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Chapter 7 Biomedical applications of carbon-based molecularly imprinted polymers

  • Akbarali Rasulov , Husan Yaxshinorov , Javokhir Abdisattorov , Elyor Berdimurodov , Omar Dagdag , Mohamed Rbaa and Khasan Berdimuradov
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Abstract

Carbon-based molecularly imprinted polymers (MIPs) are emerging as powerful tools in biomedical applications due to their unique combination of high selectivity, sensitivity, and biocompatibility. This chapter provides an in-depth exploration of their roles in drug delivery systems, biosensing technologies, and tissue engineering, emphasizing their potential to enhance therapeutic efficacy, precision diagnostics, and tissue regeneration. Additionally, the chapter addresses the critical challenges associated with the toxicity and scalability of carbon-based MIPs, presenting strategies to mitigate these issues. With ongoing research and technological advancements, carbon-based MIPs are poised to significantly impact the future of personalized medicine and healthcare innovation.

Abstract

Carbon-based molecularly imprinted polymers (MIPs) are emerging as powerful tools in biomedical applications due to their unique combination of high selectivity, sensitivity, and biocompatibility. This chapter provides an in-depth exploration of their roles in drug delivery systems, biosensing technologies, and tissue engineering, emphasizing their potential to enhance therapeutic efficacy, precision diagnostics, and tissue regeneration. Additionally, the chapter addresses the critical challenges associated with the toxicity and scalability of carbon-based MIPs, presenting strategies to mitigate these issues. With ongoing research and technological advancements, carbon-based MIPs are poised to significantly impact the future of personalized medicine and healthcare innovation.

Chapters in this book

  1. Frontmatter I
  2. Preface V
  3. Acknowledgments
  4. Contents IX
  5. Contributing authors XIII
  6. Part 1: Fundamentals of molecular imprinting-based smart carbon nanomaterials
  7. Chapter 1 Introduction to molecular imprinting technology 1
  8. Chapter 2 Fundamentals and primer of molecular imprinting technology 27
  9. Chapter 3 Polymerization techniques of carbon-based molecularly imprinted polymers 41
  10. Chapter 4 Polymerization techniques of carbon-based molecularly imprinted polymers 53
  11. Part 2: Performance evaluation of molecular imprinting-based smart carbon nanomaterials
  12. Chapter 5 Characterization methods of carbon-based molecularly imprinted polymers 79
  13. Part 3: Applications of molecular imprinting-based smart carbon nanomaterials
  14. Chapter 6 Environmental applications of carbon-based molecularly imprinted polymers 111
  15. Chapter 7 Biomedical applications of carbon-based molecularly imprinted polymers 131
  16. Chapter 8 Analytical and industrial applications of carbon-based molecularly imprinted polymers 149
  17. Chapter 9 Sensing applications of carbon-based molecularly imprinted polymers in agriculture 189
  18. Chapter 10 Carbon-imprinted polymers for forensic applications: a game-changing tool in the crime scene 235
  19. Part 4: Case studies of molecular imprinting-based smart carbon nanomaterials
  20. Chapter 11 Binding kinetics and thermodynamics of carbon-based molecularly imprinted polymers 261
  21. Part 5: Various aspects and future prospects of molecular imprinting-based smart carbon nanomaterials
  22. Chapter 12 Green aspects of carbon-based molecularly imprinted polymers 285
  23. Chapter 13 Challenges and future prospects of carbon-based molecularly imprinted polymers 351
  24. About the editors
  25. Index 377
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