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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.
Abstract:
Brain tumors are hard to treat with the currently available therapy. The major obstacle in the treatment of brain tumors is the lack of therapeutic strategies capable to penetrate the blood-brain barrier (BBB). The BBB is an endothelial interface that separates the brain from the circulatory blood system and prevents the exposure of the central nervous system (CNS) to circulating toxins and potentially harmful compounds. Unfortunately, the BBB prevents also the penetration of therapeutic compounds into the brain. We present here a drug-delivery liposomal carrier, conjugated to a peptide inserted in the liposomal membrane, which is putatively recognized by BBB transporters. The peptide is a short sequence of 5 amino acids (RERMS) present in the amyloid precursor protein (APP). This APP-targeted liposomal system was designed specifically for transporting compounds with anti-cancer activity via the BBB into the brain in an effective manner. This drug-delivery liposomal carrier loaded with the anti-cancer compounds temozolomide (TMZ), curcumin, and doxorubicin crossed the BBB in an in vitro model as well as in vivo (mice model). In the in vitro model, the targeted liposomes crossed the BBB model fourfold higher than the non-targeted liposomes. Labeled targeted liposomes penetrated the brain in vivo 35% more than non-targeted liposomes. Treatment of mice that underwent intracranial injection of human U87 glioblastoma, with the targeted liposomes loaded with the three tested anti-cancer agents, delayed the tumor growth and prolonged the mice survival in a range of 45% -70%. It appears that the targeted liposomal drug-delivery system enables better therapeutic efficacy in a SCID mouse model of glioblastoma compared to the corresponding non-targeted liposomes and the free compounds.
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.
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