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JP2007125036A - Bacterium culture container - Google Patents

Bacterium culture container Download PDF

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JP2007125036A
JP2007125036A JP2007001220A JP2007001220A JP2007125036A JP 2007125036 A JP2007125036 A JP 2007125036A JP 2007001220 A JP2007001220 A JP 2007001220A JP 2007001220 A JP2007001220 A JP 2007001220A JP 2007125036 A JP2007125036 A JP 2007125036A
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bacteria
bag
gas
synthetic resin
medium
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Takahiro Aoshiba
孝宏 青柴
Tsuneo Kaneko
常雄 金子
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Nikken Bio Medical Laboratory Inc
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    • C12M23/00Constructional details, e.g. recesses, hinges
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    • C12M23/00Constructional details, e.g. recesses, hinges
    • C12M23/22Transparent or translucent parts
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    • C12M23/00Constructional details, e.g. recesses, hinges
    • C12M23/34Internal compartments or partitions
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    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
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    • C12M23/00Constructional details, e.g. recesses, hinges
    • C12M23/36Means for collection or storage of gas; Gas holders
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    • C12M41/00Means for regulation, monitoring, measurement or control, e.g. flow regulation
    • C12M41/30Means for regulation, monitoring, measurement or control, e.g. flow regulation of concentration
    • C12M41/36Means for regulation, monitoring, measurement or control, e.g. flow regulation of concentration of biomass, e.g. colony counters or by turbidity measurements

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Abstract

<P>PROBLEM TO BE SOLVED: To provide a container which does not need the preparation of a special equipment such as a Durham's tube, can simply be operated for the culture of bacteria, can be deformed, can reduce an occupation volume without needing a large volume, and is convenient for transportation. <P>SOLUTION: This bacterium culture container 1 comprises a bag 2 formed from semi-transparent or transparent flexible synthetic resin films not permitting the passage of liquids and bacteria, and a valve 3 which makes possible to charge or discharge a culture medium into or from the bag 2 and can hermetically close the bag 2 against the liquids or bacteria. The synthetic resin films are linearly adhered to each other to divide the inside of the bag, while leaving a communicating portion 63, thus forming a linearly adhered portion 61 to integrally dispose a gas trapper 6 for accumulating the bubbles 5 of a gas produced in the culture medium accompanied by the proliferation of the bacteria, in the bag. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

この発明は、細菌を培養して細菌検査に用いる細菌培養容器に関する。   The present invention relates to a bacterial culture container for culturing bacteria and using it for a bacterial test.

細菌を培養して細菌検査に用いる容器としては、従来、ガラス、硬質樹脂等の剛性材料からなる定形のシャーレ、試験管、ボトルなどがあった。これらの細菌培養容器のうち、細菌の培養に伴うガスの発生の有無によって細菌の存否を確認する場合には、試験管やボトルが使用される。   Conventional containers for incubating bacteria and using them for testing bacteria include regular petri dishes, test tubes and bottles made of rigid materials such as glass and hard resin. Among these bacterial culture containers, a test tube or a bottle is used when the presence or absence of bacteria is confirmed by the presence or absence of gas generated during bacterial culture.

