Bsa-Fitc-Loaded Microcapsules For In Vivo Delivery

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BSA-FITC-loaded microcapsules for in vivo delivery ...

    https://www.sciencedirect.com/science/article/pii/S0142961208008211
    Here we describe the preparation of BSA-FITC-loaded microcapsules as a model protein system for in vivo delivery. BSA-FITC-loaded microcapsules were prepared using a mono-axial nozzle ultrasonic atomizer, varying a number of parameters to determine optimal conditions.Author: Byung Soo Kim, Jae Min Oh, Kyung Sook Kim, Kwang Soo Seo, Jae Song Cho, Gilson Khang, Hai Bang Lee, ...

BSA-FITC-loaded microcapsules for in vivo delivery.

    https://www.ncbi.nlm.nih.gov/pubmed/19027943
    In conclusion, BSA-FITC-loaded microcapsules achieved sustained release of BSA-FITC, suggesting that microcapsules manufactured as described may be useful for in vivo delivery of pharmacologically active proteins.Author: Byung Soo Kim, Jae Min Oh, Kyung Sook Kim, Kwang Soo Seo, Jae Song Cho, Gilson Khang, Hai Bang Lee, ...

BSA-FITC-loaded microcapsules for in vivo delivery

    https://www.researchgate.net/publication/23491856_BSA-FITC-loaded_microcapsules_for_in_vivo_delivery
    Here we describe the preparation of BSA-FITC-loaded microcapsules as a model protein system for in vivo delivery. BSA-FITC-loaded microcapsules were prepared using a mono-axial nozzle ultrasonic atomizer, varying a number of parameters to determine optimal conditions.

BSA-FITC-loaded microcapsules for in vivo delivery

    http://kinampark.com/KPTopics/files/PLGA%20Microparticles/2009%20Kim%2C%20BSA-FITC-loaded%20microcapsules%20for%20in%20vivo%20delivery.pdf
    Herewe describe the preparation of BSA-FITC-loaded microcapsules as a model protein system for invivo delivery. BSA-FITC-loaded microcapsules were prepared using a mono-axial nozzle ultrasonic atomizer, varying a number of parameters to determine optimal conditions. The …

(PDF) BSA-FITC-loaded microcapsules for in vivo delivery ...

    https://www.academia.edu/21043789/BSA-FITC-loaded_microcapsules_for_in_vivo_delivery
    BSA-FITC-loaded microcapsules for in vivo delivery

Insulin-Loaded Microcapsules for In Vivo Delivery ...

    https://pubs.acs.org/doi/10.1021/mp800087t
    Administration of these insulin-loaded microcapsules to type 1 diabetic rats maintained plasma insulin concentrations for 30 days, due to the sustained insulin release properties of the microcapsules. In contrast, plasma insulin concentrations after subcutaneous injection of insulin solution reached near zero levels within 2 days.Author: Byung Soo Kim, Jae Min Oh, Hoon Hyun, Kyung Sook Kim, Sang Hyo Lee, Yu Han Kim, Kinam Park, Hai Bang...

Insulin-Loaded Microcapsules for In Vivo Delivery ...

    https://www.researchgate.net/publication/26778544_Insulin-Loaded_Microcapsules_for_In_Vivo_Delivery
    Insulin-Loaded Microcapsules for In Vivo Delivery Article in Molecular Pharmaceutics 6(2):353-65 · April 2009 with 110 Reads How we measure 'reads'

Formulation for Oral Delivery of Lactoferrin Based on ...

    https://www.nature.com/articles/srep44159
    Mar 10, 2017 · Enzymatic cleavage is the release mechanism particularly important for these applications. Enzymatically degradable microcapsules have been extensively investigated during the last decade 24,25,26,27,28,29,30,31,32,33 and employed for delivery of genes 24,26, growth factors 29,30 and vaccines 31,32,33.Author: Ece Kilic, Ece Kilic, Marina V. Novoselova, Marina V. Novoselova, Su Hui Lim, Nikolay A. Pyataev, Se...

Microencapsulation: A promising technique for controlled ...

    https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3093624/
    Microcapsules continue to be of much interest in controlled release because of relative ease in design and formulation and partly on the advantages of microparticulate delivery systems. The latter include sustained release from each individual microcapsule and offer greater uniformity and reproducibility.

Biomaterials Vol 30, Issue 5, Pages 703-978 (February ...

    https://www.sciencedirect.com/journal/biomaterials/vol/30/issue/5
    Gene delivery in vitro and in vivo from bioreducible multilayered polyelectrolyte films of plasmid DNA Jenifer Blacklock, Ye-Zi You, Qing-Hui Zhou, Guangzhao Mao, David Oupický Pages 939-950

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