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Evaluation of Spheroid 3D Culture Methods to Study a Pancreatic Neuroendocrine Neoplasm Cell Line
Giulia Bresciani1, Leo J Hofland2, Fadime Dogan2
1Section of Endocrinology and Internal Medicine, Department of Medial Sciences, University of Ferrara, Ferrara, Italy.
Abstract:
Pancreatic Neuroendocrine Neoplasms (pNEN) are rare tumors which treatment still represent an important clinical problem, due to the paucity of medical treatments. Due to tumor complexity, techniques as 3D cultures are important to study drug activity in a more realistic model. This study aims to compare three different 3D culture methods in order to understand which one can be considered the best option in terms of experimental easiness and reproducibility in studying the efficacy of a target drug on pNEN. The BON1 cell line was used as a pNEN model and the well-known Receptor Tyrosine Kinase inhibitor Sunitinib was used in order to better investigate the different features of each method. The investigated methods are: (1) 96-well hanging drop plates (HD plates), (2) 24-well plates with a cell-repellent surface, and (3) ultra-low attachment 96-well plates with clear round bottom (ULA plates). The evaluated parameters during the study were: cell seeding, easiness in spheroids formation, morphology, culture maintenance, medium change, spheroids monitoring, picture quality, spheroid perimeter measurement reproducibility error, possibility to perform assays into the seeding plate, overall time of the experiment. Moreover, we investigated how culture methods can influence experimental outcomes evaluating perimeter changes, cell viability and immunohistochemistry of spheroids treated with different Sunitinib concentrations. Results showed that each method has weak and strong points but, considering the easiness of spheroids maintenance and reproducibility results, ULA plates method appears to be the best approach to culture BON1 spheroids and, therefore, to study pNEN.
Insights
Ultra-low attachment plates offer the easiest and most reproducible method for culturing pancreatic neuroendocrine tumor (pNEN) spheroids. This 3D model facilitates studying drug efficacy in pNEN research.
Area of Science:
- Oncology
- Biomedical Engineering
- Cell Biology
Background:
- Pancreatic neuroendocrine neoplasms (pNEN) are rare tumors with limited treatment options.
- Studying drug activity in pNEN requires advanced models like 3D cultures due to tumor complexity.
Purpose of the Study:
- To compare three distinct 3D culture methods for culturing pNEN models.
- To identify the most experimentally feasible and reproducible method for assessing drug efficacy in pNEN.
Main Methods:
- Evaluated hanging drop (HD) plates, cell-repellent surface plates, and ultra-low attachment (ULA) plates using the BON1 pNEN cell line.
- Assessed parameters including spheroid formation, morphology, maintenance, monitoring, and measurement reproducibility.
- Investigated the influence of culture methods on experimental outcomes with Sunitinib treatment.
Main Results:
- Each 3D culture method exhibited unique strengths and weaknesses.
- The ULA plates method demonstrated superior ease of spheroid maintenance and reproducibility.
- Culture methods impacted experimental outcomes, including perimeter changes and cell viability.
Conclusions:
- The ultra-low attachment (ULA) plates method is recommended as the optimal approach for culturing BON1 spheroids.
- This method provides a reliable platform for studying pancreatic neuroendocrine neoplasms and evaluating targeted drug efficacy.
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