Desenvolvimento, caracterização e avaliação de lipossomas contendo β-sitosterol em um modelo experimental ex vivo de cataratogênese
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Universidade Estadual de Ponta Grossa
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Cataracts, the main cause of blindness worldwide, is due to cloudiness in the eye lens, as a
result of oxidative stress, loss of chaperone function of crystallin proteins and other factors
that trigger their precipitation. The present study evaluated the effect of -sitosterol in
preventing cataract using an ex vivo model of cataractogenesis. -Sitosterol loaded liposomes
(BSL) were developed, prepared by the modified reverse phase method and evaluated for
mean diameter (MD), polydispersion index (PDI), zeta potential (ZP), as well as
morphological aspects by scanning electron microscopy (SEM-FEG). The anticataratogenic
activity of BSL was studied in an ex vivo lens culture model of Wistar rats supplemented with
sodium selenite. Lenses were photographed before and after culture. Lens opacity
(transmittance) was determined using a UV-Vis spectrophotometer and structural changes in
proteins were determined by Raman spectroscopy. The BSL had a mean diameter of 183.90
15.41 nm, a PDI of 0.319 0.01 and a ZP of -31.25 0.63 mV. The photographs showed that
BSL slowed the progression of opacity, and the transmittance spectra of lenses incubated with
BSL showed attenuation in the reduction in transmittance induced by sodium selenite. Raman
spectroscopy revealed increases and decreases in microenvironments of tryptophan residues
in induced lenses and variation in amide intensity. Treatment with BSL allowed to maintain
the foldable structure of the crystalline β-leaf, suggesting a therapeutic option for preventing
cataract formation. The development of nanostructured systems loaded with potential
therapeutic compounds and their spectroscopic evaluation can provide information about
possible treatments for cataracts.
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ESPINOZA, Joel Toribio. Desenvolvimento, caracterização e avaliação de lipossomas contendo β-sitosterol em um modelo experimental ex vivo de cataratogênese. 2021. 87f. Tese (Doutorado em Ciências Farmacêuticas). Universidade Estadual de Ponta Grossa, Ponta Grossa, 2021.
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