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JP2006078245A - Testing device - Google Patents

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JP2006078245A
JP2006078245A JP2004260653A JP2004260653A JP2006078245A JP 2006078245 A JP2006078245 A JP 2006078245A JP 2004260653 A JP2004260653 A JP 2004260653A JP 2004260653 A JP2004260653 A JP 2004260653A JP 2006078245 A JP2006078245 A JP 2006078245A
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chamber
groove
test
pressing
reaction
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Ryuichi Endo
隆一 遠藤
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Nissui Pharmacetuical Co Ltd
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Nissui Pharmacetuical Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a testing device dispensing with a machine device such as a pump or a machine or an apparatus such as a syringe, capable of distributing a test solution into a reaction chamber filled with a reagent automatically by a simple operation, manufacturable inexpensively, and suitable to be used for an automatic examination device. <P>SOLUTION: This testing device has an inlet 2 for injecting the test solution, one or more reaction chambers 2, one or more pressing chambers 4 and a passage 5 communicating the inlet, the reaction chambers and the pressing chambers together. In the testing device, at least a part of a wall part of the pressing chamber is formed from a deformable elastic material. Hereby, the machine device such as the pump or the machine or the apparatus such as the syringe is not required, and the test solution can be distributed into the reaction chamber automatically by the simple operation, and the device can be manufactured inexpensively. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、自動検査装置に使用するのに適した試験デバイスに関する。   The present invention relates to a test device suitable for use in an automatic inspection apparatus.

被検液の注入口と反応室との間に流路をもつ試験デバイスにおいて、被検液を反応室に移送させる場合、毛細管現象を利用した自動移送も可能であるが、多くの場合、加圧ポンプ、吸引ポンプ等の機械装置、或いは手法のシリンジによる押圧を必要としている。しかしこれらの装置は煩雑であり、廉価とは云えない。また、試験デバイスが被検液適用部分以外は密閉されていないため、被検液が病原性を有する微生物懸濁液である場合、被検液が加圧口や吸引口等で外部と接することがあり、危険である。
特許文献1には、試験紙に透明なカバーを被せて封筒状にし、その上部に空気室をそして下部に吸込み口を設け、使用時には吸込み口を液体(被検液)の中に入れ、空気室によりスポイト式に該液体を、試験紙上の検査薬と接触させ、該液体と該検査薬との反応結果を透明なカバーの上より確認するスポイトカバー式液体試験紙が記載されている。しかしながら、該試験紙は、吸込み口を液体の中に入れる等の手による操作を必要とするため、自動検査装置に使用するのに適した試験デバイスとは云えない。
特開平5−249095公報
When a test solution is transferred to the reaction chamber in a test device having a flow path between the injection port of the test solution and the reaction chamber, automatic transfer using capillary action is also possible. It requires pressing with a mechanical device such as a pressure pump, a suction pump, or a syringe using a technique. However, these devices are cumbersome and not cheap. In addition, since the test device is not sealed except for the part to which the test liquid is applied, if the test liquid is a pathogenic microorganism suspension, the test liquid should be in contact with the outside through a pressure port, a suction port, etc. There is a danger.
In Patent Document 1, a transparent cover is put on a test paper to form an envelope, an air chamber is provided at the top, and a suction port is provided at the bottom, and when used, the suction port is placed in a liquid (test liquid) and air There is described a dropper cover type liquid test paper in which the liquid is brought into contact with a test agent on a test paper in a chamber and a reaction result between the liquid and the test agent is confirmed from a transparent cover. However, the test paper is not a test device suitable for use in an automatic inspection apparatus because it requires manual operation such as placing a suction port into a liquid.
JP-A-5-249095

従って、本発明の目的は、ポンプ等の機械装置やシリンジ等の機械・器具を必要とせず、簡単な操作で被検液を、試薬を充填した反応室に自動的に分配することができ、しかも廉価に作成することができる、自動検査装置に使用するのに適した試験デバイスを提供することである。   Therefore, the object of the present invention is that it does not require a mechanical device such as a pump or a machine or instrument such as a syringe, and the test liquid can be automatically distributed to the reaction chamber filled with the reagent by a simple operation. Furthermore, it is an object of the present invention to provide a test device suitable for use in an automatic inspection apparatus that can be produced at low cost.

本発明によって、被検液を注入するための注入口、1個以上の反応室、1個以上の押圧室、及び該注入口と該反応室と該押圧室とを連通する流路とを有し、該押圧室の壁部の少なくとも一部は変形可能な弾性素材により形成されている試験デバイスが提供される。   According to the present invention, there are an inlet for injecting a test liquid, one or more reaction chambers, one or more pressing chambers, and a flow path that connects the inlet, the reaction chambers, and the pressing chambers. And the test device by which at least one part of the wall part of this press chamber is formed of the elastic material which can deform | transform is provided.

