Liposomal Carrier Conjugated to APP-Derived Peptide for Brain Cancer Treatment

Martin Gabay1, Abraham Weizman2,3, Nidal Zeineh1

  • 1The Ruth and Bruce Rappaport Faculty of Medicine, Technion Institute of Technology, 31096, Haifa, Israel.

Insights

A novel liposomal drug delivery system targets the blood-brain barrier (BBB) for brain tumor treatment. This APP-targeted liposome effectively delivers anti-cancer drugs, significantly delaying tumor growth and improving survival rates in mice.

Area of Science:

  • Neuroscience
  • Oncology
  • Biotechnology

Background:

  • Brain tumors pose significant therapeutic challenges due to the blood-brain barrier (BBB), which restricts drug entry into the central nervous system (CNS).
  • Current therapies struggle to effectively penetrate the BBB, limiting treatment efficacy for brain malignancies.

Purpose of the Study:

  • To develop and evaluate a novel drug-delivery liposomal carrier system for enhanced brain tumor treatment.
  • To assess the ability of an amyloid precursor protein (APP)-targeted liposome to cross the BBB and deliver anti-cancer agents.

Main Methods:

  • A liposomal carrier was conjugated with a 5-amino acid peptide (RERMS) derived from APP to target BBB transporters.
  • The targeted liposomes were loaded with anti-cancer drugs (temozolomide, curcumin, doxorubicin) and tested in vitro and in vivo (mice models).
  • In vitro BBB models and in vivo studies in mice with U87 glioblastoma xenografts were used to evaluate liposome penetration and therapeutic efficacy.

Main Results:

  • Targeted liposomes demonstrated a fourfold higher penetration of the in vitro BBB model compared to non-targeted liposomes.
  • In vivo studies showed a 35% greater brain penetration of targeted liposomes compared to non-targeted ones.
  • Treatment with targeted liposomes loaded with anti-cancer agents delayed glioblastoma growth by 45%-70% and prolonged mouse survival.

Conclusions:

  • The APP-targeted liposomal drug-delivery system effectively crosses the BBB and enhances the therapeutic efficacy of anti-cancer agents against glioblastoma.
  • This targeted liposomal approach offers a promising strategy for overcoming BBB limitations in brain tumor therapy.