Global market potential on nanomaterials development by different types like carbon, metal oxide, metals, dendrimers, nano-clay, and nano-cellulose is expected to reach $91.84 billion by 2028, progressing at a CAGR of 15.80%. Healthcare including life science and personal care products devised of nanomaterials are the second most market by end users next to the electronics/consumer goods. Present chapter is aiming to highlight the specific examples of promising nanomaterials such as gold, silica, boron nitride, and molybdenum oxide demonstrated in biomedicine and diagnostics, preferably electrochemical sensor design and application. Reports on surface functionalization of biomolecules (polysaccharides) on different nanomaterials and its deployment for important marker detection were also discussed. Knowledge of surface anchoring bio-functional molecules on different nanostructures is expected to provide avenues for efficient utility of engineered nanomaterials in sub-disciplines of biomedicine and diagnostic research.

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Engineered Nanomaterials: Application in Diagnostics Device and Nanobiomedicines

  • Mohana Marimuthu,
  • A Ganapathi Deviga,
  • Arockia Vincy Thaines Raj,
  • Murugan Veerapandian

摘要

Global market potential on nanomaterials development by different types like carbon, metal oxide, metals, dendrimers, nano-clay, and nano-cellulose is expected to reach $91.84 billion by 2028, progressing at a CAGR of 15.80%. Healthcare including life science and personal care products devised of nanomaterials are the second most market by end users next to the electronics/consumer goods. Present chapter is aiming to highlight the specific examples of promising nanomaterials such as gold, silica, boron nitride, and molybdenum oxide demonstrated in biomedicine and diagnostics, preferably electrochemical sensor design and application. Reports on surface functionalization of biomolecules (polysaccharides) on different nanomaterials and its deployment for important marker detection were also discussed. Knowledge of surface anchoring bio-functional molecules on different nanostructures is expected to provide avenues for efficient utility of engineered nanomaterials in sub-disciplines of biomedicine and diagnostic research.