押圧室の壁部の少なくとも一部は変形可能な弾性素材により形成されているため、被検液注入前に押圧室を加圧すると押圧室は小容量化され、該押圧室の加圧を解放した時に元の容量に戻ることにより発生する吸引力により、注入口に注入された被検液を、流路を経て各反応室に移送することができる。
本発明の試験デバイスによると、ポンプ等の機械装置やシリンジ等の機械・器具を必要とせず、簡単な操作で被検液を反応室に自動的に分配することができ、しかも廉価に作成することができる。また、該試験デバイスは押圧室の加圧(少容量化)と解放は自動検査装置により制御することが可能であり、該試験デバイスは自動検査装置に使用するのに適する。
Since at least a part of the wall of the pressing chamber is made of a deformable elastic material, pressurizing the pressing chamber before injecting the test liquid reduces the volume of the pressing chamber and releases the pressurizing of the pressing chamber. The test solution injected into the injection port can be transferred to each reaction chamber via the flow path by the suction force generated by returning to the original volume at the time.
According to the test device of the present invention, a test liquid can be automatically distributed to the reaction chamber with a simple operation without requiring a mechanical device such as a pump or a machine such as a syringe. be able to. The test device can control pressurization (reduction in volume) and release of the pressing chamber by an automatic inspection apparatus, and the test device is suitable for use in an automatic inspection apparatus.

押圧室の壁部の少なくとも一部が変形可能な弾性素材により形成されて、押圧室が加圧により容積可変となる試験デバイスは、例えば下記のように構成することができる。
(1)硬質基板に注入口用の溝(注入溝)、1個以上の反応室用の溝(反応溝)、1個以上の押圧室用の溝(押圧溝)、及び注入溝と反応溝と押圧溝とを連通する流路用の溝(流路溝)等を設け、これらの溝の注入溝以外の溝の開口部を弾性素材、好ましくは透明な弾性フィルムで被覆する。
(2)弾性素材、好ましくは透明な弾性素材に注入口用の貫通溝(注入溝)、1個以上の反応室用の溝(反応溝)、1個以上の押圧室用の溝(押圧溝)、及び注入溝と反応溝と押圧溝とを連通する流路用の溝(流路溝)を設け、これらの溝の開口部を硬質基板で覆う。
A test device in which at least a part of the wall portion of the pressing chamber is made of a deformable elastic material and the volume of the pressing chamber is variable by pressurization can be configured as follows, for example.
(1) Inlet groove (injection groove), one or more reaction chamber grooves (reaction groove), one or more pressure chamber grooves (press groove), and injection groove and reaction groove in the hard substrate A channel groove (channel groove) or the like that communicates with the pressing groove is provided, and the opening of these grooves other than the injection groove is covered with an elastic material, preferably a transparent elastic film.
(2) An elastic material, preferably a transparent elastic material, a through groove (injection groove) for an injection port, a groove for one or more reaction chambers (reaction groove), and a groove for one or more pressure chambers (press groove) ), And a channel groove (channel groove) that communicates the injection groove, the reaction groove, and the pressing groove, and the openings of these grooves are covered with a hard substrate.

上記(1)及び(2)に記載の硬質基板としては、金属、ガラス、石英ガラス、アルミナ、サファイヤ、フォルスライト、炭化珪素、酸化珪素、窒化珪素等の無機材料、もしくは、ポリエチレン、エチレン酢酸ビニル共重合樹脂、ポリプロピレン、ポリスチレン、AS樹脂、ABS樹脂、メタクリル樹脂、ポリ塩化ビニル、ポリアミド、ポリカーボネート、ポリエチレンテレフタレート、ポリブチレンテレフタレート、フェノール樹脂、ユリア樹脂、エポキシ樹脂、メラミン樹脂、シクロオレフィン樹脂、アクリル樹脂等の有機材料が挙げられるが、これらに限定されない。   As the hard substrate described in (1) and (2) above, inorganic materials such as metal, glass, quartz glass, alumina, sapphire, forslite, silicon carbide, silicon oxide, silicon nitride, polyethylene, ethylene vinyl acetate Copolymer resin, polypropylene, polystyrene, AS resin, ABS resin, methacrylic resin, polyvinyl chloride, polyamide, polycarbonate, polyethylene terephthalate, polybutylene terephthalate, phenol resin, urea resin, epoxy resin, melamine resin, cycloolefin resin, acrylic resin Examples of the organic material include, but are not limited to.

