Literature DB >> 32228957

Lipid-PLGA hybrid nanoparticles of paclitaxel: Preparation, characterization, in vitro and in vivo evaluation.

Sandeep Godara1, Viney Lather2, S V Kirthanashri3, Rajendra Awasthi2, Deepti Pandita4.   

Abstract

Paclitaxel loaded lipid-polymer nanoparticles (NPs) were successfully synthesized using poly lactide-co-glycolide (PLGA) as polymer and stearyl amine, soya lecithin as lipids via single step nanoprecipitation method. The study was aimed to combine the advantage of structural integrity of hybrid NPs containing PLGA core and lipid in the shell. Surfactants such as polyvinyl alcohol (PVA), tocopheryl polyethylene glycol succinate (TPGS), pluronic 68 (F68) and human serum albumin (HSA) were used as stabilizers. NPs were characterized w.r.t. morphology, particle size, zeta potential, encapsulation efficiency, in vitro drug release, protein binding capability and blood compatibility. NPs were in size range of 150-400 nm and the particle size was greatly influenced by type and concentration of surfactants and lipids. TEM analysis confirmed the spherical shape and coating of the lipid on the NPs surface. Highest percentage entrapment efficiency was observed in NPs prepared with HSA as surfactant. The release rate of paclitaxel from modified NPs was much slower as compared to unmodified NPs. The percent protein binding of P-PVA, P-TPGS, P-F68 and P-HSA (unmodified NPs) was found to be 15.11%, 16.27%, 27.90% and 33.72%, respectively demonstrating effect of surface properties of NPs on protein binding. The hemolytic activity of the NPs was found to be dependent on type of surfactant and not on the lipid employed. PVA, TPGS, F68, HSA surfactants showed ~16%, ~10%, ~13%, ~7% hemolysis rate, respectively. The surface nature of NPs had a significant effect on the circulation profile of formulations. The HSA based NPs showed prolonged blood circulation time when compared to NPs without lipid coating. Thus, the synthesized dual lipid coated PLGA NPs with HSA could act as a potential nano-system for controlled delivery of paclitaxel.
Copyright © 2019 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Blood compatibility; Lipid-polymer hybrid nanoparticles; Nanoparticles; PLGA; Pharmacokinetics; Surface modification

Mesh:

Substances:

Year:  2019        PMID: 32228957     DOI: 10.1016/j.msec.2019.110576

Source DB:  PubMed          Journal:  Mater Sci Eng C Mater Biol Appl        ISSN: 0928-4931            Impact factor:   7.328


  10 in total

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Authors:  Violet V Sheffey; Emily B Siew; Eden E L Tanner; Omolola Eniola-Adefeso
Journal:  Adv Healthc Mater       Date:  2022-01-27       Impact factor: 11.092

2.  Tailor-made oligonucleotide-loaded lipid-polymer nanosystems designed for bone gene therapy.

Authors:  Patricia García-García; Erik Briffault; Mariana Landin; Carmen Evora; Patricia Diaz-Rodriguez; Araceli Delgado
Journal:  Drug Deliv Transl Res       Date:  2021-02-24       Impact factor: 4.617

3.  Distinct Proteins in Protein Corona of Nanoparticles Represent a Promising Venue for Endogenous Targeting - Part II: In vitro and in vivo Kinetics Study.

Authors:  Aya Ahmed Sebak; Iman Emam Omar Gomaa; Aliaa Nabil ElMeshad; Mahmoud Hussien Farag; Ulrike Breitinger; Hans-Georg Breitinger; Mahmoud Hashem AbdelKader
Journal:  Int J Nanomedicine       Date:  2020-11-30

4.  Development of Sustained Release Baricitinib Loaded Lipid-Polymer Hybrid Nanoparticles with Improved Oral Bioavailability.

Authors:  Md Khalid Anwer; Essam A Ali; Muzaffar Iqbal; Mohammed Muqtader Ahmed; Mohammed F Aldawsari; Ahmed Al Saqr; Mohd Nazam Ansari; M Ali Aboudzadeh
Journal:  Molecules       Date:  2021-12-28       Impact factor: 4.411

5.  Design of Hybrid Polymeric-Lipid Nanoparticles Using Curcumin as a Model: Preparation, Characterization, and In Vitro Evaluation of Demethoxycurcumin and Bisdemethoxycurcumin-Loaded Nanoparticles.

Authors:  Krissia Wilhelm Romero; María Isabel Quirós; Felipe Vargas Huertas; José Roberto Vega-Baudrit; Mirtha Navarro-Hoyos; Andrea Mariela Araya-Sibaja
Journal:  Polymers (Basel)       Date:  2021-11-30       Impact factor: 4.329

Review 6.  Paclitaxel Drug Delivery Systems: Focus on Nanocrystals' Surface Modifications.

Authors:  Razan Haddad; Nasr Alrabadi; Bashar Altaani; Tonglei Li
Journal:  Polymers (Basel)       Date:  2022-02-09       Impact factor: 4.329

7.  Hybrid Nanoparticles of Proanthocyanidins from Uncaria tomentosa Leaves: QTOF-ESI MS Characterization, Antioxidant Activity and Immune Cellular Response.

Authors:  Andrea Mariela Araya-Sibaja; Krissia Wilhelm-Romero; Felipe Vargas-Huertas; María Isabel Quirós-Fallas; Diego Alvarado-Corella; Juan José Mora-Román; José Roberto Vega-Baudrit; Andrés Sánchez-Kopper; Mirtha Navarro-Hoyos
Journal:  Plants (Basel)       Date:  2022-06-30

8.  Distinct Proteins in Protein Corona of Nanoparticles Represent a Promising Venue for Endogenous Targeting - Part I: In vitro Release and Intracellular Uptake Perspective.

Authors:  Aya Ahmed Sebak; Iman Emam Omar Gomaa; Aliaa Nabil ElMeshad; Mahmoud Hussien Farag; Ulrike Breitinger; Hans-Georg Breitinger; Mahmoud Hashem AbdelKader
Journal:  Int J Nanomedicine       Date:  2020-11-10

Review 9.  Current Perspectives on Taxanes: Focus on Their Bioactivity, Delivery and Combination Therapy.

Authors:  Jan Škubník; Vladimíra Pavlíčková; Tomáš Ruml; Silvie Rimpelová
Journal:  Plants (Basel)       Date:  2021-03-17

Review 10.  Drug Delivery Nanosystems in Glioblastoma Multiforme Treatment: Current State of the Art.

Authors:  Leonardo Delello Di Filippo; Jonatas Lobato Duarte; Marcela Tavares Luiz; Jennifer Thayanne Cavalcante de Araújo; Marlus Chorilli
Journal:  Curr Neuropharmacol       Date:  2021       Impact factor: 7.363

  10 in total

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