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Published on: June 4, 2017
Preclinical validation of a novel therapeutic strategy for choroid plexus carcinoma
Brice Martin1, Tyler Garman1, Madeline Laramee1
1Department of Neurological Surgery, Weill Cornell Medicine, New York, NY 10065, USA.
Abstract:
Choroid plexus carcinoma (CPC) is a rare infantile brain tumor with an aggressive clinical course that often leaves children with debilitating side effects due to aggressive and toxic chemotherapies. Development of novel therapeutical strategies for this disease have been extremely limited owing to the rarity of the disease and the paucity of biologically relevant substrates. We conducted the first high-throughput screen (HTS) on a human patient-derived CPC cell line (Children Cancer Hospital Egypt, CCHE-45) and identified 427 top hits highlighting key molecular targets in CPC. Furthermore, a combination screen with a wide variety of targets revealed multiple synergistic combinations that may pave the way for novel therapeutical strategies against CPC. Based on in vitro efficiency, central nervous system (CNS) penetrance ability and feasible translational potential, two combinations using a DNA alkylating or topoisomerase inhibitors in combination with an ataxia telangiectasia mutated and rad3 (ATR) inhibitor (topotecan/elimusertib and melphalan/elimusertib respectively) were validated in vitro and in vivo. Pharmacokinetic assays established increased brain penetrance with intra-arterial (IA) delivery over intra-venous (IV) delivery and demonstrated a higher CNS penetrance for the combination melphalan/elimusertib. The mechanisms of synergistic activity for melphalan/elimusertib were assessed through transcriptome analyses and showed dysregulation of key oncogenic pathways (e.g. MYC, mammalian target of rapamycin mTOR, p53) and activation of critical biological processes (e.g. DNA repair, apoptosis, hypoxia, interferon gamma). Importantly, IA administration of melphalan combined with elimusertib led to a significant increase in survival in a CPC genetic mouse model. In conclusion, this study is, to the best of our knowledge, the first that identifies multiple promising combinatorial therapeutics for CPC and emphasizes the potential of IA delivery for the treatment of CPC.
Insights
This study identifies novel drug combinations for choroid plexus carcinoma (CPC), a rare infantile brain tumor. Intra-arterial delivery of melphalan and elimusertib significantly improved survival in a mouse model.
Area of Science:
- Oncology
- Pediatric Oncology
- Neuro-oncology
Background:
- Choroid plexus carcinoma (CPC) is a rare and aggressive infantile brain tumor.
- Current treatments have limited efficacy and cause severe side effects.
- Developing new therapies is challenging due to the disease's rarity.
Purpose of the Study:
- To identify novel therapeutic strategies for CPC using high-throughput screening.
- To evaluate combination therapies for improved efficacy and CNS penetration.
- To investigate the potential of intra-arterial drug delivery for CPC treatment.
Main Methods:
- High-throughput screening (HTS) on a patient-derived CPC cell line (CCHE-45).
- In vitro and in vivo validation of drug combinations, including ATR inhibitors.
- Pharmacokinetic studies comparing intra-arterial (IA) and intra-venous (IV) delivery.
- Transcriptome analysis to elucidate mechanisms of synergistic activity.
Main Results:
- Identified 427 potential therapeutic targets and synergistic drug combinations.
- Validated two combinations: topotecan/elimusertib and melphalan/elimusertib.
- Melphalan/elimusertib demonstrated superior CNS penetrance and synergistic activity via IA delivery.
- IA administration of melphalan/elimusertib significantly increased survival in a CPC mouse model.
Conclusions:
- This study presents the first identification of multiple promising combinatorial therapeutics for CPC.
- Intra-arterial delivery shows significant potential for enhancing CNS drug penetration and treatment efficacy in CPC.
- Melphalan combined with elimusertib via IA administration offers a promising new therapeutic avenue for CPC.
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