The Novel Achievements in Oncological Metabolic Radio-Therapy: Isotope Technologies, Targeted Theranostics,

Elena V Uspenskaya1, Ainaz Safdari1, Denis V Antonov1

  • 1Department of Pharmaceutical and Toxicological Chemistry, Medical Institute, Peoples' Friendship University of Russia Named After Patrice Lumumba (RUDN University), 6 Miklukho-Maklaya St., Moscow 117198, Russia.

Abstract

Insights

Radiotheranostics combines diagnostic and therapeutic properties for cancer treatment, utilizing isotope technologies and radioactive nanoparticles. Further research into "preventive" drugs is recommended due to rising cancer incidence.

Area of Science:

  • Oncological radiotherapy
  • Isotope technology
  • Radiopharmaceuticals

Background:

  • Cancer is a leading global cause of death, with incidence projected to rise significantly by 2050.
  • Advances in physics, chemistry, molecular biology, and pharmacy are crucial for developing new cancer treatments.
  • Understanding metabolite-antimetabolite systems is key to improving oncological therapies.

Purpose of the Study:

  • To provide an overview of advances in oncological radiotherapy.
  • To focus on mechanisms of action within metabolite-antimetabolite systems.
  • To demonstrate the relationship between past, present, and future diagnostic and therapeutic oncology approaches, emphasizing isotope technologies and theranostic compounds.

Main Methods:

  • Information search and analysis from PubMed, Scopus, Web of Science, and online sources over the past 20 years.
  • Structured search based on the structure-mechanism-effect relationship of active pharmaceutical ingredients.
  • Narrative synthesis method for manuscript preparation, including graphic materials.

Main Results:

  • Sequential analysis of isotope technology, including nucleus stability and instability.
  • Detailed description of radiopharmaceutical action mechanisms on metabolite-antimetabolite systems using specific drug models.
  • Exploration of radioactive nanotheranostics, including Tc-99m, AuNPs, AgNPs, and FeNPs.

Conclusions:

  • Radiotheranostics is an effective adjunctive or independent cancer treatment method.
  • Existing nuclide resources offer protection against tumor metastasis, even with treatment resistance.
  • Development of "preventive" drugs and deeper understanding of ligand-receptor interactions are recommended for future cancer control.

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