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Gemcitabine cationic polymeric nanoparticles against ovarian cancer: formulation, characterization, and targeted drug delivery

dc.contributor.authorBhattacharya, Sankha
dc.contributor.authorAnjum, Md Meraj
dc.contributor.authorPatel, Krishna Kumar
dc.date.accessioned2023-04-26T06:11:21Z
dc.date.available2023-04-26T06:11:21Z
dc.date.issued2022
dc.descriptionThis paper is submitted by the author of IIT (BHU), Varanasien_US
dc.description.abstractThis study focused on gemcitabine (GTB) delivery of cationic polymeric nanoparticles to treat ovarian cancer in order to promote effective localized delivery and drug retention during biological discharge. To begin, four GTB-loaded polymer nanoparticles were prepared: chitosan nanoparticles (CS-NPs), polysarcosin nanoparticles (PSar-NPs), poly-l-lysine & polysarcosin nanoparticles (PLL-PSar-NPs), and chitosan & polysarcosin nanoparticles (CS-PSar-NPs). Based on preliminary particle size, zeta potential, encapsulation efficiency, DSC, surface morphology, release profiling, and cellular internalization studies using rhodamine 123 and Nile red fluorescent markers, it was hypothesized that CS-PSar-NPs could be the best cationic formulation with strong biocompatibility and anticancer activity against the OVCAR-8 ovarian cancer cell line. To improve effective targeting, cellular penetration, and in vitro cytotoxicity, epidermal growth factor receptor variation III (EGFRvIII) is attached over all four polymeric nanoparticles. Confocal imaging revealed that EGFRvIII-conjugated cationic GTB polymeric nanoparticles had a greater cellular uptake and double internalization capabilities than unconjugated nanoparticles, as well as time-dependent cell entrance. GTB and EGFRvIII-conjugated polymer nanoparticles would have a stronger potential to infiltrate ovarian cancer cells during the first hour of incubation. According to TEM and FTIR findings, EGFRvIII conjugation across the non-target CS-PSar-NP surface was successful, making CS-PSar-NPS-EGFRvIII more target-specific and thus a safer drug delivery candidate for ovarian cancer treatment.Highlights GTB loaded non-target CS-PSar-NPs & active targeted CS-PSar-NPs-EGFRvII developed. SEM, AFM, DSC, particle size, zeta potential, internalization performed for CS-PSar-NPs. MTT & CLSM study confirmed CS-PSar-NPS-EGFRvII was binding specific to OVCAR-8 cells Fabrication of EGFRvII over nanoparticles confirmed by TEM. CS-PSar-NPS-EGFRvII safer candidate for ovarian cancer.en_US
dc.description.sponsorshipThe author would like to acknowledge Dr R. S. Gaud, Director, SVKM's NMIMS Deemed-to-be University, Shirpur Campus, for providing me with excellent research facilities and deep encouragement while pursuing this project. The author would also like to acknowledge Bharathidasan University Tiruchirappalli Tamil Nadu 620024, India, for studying Confocal Laser Scanning Microscope (CLSM). The author express his sincere gratitude to CSIR North East Institute of Science and Technology (NEIST) Jorhat-785006 Assam, India, for supporting me in my studies on Atomic Force Microscope (AFM).en_US
dc.identifier.issn10717544
dc.identifier.urihttps://idr-sdlib.iitbhu.ac.in/handle/123456789/2294
dc.language.isoenen_US
dc.publisherTaylor and Francis Ltden_US
dc.relation.ispartofseriesDrug Delivery;Volume 29, Issue 1, Pages 1060 - 1074
dc.subjectChitosanen_US
dc.subjectDeoxycytidineen_US
dc.subjectDrug Carriersen_US
dc.subjectHumansen_US
dc.subjectNanoparticlesen_US
dc.subjectOvarian Neoplasmsen_US
dc.subjectchitosan nanoparticleen_US
dc.subjectepidermal growth factor receptor 3en_US
dc.subjectgemcitabineen_US
dc.subjectpolylysineen_US
dc.subjectpolymer nanoparticleen_US
dc.subjectpolysarcosin nanoparticleen_US
dc.subjectred fluorescent proteinen_US
dc.subjectrhodamine 123en_US
dc.subjectunclassified drugen_US
dc.subjectchitosanen_US
dc.subjectdoxecitineen_US
dc.subjectdrug carrieren_US
dc.subjectgemcitabineen_US
dc.subjectnanoparticleen_US
dc.subjectantineoplastic activityen_US
dc.subjectbiocompatibilityen_US
dc.subjectcancer therapyen_US
dc.subjectconfocal microscopyen_US
dc.subjectcontrolled studyen_US
dc.subjectcytotoxicityen_US
dc.subjectdrug delivery systemen_US
dc.subjectdrug formulationen_US
dc.subjectdrug penetrationen_US
dc.subjectdrug releaseen_US
dc.subjecttransmission electron microscopyen_US
dc.subjectzeta potentialen_US
dc.subjectchemistryen_US
dc.subjectovary tumoren_US
dc.titleGemcitabine cationic polymeric nanoparticles against ovarian cancer: formulation, characterization, and targeted drug deliveryen_US
dc.typeArticleen_US

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