<p>Nanotechnology will revolutionize current material research, with nanoarchitectonics serving as the field’s overarching integrator. Novel nanomaterials with self-assembled atoms and intriguing characteristics have been made possible via nanoarchitectonics. As a result, nanoarchitectonics may find use in a number of domains, including medicinal applications, treatment of wastewater, energy storage, sensing, and catalysis. Nanoarchitectonics involves intentionally assembling nanoscale components for precise control and purpose. Recent scientific and technological advances have shown the need for more accurate nanoscale structural management to increase performance. Nanoarchitectonics can improve cancer therapies by making them more effective and precise, minimizing side effects, and improving patient outcomes. This review highlights researchers’ unique ideas and improved methodologies in using nanoarchitectonics to build functional materials with anti-cancer capabilities. This review also highlights the future directions of nanoarchitectonics for cancer therapy, stressing its revolutionary impact on developing new materials with better therapeutic efficacy.</p>

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Nanoarchitectonics Application and Research Progress in Cancer Treatment

  • Subhendu Chakroborty,
  • Nibedita Nath,
  • Trishna Bal,
  • Amiya Ranjan Panda,
  • Yosief Kassahun Hailu,
  • Siba Soren,
  • Karunesh Tiwari,
  • Rukhsar Khan,
  • Kajal Kumari,
  • Chandra Chakraborty

摘要

Nanotechnology will revolutionize current material research, with nanoarchitectonics serving as the field’s overarching integrator. Novel nanomaterials with self-assembled atoms and intriguing characteristics have been made possible via nanoarchitectonics. As a result, nanoarchitectonics may find use in a number of domains, including medicinal applications, treatment of wastewater, energy storage, sensing, and catalysis. Nanoarchitectonics involves intentionally assembling nanoscale components for precise control and purpose. Recent scientific and technological advances have shown the need for more accurate nanoscale structural management to increase performance. Nanoarchitectonics can improve cancer therapies by making them more effective and precise, minimizing side effects, and improving patient outcomes. This review highlights researchers’ unique ideas and improved methodologies in using nanoarchitectonics to build functional materials with anti-cancer capabilities. This review also highlights the future directions of nanoarchitectonics for cancer therapy, stressing its revolutionary impact on developing new materials with better therapeutic efficacy.