上記(1)に記載の注入溝、反応溝、押圧溝、流路溝等を設けた硬質基板を被覆する弾性素材としては、シリコーン樹脂、ポリエチレン、エチレン酢酸ビニル共重合樹脂、ポリ塩化ビニル、ポリウレタン、ポリビニルブチラール、ポリビニルアルコール、酢酸ビニル樹脂、フェノール樹脂、ユリア樹脂、エポキシ樹脂、メラミン樹脂等の有機材料が挙げられるが、これらに限定されない。   Examples of the elastic material for covering the hard substrate provided with the injection groove, the reaction groove, the pressing groove, the channel groove, etc. described in the above (1) include silicone resin, polyethylene, ethylene vinyl acetate copolymer resin, polyvinyl chloride, polyurethane And organic materials such as, but not limited to, polyvinyl butyral, polyvinyl alcohol, vinyl acetate resin, phenol resin, urea resin, epoxy resin, and melamine resin.

上記(2)に記載の注入溝、反応溝、押圧溝、流路溝等を設けた弾性素材としては、特に限定されないが、透明シリコーン樹脂、その中でも更に適するものとしてポリジメチルシロキサン(PDMS)が挙げられる。   The elastic material provided with the injection groove, the reaction groove, the pressing groove, the channel groove and the like described in the above (2) is not particularly limited, but a transparent silicone resin, among them, polydimethylsiloxane (PDMS) is more suitable. Can be mentioned.

注入口と反応室との間、及び反応室と押圧室との間に逆流防止機構を設けることができる。   A backflow prevention mechanism can be provided between the inlet and the reaction chamber and between the reaction chamber and the pressing chamber.

反応室には試薬を予め充填することができる。試薬は特に限定されるものでなく、抗原、抗体、培地成分、基質、核酸等が挙げられる。   The reaction chamber can be prefilled with reagents. The reagent is not particularly limited, and examples thereof include antigens, antibodies, medium components, substrates, nucleic acids and the like.

被検液は特に限定されないが、血液、髄液、尿等の臨床分野で使用される液性サンプル;環境水、飲料水、食品破砕懸濁液等の環境・食品分野のサンプル;微生物(細菌、真菌等)、細菌懸濁液、液体培養物等の微生物・細胞分野のサンプルが挙げられる。   The test fluid is not particularly limited, but is a liquid sample used in clinical fields such as blood, spinal fluid, urine, etc .; environmental / food samples such as environmental water, drinking water, food disruption suspensions; microorganisms (bacteria) , Fungi, etc.), bacterial suspensions, liquid culture samples, etc.

本発明を、添付の図面により、具体的態様を説明する。
図1〜2に示す試験デバイスは、アクリル樹脂の基板1に注入口2用の溝と、6個の反応室3用の溝と、押圧室4用の溝と、流路5用の溝が設けられ、反応室3、押圧室4及び流路5用の各溝の開口部側に透明な弾性フィルム6が接着被覆されている。被検液7の注入前に押圧室4を矢印方向に加圧して小容量化し(図2a)、被検液7を注入口2から分注後、押圧室4の加圧を解放することにより、吸引効果が発生して、被検液7は流路5、液溜部8を介して反応室3に到達することができる(図2b)。反応室3で余った被検液は吸水パッドを含む液溜部8で保持される(図2c)。
Specific embodiments of the present invention will be described with reference to the accompanying drawings.
The test device shown in FIGS. 1 and 2 includes an acrylic resin substrate 1 having a groove for an inlet 2, six grooves for a reaction chamber 3, a groove for a pressing chamber 4, and a groove for a flow path 5. A transparent elastic film 6 is adhesively coated on the opening side of each groove for the reaction chamber 3, the pressing chamber 4 and the flow path 5. By pressurizing the pressure chamber 4 in the direction of the arrow before injection of the test liquid 7 to reduce the volume (FIG. 2a), after dispensing the test liquid 7 from the injection port 2, the pressure in the pressure chamber 4 is released. The suction effect is generated, and the test liquid 7 can reach the reaction chamber 3 via the flow path 5 and the liquid reservoir 8 (FIG. 2b). The remaining test liquid in the reaction chamber 3 is held in a liquid reservoir 8 including a water absorption pad (FIG. 2c).

