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Review

Optimizing efficacy of amphotericin B through nanomodification

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Pages 417-432 | Published online: 09 Oct 2022

Keep up to date with the latest research on this topic with citation updates for this article.

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Jair Téllez, Maria Clara Echeverry, Ibeth Romero, Andrea Guatibonza, Guilherme Santos Ramos, Ana Carolina Borges De Oliveira, Frédéric Frézard & Cynthia Demicheli. (2021) Use of liposomal nanoformulations in antileishmania therapy: challenges and perspectives. Journal of Liposome Research 31:2, pages 169-176.
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Carlo Genovese, Luana Pulvirenti, Nunzio Cardullo, Vera Muccilli, Gianna Tempera, Daria Nicolosi & Corrado Tringali. (2020) Bioinspired benzoxanthene lignans as a new class of antimycotic agents: synthesis and Candida spp. growth inhibition. Natural Product Research 34:12, pages 1653-1662.
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Walter Brand, Cornelle W Noorlander, Christina Giannakou, Wim H De Jong, Myrna W Kooi, Margriet VDZ Park, Rob J Vandebriel, Irene EM Bosselaers, Joep HG Scholl & Robert E Geertsma. (2017) Nanomedicinal products: a survey on specific toxicity and side effects. International Journal of Nanomedicine 12, pages 6107-6129.
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Rossana A. Cordeiro, Carlos E. C. Teixeira, Raimunda S. N. Brilhante, Débora S. C. M. Castelo-Branco, Manoel A. N. Paiva, João J. Giffoni Leite, Daniel T. Lima, André J. Monteiro, José J. C. Sidrim & Marcos F. G. Rocha. (2013) Minimum inhibitory concentrations of amphotericin B, azoles and caspofungin against Candida species are reduced by farnesol. Medical Mycology 51:1, pages 53-59.
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V Grazú, AM Silber, M Moros, L Asín, TE Torres, C Marquina, MR Ibarra & GF Goya. (2012) Application of magnetically induced hyperthermia in the model protozoan Crithidia fasciculata as a potential therapy against parasitic infections. International Journal of Nanomedicine 7, pages 5351-5360.
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Guilherme Carneiro, Marta Gontijo Aguiar, Ana Paula Fernandes & Lucas Antônio Miranda Ferreira. (2012) Drug delivery systems for the topical treatment of cutaneous leishmaniasis . Expert Opinion on Drug Delivery 9:9, pages 1083-1097.
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Swati Gupta, Ajay Pal & Suresh P Vyas. (2010) Drug delivery strategies for therapy of visceral leishmaniasis. Expert Opinion on Drug Delivery 7:3, pages 371-402.
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Niamh O'Grady, Dayna McManus, Neima Briggs, Marwan M. Azar, Jeffrey Topal & Matthew W. Davis. (2023) Dosing implications for liposomal amphotericin B in pregnancy. Pharmacotherapy: The Journal of Human Pharmacology and Drug Therapy 43:5, pages 452-462.
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Naveed Nazir Shah, Zaid Khan, Hashim Ahad, Abozer Y. Elderdery, Mohammad N. Alomary, Banan Atwah, Zain Alhindi, Mahdi H. Alsugoor, Ahmed M.E. Elkhalifa, Showket Nabi, Showkeen Muzamil Bashir, Tahir Yaqub, Gulzar Ahmed Rather & Mohammad Azam Ansari. (2022) Mucormycosis an added burden to Covid-19 Patients: An in-depth systematic review. Journal of Infection and Public Health 15:11, pages 1299-1314.
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Ellen Wasan, Tavonga Mandava, Pablo Crespo-Moran, Adrienne Nagy & Kishor M. Wasan. (2022) Review of Novel Oral Amphotericin B Formulations for the Treatment of Parasitic Infections. Pharmaceutics 14:11, pages 2316.
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Parisa Fatehi chinar, Sina Bahraminejad, Abbas Pardakhty, Iraj Sharifi, Mahdi Ranjbar, Somayyeh Karami-Mohajeri & Fatemeh Sharifi. (2022) Preparation and evaluation of physicochemical properties and anti-leishmanial activity of zirconium/tioxolone niosomes against Leishmania major. Arabian Journal of Chemistry 15:10, pages 104156.
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Carlos E. Torres, Javier Cifuentes, Saúl C. Gómez, Valentina Quezada, Kevin A. Giraldo, Paola Ruiz Puentes, Laura Rueda-Gensini, Julian A. Serna, Carolina Muñoz-Camargo, Luis H. Reyes, Johann F. Osma & Juan C. Cruz. (2022) Microfluidic Synthesis and Purification of Magnetoliposomes for Potential Applications in the Gastrointestinal Delivery of Difficult-to-Transport Drugs. Pharmaceutics 14:2, pages 315.
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Huolong Liu, Benjamin Rivnay, Ken Avery, Ja Hye Myung, Darby Kozak, Nelson Landrau, Alex Nivorozhkin, Muhammad Ashraf & Seongkyu Yoon. (2020) Optimization of the manufacturing process of a complex amphotericin B liposomal formulation using quality by design approach. International Journal of Pharmaceutics 585, pages 119473.
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Tamara B. Chistyakova, Eldar E. Musayev, Roman V. Makaruk, Igor A. Smirnov & Valery V. Belakhov. (2020) A Computer System for Predicting Antimycotic Properties. A Computer System for Predicting Antimycotic Properties.
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Débora V.C. Mendonça, Grasiele S.V. Tavares, Daniela P. Lage, Tauane G. Soyer, Lívia M. Carvalho, Daniel S. Dias, Patrícia A.F. Ribeiro, Flaviano M. Ottoni, Luciana M.R. Antinarelli, Danniele L. Vale, Fernanda Ludolf, Mariana C. Duarte, Elaine S. Coimbra, Miguel A. Chávez-Fumagalli, Bruno M. Roatt, Daniel Menezes-Souza, José Mário Barichello, Ricardo J. Alves & Eduardo A.F. Coelho. (2019) In vivo antileishmanial efficacy of a naphthoquinone derivate incorporated into a Pluronic® F127-based polymeric micelle system against Leishmania amazonensis infection. Biomedicine & Pharmacotherapy 109, pages 779-787.
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Maryam Akbari, Ahmad Oryan & Gholamreza Hatam. (2017) Application of nanotechnology in treatment of leishmaniasis: A Review. Acta Tropica 172, pages 86-90.
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Ana C. O. Souza & Andre C. Amaral. (2017) Antifungal Therapy for Systemic Mycosis and the Nanobiotechnology Era: Improving Efficacy, Biodistribution and Toxicity. Frontiers in Microbiology 8.
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