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Published on: October 4, 2019
Expression of different neurokinin-1 receptor (NK1R) isoforms in glioblastoma multiforme: potential implications for
Dominik Cordier1, Alexandra Gerber, Christiane Kluba
11 Department of Neurosurgery, Division of Radiopharmaceutical Chemistry, University Hospital Basel , Basel, Switzerland .
Abstract:
In clinical trials, overexpression of neurokinin-1 receptors (NK1R) in gliomas has been exploited by intratumoral injection of its radiolabeled ligand, substance P (SP). However, despite proven NK1R expression, patients' response to the therapy was inhomogeneous. This study aims to identify the factors predicting response to NK1R-targeted glioma therapy, thereby allowing the discrimination between potential "responders" and "nonresponders" and thus a personalized therapeutic approach. Four widely used glioblastoma cell lines were examined concerning their RNA levels of full-length and truncated NK1R subtypes. Binding of SP to NK1R and internalization into glioma cells was studied by three different approaches using radiolabeled SP ((177)Lu-[DOTA, Thi(8), Met(O2)(11)]-SP), a fluorescence-labeled SP derivative (SP-FAM), and a toxin-SP conjugate (saporin-SP). While NK1R RNA was detected in all cases, receptor subtype analysis revealed impressive differences between the cell lines; LN319 exhibited the highest level of full-length NK1R RNA. Significant binding of SP conjugates to NK1R, cell internalization, and specific cell killing were only observed with the cell line LN319. Thus, different NK1R subtype profiles of glomerular basement membrane (GBM) cell lines appear to influence the binding of SP conjugates and their cell internalization properties. Both processes are crucial steps for NK1R-based targeted therapy. Pretherapeutic testing for NK1R subtype expression may therefore be advisable before initiation of this generally promising therapeutic modality.
Insights
Neurokinin-1 receptor (NK1R) targeted glioma therapy shows varied patient responses. This study reveals that NK1R subtype profiles in glioblastoma cell lines influence therapy effectiveness, suggesting pre-treatment testing for personalized approaches.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Radiopharmaceutical Therapy
Background:
- Neurokinin-1 receptors (NK1R) are overexpressed in gliomas.
- Intratumoral injection of substance P (SP) targets NK1R in glioma therapy.
- Patient response to NK1R-targeted therapy is inconsistent.
Purpose of the Study:
- Identify predictors of response to NK1R-targeted glioma therapy.
- Differentiate between therapy responders and non-responders.
- Enable personalized therapeutic strategies for glioma patients.
Main Methods:
- Analyzed RNA levels of full-length and truncated NK1R subtypes in four glioblastoma cell lines.
- Investigated SP binding to NK1R and cellular internalization using radiolabeled SP, SP-FAM, and saporin-SP conjugates.
- Assessed specific cell killing mediated by NK1R-targeted agents.
Main Results:
- NK1R RNA was detected in all examined glioblastoma cell lines.
- Significant differences in NK1R subtype expression were observed.
- The LN319 cell line showed the highest full-length NK1R RNA levels.
- SP conjugate binding, internalization, and cell killing were significant only in LN319 cells.
Conclusions:
- NK1R subtype profiles in glioblastoma cell lines impact SP conjugate binding and internalization.
- These binding and internalization processes are critical for NK1R-based targeted therapy efficacy.
- Pre-therapeutic assessment of NK1R subtype expression is recommended for personalized glioma treatment.
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