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Biocompatible curcumin loaded PMMA-PEG/ZnO nanocomposite induce apoptosis and cytotoxicity in human gastric cancer cells.
Dhivya, Raman; Ranjani, Jothi; Bowen, Patrick K; Rajendhran, Jeyaprakash; Mayandi, Jeyanthinath; Annaraj, Jamespandi.
Afiliação
  • Dhivya R; Department of Materials Science, School of Chemistry, Madurai Kamaraj University, Madurai 625 021, India.
  • Ranjani J; Department of Genetics, School of Biological sciences, Madurai Kamaraj University, Madurai 625 021, India.
  • Bowen PK; Department of Materials Science & Engineering, Michigan Technological University, Houghton, MI, USA.
  • Rajendhran J; Department of Genetics, School of Biological sciences, Madurai Kamaraj University, Madurai 625 021, India.
  • Mayandi J; Department of Materials Science, School of Chemistry, Madurai Kamaraj University, Madurai 625 021, India.
  • Annaraj J; Department of Materials Science, School of Chemistry, Madurai Kamaraj University, Madurai 625 021, India. Electronic address: annaraj.chem@mkuniversity.org.
Mater Sci Eng C Mater Biol Appl ; 80: 59-68, 2017 Nov 01.
Article em En | MEDLINE | ID: mdl-28866205
ABSTRACT
Although curcumin is efficient in killing cancer cells, its poor water solubility and assocaited inadequate bioavailability remain major limitations to its therapeutic application. The formulation of curcumin micellar nanoparticles (NPs) encapsulated with a biodegradable polymer promises to significantly improve curcumin's solubility, stability, and bioavailability. The past decade has witnessed the development of nanoscale curcumin delivery systems curcumin-loaded liposomes or nanoparticles, self-microemulsifying drug delivery systems (SMEDDS), cyclodextrin inclusions, solid dispersions, nanodisks, and nanotubes. The intention of the present investigation was to enhance the bioavailability and ultimately the efficacy of curcumin by developing a curcumin loaded PMMA-PEG/ZnO bionanocomposite utilizing insoluble curcumin and poorly soluble ZnO nanoparticles. Here, the drug (curcumin) may be carry and deliver the biomolecule(s) by polymer-encapsulated ZnO NPs. Physical characteristics of these novel nanomaterials have been studied with transmission electron microscopy (TEM) and powder X-ray diffraction (XRD) in conjunction with spectral techniques. Aqueous solubility of curcumin was augmented upon conjugation with the polymer-stabilized ZnO NPs. A narrow nanocomposite particle size distribution with an average value of 40 to 90nm was found via TEM. Most importantly, the pH-responsive release of curcumin from the nano-vehicle ensures safer, more controlled delivery of the drug at physiological pH. Cytotoxic potential and cellular uptake of curcumin loaded ZnO NPs were assessed by) cell viability assay, cell cycle assays along with the cell imaging studies have been done in addition to MTT using AGS cancer cells. Hence, these studies demonstrate that the clinical potential of the Curcumin Loaded PMMA-PEG/ZnO can induce the apoptosis of cancer cells through a cell cycle mediated apoptosis corridor, which raises its probability to cure gastric cancer cells.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Neoplasias Gástricas Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Neoplasias Gástricas Idioma: En Ano de publicação: 2017 Tipo de documento: Article