5%ALA-PTt, 5%ALA-PTt buffered to pH 6.5 (the pH of the oral mucosa) (5%ALA-PTtb) or not exposed (control). The 1 h-exposed samples were also irradiated at a wavelength of 630 nm with 0.14 watts (W) and 0.37 W/cm2 for 7 min at a distance of <1 mm. Results and conclusion: The 5% ALA-PTt preparation was shown to be effective in reducing the growth of biofilm and inoculum of C. albicans. This effect seems to be linked to the intrinsic characteristics of 5%ALA-TPt, such acidic pH and the induction of free radical production. This outcome was significantly enhanced by the effect of PDT at relatively short incubation and irradiation times, which resulted in growth inhibition of both treated biofilm and inoculum by ∼80% and ∼95%, respectively.
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тезис
|
Newly formulated 5% 5-aminolevulinic acid photodynamic therapy on Candida albicans
|
01.03.2020 |
Greco G.
Di Piazza S.
Chan J.
Zotti M.
Hanna R.
Gheno E.
Zekiy A.
Pasquale C.
De Angelis N.
Amaroli A.
|
Photodiagnosis and Photodynamic Therapy |
10.1016/j.pdpdt.2019.10.010 |
0 |
Ссылка
© 2019 Elsevier B.V. Background: A large number of systemic diseases can be linked to oral candida pathogenicity. The global trend of invasive candidiasis has increased progressively and is often accentuated by increasing Candida albicans resistance to the most common antifungal medications. Photodynamic therapy (PDT) is a promising therapeutic approach for oral microbial infections. A new formulation of 5-aminolevulinic acid (5%ALA) in a thermosetting gel (t) (5%ALA-PTt) was patented and recently has become available on the market. However, its antimicrobial properties, whether mediated or not by PDT, are not yet known. In this work we characterised them. Methods: We isolated a strain of C. albicans from plaques on the oral mucus membrane of an infected patient. Colonies of this strain were exposed for 1 24 h, to 5%ALA-PTt, 5%ALA-PTt buffered to pH 6.5 (the pH of the oral mucosa) (5%ALA-PTtb) or not exposed (control). The 1 h-exposed samples were also irradiated at a wavelength of 630 nm with 0.14 watts (W) and 0.37 W/cm2 for 7 min at a distance of <1 mm. Results and conclusion: The 5% ALA-PTt preparation was shown to be effective in reducing the growth of biofilm and inoculum of C. albicans. This effect seems to be linked to the intrinsic characteristics of 5%ALA-TPt, such acidic pH and the induction of free radical production. This outcome was significantly enhanced by the effect of PDT at relatively short incubation and irradiation times, which resulted in growth inhibition of both treated biofilm and inoculum by ∼80% and ∼95%, respectively.
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тезис
|
Newly formulated 5% 5-aminolevulinic acid photodynamic therapy on Candida albicans
|
01.03.2020 |
Greco G.
Di Piazza S.
Chan J.
Zotti M.
Hanna R.
Gheno E.
Zekiy A.
Pasquale C.
De Angelis N.
Amaroli A.
|
Photodiagnosis and Photodynamic Therapy |
10.1016/j.pdpdt.2019.10.010 |
0 |
Ссылка
© 2019 Elsevier B.V. Background: A large number of systemic diseases can be linked to oral candida pathogenicity. The global trend of invasive candidiasis has increased progressively and is often accentuated by increasing Candida albicans resistance to the most common antifungal medications. Photodynamic therapy (PDT) is a promising therapeutic approach for oral microbial infections. A new formulation of 5-aminolevulinic acid (5%ALA) in a thermosetting gel (t) (5%ALA-PTt) was patented and recently has become available on the market. However, its antimicrobial properties, whether mediated or not by PDT, are not yet known. In this work we characterised them. Methods: We isolated a strain of C. albicans from plaques on the oral mucus membrane of an infected patient. Colonies of this strain were exposed for 1 24 h, to 5%ALA-PTt, 5%ALA-PTt buffered to pH 6.5 (the pH of the oral mucosa) (5%ALA-PTtb) or not exposed (control). The 1 h-exposed samples were also irradiated at a wavelength of 630 nm with 0.14 watts (W) and 0.37 W/cm2 for 7 min at a distance of <1 mm. Results and conclusion: The 5% ALA-PTt preparation was shown to be effective in reducing the growth of biofilm and inoculum of C. albicans. This effect seems to be linked to the intrinsic characteristics of 5%ALA-TPt, such acidic pH and the induction of free radical production. This outcome was significantly enhanced by the effect of PDT at relatively short incubation and irradiation times, which resulted in growth inhibition of both treated biofilm and inoculum by ∼80% and ∼95%, respectively.
