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SciFlowTM1000 SciFlow-1000 System易用低成本微量滴定板動態(tài)流體系統(tǒng)
- 公司名稱 北京容圣科技有限公司
- 品牌
- 型號 SciFlowTM1000
- 產地
- 廠商性質 代理商
- 更新時間 2015/7/31 8:50:26
- 訪問次數(shù) 701
易用低成本微量滴定板動態(tài)流體系統(tǒng)SciFlow-1000 Systemscikoninnovation代理SciFlow Culture System;microtiter plate dynamic fluid system
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SciFlow Culture System; pack of 5
SCIFLOW CULTURE SYSTEM; PACK OF 5
Click on Product below to start transitioning your stagnant cultures into systems with nutrient flow.
To learn more about SciFlow, visit our product page HERE
If you are interested in a collaboration, learn more about our Lead User program HERE
SCIFLOW-1000 SYSTEM; PACK OF 5 UNITS
Material | Clear Tissue Culture Treated Polystyrene |
Fluid channels per plate | Eight |
Channel configuration | 1 nutrient source well; 10 linked wells |
Well Access | All wells accessible for pipetting |
Packaging | Box of 5 Individually wrapped disposable units; EtO treated for Sterilization |
Figure 1. Cross section of SciFlow. Green fill shows well locations and surfaces. Yellow fill shows
the "row cover" that creates the capillary channel path for fluid. Fluid flows from the Reservoir
towards Well11
The SciFlow-1000 system is composed of two fluidic divisions; see Figure 1.
? Wells 1 and 2 are the fluid reservoir and fluid regulator; these wells
work in tandem. The Source well supplies the row with fresh media.
As the media enters the system, the regulator well helps maintain
consistent fluid levels across the plate.
? Wells 3 – 11 are locations for cells.
? In the first generation SciFlow1000, well 12 is configured to
incorporate additional functionalities as the product line grows. This
protocol is written so that fluid should not enter this well 12.
SciFlow is designed to combine three main features for creating biological
systems on the benchtop:
1. Constant fluid renewal
2. Compartmentalized well-to-well communication
3. Gradient-over-time exposures
Users can take advantage of any or all of these features depending on the
specific biological questions
To use the SciFlow plate, users can follow typical cell culture
approaches to plating cells and changing media while maintaining isolated
culture wells. Once it is desired to link wells together, creating a system of
connected cultures users simply increase the volume of media in culture