すなわち、試験管を使用して細菌を培養する場合には、図2に示すように、試験管T内に、細菌の増殖に伴ってガスを発生する液体培地Mを充填して、その培地M中に試験管Tよりもはるかに小さいダーラム管Dを、空気を抜いた状態で逆さにして沈めておき、ピペット等を用いて検体を試験管内の培地Mに接種する。そして、試験管Tに蓋を被せて試験管Tを振盪させ、検体と培地とを十分に混釈する。その後、好気的条件下の恒温装置内に試験管Tを収容して培養する。検体中に細菌が存在したときは、その培養に伴って発生したガスGがダーラム管D内に溜まる。このようにして、ガス発生の有無により細菌の存否を確認する(例えば、特許文献1参照。)。また、ボトルを使用して細菌を培養する場合にも、試験管培養と同様に、ボトル内の培地中にダーラム管を逆さにした状態で沈めてガス発生の状況を観察する。
特開2003−230375号公報(第2頁)
That is, when culturing bacteria using a test tube, as shown in FIG. 2, the test tube T is filled with a liquid medium M that generates gas as the bacteria grow, and the medium M A Durham tube D, which is much smaller than the test tube T, is sunk in an inverted state with the air removed, and the sample is inoculated into the medium M in the test tube using a pipette or the like. Then, the test tube T is covered with a lid, and the test tube T is shaken to sufficiently mix the specimen and the medium. Thereafter, the test tube T is accommodated in a thermostat under aerobic conditions and cultured. When bacteria are present in the specimen, the gas G generated by the culture accumulates in the Durham tube D. Thus, the presence or absence of bacteria is confirmed by the presence or absence of gas generation (for example, refer to Patent Document 1). Also, when culturing bacteria using a bottle, the state of gas generation is observed by submerging the Durham tube upside down in the medium in the bottle as in the case of test tube culture.
JP 2003-230375 A (second page)

しかしながら、試験管やボトルを使用して細菌を培養し細菌の培養に伴うガスの発生の有無によって細菌の存否を確認する、といった従来の方法では、試験管やボトルとは別にダーラム管を用意しておく必要があり、また、試験管やボトル内の培地中にダーラム管を逆さにして沈める、といった余分な操作が必要となって面倒である。   However, in the conventional method of culturing bacteria using test tubes and bottles and checking the presence or absence of bacteria based on the presence or absence of gas during the cultivation of bacteria, a Durham tube is prepared separately from the test tubes and bottles. In addition, it is troublesome because an extra operation such as sunk the Durham tube upside down in the medium in the test tube or bottle is necessary.

また、試験管やボトルは、その体積および形状を変化させることができないので、使用時・不使用時に拘わらず収納空間が多く必要であり、その持ち運びにも不便である。また、細菌の増殖に伴うガスの発生によって容器内部の圧力が高まるので、容器の破損を防止するために、スクリュー式キャップを用いる場合にはキャップを少し緩めておいたり、ゴム栓式キャップを用いる場合にはキャップに注射針を突き刺しておいたりするなど、培養中のガスの逃げ道を確保しておかなければならない。この結果、そのガスの逃げ道を通して容器内の培地が汚染される心配がある。   Further, since the volume and shape of test tubes and bottles cannot be changed, a large storage space is required regardless of whether or not the test tubes and bottles are used, and it is inconvenient to carry. In addition, since the pressure inside the container increases due to the generation of gas accompanying the growth of bacteria, in order to prevent damage to the container, when using a screw-type cap, loosen the cap a little or use a rubber plug-type cap In some cases, it is necessary to secure a gas escape route during culture, such as by inserting a needle into the cap. As a result, the medium in the container may be contaminated through the gas escape path.

この発明は、以上のような事情に鑑みてなされたものであり、ダーラム管のような特別な器具を用意しておく必要が無く、細菌培養のための操作が簡単であり、変形可能で占有体積も少なくて済み、運搬にも便利である細菌培養容器を提供することを目的とする。   The present invention has been made in view of the above circumstances, and it is not necessary to prepare a special instrument such as a Durham tube. The operation for bacterial culture is simple, deformable and occupied. An object of the present invention is to provide a bacterial culture container that is small in volume and convenient for transportation.

