Theranostic applications of peptide-based nanoformulations for growth factor defective cancers

Arnab Ghosh1, Priyanka Maske1, Vinay Patel1

  • 1Indian Institute of Technology Bombay, NanoBios lab, Department of Biosciences and Bioengineering, Mumbai, India.

Insights

Peptide-based nanoformulations (PNFs) show promise for treating growth factor-deficient cancers by enabling targeted delivery and combination therapies. Further research is needed to overcome challenges like specificity and stability for clinical translation.

Area of Science:

  • Oncology
  • Nanotechnology
  • Biomedical Engineering

Background:

  • Growth factors regulate cell growth; their dysregulation drives cancer proliferation.
  • Uncontrolled cell proliferation in cancer is linked to altered growth factor activity.
  • Peptide-based nanoformulations (PNFs) are emerging as a therapeutic strategy for cancers with growth factor deficiencies.

Purpose of the Study:

  • To explore the potential of PNFs in treating growth factor-deficient cancers.
  • To identify challenges and opportunities for PNFs in oncology.
  • To guide future research for clinical translation of PNFs.

Main Methods:

  • Review of current literature on PNFs for cancer therapy.
  • Analysis of PNFs' capabilities: targeted delivery, imaging, combination therapy, resistance modulation, personalized medicine.
  • Identification of challenges: specificity, stability, pharmacokinetics, tissue penetration, toxicity, immunogenicity.

Main Results:

  • PNFs offer multifaceted therapeutic capabilities for cancer treatment.
  • Significant challenges hinder the clinical translation of PNFs.
  • Existing peptide-nanoparticle drugs have gained FDA approval, indicating therapeutic potential.

Conclusions:

  • PNFs represent a promising avenue for targeted therapy in growth factor-deficient cancers.
  • Overcoming challenges in specificity, stability, and safety is crucial for PNFs.
  • Further research into peptide-nanoparticle interactions and structure-activity relationships is essential for advancing nanotherapeutics in oncology.

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