Patent · US9574219B2 · B2 · US
Device for sampling a specimen container
- (11) Publication number
- US9574219B2
- (21) Application number
- 12/800,392
- (22) Filing date
- 2010-05-14
- (30) Priority date
- 2009-05-15
- (43) Publication date
- 2017-02-21
- (45) Date of grant
- 2017-02-21
- (51) IPC
- G01N 1/12; C12Q 1/24; G01N 35/00
- (52) CPC
- G01N Investigating or analysing materials by determining their chemical or physical properties: 35/0099, 35/1079
- C12Q Measuring or testing processes involving enzymes, nucleic acids or microorganisms; compositions or test papers therefor; processes of preparing such compositions; condition-responsive control in microbiological or enzymological processes: 1/24
- Y10S Technical subjects covered by former uspc cross-reference art collections [xracs] and digests: 901/30
- (73) Assignee
- Biomerieux Inc
- (72) Inventors
- Christopher S. Ronsick; Mark S. Wilson; Ronnie J. Robinson; John Walsh; Jones M. Hyman
- (54) Title
- Device for sampling a specimen container
- (57) Abstract
A sampling device for a specimen container having a closure sealing the interior of the specimen container from the environment includes a needle, a body coupled to the needle and defining a chamber in fluid communication with the needle, the body further comprising a port forming an opening in the body, the port in fluid communication with the chamber. A multitude of the sampling devices may be stored in a cassette. The sampling devices may include a second chamber for separation and concentration of a microbial agent present in a sample. In this configuration second chamber is connected to the first chamber via a valve or the like.
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- View on Google Patents
Claims (7)
- An apparatus comprising: a plurality of disposable, single use devices configured for both sampling a specimen container having a closure sealing the interior of the specimen container from the environment and for separation of a microbial agent in a test sample withdrawn from the specimen container, each of the plurality of disposable, single use device comprising; a needle, a body coupled to the needle and defining a lytic chamber in fluid communication with the needle; a port forming an opening in the body, the port in fluid communication with the lytic chamber; a separation chamber in communication with the lytic chamber; a capillary tube having a closed bottom, the separation chamber sized to contain a concentrated microorganism pellet at the closed bottom, the capillary tube located within the separation chamber; and a valve connecting the lytic chamber with the separation chamber; a sample removal apparatus; an identification and/or characterization module comprising: a computer operably connected to the identification and/or characterization module, the computer programmed to identify the concentrated microorganism to family, genus, species, and/or strain level from data obtained from interrogation of the concentrated microorganism pellet; and a robotic gripping apparatus having a plurality of rotational joints and a pneumatic gripper placed on one of the rotational joints, the robotic gripping apparatus coupled to the sample removal apparatus, the robotic gripping apparatus configured to access and transfer the plurality of disposable, single use combined devices.
- The apparatus of claim 1, wherein the lytic chamber contains a selective lytic agent.
- The apparatus of claim 1, wherein the separation chamber contains a density cushion.
- The apparatus of claim 1, wherein the valve comprises a feature on the periphery of the devices for actuating the valve.
- The apparatus of claim 1, further comprising a vacuum chamber and a valve connecting the vacuum chamber to the lytic chamber.
- The apparatus of claim 1, further comprising a flexible sheath covering the needle.
- The apparatus of claim 1, wherein the data is derived from intrinsic fluorescence, MALDI-TOF mass spectrometry, desorption electrospray ionization (DESI) mass spectrometry, GC mass spectrometry, LC mass spectrometry, electrospray ionization (ESI) mass spectrometry or Selected Ion Flow Tube (SIFT) spectrometry.
Description
Ser. No. 12/800,387, entitled “Methods for rapid identification and/or characterization of a microbial agent in a sample.”
Ser. No. 12/800,388, entitled “System for rapid identification and/or characterization of a microbial agent in a sample.”
Ser. No. 12/800,467, entitled “Combined detection instrument for culture specimen containers and instrument for identification and/or characterization of a microbial agent in a sample.”
Not applicable.
This invention is directed to sampling device used to extract a sample from a specimen container having a closure, e.g., piercable septum. The specimen container may take the form of a bottle used to culture a sample, e.g., blood.
Instruments currently exist on the market in the U.S. that detect the growth and therefore the presence of a microorganism in a blood sample. One such instrument is the BacT/ALERT 3D instrument of the present assignee bioMérieux, Inc. The instrument receives a blood culture bottle containing a blood sample, e.g., from a human patient. The instrument incubates the bottle. Periodically during incubation an optical detection unit in the incubator analyzes a colorimetric sensor incorporated into the bottle to detect whether microbial growth has occurred within the bottle. The optical detection unit, specimen containers and sensors are described in the patent literature, see U.S. Pat. Nos. 4,945,060; 5,094,955; 5,162,229; 5,164,796; 5,217,876; 5,795,773; and 5,856,175, the entire content of each of which is incorporated by reference herein.
