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Drug delivery strategies for therapy of visceral leishmaniasis

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Pages 371-402 | Published online: 05 Mar 2010

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Sara Shahriyar, Somayeh Taymouri, Sedigheh Saberi, Parvin Asadi & Majid Tabbakhian. (2021) Preparation and characterization of itraconazole loaded nanomicelles based on dextran–behenic acid for cutaneous leishmaniasis treatment. Drug Development and Industrial Pharmacy 47:3, pages 416-428.
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Juliane S. Lanza, Sébastien Pomel, Philippe M. Loiseau & Frédéric Frézard. (2019) Recent advances in amphotericin B delivery strategies for the treatment of leishmaniases. Expert Opinion on Drug Delivery 16:10, pages 1063-1079.
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Qamar Zia, Aijaz Ahmed Khan, Zubair Swaleha & Mohammad Owais. (2015) Self-assembled amphotericin B-loaded polyglutamic acid nanoparticles: preparation, characterization and in vitro potential against Candida albicans. International Journal of Nanomedicine 10, pages 1769-1790.
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Keitaro Sou, Beth Goins, Babatunde O Oyajobi, Bruno L Travi & William T Phillips. (2011) Bone marrow-targeted liposomal carriers. Expert Opinion on Drug Delivery 8:3, pages 317-328.
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Articles from other publishers (30)

