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Review

Liposomes for targeted delivery of antithrombotic drugs

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Pages 1185-1198 | Published online: 01 Nov 2008

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Vishal Saxena, Carmen Gacchina Johnson, Ayele H. Negussie, Karun V. Sharma, Matthew R. Dreher & Bradford J. Wood. (2015) Temperature-sensitive liposome-mediated delivery of thrombolytic agents. International Journal of Hyperthermia 31:1, pages 67-73.
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Kristen Bowey, Jean-François Tanguay & Maryam Tabrizian. (2012) Liposome technology for cardiovascular disease treatment and diagnosis. Expert Opinion on Drug Delivery 9:2, pages 249-265.
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Rivka Yatuv, Micah Robinson, Inbal Dayan-Tarshish & Moshe Baru. (2010) The use of PEGylated liposomes in the development of drug delivery applications for the treatment of hemophilia. International Journal of Nanomedicine 5, pages 581-591.
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Rivka Yatuv, Micah Robinson, Inbal Dayan & Moshe Baru. (2010) Enhancement of the efficacy of therapeutic proteins by formulation with PEGylated liposomes; a case of FVIII, FVIIa and G-CSF. Expert Opinion on Drug Delivery 7:2, pages 187-201.
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Sophia Antimisiaris. (2009) Arsonoliposomes for drug delivery applications. Clinical Lipidology 4:5, pages 663-675.
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Suresh P Vyas & Bhuvaneshwar Vaidya. (2009) Targeted delivery of thrombolytic agents: role of integrin receptors. Expert Opinion on Drug Delivery 6:5, pages 499-508.
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Gulmi Chakraborty, Minakshi Meher, Sanjay Dash, Rudra Narayan Rout, Sibananda Pradhan & Dipanjali Sahoo. (2023) Strategies for Targeted Delivery via Structurally Variant Polymeric Nanocarriers. ChemistrySelect 8:29.
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Zhaoxuan Low, Rafidah Lani, Vunjia Tiong, Chitlaa Poh, Sazaly AbuBakar & Pouya Hassandarvish. (2023) COVID-19 Therapeutic Potential of Natural Products. International Journal of Molecular Sciences 24:11, pages 9589.
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Ali Farzin, Nima Beheshtizadeh, Ahmad Vaez, Paniz Siminzar, Mohammad Varzandeh & Mahmoud Azami. 2023. Principles of Biomaterials Encapsulation : Volume Two. Principles of Biomaterials Encapsulation : Volume Two 149 200 .
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Aurita Butkeviciute, Kristina Ramanauskiene & Valdimaras Janulis. (2022) Formulation of Gels and Emulgels with Malus domestica Borkh: Apple Extracts and Their Biopharmaceutical Evaluation In Vitro. Antioxidants 11:2, pages 373.
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Huong D.N. Tran, Fahima Akther, Zhi Ping Xu & Hang T. Ta. 2022. Nanotechnology for Hematology, Blood Transfusion, and Artificial Blood. Nanotechnology for Hematology, Blood Transfusion, and Artificial Blood 113 140 .
Vishnu Priya, Matte Kasi Viswanadh, Abhishesh Kumar Mehata, Dharmendra Jain, Sanjeev K Singh & Madaswamy S Muthu. (2021) Targeted nanotherapeutics in the prophylaxis and treatment of thrombosis. Nanomedicine 16:13, pages 1153-1176.
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Barkat Ali Khan, Shafi Ullah, M.Khalid Khan, Sultan M Alshahrani & Valdir A Braga. (2020) Formulation and evaluation of Ocimum basilicum-based emulgel for wound healing using animal model. Saudi Pharmaceutical Journal 28:12, pages 1842-1850.
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Soodabeh Hassanpour, Han‐Jun Kim, Arezoo Saadati, Peyton Tebon, Chengbin Xue, Floor W. Dolder, Jai Thakor, Behzad Baradaran, Jafar Mosafer, Amir Baghbanzadeh, Natan Roberto Barros, Mahmoud Hashemzaei, Kang Ju Lee, Junmin Lee, Shiming Zhang, Wujin Sun, Hyun‐Jong Cho, Samad Ahadian, Nureddin Ashammakhi, Mehmet R. Dokmeci, Ahad Mokhtarzadeh & Ali Khademhosseini. (2020) Thrombolytic Agents: Nanocarriers in Controlled Release. Small 16:40, pages 2001647.
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Hassan Bardania, Seyed Abbas Shojaosadati, Farzad Kobarfard, Dina Morshedi, Farhang Aliakbari, Mohammad Taher Tahoori & Elahe Roshani. (2019) RGD-Modified Nano-Liposomes Encapsulated Eptifibatide with Proper Hemocompatibility and Cytotoxicity Effect. Iranian Journal of Biotechnology 17:2, pages 8-13.
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Patrícia M. Carvalho, Mário R. Felício, Nuno C. Santos, Sónia Gonçalves & Marco M. Domingues. (2018) Application of Light Scattering Techniques to Nanoparticle Characterization and Development. Frontiers in Chemistry 6.
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Nengpan Zhang, Chunlin Li, Dayong Zhou, Chen Ding, Yaqing Jin, Qingmei Tian, Xiangzhou Meng, Kefeng Pu & Yimin Zhu. (2018) Cyclic RGD functionalized liposomes encapsulating urokinase for thrombolysis. Acta Biomaterialia 70, pages 227-236.
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Lalit Kumar, Shivani Verma & Bhuvaneshwar Vaidya. (2017) Liposomes for the delivery of streptokinase. Therapeutic Delivery 8:10, pages 855-866.
