摘要:
A method for controlling the hydrophilic droplet using the electrowetting principle is disclosed. More specifically, the present invention provides a method for increasing the change of the contact angle in the interface that is formed between the hydrophilic droplet and the nonpolar fluid by adding a constant concentration of two-element electrolyte or three-element electrolyte to the hydrophilic droplet; and an apparatus for controlling the droplet having the change of the contact angle and velocity scope increased by the method.
摘要:
Provided is a quantitative cell dispensing apparatus using liquid droplet manipulation, for quantitatively dispensing cells from hydrophilic suspension containing a plurality of cells. The quantitative cell dispensing apparatus includes hydrophilic suspension, a liquid droplet manipulation unit, a dispensing unit, a sensing unit, and a control unit. The hydrophilic suspension includes a plurality of cells and electrolyte, and the liquid droplet manipulation unit. The liquid droplet manipulation unit includes an inlet and a liquid droplet outlet portion. The dispensing unit discharges a liquid droplet received from the liquid droplet outlet portion to a target portion. The sensing unit optically senses liquid droplets distributed on a panel of the liquid droplet manipulation unit. The control unit analyses the number of cells contained in each liquid droplet using a single sensed by the sensing unit, and controls the liquid droplet manipulation unit to transfer a liquid droplet containing a predetermined number of cells to the liquid droplet outlet portion.
摘要:
A device and method for printing biomolecules on a substrate uses an electric charge concentration effect. The device overcomes limitations of the material and surface characteristics of a substrate, enables accurate dropping of a biomolecular droplet onto a target surface of the substrate, prevents electric discharge, and thus allows the manufacturing of a high density biochip by depositing numerous biomolecular droplets, which are small in size and volume, onto a substrate. The device includes: a needle-shaped electric field forming electrode; a substrate which is grounded and disposed below the electric field forming electrode, the substrate including a target surface; and an open circuit type voltage applying unit which supplies first electric charges to the electric field forming electrode to drop the biomolecular droplet onto the target surface of the substrate.
摘要:
Provided is a method for noncovalently immobilizing a biomolecule on a solid substrate, including: providing a solid substrate having a first functional group attached thereto, the first functional group having a hydrogen bond donating ability; and reacting a mixture of a compound having a hydrogen bond accepting ability and a biomolecule functionalized with a second functional group, with the surface of the substrate, the second functional group having a hydrogen bond donating ability, in order to noncovalently immobilize the biomolecule on the substrate.
摘要:
Provided is a method for detecting a target nucleic acid, comprising amplifying a target nucleic acid from a nucleic acid sample using a set of primers comprising at least one primer having a tag sequence at its 5′ end and a target binding sequence at its 3′ end; hybridizing the resulting amplified products with detection probes labeled with a label, the detection probes being capable of specifically binding to the tag sequence; hybridizing the hybridization products with capture probes immobilized on a microarray, the capture probes being capable of specifically binding to the target nucleic acid and not to the tag sequence; and determining the results of hybridization.
摘要:
A method for controlling the hydrophilic droplet using the electrowetting principle is disclosed. More specifically, the present invention provides a method for increasing the change of the contact angle in the interface that is formed between the hydrophilic droplet and the nonpolar fluid by adding a constant concentration of two-element electrolyte or three-element electrolyte to the hydrophilic droplet; and an apparatus for controlling the droplet having the change of the contact angle and velocity scope increased by the method.
摘要:
Provided is a method for noncovalently immobilizing a biomolecule on a solid substrate, including: providing a solid substrate having a first functional group attached thereto, the first functional group having a hydrogen bond donating ability; and reacting a mixture of a compound having a hydrogen bond accepting ability and a biomolecule functionalized with a second functional group, with the surface of the substrate, the second functional group having a hydrogen bond donating ability, in order to noncovalently immobilize the biomolecule on the substrate.
摘要:
Disclosed is a method of separating small RNAs of 200 nucleotides or less from larger RNAs on a solid support, using a kosmotropic salt of different concentrations.
摘要:
The present invention provides a method of purifying RNA, including contacting a solid support with an acidic solution having a RNA-containing sample and a kosmotropic salt having a concentration of less than 1M, thereby binding the RNA to the solid support. According to the present invention, RNA is purified efficiently due to high RNA yield and low contamination by DNA. The present invention is particularly effective in purifying RNAs of 200 nucleotides or less.
摘要:
A device for printing a droplet onto a substrate includes: a droplet generating member which is needle-shaped and comprises a receiving portion disposed vertically to receive a solution, and a discharge hole connected to the receiving portion and formed on a bottom of the receiving portion so that the solution can be discharged from the receiving portion; a substrate disposed below the droplet generating member, the substrate includes a target portion to which the droplet discharged from the discharge hole of the droplet generating member is dropped and attached; a voltage applier applying a voltage to the droplet so that the droplet can be dropped onto the target portion of the substrate; a volume measuring unit measuring the volume of the droplet; and a droplet control unit maintaining the volume of the droplet at a predetermined level based on the measured volume of the droplet.