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Preparation of Methylene Blue-containing Nanoliposomes and Determination of Stability, Biological Distribution and Drug Release after Sonication by 1 MHz Ultrasound Waves

Publish Year: 1391
Type: Journal paper
Language: English
View: 16
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JR_PRJMS-15-2_002

Index date: 18 March 2025

Preparation of Methylene Blue-containing Nanoliposomes and Determination of Stability, Biological Distribution and Drug Release after Sonication by 1 MHz Ultrasound Waves abstract

Objective: In order to overcome the limitation of systemic administration of methylene blue, this study investigated the encapsulation of methylene blue in polymeric liposomes and drug release following sonication. Methods: We encapsulated methylene blue into nanoliposomes. The dynamic light scattering (DLS) method was used to measure the size distribution of the liposomes. After loading methylene blue into these liposomes, both drug encapsulation efficiency and stability were fluorometrically determined. Biodistribution of drug was studied in vivo in a mouse model of adenocarcinoma tumor cells. The amount of drug released upon 1 MHz sonication at an intensity of 2 W/cm2 was fluorometrically verified in vitro.  Results: DLS studies showed that the synthesized liposomes had an average size of 66.19±4.49 nm. Methylene blue was efficiently encapsulated in nanoparticles at an average of 65.21±3.47%. Stability of the generated liposomes decreased with time. Biodistribution study revealed that the drug content in the group that received liposomal drugs in their tumor tissue was significantly higher than in the group that received methylene blue in its free form and in the heart was inverse (PConclusion: This study has shown that fabricated liposomes are suitable for the encapsulation and delivery of hydrophilic photosensitizers such as methylene blue. Ultrasound-triggered release was achieved by the use of a 1 MHz ultrasound.

Preparation of Methylene Blue-containing Nanoliposomes and Determination of Stability, Biological Distribution and Drug Release after Sonication by 1 MHz Ultrasound Waves Keywords:

Preparation of Methylene Blue-containing Nanoliposomes and Determination of Stability, Biological Distribution and Drug Release after Sonication by 1 MHz Ultrasound Waves authors

علی ابراهیمی نیا

Ph.D. Candidate, Department of Medical Physics, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran

منیژه مختاری دیزجی

Professor, Department of Medical Physics, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran

طیبه تولیت

Associated Professor, Department of Pharmacy, Faculty of Pharmacy, Tehran University of Medical Sciences, Tehran, Iran

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Henderson BW, Dougherty TJ. How does photodynamic therapy work? Photochem ...
Nakaseko H, Kobayashi M, Akita Y, Tamada Y, Matsumoto Y. ...
Plaetzer K, Kiesslich T, Oberdanner CB, Krammer B. Apoptosis following ...
Huang Z. A review of progress in clinical photodynamic therapy. ...
Khdair A, Gerard B, Handa H, Mao G, Shekhar MP, ...
Tang W, Xu H, Park EJ, Philbert MA, Kopelman R. ...
Yan F, Zhang Y, Kim KS, Yuan HK, Vo-Dinh T. ...
Tardivo JP, Giglio AD, de Oliveira CS, Gabrielli DS, Junqueira ...
Derycke AS, de Witte PA. Liposomes for photodynamic therapy. Adv ...
Chatterjee DK, Fong LS, Zhang Y. Nanoparticles in photodynamic therapy: ...
Huang SL. Liposomes in ultrasonic drug and gene delivery. Adv ...
۱۴- Schroeder A, Honen R, Turjeman K, Gabizon A, Kost ...
Husseini GA, Pitt WG. Micelles and nanoparticles for ultrasonic drug ...
Huang SL, MacDonald RC. Acoustically active liposomes for drug encapsulation ...
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