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Intranasal Delivery of Therapeutic Stem Cells to Glioblastoma in a Mouse Model
Published on: June 4, 2017
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.
Objective:
Diffuse midline gliomas, including diffuse intrinsic pontine gliomas (DIPGs), are among the most malignant and devastating childhood brain cancers. Despite aggressive treatment, nearly all children with these tumors succumb to their disease within 2 years of diagnosis. Due to the anatomical location of the tumors within the pons, surgery is not a treatment option, and distribution of most systematically administered drugs is limited by the blood-brain barrier (BBB). New drug delivery systems that bypass the BBB are desperately needed to improve outcomes of DIPG patients. Intranasal delivery (IND) is a practical and noninvasive drug delivery system that bypasses the BBB and delivers the drugs to the brain through the olfactory and trigeminal neural pathways. In this study, the authors evaluated the efficacy of nanoliposomal (LS) irinotecan (CPT-11) and an active metabolite of CPT-11, 7-ethyl-10-hydroxycamptothecin (SN-38), using IND in DIPG patient-derived xenograft models.
Methods:
In vitro responses to LS-CPT-11 and LS-SN-38 in DIPG cells were evaluated with cell viability, colony formation, and apoptosis assays. The cellular uptakes of rhodamine-PE (Rhod)-labeled LS-CPT-11 and LS-SN-38 were analyzed with fluorescence microscopy. Mice bearing DIPG patient-derived xenografts were treated with IND of LS-control (empty liposome), LS-CPT-11, or LS-SN-38 by IND for 4 weeks. In vivo responses were measured for tumor growth by serial bioluminescence imaging and animal subject survival. The concentration of SN-38 in the brainstem tumor administered by IND was determined by liquid chromatography-mass spectrometry (LC-MS). Immunohistochemical analyses of the proliferative and apoptotic responses of in vivo tumor cells were performed with Ki-67 and TUNEL staining.
Results:
LS-SN-38 inhibited DIPG cell growth and colony formation and increased apoptosis, outperforming LS-CPT-11. Rhod-labeled LS-SN-38 showed intracellular fluorescence signals beginning at 30 minutes and peaking at 24 hours following treatment. LC-MS analysis revealed an SN-38 concentration in the brainstem tumor of 0.66 ± 0.25 ng/ml (5.43% ± 0.31% of serum concentration). IND of LS-SN-38 delayed tumor growth and significantly prolonged animal survival compared with IND of LS-control (p < 0.0001) and LS-CPT-11 (p = 0.003). IND of LS-SN-38 increased the number of TUNEL-positive cells and decreased the Ki-67-positive cells in the brainstem tumor.
Conclusions:
This study demonstrates that IND of LS-SN-38 bypasses the BBB and enables efficient and noninvasive drug delivery to the brainstem tumor, providing a promising therapeutic approach for treating DIPG.
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.