請求項1に係る発明は、半透明ないし透明で柔軟性を有し液体および細菌を通過させない合成樹脂フィルムにより形成され、液体および細菌に対して密閉可能で、内部に培地を収容して細菌を培養する細菌培養容器において、連通部分を残して内部を仕切るように合成樹脂フィルム同士を線状に接着させて、細菌の増殖に伴って培地で発生したガスを溜めるガストラッパを一体的に形設し、半透明ないし透明の合成樹脂フィルムを通して前記ガストラッパに溜まるガスを観察することにより細菌の存否を確認することを特徴とする。   The invention according to claim 1 is formed of a synthetic resin film that is translucent or transparent and flexible and does not allow liquids and bacteria to pass through. The invention can be sealed against liquids and bacteria. In the bacterial culture container to be cultured, the synthetic resin films are linearly bonded so as to partition the interior, leaving a communicating part, and a gas trapper is formed integrally to store the gas generated in the culture medium as the bacteria grow. The presence or absence of bacteria is confirmed by observing gas accumulated in the gas trapper through a translucent or transparent synthetic resin film.

請求項2に係る発明は、請求項1に記載の細菌培養容器において、一側辺から底辺側へ傾斜するように合成樹脂フィルム同士を直線状に接着させ、前記一側辺と直線状接着部とで囲まれる部分をガストラッパとすることを特徴とする。   The invention according to claim 2 is the bacterial culture container according to claim 1, wherein the synthetic resin films are linearly bonded so as to be inclined from one side to the bottom side, and the one side and the linear bonding portion The portion surrounded by is a gas trapper.

請求項1に係る発明の細菌培養容器において、細菌の増殖に伴って培地で発生したガスは、容器に一体的に形設されたガストラッパに溜まるので、半透明ないし透明の合成樹脂フィルムを通してガストラッパに溜まるガスを観察することにより細菌の存否を確認することができる。したがって、ダーラム管のような特別な器具を用意しておく必要が無く、細菌培養のための操作も簡単になる。
また、この細菌培養容器は、柔軟性を有する合成樹脂フィルムにより形成されていて、変形可能であり、場合によっては折り畳むことも可能であるので、必要とする収納空間が少なくて済み、検体の採取現場での取り扱いや運搬も容易である。
In the bacterial culture container of the invention according to claim 1, the gas generated in the culture medium along with the growth of the bacteria accumulates in a gas trapper integrally formed in the container, so that the gas trapper passes through a translucent or transparent synthetic resin film. The presence or absence of bacteria can be confirmed by observing the accumulated gas. Therefore, it is not necessary to prepare a special instrument such as a Durham tube, and the operation for culturing bacteria is simplified.
The bacterial culture container is made of a flexible synthetic resin film, can be deformed, and can be folded in some cases. It is easy to handle and transport on site.

請求項2に係る発明の細菌培養容器では、一側辺と直線状接着部とが鋭角をなし、その鋭角をなす一側辺と直線状接着部とで囲まれる部分がガストラッパとなるので、細菌の増殖に伴って培地で発生したガスを良好にガストラッパに溜めることができる。   In the bacterial culture container of the invention according to claim 2, since one side and the linear adhesive portion form an acute angle, and the portion surrounded by the acute side and the linear adhesive portion becomes a gas trapper, As a result, the gas generated in the culture medium can be well stored in the gas trapper.

以下、この発明の最良の実施形態について図面を参照しながら説明する。
図1は、この発明の実施形態の1例を示す細菌培養容器の斜視図である。
DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, the best embodiment of the present invention will be described with reference to the drawings.
FIG. 1 is a perspective view of a bacterial culture container showing an example of an embodiment of the present invention.

