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  • ホーム
  • Products
  • 研究・開発
  • 細胞分析
  • セルヘルスと細胞生存率
  • Luminescence Assays
  • Cytotoxicity and Cell Proliferation Assays
  • ATPlite 1step 3D, 1,000 Assay Points

ATPlite 1step 3D, 1,000 Assay Points

ATPlite 1step 3D, 100 mL kit
ATPlite 1step 3D, 1,000 Assay Points
ATPlite 1step 3D, 100 mL kit
ATPlite 1step 3D, 100 mL kit

ATPlite 1step 3D assay for quantitative evaluation of proliferation and cytotoxicity of mammalian cells cultured in 3D spheroids. The 1-step format only requires one addition step, and can be used for continuous processing.

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Feature Specification
Application 細胞生存率
Assay Points 1000

ATPlite 1step 3D assay for quantitative evaluation of proliferation and cytotoxicity of mammalian cells cultured in 3D spheroids. The 1-step format only requires one addition step, and can be used for continuous processing.

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Unit Size: 10 mL
Part #:
6066736
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Unit Size: 100 mL
Part #:
6066731
For research use only. Not for use in diagnostic procedures. All products to be used in accordance with applicable laws and regulations including without limitation, consumption, and disposal requirements under European REACH regulations (EC 1907/2006).
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ATPlite 1step 3D, 100 mL kit
ATPlite 1step 3D, 1,000 Assay Points
ATPlite 1step 3D, 100 mL kit
ATPlite 1step 3D, 100 mL kit

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Product information

  • Overview
  • Specifications

Overview

ATP serves as a reliable indicator of cell viability because it is found in all metabolically active cells. As cells undergo necrosis or apoptosis, ATP levels decrease rapidly, making ATP measurement an effective way to assess cytotoxic, antiproliferative, and cell growth–related effects.

The ATPlite 3D and ATPlite 1step 3D luminescence assays use proprietary technology to evaluate cell proliferation and cytotoxicity in 3D cultured mammalian cells. These assays detect light generated from the reaction between ATP and the added enzymes luciferase and D-luciferin.

The Luminescence ATP 1step 3D Assays are based on firefly (Photinus pyralis) luciferase and provide a convenient method for monitoring ATP levels. This assay serves as an alternative to colorimetric, fluorometric, high-content imaging, and radioisotopic approaches for quantifying proliferation and cytotoxicity in mammalian cells grown as 3D spheroids. ATP measurement can be applied to evaluate the cytocidal, cytostatic, and proliferative effects of various drugs, biological response modifiers, and other bioactive compounds.

The ATPlite 1step, 3D 100 mL kit accommodates 1,000 assays in a 96-well plate using 100 µL per well and 4,000 assays in a 384-well plate using 25 µL per well.

Kit components:

  • 10 vial of Lyophilized Substrate Solution
  • 1 x 100 mL of Substrate Buffer Solution
  • 2 vial of Lyophilized ATP Standard Solution

Storage: Buffer and vials should be stored at 4°C.

Features and benefits:

  • Designed for continuous process systems: luminescence should be measured between 0 and 30 minutes after the last pipetting step
  • Rapid: results generated in 25 - 30 minutes
  • Simple and reproducible: only one reagent addition step, no separation steps. A final transfer step may be necessary, depending on the type of plate used for Spheroid growth.
  • Homogeneous assay: no cell harvesting or centrifugation required
  • Wide linear dynamic range: detect ATP from spheroids made by seeding as few as 200 cells, and up to 5000 cells
  • Convenient storage conditions (2 - 8 °C)
  • No DTT: Unlike most luciferase detection reagents, lites products do not contain DTT, eliminating toxic hazards, unpleasant odors and the need for hood work
  • Excellent Z' Values: All lites products offer robust, sensitive performance, with high signal-to-background ratios and excellent Z' values

Specifications

Application
Cell Viability
Assay Points
1000
Automation Compatible
Yes
Brand
ATPlite 3D
Detection Modality
Luminescence
Format
Microplates
Protocol
1-step
Signal Halflife
0.5 hour
Shipping Conditions
Shipped Ambient
Unit Size
100 mL

Resources

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  • Application Note:-:2
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  • Literature - Publication Review:-:1
  • eBook:-:1
1-1 of 1 Resources
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Literature - Publication Review
Insights into mitochondrial complex I disorders using the ATPlite luminescence assay
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