Intranasal delivery of nanoliposomal SN-38 for treatment of diffuse midline glioma

Takahiro Sasaki1,2, Jun Watanabe3,4,5, Xingyao He1

  • 11Department of Neurological Surgery, Lou and Jean Malnati Brain Tumor Institute, Northwestern University Feinberg School of Medicine, Chicago, Illinois.

Journal of Neurosurgery
|January 4, 2023
PubMed
Abstract

Insights

Intranasal delivery of nanoliposomal SN-38 effectively bypasses the blood-brain barrier, showing promise for treating diffuse intrinsic pontine gliomas (DIPG) in preclinical models.

Area of Science:

  • Neuro-oncology
  • Nanomedicine
  • Drug Delivery Systems

Background:

  • Diffuse midline gliomas, including DIPG, are aggressive childhood brain tumors with poor prognoses.
  • Tumor location and the blood-brain barrier limit surgical and systemic treatment options.
  • Novel drug delivery strategies are crucial for improving DIPG patient outcomes.

Purpose of the Study:

  • To evaluate the efficacy of intranasal delivery (IND) of nanoliposomal irinotecan (LS-CPT-11) and its active metabolite SN-38 (LS-SN-38) in DIPG models.
  • To assess the ability of IND to bypass the blood-brain barrier and deliver therapeutic agents to brainstem tumors.

Main Methods:

  • In vitro assays (viability, colony formation, apoptosis) were used to assess drug responses in DIPG cells.
  • Cellular uptake of labeled nanoliposomes was analyzed via fluorescence microscopy.
  • In vivo studies involved treating mice with DIPG xenografts via IND and monitoring tumor growth and survival.

Main Results:

  • LS-SN-38 demonstrated superior in vitro efficacy, inhibiting cell growth and inducing apoptosis.
  • Intracellular uptake of LS-SN-38 was confirmed, with significant concentrations detected in brainstem tumors post-IND.
  • IND of LS-SN-38 significantly delayed tumor progression and prolonged survival in animal models.

Conclusions:

  • Intranasal delivery of nanoliposomal SN-38 effectively bypasses the blood-brain barrier.
  • This noninvasive approach facilitates drug delivery to brainstem tumors, offering a promising therapeutic strategy for DIPG.

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