この細菌培養容器1は、培地および検体を収容して細菌の培養を行う袋2と、この袋2内に培地を出し入れ可能とするとともに袋2を液体および細菌に対して密閉可能とする開閉部材としての弁3から構成されている。袋2は、半透明ないし透明で柔軟性を有し液体および細菌を通過させない合成樹脂フィルムにより形成されている。袋2を形成する合成樹脂フィルムは、培養しようとする細菌の種類によって適宜選択すればよいが、好気性菌を培養する場合には、例えばポリ塩化ビニル、ポリエチレン等の通気性を有する合成樹脂フィルムが好ましく、嫌気性菌を培養する場合には、単独で気体不透過性を発揮するフィルム、あるいは重層フィルムが好ましい。そして、袋2は、2枚の合成樹脂フィルム、例えば無色透明の2枚のポリエチレン方形フィルムを、周辺部2cで互いに熱圧着等により接着して得られる。また、弁3は、例えば、袋2と同質の2枚のリボン状フィルムを両長辺に沿う縁で互いに接着して筒状に形成されたものである。この弁3は、2枚の方形フィルムを相互に接着して袋2を作製する際に、予め筒状に形成したフィルムを2枚の方形フィルムで挟んでおくことにより、2枚の方形フィルムの相互接着と同時に方形フィルムに固着されて、袋2に一体的に取り付けられる。ただし、袋2の周辺部2cのうち、弁3が設けられる上辺部と対向する底辺部2dは、後述するように培地を充填した後に接着される。   The bacterial culture container 1 includes a bag 2 that contains a culture medium and a specimen and cultures the bacteria, and an opening / closing member that allows the culture medium to be taken in and out of the bag 2 and that the bag 2 can be sealed against liquids and bacteria. As a valve 3. The bag 2 is formed of a synthetic resin film that is translucent or transparent, has flexibility, and does not allow liquid and bacteria to pass through. The synthetic resin film forming the bag 2 may be appropriately selected depending on the type of bacteria to be cultured. However, when aerobic bacteria are cultured, for example, a synthetic resin film having air permeability such as polyvinyl chloride and polyethylene. When anaerobic bacteria are cultured, a film that exhibits gas impermeability alone or a multilayer film is preferable. The bag 2 is obtained by bonding two synthetic resin films, for example, two colorless and transparent polyethylene rectangular films, to each other at the peripheral portion 2c by thermocompression bonding or the like. Further, the valve 3 is formed in a cylindrical shape by bonding two ribbon-like films having the same quality as the bag 2 at the edges along both long sides. The valve 3 is formed by sandwiching a film formed in a cylindrical shape between two rectangular films when the two rectangular films are bonded to each other to produce the bag 2. At the same time as the mutual adhesion, it is fixed to the rectangular film and attached to the bag 2 integrally. However, of the peripheral part 2c of the bag 2, the bottom part 2d facing the top part where the valve 3 is provided is adhered after filling with the culture medium as will be described later.

また、この細菌培養容器1は、2枚の方形フィルムをその周辺部2cで相互に接着して袋2を作製する際に、両方形フィルムを、その外周の一側辺から中央に向かって延びる線に沿っても相互接着する。このようにすることにより、袋2の内部が、連通部分63を残して2つ空間に仕切られ、袋2の内部に、袋2の一側辺から底辺側へ傾斜するように延びる直線状接着部61と袋2の一側辺の接着部とによって平面視で鋭角的に囲まれた空間部分が形成される。この空間部分が、細菌の増殖に伴って培地で発生したガスを溜めるガストラッパ6となり、内部にガストラッパ6が一体的に設けられた細菌培養容器1が得られる。この構成により、細菌培養容器1を立てた状態で細菌の培養を行うようにすると、培地で発生したガスが気泡となって、図2中に矢印で示した方向へ気泡が移動し、その気泡がガストラッパ6に溜まるので、透明の合成樹脂フィルムを通して細菌の増殖に伴うガスの発生を容易に確認することが可能となる。   In addition, when the bacterial culture container 1 produces two bags by bonding two rectangular films to each other at the peripheral part 2c, the two-shaped film extends from one side of the outer periphery toward the center. Adheres to each other along the line. By doing in this way, the inside of the bag 2 is partitioned into two spaces, leaving the communication portion 63, and linear adhesive that extends so as to incline from the one side of the bag 2 to the bottom side inside the bag 2. A space portion surrounded by an acute angle in plan view is formed by the portion 61 and the adhesive portion on one side of the bag 2. This space portion becomes a gas trapper 6 that accumulates gas generated in the culture medium along with the growth of bacteria, and a bacterial culture container 1 in which the gas trapper 6 is integrally provided is obtained. With this configuration, when bacteria are cultured with the bacterial culture container 1 standing, the gas generated in the medium becomes bubbles, and the bubbles move in the direction indicated by the arrows in FIG. Is accumulated in the gas trapper 6, it is possible to easily confirm the generation of gas accompanying the growth of bacteria through the transparent synthetic resin film.

