Abstract:
The present invention relates to linker polypeptides, a composition or a kit comprising the same, and a method for analyzing a target material using the same. When the linker polypeptides are used, signal distortion which can be caused by micro-particles when analyzing a target material is prevented, thereby being useful for increasing accuracy and reliability of diagnosis. [Reference numerals] (AA) Fc-binding domain; (BB) TEV cutting domain; (CC) C-terminal modification
Abstract:
PURPOSE: A metal nanowire in which gold nanocluster is formed on the surface and a method of binding for the metal nanowire with target material are provided to efficiently bond with target material at high affinity. CONSTITUTION: A metal nanowire in which gold nanocluster is formed on the surface is existed in the composition form. The gold nanocluster has average size of 1-10 nano meters. The gold nanocluster is existed in the density range of 1X10^6 - 1X10^16clusters/cm^2. A manufacturing method of the metal nanowire comprises the following steps: forming a gold thin film layer on a metal board; forming gold - metal island by primary sintering the gold containing metal substrate in a chamber for chemical vapor deposition; and injecting mixing gas into the chamber while secondary sintering the silicon substrate to grow metal nanowire in which gold nanocluster is formed on the surface. [Reference numerals] (AA) Trapping rate(%); (BB) Culturing time(minutes)
Abstract:
An operation method of an electronic device comprises a step of receiving one among at least one virtual folder by touch; a process of calling at least one application registered on the virtual folder selected by the touch; and a process of displaying at least one called application. [Reference numerals] (101) Camera; (102) Application 1; (103) Application 2; (104) Camera application 1; (AA) Camera application 2
Abstract:
PURPOSE: A filter for capturing target materials is provided to safely capture target material in fluid. CONSTITUTION: A filter for capturing target material comprises a fluid inlet (112); vents (114) in which partial fluid is ejected; a first fluid path connected with the inlet; second fluid paths (152) connected with the vent; and a filter section (132) arranged between the first and second fluid paths. The filter section captures target material by dropping a part or more of the fluid flowing through the first fluid path. The progressive directions of the flowing fluid in the first and second fluid paths are in a line. The progressive directions of the fluid dropped from the filter section and fluid flowing in the first fluid path are perpendicular to each other.