Читать
тезис
|
Newly formulated 5% 5-aminolevulinic acid photodynamic therapy on Candida albicans
|
01.03.2020 |
Greco G.
Di Piazza S.
Chan J.
Zotti M.
Hanna R.
Gheno E.
Zekiy A.
Pasquale C.
De Angelis N.
Amaroli A.
|
Photodiagnosis and Photodynamic Therapy |
10.1016/j.pdpdt.2019.10.010 |
0 |
Ссылка
© 2019 Elsevier B.V. Background: A large number of systemic diseases can be linked to oral candida pathogenicity. The global trend of invasive candidiasis has increased progressively and is often accentuated by increasing Candida albicans resistance to the most common antifungal medications. Photodynamic therapy (PDT) is a promising therapeutic approach for oral microbial infections. A new formulation of 5-aminolevulinic acid (5%ALA) in a thermosetting gel (t) (5%ALA-PTt) was patented and recently has become available on the market. However, its antimicrobial properties, whether mediated or not by PDT, are not yet known. In this work we characterised them. Methods: We isolated a strain of C. albicans from plaques on the oral mucus membrane of an infected patient. Colonies of this strain were exposed for 1 24 h, to 5%ALA-PTt, 5%ALA-PTt buffered to pH 6.5 (the pH of the oral mucosa) (5%ALA-PTtb) or not exposed (control). The 1 h-exposed samples were also irradiated at a wavelength of 630 nm with 0.14 watts (W) and 0.37 W/cm2 for 7 min at a distance of <1 mm. Results and conclusion: The 5% ALA-PTt preparation was shown to be effective in reducing the growth of biofilm and inoculum of C. albicans. This effect seems to be linked to the intrinsic characteristics of 5%ALA-TPt, such acidic pH and the induction of free radical production. This outcome was significantly enhanced by the effect of PDT at relatively short incubation and irradiation times, which resulted in growth inhibition of both treated biofilm and inoculum by ∼80% and ∼95%, respectively.
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Dinitrosyl Iron Complexes in the Sensitized Oxidation of Organic Substrates
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01.09.2019 |
Solov’eva A.
Glagolev N.
Aksenova N.
Kur’yanova A.
Vanin A.
Timofeeva V.
Timashev P.
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Russian Journal of Physical Chemistry A |
10.1134/S0036024419090267 |
0 |
Ссылка
© 2019, Pleiades Publishing, Ltd. Abstract: It is shown that the efficacy of the photosensitized oxidation of organic substrates in aqueous media (with the oxidation of tryptophan being used as an example) does not depend on adding biologically active dinitrosyl iron complexes (DNICs) with thiol-containing ligands to the reaction medium if it contains Pluronic F127, a poly(ethylene oxide)–poly(propylene oxide)– poly(ethylene oxide) triblock copolymer, at concentrations higher than the critical micelle concentration. Photosensitizer molecules are localized in Pluronic micelles and are shielded from the damaging impact of NO• radicals that form upon the photodegradation of DNIC molecules. Photodynamic therapy (PDT) sessions (the photoinduced necrosis and apoptosis of cells in pathologically altered tissues and the simultaneous initiation of regeneration and repair of the treated tissues due to the photodecomposition of DNIC molecules) thus become fundamentally possible.
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Photosensitizing Activity of Steroid Derivatives of Pyropheophorbide in the Oxidation of Tryptophan in the Aqueous Phase
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01.09.2018 |
Solov’eva A.
Kur’yanova A.
Savko M.
Aksenova N.
Afanas’evskaya E.
Zolottsev V.
Taratynova M.
Ponomarev G.
Timashev P.
