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Biodegradable nanoparticles surface modification techniques with cIBR peptide targeting to LFA-1 expressing leukemic cells

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dc.contributor.author Phongpradist R.
dc.contributor.author Chittasupho C.
dc.contributor.author Intasai N.
dc.contributor.author Siahaan T.J.
dc.contributor.author Berkland C.J.
dc.contributor.author Charoenkwan P.
dc.contributor.author Anuchapreeda S.
dc.contributor.author Ampasavate C.
dc.date.accessioned 2021-04-05T03:33:50Z
dc.date.available 2021-04-05T03:33:50Z
dc.date.issued 2012
dc.identifier.issn 19492944
dc.identifier.other 2-s2.0-84881137715
dc.identifier.uri https://ir.swu.ac.th/jspui/handle/123456789/14253
dc.identifier.uri https://www.scopus.com/inward/record.uri?eid=2-s2.0-84881137715&doi=10.1115%2f1.4023896&partnerID=40&md5=f41ec658d96b389311aeaa776a8333b3
dc.description.abstract The lymphocyte function associated antigen-1 (LFA-1) is evaluated for a targeting carrier in leukemia. The cIBR peptide was utilized as the targeting moiety for the drug carrier in direct targeting to LFA-1 expressing cancer cells. This study aims to evaluate the effects of the cIBR peptide conjugation on the specific targeting delivery to the leukemic cell line. Poly (D, L lactide-co-glycolide) (PLGA) nanoparticles were conjugated to the cIBR peptide by three different approaches (coupling, head, and tail) in order to evaluate the nanoparticles' characters, targetability, uptake, drug releasing, and cytotoxicity of each approach. The prepared PLGA nanoparticles were spherical lin shape with a size range of 200-450 nm. The targetability and uptake of three types of cIBR-conjugated nanoparticles (cIBR-NPs) were evidenced and quantified by flow cytometry. The coupling approach presented the highest targetability, uptake, drug releasing, and cytotoxicity followed by the head and tail approaches, respectively. The peptide conjugation method onto the nanoparticles surface was proven to be a key factor for the nanoparticles' physicochemical characteristicss and their efficient delivery. Copyright © 2013 by ASME.
dc.subject Biodegradable nanoparticle
dc.subject Conjugation method
dc.subject Drug carrier
dc.subject Leukemia
dc.subject Paclitaxel
dc.subject PLGA nanoparticles
dc.subject Surface modification techniques
dc.subject Targeting deliveries
dc.subject Antigens
dc.subject Cell culture
dc.subject Copolymers
dc.subject Diseases
dc.subject Function evaluation
dc.subject Lymphocytes
dc.subject Peptides
dc.subject Nanoparticles
dc.subject carboxyl group
dc.subject cIBR peptide
dc.subject cIBR peptide polyglactin nanoparticle conjugate
dc.subject cyclopeptide
dc.subject drug carrier
dc.subject lymphocyte function associated antigen 1
dc.subject nanoparticle
dc.subject paclitaxel
dc.subject polyglactin nanoparticle
dc.subject unclassified drug
dc.subject article
dc.subject biodegradability
dc.subject cell viability
dc.subject chemical modification
dc.subject chemical procedures
dc.subject controlled study
dc.subject coupling conjugation
dc.subject drug binding
dc.subject drug conjugation
dc.subject drug cytotoxicity
dc.subject drug delivery system
dc.subject drug dosage form comparison
dc.subject drug effect
dc.subject drug formulation
dc.subject drug release
dc.subject drug safety
dc.subject drug specificity
dc.subject drug stability
dc.subject drug targeting
dc.subject drug uptake
dc.subject emulsion
dc.subject evaporation
dc.subject flow cytometry
dc.subject head conjugation
dc.subject IC 50
dc.subject in vitro study
dc.subject internalization
dc.subject leukemia cell
dc.subject nanoencapsulation
dc.subject particle size
dc.subject physical chemistry
dc.subject solvent displacement
dc.subject surface charge
dc.subject surface property
dc.subject tail conjugation
dc.subject zeta potential
dc.title Biodegradable nanoparticles surface modification techniques with cIBR peptide targeting to LFA-1 expressing leukemic cells
dc.type Article
dc.rights.holder Scopus
dc.identifier.bibliograpycitation Journal of Nanotechnology in Engineering and Medicine. Vol 3, No.4 (2012), p.-
dc.identifier.doi 10.1115/1.4023896


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