さらに、直線状接着部61は、弁3を底辺に向かって延長した位置に差し掛かったところで方向転換して弁3の方へ向かい、この弁3を指向する接着部が、ガストラッパ6に溜まったガスを弁3の方へ案内するガイド62となる。このような構成により、検体を袋2内の培地に接種する際に弁3を通して袋2内に空気が混入しても、培養開始前に、袋2内に混入した空気をガイド62に沿って弁3の方へ導き、弁3を通って混入空気を速やかに排出することができる。この結果、培養後にガストラッパ6に溜まったガスが正しく細菌の増殖に由来するものであるとの確証を得ること可能となる。   Further, the linear adhesive portion 61 changes its direction when it reaches the position where the valve 3 extends toward the bottom and moves toward the valve 3, and the adhesive portion directed to the valve 3 is a gas trapped in the gas trapper 6. The guide 62 guides the valve toward the valve 3. With such a configuration, even when air is mixed into the bag 2 through the valve 3 when the sample is inoculated into the medium in the bag 2, the air mixed in the bag 2 is guided along the guide 62 before the start of culture. Guided toward the valve 3, the mixed air can be quickly discharged through the valve 3. As a result, it is possible to obtain confirmation that the gas accumulated in the gas trapper 6 after culturing is correctly derived from bacterial growth.

上記したように、この細菌培養容器1は、全体が柔軟性を有するポリエチレンフィルムで形成されているので、使用しないときには多数個を平たく束ねたり折り曲げたりして、保管場所に応じて適当な形態で保管したり運搬したりすることができる。したがって、この細菌培養容器1は、保管スペースが少なくて済み、その運搬も容易である。さらに、この細菌培養容器1は、運搬中に破損の心配が無く、軽量であるので、取扱いが容易である。この細菌培養容器1を用いて細菌を培養する方法は、以下の通りである。   As described above, since the entire bacterial culture container 1 is formed of a flexible polyethylene film, when not in use, a large number of the bacterial culture containers 1 are flatly bundled or bent, and in an appropriate form depending on the storage location. Can be stored and transported. Therefore, the bacterial culture container 1 requires less storage space and can be easily transported. In addition, the bacterial culture container 1 is easy to handle because it is light and free from damage during transportation. A method for culturing bacteria using the bacterial culture vessel 1 is as follows.

袋2の底辺部2dを接着する前に、袋2内にその底辺開口側から培地を充填する。なお、予め袋2の底辺部2dを接着しておいてから、弁3を通して注射器等で培地を充填することもできるが、弁3の無菌性を保つためには、袋2内に底辺開口側から培地を充填した後に底辺部2dを接着することが好ましい。培地の種類は、液体培地、寒天培地または粉末培地のいずれでもよい。そして、袋2の底辺部2dを接着した後、血液、食品、試薬等の検体を培地に加え、適当な環境で培養する。弁3を構成するフィルムの内面同士は、袋2の内部圧力が高まるほど互いに密接するので、培養中に細菌培養容器1に外力が加わっても弁3が開くことはない。   Before bonding the bottom side 2d of the bag 2, the medium is filled into the bag 2 from the bottom opening side. In addition, after adhering the bottom portion 2d of the bag 2 in advance, the medium can be filled with a syringe or the like through the valve 3, but in order to maintain the sterility of the valve 3, the bottom opening side of the bag 2 is provided. It is preferable to adhere the bottom portion 2d after filling the culture medium. The type of the medium may be a liquid medium, an agar medium, or a powder medium. Then, after adhering the bottom 2d of the bag 2, specimens such as blood, food, and reagent are added to the medium and cultured in an appropriate environment. Since the inner surfaces of the films constituting the valve 3 are in close contact with each other as the internal pressure of the bag 2 increases, the valve 3 does not open even when an external force is applied to the bacterial culture container 1 during the culture.

