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Original Article

A Comparative Study of the Accurate Measurement of Endotoxin in Liposome-Encapsulated Hemoglobin

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Pages 331-336 | Published online: 11 Jul 2009

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Koilpillai Jebastin & Damodharan Narayanasamy. (2023) Rationale utilization of phospholipid excipients: a distinctive tool for progressing state of the art in research of emerging drug carriers. Journal of Liposome Research 33:1, pages 1-33.
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Tony L. Whateley. (1996) Literature Alerts. Drug Delivery 3:1, pages 43-56.
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Tony L. Whateley. (1996) Literature Alerts. Drug Delivery 3:3, pages 201-218.
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. (1996) Literature Alerts. Journal of Microencapsulation 13:5, pages 619-637.
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Articles from other publishers (15)

Christina Giannakou, Kukka Aimonen, Louis van Bloois, Julia Catalán, Robert E Geertsma, Eric R Gremmer, Wim H de Jong, Peter HJ Keizers, Paul LWJ Schwillens, Rob J Vandebriel & Margriet VDZ Park. (2019) Sensitive method for endotoxin determination in nanomedicinal product samples. Nanomedicine 14:10, pages 1231-1246.
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Gna Ahn, Simranjeet Singh Sekhon, Yae-Eun Jeon, Myung-Su Kim, Kyungho Won, Yang-Hoon Kim & Ji-Young Ahn. (2018) Detection of endotoxins using nanomaterials. Toxicology and Environmental Health Sciences 9:5, pages 259-268.
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Marina A. Dobrovolskaia. (2015) Pre-clinical immunotoxicity studies of nanotechnology-formulated drugs: Challenges, considerations and strategy. Journal of Controlled Release 220, pages 571-583.
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Lin Chen & Ned Mozier. (2013) Comparison of Limulus amebocyte lysate test methods for endotoxin measurement in protein solutions. Journal of Pharmaceutical and Biomedical Analysis 80, pages 180-185.
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Marina A Dobrovolskaia, Barry W Neun, Jeffrey D Clogston, Hui Ding, Julia Ljubimova & Scott E McNeil. (2010) Ambiguities in applying traditional Limulus Amebocyte Lysate tests to quantify endotoxin in nanoparticle formulations . Nanomedicine 5:4, pages 555-562.
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Vibhudutta Awasthi, Beth Goins & William Phillips. 2006. Liposome Technology, Volume II. Liposome Technology, Volume II 63 91 .
Hiromi Sakai, Keitaro Sou, Shinji Takeoka, Koichi Kobayashi & Eishun Tsuchida. 2006. Blood Substitutes. Blood Substitutes 514 522 .
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Hiromi Sakai, Keitaro Sou, Shinji Takeoka, Koichi Kobayashi & Eishun Tsuchida. 2005. Artificial Oxygen Carrier. Artificial Oxygen Carrier 135 168 .
Hiromi Sakai, Shuji Hisamoto, Ippei Fukutomi, Keitaro Sou, Shinji Takeoka & Eishun Tsuchida. (2004) Detection of lipopolysaccharide in hemoglobin‐vesicles by Limulus amebocyte lysate test with kinetic–turbidimetric gel clotting analysis and pretreatment of surfactant. Journal of Pharmaceutical Sciences 93:2, pages 310-321.
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Jean G. Riess. (2001) Oxygen Carriers (“Blood Substitutes”)Raison d'Etre, Chemistry, and Some Physiology Blut ist ein ganz besondrer Saft . Chemical Reviews 101:9, pages 2797-2920.
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T.M.S. Chang. 1998. Biotechnolgy Annual Review. Biotechnolgy Annual Review 75 112 .
Alan S. Rudolph. 1998. Frontiers in Tissue Engineering. Frontiers in Tissue Engineering 481 494 .
Alan S. Rudolph, Richard Cliff, Victoria Kwasiborski, Lewis Neville, Fizan Abdullah & Reuven Rabinovici. (1997) Liposome-encapsulated hemoglobin modulates lipopolysaccharide-induced tumor necrosis factor-alpha production in mice. Critical Care Medicine 25:3, pages 460-468.
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J. Szebeni, N.M. Wassef, K.R. Hartman, A.S. Rudolph & C.R. Alving. (2003) Complement activation in vitro by the red cell substitute, liposome‐ encapsulated hemoglobin: mechanism of activation and inhibition by soluble complement receptor type 1. Transfusion 37:2, pages 150-159.
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