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Cytotoxic ribonuclease chimeras. Targeted tumoricidal activity in vitro and in vivo

D L Newton1, O Ilercil, D W Laske

  • 1National Institute of Neurological Diseases and Stroke, National Institutes of Health, Bethesda, Maryland 20892.

Insights

Cytotoxic ribonuclease chimeras (CRCs) link antibodies to RNase A for targeted cancer therapy. These CRCs selectively kill antigen-positive cells in vitro and in vivo, showing promise as novel pharmaceutical agents.

Area of Science:

  • Biochemistry
  • Immunology
  • Pharmacology
  • Molecular Biology

Background:

  • Targeted delivery of cytotoxic agents is crucial for effective cancer therapy.
  • Antibodies can direct therapeutic payloads to specific cell types.
  • Ribonucleases (RNases) can inhibit protein synthesis, leading to cell death.

Purpose of the Study:

  • To develop and characterize novel cytotoxic ribonuclease chimeras (CRCs) for targeted protein synthesis inhibition.
  • To evaluate the specificity and efficacy of CRCs in vitro and in vivo.
  • To explore the potential of mammalian RNase-based therapeutics.

Main Methods:

  • Chemical conjugation of mammalian RNase A to monoclonal antibodies targeting transferrin receptor or CD5.
  • In vitro cytotoxicity assays on antigen-positive and antigen-negative cell lines.
  • In vivo efficacy studies using a human glioblastoma xenograft model in nude mice.
  • Purification and characterization of CRCs using size-exclusion high-performance liquid chromatography.

Main Results:

  • CRCs specifically inhibited protein synthesis in antigen-positive cells, with no toxicity to antigen-negative cells.
  • Cytotoxicity was dependent on the antibody-RNase linkage; individual components were ineffective.
  • Two CRC species (P1 and P2) with different efficacies (IC50 values) were identified.
  • Intratumoral injection of anti-transferrin receptor CRCs prevented tumor growth in vivo.

Conclusions:

  • Antibody-conjugated mammalian RNases (CRCs) demonstrate potent and specific cytotoxicity.
  • CRCs are effective in inhibiting tumor growth both in vitro and in vivo.
  • Mammalian RNase-based CRCs represent a promising class of targeted cytotoxins with potential therapeutic applications.

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