IP Library Granted Patent US 9,150,911
Granted Patent B2
US 9,150,911 · App. 13/696,962 · Granted Oct 6, 2015

Nucleic acid analysis reaction cell and nucleic acid analyzer

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Quick Facts
Patent No.
US 9,150,911
App. No.
13/696,962
Granted
Oct 6, 2015
Kind
B2
Abstract

A nucleic acid analysis reaction cell and a nucleic acid analyzer are provided, in which a uniform flow rate is realized, so that a portion where a flow rate is low is removed and washing time for reagent removal is shortened. A flow path ( 103 ) is provided which includes a detection area ( 108 ) for detecting sequence information of a nucleic acid fragment and detection outer areas ( 107 ) disposed at both ends of the detection area ( 108 ). An inflow port ( 105 ) is provided in one of the detection outer areas ( 107 ) and a discharge port ( 106 ) is provided in the other of the detection outer areas ( 107 ). The detection outer areas ( 107 ) disposed at both the ends of the detection area ( 108 ) are areas whose widths become narrow toward ends, and guides ( 104 ) for branching a liquid are provided in at least the detection outer area ( 107 ) in which the inflow port ( 105 ) is provided.

Claims (47)

1. A nucleic acid analysis reaction cell comprising:

a flow path including a detection area for detecting sequence information of a nucleic acid fragment and detection outer areas disposed at both ends of the detection area, and

substrates that are bonded to each other, wherein

an inflow port is provided in one of the detection outer areas and an outflow port is provided in the other of the detection outer areas,

the detection outer areas disposed at both the ends of the detection area are areas whose widths become narrow toward any end thereof, and

guides that are provided only in the detection outer area in which the inflow port is provided, wherein

each guide is configured to guide liquid along a predefined path within the detection outer area in which the inflow port is provided,

a flow rate of the liquid in each guide is substantially the same,

the guides are provided at equal intervals in a direction perpendicular to a longitudinal direction of the flow path,

a fluid flowing into the flow path from the inflow port is divided by the guides,

the number of the inflow port is one, and

each of the guides is joined to an upper surface and a lower surface of the flow path.

2. A nucleic acid analyzer comprising:

a nucleic acid analysis reaction cell that includes a flow path including a detection area for detecting sequence information of a nucleic acid fragment and detection outer areas disposed at both ends of the detection area;

a liquid supply unit for supplying a liquid;

substrates that are bonded to each other;

an irradiation light source; and

a detection unit, wherein

the flow path includes the detection area for detecting the sequence information of the nucleic acid fragment and the detection outer areas disposed at both the ends of the detection area,

an outflow port is provided in one of the detection outer areas and an inflow port is provided in the other of the detection outer areas,

the detection outer areas disposed at both the ends of the detection area are areas whose widths become narrow toward any end thereof, and

guides that are provided only in the detection outer area in which the inflow port is provided, wherein

each guide is configured to guide liquid along a predefined path within the detection outer area in which the inflow port is provided,

a flow rate of the liquid in each guide is substantially the same,

the guides are provided at equal intervals in a direction perpendicular to a longitudinal direction of the flow path,

a fluid flowing into the flow path from the inflow port is divided by the guides,

the number of the inflow port is one, and

each of the guides is joined to an upper surface and a lower surface of the flow path.

3. A nucleic acid analyzer comprising:

a nucleic acid analysis reaction cell that includes a flow path including a detection area for detecting sequence information of a nucleic acid fragment and detection outer areas disposed at both ends of the detection area;

a liquid supply unit for supplying a liquid;

substrates that are bonded to each other;

an irradiation light source; and

a detection unit, wherein

the flow path includes an immobilization layer immobilizing nucleic acid to be measured,

the immobilization layer is provided in the detection areas and the detection outer areas,

an inflow port is provided in one of the detection outer areas and an outflow port is provided in the other of the detection outer areas,

the width of the detection area is uniform in a direction perpendicular to a longitudinal direction,

the detection outer areas disposed at both ends of the detection area are areas whose widths become narrower toward any end thereof,

guides are provided only in the detection outer area in which the inflow port is provided,

each guide is configured to guide liquid along a predefined path within the detection outer area in which the inflow port is provided,

a flow rate of the liquid in each guide is substantially the same,

the guides are disposed at equal intervals in a direction perpendicular to a direction extending from the inflow port to the outflow port,

the guides are provided at equal intervals in a direction perpendicular to a longitudinal direction of the flow path,

a fluid flowing into the flow path from the inflow port is divided by the guides,

the number of the inflow port is one, and

each of the guides is joined to an upper surface and a lower surface of the flow path.

Assignments (2)
CHANGE OF NAME AND ADDRESS Recorded Mar 30, 2020
From: HITACHI HIGH-TECHNOLOGIES CORPORATION
To: HITACHI HIGH-TECH CORPORATION
Reel/Frame 052259/0227 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2012
From: NAKAZAWA, TARO; NARAHARA, MASATOSHI; INABA, RYOJI; NAGAOKA, YOSHIHIRO; TOGASHI, SHIGENORI
To: HITACHI HIGH-TECHNOLOGIES CORPORATION
Reel/Frame 029447/0117 →