水道水、井戸水、プール、河川、海水浴場、貯水タンク等における大腸菌群の有無を検査する場合には、大腸菌群が存在するときのみガスが発生するBGLB(液体)培地を袋2内に充填しておけば、袋2を構成する透明のポリエチレンフィルムを介して培地を透視することにより、容易に気泡5の発生の有無を観察することができる。また、粉末培地を用いる場合において、この細菌培養容器1では袋2が充填物質の量に応じて膨らむので、従来の定形容器におけるように検体(水道水等)分の容積を予め確保しておく、といった必要が無い。   When inspecting the presence of coliforms in tap water, well water, pools, rivers, beaches, water storage tanks, etc., the bag 2 is filled with a BGLB (liquid) medium that generates gas only when the coliforms are present. In this case, the presence or absence of the bubbles 5 can be easily observed by seeing through the culture medium through the transparent polyethylene film constituting the bag 2. In the case of using a powder medium, since the bag 2 inflates in accordance with the amount of the filling substance in the bacterial culture container 1, a volume for a sample (tap water or the like) is secured in advance as in a conventional shaped container. There is no need to

また、食品中の細菌の有無を検査するためには、食品を培地全体に均一に分散させる必要がある。従来の定形容器を用いる場合には、加温溶解させた寒天培地と検体とを予め混合して容器内に充填し、寒天培地を凝固させた後、好気性菌であるか嫌気性菌であるかなどといった細菌の性質に適応させかつ培地が乾燥しないように、湿潤した雰囲気を有する恒温装置に容器を入れて培養していた。この細菌培養容器1を用いる場合には、袋2の材質として、好気性菌に対しては上記したポリエチレンフィルムのように通気性のものを用いる。一方、嫌気性菌に対しては気体不透過性の合成樹脂フィルムを選定して用いるようにする。そして、予め袋2内に寒天培地を充填しておき、細菌培養容器1ごと電子レンジに入れて数秒で寒天培地を溶解させた後、袋2内の培地中に検体を接種し、培地の入った袋2を軽く揉むか、あるいは、細菌培養容器1全体を数回転倒させるかして、培地と検体とを攪拌するだけで検体が培地全体に均一に分散し、細菌を培養することができる。そして、培養中に袋2は密閉されているので、袋2内の培地が乾燥することがない。したがって、従来の定形容器を用いた場合のように恒温装置内を湿潤化する必要も無い。   Moreover, in order to inspect the presence or absence of bacteria in food, it is necessary to uniformly disperse the food throughout the medium. In the case of using a conventional fixed container, the agar medium dissolved by heating and the sample are mixed in advance and filled in the container, and after the agar medium is solidified, it is an aerobic bacterium or an anaerobic bacterium. In order to adapt to the nature of the bacteria such as, and to prevent the medium from drying, the container was placed in a thermostat having a moist atmosphere and cultured. When this bacterial culture vessel 1 is used, the bag 2 is made of a breathable material such as the polyethylene film described above for aerobic bacteria. On the other hand, a gas-impermeable synthetic resin film is selected and used for anaerobic bacteria. The bag 2 is filled with an agar medium in advance, put into the microwave oven together with the bacterial culture container 1, and the agar medium is dissolved in a few seconds. Then, the sample is inoculated into the medium in the bag 2, and the medium is put. The sample can be uniformly dispersed throughout the medium and the bacteria can be cultured by simply stirring the bag 2 or inverting the entire bacterial culture container 1 several times and stirring the medium and the sample. . And since the bag 2 is sealed during culture | cultivation, the culture medium in the bag 2 does not dry. Therefore, it is not necessary to wet the inside of the thermostatic apparatus as in the case of using a conventional fixed container.