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Russian Journal of Physical Chemistry A |
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0 |
Ссылка
© 2018, Pleiades Publishing, Ltd. Solubilization with pluronic F-127 gave water-soluble forms of hydrophobic photosensitizers—steroid derivatives of pyropheophorbide a. Solubilization was performed by evaporating the chloroform co-solutions of photosensitizer and pluronic (triple block copolymer of ethylene and propylene oxide) and subsequently dissolving the resulting dry residue in water. The concentration ratios of modified pyropheophorbide–pluronic at which the photosensitizer completely passed into the aqueous phase were determined. Among the starting hydrophobic photosensitizers, pyropheophorbide–dihydrotestosterone possessed the highest activity in photosensitized oxidation of anthracene with singlet oxygen in chloroform, while after solubilization, pyropheophorbide–testosterone was most active in the test (for photodynamic therapy) oxidation of tryptophan in aqueous solutions.
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Liposomal Form of Tetra(Aryl)Tetracyanoporphyrazine: Physical Properties and Photodynamic Activity In Vitro
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01.03.2018 |
Yudintsev A.
Shilyagina N.
Dyakova D.
Lermontova S.
Klapshina L.
Guryev E.
Balalaeva I.
Vodeneev V.
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Journal of Fluorescence |
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1 |
Ссылка
© 2018, Springer Science+Business Media, LLC, part of Springer Nature. Tetra(aryl)tetracyanoporphyrazines are the promising group of dyes for photodynamic therapy of tumors with unique combination of photosensitizer properties and sensitivity of fluorescence parameters to the environment viscosity. However, in vivo application of such hydrophobic photosensitizers requires using of drug carriers ensuring efficient delivery to the tumor site. The present study is focused on obtaining liposomes loaded with tetrakis(4-benzyloxyphenyl)tetracyanoporphyrazine and examining their properties depending on lipid composition. An efficient loading of the dye and a high long-term stability were proved for the liposomes composed of phosphatidylcholine with cholesterol and phosphatidylglycerol. This can be explained by the presence of negatively charged lipids in the bilayer and, as a consequence, a high value of the surface potential. A high rate of cellular uptake and a strong photoinduced toxicity give the prerequisites for the further use of the liposomal form of the photosensitizer for photodynamic therapy of tumors.
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Interventional treatment methods, fluorescent diagnostic and photodynamic therapy of nonresectable cholangiocarcinoma complicated by jaundice
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01.01.2018 |
Shiryaev A.
Musaev G.
Levkin V.
Reshetov I.
Loshenov M.
Borodkin A.
Volkov V.
Linkov K.
Makarov V.
Jemerikin G.
Schekoturov I.
Ruban M.
Loshenov V.
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Russian Electronic Journal of Radiology |
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0 |
Ссылка
© 2018 Russian Electronic Journal of Radiology.All Rights Reserved. Purpose. To improve diagnostics and effectiveness of treatment in patients with unresectable cholangiocarcinoma complicated by obstructive jaundice. Materials and methods. A total of 28 patients (100%) with unresectable or functionally inoperable cholangiocarcinomas complicated by obstructive jaundice were diagnosed and treated. All patients underwent percutaneous drainage of the ducts under the ultrasound control and fluoroscopy. After reduction of jaundice video fluorescent diagnostic was performed. There was used a special module for that, by means of which a video fluorescent image of the bile ducts tumor was obtained and the degree of photosensitizer accumulation in the tissues was determined. Following photosensitizers were used: Photosens, Radachlorin (Russia) and Photolon (Belorussia). After the videofluorescence diagnostics photodynamic therapy of tumor stricture was conducted. Photodynamic therapy was performed using a fiber-optic system, if necessary, a controllable balloon catheter on the distal segment was used allowing to conduct therapy throughout the stricture more evenly. For the restoration of biliary evacuation nitinol stents were used. Results. In all patients a videofluorescent image of the bile duct tumor was obtained and a high degree of photosensitizer accumulation was determined. At the same time 23 patients (82%) had a malignant lesion confirmed morphologically. The effectiveness of combined treatment in unresectable cholangiocarcinoma was evaluated by life expectancy, the highest was 29 months (mean 14±5 months), but some of patients were under dynamic control for a period of 6 to 17 months. Conclusions. Usage of interventional treatment methods for patients with cholangiocarcinoma complicated by obstructive jaundice improves liver function and decreases jaundice. The combined use of minimally invasive technologies with fluorescent diagnostics and photodynamic therapy allows to increase the median life expectancy and improve the quality of patient’s life.