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Record as JSON
{
"publication_number": "US9574219B2",
"country": "US",
"kind": "B2",
"title": "Device for sampling a specimen container",
"abstract": "A sampling device for a specimen container having a closure sealing the interior of the specimen container from the environment includes a needle, a body coupled to the needle and defining a chamber in fluid communication with the needle, the body further comprising a port forming an opening in the body, the port in fluid communication with the chamber. A multitude of the sampling devices may be stored in a cassette. The sampling devices may include a second chamber for separation and concentration of a microbial agent present in a sample. In this configuration second chamber is connected to the first chamber via a valve or the like.",
"claims": [
"1. An apparatus comprising: a plurality of disposable, single use devices configured for both sampling a specimen container having a closure sealing the interior of the specimen container from the environment and for separation of a microbial agent in a test sample withdrawn from the specimen container, each of the plurality of disposable, single use device comprising; a needle, a body coupled to the needle and defining a lytic chamber in fluid communication with the needle; a port forming an opening in the body, the port in fluid communication with the lytic chamber; a separation chamber in communication with the lytic chamber; a capillary tube having a closed bottom, the separation chamber sized to contain a concentrated microorganism pellet at the closed bottom, the capillary tube located within the separation chamber; and a valve connecting the lytic chamber with the separation chamber; a sample removal apparatus; an identification and/or characterization module comprising: a computer operably connected to the identification and/or characterization module, the computer programmed to identify the concentrated microorganism to family, genus, species, and/or strain level from data obtained from interrogation of the concentrated microorganism pellet; and a robotic gripping apparatus having a plurality of rotational joints and a pneumatic gripper placed on one of the rotational joints, the robotic gripping apparatus coupled to the sample removal apparatus, the robotic gripping apparatus configured to access and transfer the plurality of disposable, single use combined devices.",
"2. The apparatus of claim 1, wherein the lytic chamber contains a selective lytic agent.",
"3. The apparatus of claim 1, wherein the separation chamber contains a density cushion.",
"4. The apparatus of claim 1, wherein the valve comprises a feature on the periphery of the devices for actuating the valve.",
"5. The apparatus of claim 1, further comprising a vacuum chamber and a valve connecting the vacuum chamber to the lytic chamber.",
"6. The apparatus of claim 1, further comprising a flexible sheath covering the needle.",
"7. The apparatus of claim 1, wherein the data is derived from intrinsic fluorescence, MALDI-TOF mass spectrometry, desorption electrospray ionization (DESI) mass spectrometry, GC mass spectrometry, LC mass spectrometry, electrospray ionization (ESI) mass spectrometry or Selected Ion Flow Tube (SIFT) spectrometry."
],
"description_excerpt": "Ser. No. 12/800,387, entitled “Methods for rapid identification and/or characterization of a microbial agent in a sample.”\n\nSer. No. 12/800,388, entitled “System for rapid identification and/or characterization of a microbial agent in a sample.”\n\nSer. No. 12/800,467, entitled “Combined detection instrument for culture specimen containers and instrument for identification and/or characterization of a microbial agent in a sample.”\n\nNot applicable.\n\nThis invention is directed to sampling device used to extract a sample from a specimen container having a closure, e.g., piercable septum. The specimen container may take the form of a bottle used to culture a sample, e.g., blood.\n\nInstruments currently exist on the market in the U.S. that detect the growth and therefore the presence of a microorganism in a blood sample. One such instrument is the BacT/ALERT 3D instrument of the present assignee bioMérieux, Inc. The instrument receives a blood culture bottle containing a blood sample, e.g., from a human patient. The instrument incubates the bottle. Periodically during incubation an optical detection unit in the incubator analyzes a colorimetric sensor incorporated into the bottle to detect whether microbial growth has occurred within the bottle. The optical detection unit, specimen containers and sensors are described in the patent literature, see U.S. Pat. Nos. 4,945,060; 5,094,955; 5,162,229; 5,164,796; 5,217,876; 5,795,773; and 5,856,175, the entire content of each of which is incorporated by reference herein.",
"cpc": [
"G01N 35/0099",
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"G01N 35/1079",
"Y10S 901/30"
],
"ipc": [
"G01N 1/12",
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"G01N 35/00"
],
"assignees": [
"Biomerieux Inc"
],
"inventors": [
"Christopher S. Ronsick",
"Mark S. Wilson",
"Ronnie J. Robinson",
"John Walsh",
"Jones M. Hyman"
],
"filing_date": "2010-05-14",
"publication_date": "2017-02-21",
"grant_date": "2017-02-21",
"priority_date": "2009-05-15",
"application_number": "US-80039210-A",
"family_id": "43067412",
"cited_by_count": 2,
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