図3〜4に示す試験デバイスは、弾性素材(透明PDMS)16に注入口12用の貫通溝と、6個の反応室13用の溝と、押圧室14用の溝と、流路15用の溝が設けられ、各溝の開口部側に硬質樹脂基板(ガラス又はアクリル樹脂製基板)11が接着されている。被検液7の注入前に押圧室14を矢印方向に加圧して小容量化し(図4a)、被検液7を注入口12から分注後、押圧室14の加圧を解放することにより、吸引効果が発生して、被検液7は流路15、液溜部18を介して反応室13に到達することができる(図4b)。反応室13で余った被検液は吸水パッドを含む液溜部18で保持される(図4c)。   3 to 4, the elastic material (transparent PDMS) 16 has a through groove for the injection port 12, six grooves for the reaction chamber 13, a groove for the pressing chamber 14, and a flow path 15. And a hard resin substrate (glass or acrylic resin substrate) 11 is bonded to the opening side of each groove. By pressurizing the press chamber 14 in the direction of the arrow before injection of the test liquid 7 to reduce the volume (FIG. 4a), after dispensing the test liquid 7 from the injection port 12, the pressurization of the press chamber 14 is released. The suction effect is generated, and the test solution 7 can reach the reaction chamber 13 through the flow path 15 and the liquid reservoir 18 (FIG. 4b). The remaining test liquid in the reaction chamber 13 is held in a liquid reservoir 18 including a water absorption pad (FIG. 4c).

図5に示す試験デバイスにおいては、複数個の押圧室24a、24b、24cが設けられ、押圧室24a、24b、及び24cの加圧及び解放によりそれぞれ反応室23a、23b、及び23cへの被検液の移送を可能にしている。22は注入口、28は液溜部、29は逆流防止機構である。   In the test device shown in FIG. 5, a plurality of pressing chambers 24a, 24b, and 24c are provided, and the test is performed on the reaction chambers 23a, 23b, and 23c by pressurizing and releasing the pressing chambers 24a, 24b, and 24c, respectively. The liquid can be transferred. Reference numeral 22 denotes an inlet, 28 denotes a liquid reservoir, and 29 denotes a backflow prevention mechanism.

図6に示す試験デバイスにおいては、アクリル樹脂製基板(図示されていない)に設けられた各種溝とそれに接着被覆された透明な弾性フィルム36により、注入口32、反応室33a、33b、33c、33d、33e、33f、33g、押圧室34、及び流路35が形成されている。反応室33a、33b、33c、33d、33e、33f、33g内に冷水可溶性ゲルを含む試薬が充填されており、押圧室34の加圧解放により注入口32から被検液7が反応室33aに供給されると、被検液の粘度上昇により、反応室33b、33c、33d、33e、33f、33gへの流路35に移送される被検液が制御される。被検液は順次各反応室でゲル化されながら、反応室33b、33c、33d、33e、33f、33gに順次供給される。   In the test device shown in FIG. 6, the inlet 32, the reaction chambers 33a, 33b, 33c, and the like are formed by various grooves provided on an acrylic resin substrate (not shown) and a transparent elastic film 36 adhesively coated thereon. 33d, 33e, 33f, and 33g, the press chamber 34, and the flow path 35 are formed. The reaction chambers 33a, 33b, 33c, 33d, 33e, 33f, and 33g are filled with a reagent containing a cold water-soluble gel, and the test liquid 7 is transferred from the inlet 32 to the reaction chamber 33a by releasing the pressure of the pressing chamber 34. When supplied, the test liquid transferred to the flow path 35 to the reaction chambers 33b, 33c, 33d, 33e, 33f, and 33g is controlled by the increase in viscosity of the test liquid. The test liquid is sequentially supplied to the reaction chambers 33b, 33c, 33d, 33e, 33f, and 33g while being gelled in each reaction chamber.

図1〜2に示す試験デバイスの押圧室4を加圧し、精製水100μLを注入口に分注してから加圧を解放した。精製水は流路5を流れ、反応室3に到達したことが透明弾性フィルム6を通して確認された。   The press chamber 4 of the test device shown in FIGS. 1 and 2 was pressurized, 100 μL of purified water was dispensed into the inlet, and then the pressure was released. It was confirmed through the transparent elastic film 6 that the purified water flowed through the flow path 5 and reached the reaction chamber 3.

