Cultrex 3-D Spheroid Fluorometric Assay, 96-well
Cultrex 3-D Spheroid Fluorometric Assay, 96-well SummaryProvides a powerful tool for modeling tumor growth response in vitro using fluorometric detection.
Why Use Cultrex 3-D Spheroid Fluorometric Assay, 96-well?
The Cultrex 3-D Spheroid Fluorometric Proliferation/Viability Assay utilizes a 3-D Culture Qualified 96 Well Spheroid Formation Plate alongside a specialized Spheroid Formation ECM to drive aggregation and/or spheroid formation of cells. Upon completion of spheroid formation, the spheroid may be treated with pharmacological agents to evaluate tumor viability after drug treatment. Tumor spheroid expansion is visualized microscopically and can be quantitated through image analysis software for real-time and label free evaluation. At the conclusion of the assay, cell viability may be assessed by fluorescence using Resazurin. The 3-D Spheroid Fluorometric Proliferation/Viability Assay offers an in vitro, standardized, three-dimensional, high content format for inducing multicellular tumor spheroid (MCTS) formation and quantifying cell viability within the spheroids in response to pharmacological treatment.
• Cultrex Spheroid Formation Matrix
• 3-D Culture Qualified 96 Well Spheroid Formation Plate with Strip Seals
Note: The components for this kit may require different storage/shipping temperatures and may arrive in separate packaging.
For research use only. Not for diagnostic use.
Citations for Cultrex 3-D Spheroid Fluorometric Assay, 96-well
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SK4 oncochannels regulate calcium entry and promote cell migration in KRAS-mutated colorectal cancer
Authors: S Ibrahim, J Chaigne, H Dakik, Y Fourbon, L Corset, T Lecomte, W Raoul, M Guéguinou
Cell Calcium, 2021;96(0):102384. 2021
A phosphatidic acid-binding lncRNA SNHG9 facilitates LATS1 liquid-liquid phase separation to promote oncogenic YAP signaling
Authors: RH Li, T Tian, QW Ge, XY He, CY Shi, JH Li, Z Zhang, FZ Liu, LJ Sang, ZZ Yang, YZ Liu, Y Xiong, Q Yan, X Li, HQ Ju, J Liu, LJ Wang, JZ Shao, W Wang, T Zhou, A Lin
Cell Research, 2021;0(0):. 2021
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