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Ceramic nanoparticles: Recompense, cellular uptake and toxicity concerns.

Deependra Singh1, Satpal Singh1, Jageshwari Sahu1

  • 1a Pharmaceutical Biotechnology Laboratory, University Institute of Pharmacy, Pt. Ravishankar Shukla University , Raipur , Chhattisgarh , India.

Artificial Cells, Nanomedicine, and Biotechnology
|September 18, 2014
PubMed
Summary

Ceramic nanoparticles offer advanced drug delivery solutions due to their strength and biocompatibility. This study explores their benefits, cellular uptake, and potential toxicity for targeted therapeutic applications.

Keywords:
cellular uptakeceramic nanocarriersnanoparticlesnanosystemstoxicity

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Area of Science:

  • Materials Science
  • Nanotechnology
  • Biomedical Engineering

Background:

  • Nanoparticles are increasingly vital in drug delivery systems.
  • Diverse nanosystems like nanoclays, scaffolds, and nanotubes are used for drug loading, cell uptake, bioassay, and imaging.
  • Ceramic materials possess high mechanical strength, good biocompatibility, and low biodegradability.

Purpose of the Study:

  • To provide a comprehensive overview of various nanoparticle types.
  • To specifically focus on ceramic nanocarriers for drug delivery.
  • To detail the advantages, cellular uptake, and toxicity of ceramic nanoparticles.

Main Methods:

  • Literature review and synthesis of existing research on nanoparticles and ceramic nanocarriers.
  • Analysis of properties relevant to drug delivery, including mechanical strength, biocompatibility, and biodegradability.
  • Discussion of cellular uptake mechanisms and potential toxicity concerns associated with ceramic nanoparticles.

Main Results:

  • Ceramic nanocarriers present significant advantages over other nanosystems in drug delivery applications.
  • Their properties facilitate effective drug loading and targeted delivery.
  • Understanding cellular uptake and toxicity is crucial for safe and effective application.

Conclusions:

  • Ceramic nanoparticles are promising candidates for next-generation drug delivery systems.
  • Further research into their long-term effects and optimized application is warranted.
  • Their unique properties offer potential for enhanced therapeutic outcomes.