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化工儀器網>產品展廳>物理特性分析儀器>表面/界面性能測定儀>其它表面測試>mach-1 細胞-材料相互作用力測試分析儀

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mach-1 細胞-材料相互作用力測試分析儀

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世聯博研(北京)科技有限公司(Bio Excellence International Tech Co.,Ltd)簡稱為世聯博研。世聯博研是一家集進口科研儀器代理銷售以及實驗技術服務于一體的技術公司。世聯博研專注生物力學和3D生物打印前沿科研設備代理銷售及科研實驗項目合作服務,內容涵蓋了血管力學生物學、生物力學建模仿真與應用、細胞分子生物力學、組織修復生物力學、骨與關節生物力學、口腔力學生物學、眼耳鼻咽喉生物力學、康復工程生物力學、生物材料力學與仿生學、人體運動生物力學等生物力學研究以及生物材料打印、打印樣品生物力學性能測試分析的前沿領域科研利器和科研服務。

世聯博研的客戶范圍:
科研院所單位、生物醫學科研高校、醫院基礎科研單位等。

世聯博研公司代理的品牌具有:
1)近10年長期穩定的貨源
2)以生物力學、細胞力學、細胞生物分子學、生物醫學組織工程、生物材料學為主,兼顧其他相關產品線
3)提供專業產品培訓和銷售培訓
4)良好的技術支持
5)已成交老客戶考證
6)每年新增的貨源。

細胞應力加載儀,3細胞打印機,NanoTweezer新型激光光鑷系統,PicoTwist磁鑷,美國NeuroIndx品牌Kuiqpick單細胞捕獲切割系統

產地類別 進口 應用領域 醫療衛生,生物產業

細胞-材料相互作用力測試分析儀,細胞材料黏附脫落測試評估系統,細胞與材料間粘合力測試分析系統,細胞黏附材料測試儀,細胞與材料間黏附力檢測分析系統。

 

1、培養液浸沒式粘附黏合力測試分析

2、支持無損傷倒置探針和倒置探針(ASTM D2979)或環形(ASTM D6195)粘性測試

 

These tack testing fixtures can be used to measure the tack properties (instantaneous adhesion) of adhesives either through the inverted probe (ASTM D2979) or the loop (ASTM D6195) tack testing methods. It comprises: for the inverted probe technique (a flat indenter with a 5-mm diameter and annular loading weights) and for the loop (a tensile grip and a 1 inch flat base). The force required to completely peel out the material provides its tackiness.

 

Cell attachment or, lack of it, to biomaterials is a critical factor affecting the performance of a device or implant. Cell attachment is a complicated, time-dependent, process involving significant morphological changes of the cell and deposition of a bed of extracellular matrix. Details of the adhesive bond that is formed have been reviewed by, for example, Pierres et al (2002) (4), Lukas and Dvorak (2004) (5), and Garcia and Gallant (2003) (6). The strength of this coupling can be determined either by monitoring the force of attachment between a cell and a substrate over time or by measuring the force required to detach the cell once it has adhered.
Cell adhesion to a surface depends on a range of biological and physical factors that include the culture history, the age of the cell, the cell type, and both the chemistry and morphology of the underlying surface and time. These elements that need to be considered in developing a test protocol.
Devising robust methods for measuring the propensity of cells to attach to different substrates is further complicated since either cell adhesion or detachment can be assessed. These processes that are not always similar or complementary.
Most studies of cell attachment focus on obtaining some measure of the time-dependent force required to detach, or de-adhere, cells that have already adhered to a surface (James et al, 2005) (7). More recently investigators have begun to measure the adhesive forces that develop between cells and the underlying surface during attachment (Lukas and Dvorak, 2004) (5). From a practical point of view, it is much easier to measure the force required to detach or de-adhere cells from a surface than to measure those that develop during attachment. However, in both cases, the experimental data should be interpreted with a degree of caution that depends on the intended use of the measurements. The methods of measuring cell adhesion described herein are measures of the force required to detach an adherent cell.
The purpose of this guide is to provide an overview of current generic test methods and identify the key factors that influence the assessment of cell adhesion and detachment. It is anticipated that this guide will form the basis for producing a series of standards that will describe these test methods in more detail.

Scope

1.1 This guide describes protocols that can be used to measure the strength of the adhesive bond that develops between a cell and a surface as well as the force required to detach cells that have adhered to a substrate. Controlling the interactions of mammalian cells with surfaces is fundamental to the development of safe and effective medical products. This guide does not cover methods for characterizing surfaces. The information generated by these methods can be used to obtain quantitative measures of the susceptibility of surfaces to cell attachment as well as measures of the adhesion of cells to a surface. This guide also highlights the importance of cell culture history and influences of cell type.
1.2 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.



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