血液検査の場合には、検体(血液)が不透明であるから、従来はダーラム管を使用することができず、しかも、検体の飛散防止のために予め減圧機で内部を負圧に調整したボトル内で培養を行わざるを得なかった。これに対して、この細菌培養容器1を用いた場合には、検体の充填量に応じて袋2が膨らむので、内圧を調整しておく必要が無く、注射器を弁3に挿入して、採取した検体を袋2内へ押し込むだけでよい。   In the case of a blood test, since the specimen (blood) is opaque, a Durham tube cannot be used conventionally, and the bottle is adjusted to a negative pressure with a decompressor in advance to prevent the specimen from scattering. The culture was unavoidable. On the other hand, when this bacterial culture container 1 is used, the bag 2 is inflated according to the amount of sample filled, so there is no need to adjust the internal pressure, and a syringe is inserted into the valve 3 for collection. All that is required is to push the specimen into the bag 2.

なお、細菌培養容器1の開閉部材としては、上記実施形態で示した筒状フィルムからなる弁3に代えて、栓、スクリューキャップ等を用いるようにしてもよい。   In addition, as an opening / closing member of the bacterial culture container 1, a plug, a screw cap, or the like may be used instead of the valve 3 made of the tubular film shown in the above embodiment.

この発明の実施形態の1例を示す細菌培養容器の斜視図である。It is a perspective view of the bacteria culture container which shows one example of embodiment of this invention. 試験管を使用した従来の細菌培養容器の1例を示す縦断面図である。It is a longitudinal cross-sectional view which shows an example of the conventional bacteria culture container which uses a test tube.

符号の説明Explanation of symbols

1 細菌培養容器
2 袋
2c 袋の周辺部
2d 袋の底辺部
3 弁
5 気泡
6 ガストラッパ
61 直線状接着部
62 ガイド
63 連通部分
DESCRIPTION OF SYMBOLS 1 Bacterial culture container 2 Bag 2c Peripheral part of a bag 2d Bottom part of a bag 3 Valve 5 Bubble 6 Gas trapper 61 Linear adhesion part 62 Guide 63 Communication part

Claims (2)

半透明ないし透明で柔軟性を有し液体および細菌を通過させない合成樹脂フィルムにより形成され、液体および細菌に対して密閉可能で、内部に培地を収容して細菌を培養する細菌培養容器において、
連通部分を残して内部を仕切るように合成樹脂フィルム同士を線状に接着させて、細菌の増殖に伴って培地で発生したガスを溜めるガストラッパを一体的に形設し、半透明ないし透明の合成樹脂フィルムを通して前記ガストラッパに溜まるガスを観察することにより細菌の存否を確認することを特徴とする細菌培養容器。
In a bacterial culture vessel that is formed of a synthetic resin film that is translucent to transparent and flexible and does not allow liquids and bacteria to pass through, can be sealed against liquids and bacteria, and contains a culture medium inside to culture bacteria.
A semi-transparent or transparent synthetic material is formed by integrally forming a gas trapper that holds the gas generated in the culture medium along with the growth of bacteria by linearly adhering the synthetic resin films so as to partition the interior while leaving the communication part. A bacterial culture container characterized by confirming the presence or absence of bacteria by observing gas accumulated in the gas trapper through a resin film.
一側辺から底辺側へ傾斜するように合成樹脂フィルム同士を直線状に接着させ、前記一側辺と直線状接着部とで囲まれる部分がガストラッパとされる請求項1に記載の細菌培養容器。 The bacterial culture container according to claim 1, wherein the synthetic resin films are linearly bonded so as to incline from the one side to the bottom side, and a portion surrounded by the one side and the linear bonding portion is a gas trapper. .
JP2007001220A 2007-01-09 2007-01-09 Bacterium culture container Pending JP2007125036A (en)

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