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Marina A. Dobrovolskaia. 2017. The Immune Response to Implanted Materials and Devices. The Immune Response to Implanted Materials and Devices 63 80 .
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Stepan Koudelka, Robert Mikulik, Josef Mašek, Milan Raška, Pavlína Turánek Knotigová, Andrew D. Miller & Jaroslav Turánek. (2016) Liposomal nanocarriers for plasminogen activators. Journal of Controlled Release 227, pages 45-57.
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S. Absar, N. Gupta, K. Nahar & F. Ahsan. (2015) Engineering of plasminogen activators for targeting to thrombus and heightening thrombolytic efficacy. Journal of Thrombosis and Haemostasis 13:9, pages 1545-1556.
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Leonard A. Valentino. 2014. Textbook of Hemophilia. Textbook of Hemophilia 192 196 .
Yutaka Ikeda & Yukio Nagasaki. (2014) Impacts of PEGylation on the gene and oligonucleotide delivery system. Journal of Applied Polymer Science 131:9, pages n/a-n/a.
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JOHN N. BARRY & ALEXEY A. VERTEGEL. (2014) NANOMATERIALS FOR PROTEIN-MEDIATED THERAPY AND DELIVERY. Nano LIFE 03:04, pages 1343001.
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Ajazuddin, Amit Alexander, Ajita Khichariya, Saurabh Gupta, Ravish J. Patel, Tapan Kumar Giri & Dulal Krishna Tripathi. (2013) Recent expansions in an emergent novel drug delivery technology: Emulgel. Journal of Controlled Release 171:2, pages 122-132.
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Hoai X. Nguyen & Edgar A. O'Rear. (2013) Biphasic release of protein from polyethylene glycol and polyethylene glycol/modified dextran microspheres. Journal of Biomedical Materials Research Part A 101A:9, pages 2699-2705.
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Anna N Ilinskaya & Marina A Dobrovolskaia. (2013) Nanoparticles and the blood coagulation system. Part I: benefits of nanotechnology. Nanomedicine 8:5, pages 773-784.
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Dan Li, Shasha Wang, Zhaoqiang Wu, Hong Chen & John L. Brash. (2013) A new t-PA releasing concept based on protein?protein displacement. Soft Matter 9:7, pages 2321.
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Bhuvaneshwar Vaidya, G.P. Agrawal & Suresh P. Vyas. (2012) Functionalized carriers for the improved delivery of plasminogen activators. International Journal of Pharmaceutics 424:1-2, pages 1-11.
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Kewal K. JainKewal K. Jain. 2012. The Handbook of Nanomedicine. The Handbook of Nanomedicine 171 234 .
Vladimir Torchilin. 2012. Fundamentals and Applications of Controlled Release Drug Delivery. Fundamentals and Applications of Controlled Release Drug Delivery 289 328 .
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Bhuvaneshwar Vaidya, G.P. Agrawal & Suresh P. Vyas. (2011) Platelets directed liposomes for the delivery of streptokinase: Development and characterization. European Journal of Pharmaceutical Sciences 44:5, pages 589-594.
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Dan Li, Hong Chen & John L. Brash. (2011) Mimicking the fibrinolytic system on material surfaces. Colloids and Surfaces B: Biointerfaces 86:1, pages 1-6.
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Irfana Muqbil, Ashiq Masood, Fazlul H. Sarkar, Ramzi M. Mohammad & Asfar S. Azmi. (2011) Progress in Nanotechnology Based Approaches to Enhance the Potential of Chemopreventive Agents. Cancers 3:1, pages 428-445.
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Yutaka Ikeda & Yukio Nagasaki. 2012. Polymers in Nanomedicine. Polymers in Nanomedicine 115 140 .
S. Zaitsev, D. Spitzer, J. C. Murciano, B. S. Ding, S. Tliba, M. A. Kowalska, K. Bdeir, A. Kuo, V. Stepanova, J. P. Atkinson, M. Poncz, D. B. Cines & V. R. Muzykantov. (2009) Targeting of a Mutant Plasminogen Activator to Circulating Red Blood Cells for Prophylactic Fibrinolysis. Journal of Pharmacology and Experimental Therapeutics 332:3, pages 1022-1031.
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Juan-Carlos Murciano, Abd Al-Roof Higazi, Douglas B. Cines & Vladimir R. Muzykantov. (2009) Soluble urokinase receptor conjugated to carrier red blood cells binds latent pro-urokinase and alters its functional profile. Journal of Controlled Release 139:3, pages 190-196.
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Caroline Wyss, Stephan C. Schaefer, Lucienne Juillerat-Jeanneret, Lucienne Lagopoulos, Hans-Anton Lehr, Christoph D. Becker & Xavier Montet. (2009) Molecular imaging by micro-CT: specific E-selectin imaging. European Radiology 19:10, pages 2487-2494.
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Pascaline Ngweniform, Gopal Abbineni, Binrui Cao & Chuanbin Mao. (2009) Self-Assembly of Drug-Loaded Liposomes on Genetically Engineered Target-Recognizing M13 Phage: A Novel Nanocarrier for Targeted Drug Delivery. Small 5:17, pages 1963-1969.
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