試験デバイスの一態様の平面図である。It is a top view of one mode of a test device. 図1に示す試験デバイスのX−X'切断面の端面図である。(a)は被検液注入前の押圧室を加圧した状態、(b)は被検液を注入した後、押圧室の加圧を解放した状態、そして(c)は被検液が反応室及び液溜部に保持された状態を示す。It is an end view of the XX 'cut surface of the test device shown in FIG. (A) is a state in which the pressure chamber is pressurized before injection of the test liquid, (b) is a state in which the pressure in the pressure chamber is released after injecting the test liquid, and (c) is a state in which the test liquid reacts. The state hold | maintained at the chamber and the liquid storage part is shown. 試験デバイスの他の態様の平面図である。It is a top view of the other aspect of a test device. 図3に示す試験デバイスのX−X'切断面の端面図である。(a)は被検液注入前の押圧室を加圧した状態、(b)は被検液を注入した後、押圧室の加圧を解放した状態、そして(c)は被検液が反応室及び液溜部に保持された状態を示す。It is an end view of the XX 'cut surface of the test device shown in FIG. (A) is a state in which the pressure chamber is pressurized before injection of the test liquid, (b) is a state in which the pressure in the pressure chamber is released after injecting the test liquid, and (c) is a state in which the test liquid reacts. The state hold | maintained at the chamber and the liquid storage part is shown. 複数の押圧室を有する試験デバイスの一態様の平面図である。It is a top view of one mode of a test device which has a plurality of press rooms. 反応室内に冷水可溶性ゲルを含む試薬を充填して、該ゲルにより被検液を粘度上昇させて、複数の反応室に順次被検液を供給する態様の試験デバイスの平面図である。It is a top view of the test device of the aspect which fills the reagent containing cold water soluble gel in the reaction chamber, raises a test liquid viscosity with this gel, and supplies a test liquid sequentially to several reaction chambers.

符号の説明Explanation of symbols

1、11 硬質基板
2、12、22、32 注入口
3、13、23、33 反応室
4、14、24、34 押圧室
5、15、25、35 流路
6 弾性フィルム
16 透明PDMS
7 被検液
1, 11 Rigid substrate 2, 12, 22, 32 Inlet 3, 13, 23, 33 Reaction chamber 4, 14, 24, 34 Press chamber 5, 15, 25, 35 Channel 6 Elastic film 16 Transparent PDMS
7 Test solution

Claims (6)

被検液を注入するための注入口、1個以上の反応室、1個以上の押圧室、及び該注入口と該反応室と該押圧室とを連通する流路とを有し、該押圧室の壁部の少なくとも一部は変形可能な弾性素材により形成されている試験デバイス。   An injection port for injecting a test liquid, one or more reaction chambers, one or more pressing chambers, and a flow path communicating the injection port with the reaction chambers and the pressing chambers. A test device in which at least a part of the chamber wall is formed of a deformable elastic material. 硬質基板に注入口用の溝、1個以上の反応室用の溝、1個以上の押圧室用の溝、及び流路用の溝を設け、これらの溝の注入口用の溝以外の溝の開口部を弾性素材で被覆することにより形成されている、請求項1記載の試験デバイス。   A hard substrate is provided with an inlet groove, one or more reaction chamber grooves, one or more pressing chamber grooves, and a channel groove, and these grooves are grooves other than the inlet groove. The test device according to claim 1, wherein the test device is formed by covering an opening of the substrate with an elastic material. 上記弾性素材が透明フィルムである請求項2記載の試験デバイス。   The test device according to claim 2, wherein the elastic material is a transparent film. 弾性素材に注入口用の貫通溝、1個以上の反応室用の溝、1個以上の押圧室用の溝、及び流路用の溝を設け、これらの溝の開口部を硬質基板で覆うことにより形成されている、請求項1記載の試験デバイス。   The elastic material is provided with an inlet through groove, one or more reaction chamber grooves, one or more pressing chamber grooves, and a channel groove, and the openings of these grooves are covered with a hard substrate. The test device according to claim 1, which is formed by: 上記弾性素材が透明シリコーン樹脂からなる請求項4記載の試験デバイス。   The test device according to claim 4, wherein the elastic material is made of a transparent silicone resin. 反応室に試薬が充填されている、請求項1〜5のいずれか1項記載の試験デバイス。   The test device according to claim 1, wherein the reaction chamber is filled with a reagent.
JP2004260653A 2004-09-08 2004-09-08 Testing device Pending JP2006078245A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008064545A (en) * 2006-09-06 2008-03-21 Kowa Co Microchip and microchip device
CN106289934A (en) * 2015-06-23 2017-01-04 台达电子工业股份有限公司 Pipe-line mixer

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008064545A (en) * 2006-09-06 2008-03-21 Kowa Co Microchip and microchip device
CN106289934A (en) * 2015-06-23 2017-01-04 台达电子工业股份有限公司 Pipe-line mixer
CN106289934B (en) * 2015-06-23 2020-01-03 台达电子工业股份有限公司 Pipeline mixer

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