Santanu Sasidharan & Prakash Saudagar. (2023) An anti‐leishmanial compound 4′,7‐dihydroxyflavone elicits ROS ‐mediated apoptosis‐like death in Leishmania parasite . The FEBS Journal 290:14, pages 3646-3663.
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Mahsa Alemomen, Somayeh Taymouri, Sedigheh Saberi & Jaleh Varshosaz. (2022) Preparation, optimization, and in vitro–in vivo evaluation of sorafenib-loaded polycaprolactone and cellulose acetate nanofibers for the treatment of cutaneous leishmaniasis. Drug Delivery and Translational Research 13:3, pages 862-882.
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Alexander J. Plant-Hately, Burcu Eryilmaz, Christopher A. W. David, Danielle E. Brain, Bethany J. Heaton, Yvonne Perrie & Neill J. Liptrott. (2022) Exposure of the Basophilic Cell Line KU812 to Liposomes Reveals Activation Profiles Associated with Potential Anaphylactic Responses Linked to Physico-Chemical Characteristics. Pharmaceutics 14:11, pages 2470.
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Fayyaz Rasool, Shaheer Hasan Khan, Abdulaziz S. Alouffi, Sri Krishna Jayadev Magani & Abdur Rub. 2022. Nanotechnology for Infectious Diseases. Nanotechnology for Infectious Diseases 175 195 .
Anushka Tyagi, Atul Pathak, Yashwant V. Pathak & Swati Gupta. 2022. Macrophage Targeted Delivery Systems. Macrophage Targeted Delivery Systems 225 252 .
Mahima Gupta, Atul Pathak, Yashwant V. Pathak & Swati Gupta. 2022. Macrophage Targeted Delivery Systems. Macrophage Targeted Delivery Systems 3 29 .
Christian Rafael Quijia, Cínthia Caetano Bonatto, Luciano Paulino Silva, Milene Aparecida Andrade, Clenia Santos Azevedo, Camila Lasse Silva, Manel Vega, Jaime Martins de Santana, Izabela Marques Dourado Bastos & Marcella Lemos Brettas Carneiro. (2020) Liposomes Composed by Membrane Lipid Extracts from Macrophage Cell Line as a Delivery of the Trypanocidal N,N’-Squaramide 17 towards Trypanosoma cruzi. Materials 13:23, pages 5505.
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Zimei WuBen KohLisa M. LawrenceManju KanamalaBregina PoolDarren SvirskisNicola DalbethJonathan W. AstinKathryn E. CrosierPhilip S. CrosierChristopher J. Hall. (2019) Liposome-Mediated Drug Delivery in Larval Zebrafish to Manipulate Macrophage Function. Zebrafish 16:2, pages 171-181.
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Aline de Souza, Débora Soares Souza Marins, Samir Leite Mathias, Lis Marie Monteiro, Megumi Nishitani Yukuyama, Cauê Benito Scarim, Raimar Löbenberg & Nádia Araci Bou-Chacra. (2018) Promising nanotherapy in treating leishmaniasis. International Journal of Pharmaceutics 547:1-2, pages 421-431.
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Swati Pund & Amita Joshi. 2017. Nano- and Microscale Drug Delivery Systems. Nano- and Microscale Drug Delivery Systems 439 480 .
Lalit Kumar, Shivani Verma, Bhuvaneshwar Vaidya & Neelesh K. Mehra. 2017. Nanostructures for Antimicrobial Therapy. Nanostructures for Antimicrobial Therapy 293 324 .
Jose A. Garcia-Salcedo, Juan D. Unciti-Broceta, Javier Valverde-Pozo & Miguel Soriano. (2016) New Approaches to Overcome Transport Related Drug Resistance in Trypanosomatid Parasites. Frontiers in Pharmacology 7.
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Maria Manuela Gaspar, Susana Calado, Joana Pereira, Helena Ferronha, Ivone Correia, Helena Castro, Ana M. Tomás & Maria Eugénia Meirinhos Cruz. (2015) Targeted delivery of paromomycin in murine infectious diseases through association to nano lipid systems. Nanomedicine: Nanotechnology, Biology and Medicine 11:7, pages 1851-1860.
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Jonas Graversen & Søren Moestrup. (2015) Drug Trafficking into Macrophages via the Endocytotic Receptor CD163. Membranes 5:2, pages 228-252.
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Manuela Carvalheiro, M. Alexandra Esteves, David Santos-Mateus, Rui M. Lopes, M. Armanda Rodrigues, Carla V. Eleutério, Effie Scoulica, Gabriela Santos-Gomes & M. Eugénia M. Cruz. (2015) Hemisynthetic trifluralin analogues incorporated in liposomes for the treatment of leishmanial infections. European Journal of Pharmaceutics and Biopharmaceutics 93, pages 346-352.
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Roma Sinha, Jayeeta Roychoudhury, Partha Palit & Nahid Ali. (2015) Cationic Liposomal Sodium Stibogluconate (SSG), a Potent Therapeutic Tool for Treatment of Infection by SSG-Sensitive and -Resistant Leishmania donovani. Antimicrobial Agents and Chemotherapy 59:1, pages 344-355.
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Forough Khadem & Jude E Uzonna. (2014) Immunity to visceral leishmaniasis: implications for immunotherapy. Future Microbiology 9:7, pages 901-915.
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Karolina Alicja Les, Abeer H. A. Mohamed-Ahmed, Sibu Balan, Ji-won Choi, Denis Martin, Vanessa Yardley, Keith Powell, Antony Godwin & Steve Brocchini. (2014) Poly(methacrylic acid) complexation of amphotericin B to treat neglected diseases. Polym. Chem. 5:3, pages 1037-1048.
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Abeer H. A. Mohamed-Ahmed, Karin Seifert, Vanessa Yardley, Hollie Burrell-Saward, Stephen Brocchini & Simon L. Croft. (2013) Antileishmanial Activity, Uptake, and Biodistribution of an Amphotericin B and Poly(α-Glutamic Acid) Complex. Antimicrobial Agents and Chemotherapy 57:10, pages 4608-4614.
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T.T.H. Pham, P.M. Loiseau & G. Barratt. (2013) Strategies for the design of orally bioavailable antileishmanial treatments. International Journal of Pharmaceutics 454:1, pages 539-552.
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Abeer H. A. Mohamed-AhmedKarolina A. LesKarin SeifertSimon L. CroftStephen Brocchini. (2013) Noncovalent Complexation of Amphotericin-B with Poly(α-glutamic acid). Molecular Pharmaceutics 10:3, pages 940-950.
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Abeer H. A. Mohamed-Ahmed, Claire Ginn, Simon L. Croft & Stephen Brocchini. 2013. Fundamentals of Pharmaceutical Nanoscience. Fundamentals of Pharmaceutical Nanoscience 429 464 .
A. Fortin, S. Hendrickx, V. Yardley, P. Cos, H. Jansen & L. Maes. (2012) Efficacy and tolerability of oleylphosphocholine (OlPC) in a laboratory model of visceral leishmaniasis. Journal of Antimicrobial Chemotherapy 67:11, pages 2707-2712.
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Anil Kumar ShuklaSanjukta PatraVikash Kumar Dubey. (2012) Nanospheres Encapsulating Anti-Leishmanial Drugs for Their Specific Macrophage Targeting, Reduced Toxicity, and Deliberate Intracellular Release. Vector-Borne and Zoonotic Diseases 12:11, pages 953-960.
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Devyani Dube, Madhu Gupta & Suresh P. Vyas. (2012) Nanocarriers for Drug Targeting to Macrophages: Emerging Options for a Therapeutic Need. Proceedings of the National Academy of Sciences, India Section B: Biological Sciences 82:S1, pages 151-165.
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Vinod Krishnan, Gunnar Dahlén & Ze'ev Davidovitch. 2012. Integrated Clinical Orthodontics. Integrated Clinical Orthodontics 240 266 .
S.M. Moghimi, L. Parhamifar, D. Ahmadvand, P.P. Wibroe, T.L. Andresen, Z.S. Farhangrazi & A.C. Hunter. (2012) Particulate Systems for Targeting of Macrophages: Basic and Therapeutic Concepts. Journal of Innate Immunity 4:5-6, pages 509-528.
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Declan Gaynor & Darren M. Griffith. (2012) The prevalence of metal-based drugs as therapeutic or diagnostic agents: beyond platinum. Dalton Transactions 41:43, pages 13239.
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H. Van de Ven, M. Vermeersch, A. Matheeussen, J. Vandervoort, W. Weyenberg, S. Apers, P. Cos, L. Maes & A. Ludwig. (2011) PLGA nanoparticles loaded with the antileishmanial saponin β-aescin: Factor influence study and in vitro efficacy evaluation. International Journal of Pharmaceutics 420:1, pages 122-132.
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Rupashree Sen & Mitali Chatterjee. (2011) Plant derived therapeutics for the treatment of Leishmaniasis. Phytomedicine 18:12, pages 1056-1069.
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