摘要:
In a method for immobilizing molecules on a surface, a layer of a hydrophobic, e.g., a non-swelling polymer, may be applied to the surface and molecules are immobilized on a surface of the polymer layer. The hydrophobic polymers may be polyimide or polystyrene, and the surface to which the polymer layer is applied may be made of an inorganic material, e.g., a semiconductor material (silicon), a semiconducting oxide (silicon dioxide), glass, nitride, or ceramic. Hydrophobic polymers such as polyimide or polystyrene can be applied to the surface of an inorganic support with conventional methods. Further, they electrically insulate the support with respect to the molecules applied to the surface of the polymer layer or substances associated with these molecules. Thus, electrical sensors and processor circuits can be integrated into the support without any detrimental effect on their function due to molecules and substances applied to the surface of the polymer layer.
摘要:
In a method for the manufacture of a microarray, surface areas of a chip are brought into contact with different aqueous solutions that contain at least one coating substance. For each of the individual surface areas, an absorbent substrate is provided and is filled with the solution that is to be brought into contact with the surface area in question. Then, for the printing of the surface area with the at least one coating substance contained in the solution, each substrate is brought into contact with the surface area in question.
摘要:
The present invention concerns in general a biosensor in the form of a microchip for the optical detection of analytes and a method using this biosensor. In particular the invention concerns biosensors for detecting an analyte by time-resolved luminescence measurement and a corresponding method.
摘要:
A device includes a carrier element with a surface prepared for direct or indirect coupling or receiving of cells, at least one optical detector to receive a luminescence signal, the detector being integrated into the carrier element below the prepared surface, a cover covering the prepared surface to form a cavity, the cover having an inlet opening and an outlet opening, and an excitation source connected to the inlet opening. The excitation source constitutes a reservoir for a chemical or biological excitation substance or medium that influences the metabolism of the cell, with metabolic processes being made visible by luminescence and detected by at the least one optical detector.
摘要:
In a method for the manufacture of a microarray, surface areas of a chip are brought into contact with different aqueous solutions that contain at least one coating substance. For each of the individual surface areas, an absorbent substrate is provided and is filled with the solution that is to be brought into contact with the surface area in question. Then, for the printing of the surface area with the at least one coating substance contained in the solution, each substrate is brought into contact with the surface area in question.
摘要:
An integrated sensor array has a substrates, at least one sensor element, and a signal processing device integrated in the substrate and connected or capable of being connected with the sensor elements. A layer having a measuring surface is capable of being detachably bonded to the substrate so that a signal emitted from the measuring surface is capable of being processed by the signal processing device when the layer is bonded to the substrate. The substrate has at least one feedthrough hole abutting with the layer, which feedthrough hole is connected or capable of being connected to a vacuum generating device in order to bond the layer to the substrate by suction.
摘要:
Disclosed is a device for detecting at least one luminescent substance, comprising a radiation source for emitting excitation radiation to the at least one luminescent substance. The excitation radiation is provided with at least one excitation wavelength at which the luminescent substance is excited so as to emit luminescent radiation. At least one radiation receiver is provided, which detects the luminescent radiation and is configured regarding the spectral sensitivity thereof in such a way that said radiation receiver is insensitive to the radiation emitted by the radiation source. The luminescent substance is located inside a measuring chamber that is essentially impermeable to the luminescent radiation and comprises at least one wall area which is transparent to the excitation radiation emitted by the radiation source. The radiation source is placed outside the measuring chamber such that the excitation radiation emitted by the radiation source is coupled into the inside of the measuring chamber by penetrating said wall area.
摘要:
The invention relates to a device for detecting a luminescence event in or in the immediate vicinity of a cell, a cell cluster, or a tissue, having the following elements: (a) a carrier element (1) having a surface (100) prepared for direct or indirect coupling of cells, and (b) at least one optical detector (2) for receiving a luminescence signal and integrated in the carrier element (1) below the surface (100), characterized by the following elements: (c) a cover (7) having an inlet (8) and an outlet (9) and covering the surface (100) such as to form a cavity (70), and (d) an excitation source (21) connected to the inlet (8).
摘要:
In a method for regenerating a biosensor, a biosensor is prepared having a substrate surface on which at least one receptor is immobilized. At least one ligand that is binding specific to the receptor is bound to the receptor, said ligand, together with the receptor, forming a ligand-receptor complex. To regenerate the biosensor, the ligand-receptor complex is brought into contact with an enzyme. The enzyme is selected so that it catalyzes the ligand into fragments. The enzyme is inert with respect to the receptor.
摘要:
In a method for regenerating a biosensor, a biosensor is prepared having a substrate surface on which at least one receptor is immobilized. At least one ligand that is binding specific to the receptor is bound to the receptor, said ligand, together with the receptor, forming a ligand-receptor complex. To regenerate the biosensor, the ligand-receptor complex is brought into contact with an enzyme. The enzyme is selected so that it catalyzes the ligand into fragments. The enzyme is inert with respect to the receptor.