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Photo dynamic adjuvant therapy in complex treatment of patients with portal cholangiocarcinoma
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01.01.2018 |
Zharikov Y.
Pozharskaya A.
Tupikin K.
Baidarova M.
Nikolenko V.
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Medical News of North Caucasus |
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0 |
Ссылка
© 2018 Stavropol State Medical University. All Rights Reserved. The review presents the latest achievements in the field of complex adjuvant treatment of patients with portal cholangiocarcinoma. Modern data on the clinical efficacy and benefits of intraduct photodynamic therapy are presented.
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Analysis of photosensitizer gel penetration through the teeth structure
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01.01.2018 |
Zorina O.
Krechina E.
Abaev Z.
Korshunova A.
Ponomaryov G.
Ryabova A.
Makarov V.
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Stomatologiia |
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0 |
Ссылка
As a result of the studies carried out on 20 extracted frontal teeth it was reliably shown that after 10 minutes the concentration of the photosensitizer in enamel at full depth reached values sufficient for performing photodynamic teeth whitening. At the same time, the penetration of the photosensitizer into the deep layers of dentin was not detected which allows to carry out the photodynamic bleaching procedure only within the enamel and enamel-dentine boundary, thus not affecting the pulp of the tooth.
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Sapphire capillary interstitial irradiators for laser medicine
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01.01.2018 |
Shikunova I.
Dolganova I.
Dubyanskaya E.
Mukhina E.
Zaytsev K.
Kurlov V.
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Progress in Biomedical Optics and Imaging - Proceedings of SPIE |
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2 |
Ссылка
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only. In this paper, we demonstrate instruments for laser radiation delivery based on sapphire capillary needles. Such sapphire irradiators (introducers) can be used for various medical applications, such as photodynamic therapy, laser hyperthermia, laser interstitial thermal therapy, and ablation of tumors of various organs. Unique properties of sapphire allow for effective redistribution of the heat, generated in biological tissues during their exposure to laser radiation. This leads to homogeneous distribution of the laser irradiation around the needle, and lower possibility of formation of the overheating focuses, as well as the following non-transparent thrombi.
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Photodynamic therapy of mouse tumor model using chlorin e6- polyvinyl alcohol complex
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01.01.2018 |
Gavrina A.
Shirmanova M.
Aksenova N.
Yuzhakova D.
Snopova L.
Solovieva A.
Тimashev P.
Dudenkova V.
Zagaynova E.
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Journal of Photochemistry and Photobiology B: Biology |
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3 |
Ссылка
© 2017 Elsevier B.V. The use of polymeric carriers to deliver hydrophobic photosensitizers has been widely discussed as a way to improve both fluorescence diagnostic and photodynamic therapy (PDT) of cancers; however, the photophysical and pharmacokinetic parameters, as well as the PDT activity, of such modifications have, until now, only been poorly investigated. The purpose of the present study was to explore the efficacy of PDT with the formulation of the photosensitizer chlorin e6 (Ce6) in combination with polyvinyl alcohol (PVA) in comparison with Ce6 alone and with the clinical drug, Photodithazine in a mouse tumor model. We also investigated the photoactivity of the Ce6-PVA in a model reaction of tryptophan oxidation, analyzed the polymer–Ce6 interaction using fluorescence spectroscopy and atomic-force microscopy, and tested the phototoxicity in vitro. Using fluorescence imaging in vivo we found that injection to mice of Ce6 in a formulation with PVA resulted in a higher tumor-to-normal ratio and greater photobleaching when compared with either the use of Ce6 alone, or with the effects of Photodithazine. Tumor growth study and histological examination of CT26 tumors revealed fast, reproducible tumor regression and more advanced necrosis after PDT with Ce6-PVA. The higher photoactivity of the Ce6-PVA complex was confirmed in a model reaction of tryptophan oxidation and in cultured cells. Therefore, encapsulation of Ce6 in PVA represents a promising strategy for further increasing the selectivity and efficacy of PDT.
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