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Incorporation of acridine orange and methylene blue in Langmuir monolayers mimicking releasing nanostructures

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Author(s):
Pivetta, Thais P. ; Jochelavicius, Karen ; Wrobel, Ellen C. ; Balogh, Debora T. ; Oliveira, Osvaldo N. ; Ribeiro, Paulo A. ; Raposo, Maria
Total Authors: 7
Document type: Journal article
Source: BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES; v. 1865, n. 5, p. 8-pg., 2023-06-01.
Abstract

The efficiency of methylene blue (MB) and acridine orange (AO) for photodynamic therapy (PDT) is increased if encapsulated in liposomes. In this paper we determine the molecular-level interactions between MB or AO and mixed monolayers of 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC), 1,2-dipalmitoyl-sn-glycero-3-phos-pho-(1 & PRIME;-rac-glycerol) (DPPG) and cholesterol (CHOL) using surface pressure isotherms and polarization -modulated infrared reflection absorption spectroscopy (PM-IRRAS). To increase liposome stability, the effects from adding the surfactants Span & REG; 80 and sodium cholate were also studied. Both MB and AO induce an expansion in the mixed monolayer, but this expansion is less significant in the presence of either Span & REG; 80 or sodium cholate. The action of AO and MB occurred via coupling with phosphate groups of DPPC or DPPG. However, the levels of chain ordering and hydration of carbonyl and phosphate in headgroups depended on the photosensitizer and on the presence of Span & REG; 80 or sodium cholate. From the PM-IRRAS spectra, we inferred that incorporation of MB and AO increased hydration of the monolayer headgroup, except for the case of the monolayer containing sodium cholate. This variability in behaviour offers an opportunity to tune the incorpo-ration of AO and MB into liposomes which could be exploited in the release necessary for PDT. (AU)

FAPESP's process: 18/22214-6 - Towards a convergence of technologies: from sensing and biosensing to information visualization and machine learning for data analysis in clinical diagnosis
Grantee:Osvaldo Novais de Oliveira Junior
Support Opportunities: Research Projects - Thematic Grants
FAPESP's process: 20/15571-7 - Encapsulation of antitumoral ruthenium complexes into calixarene derivatives: a study of drug delivery systems and cell membrane models
Grantee:Ellen Christine Wrobel
Support Opportunities: Scholarships in Brazil - Post-Doctoral