[미국특허]
Aspiration-free well plate apparatus and methods
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
G01N-001/40
G01N-001/34
B01J-008/00
출원번호
US-0215645
(2014-03-17)
등록번호
US-8968682
(2015-03-03)
발명자
/ 주소
Hale, Matthew
출원인 / 주소
Cytosaver LLC
대리인 / 주소
Cooley LLP
인용정보
피인용 횟수 :
4인용 특허 :
3
초록▼
A well plate includes a including a top portion, a bottom portion and a membrane disposed between the top portion and the bottom portion. The top portion defines a sample well in fluid communication with an opening defined by the membrane and in fluid communication with a reservoir defined by the bo
A well plate includes a including a top portion, a bottom portion and a membrane disposed between the top portion and the bottom portion. The top portion defines a sample well in fluid communication with an opening defined by the membrane and in fluid communication with a reservoir defined by the bottom portion. The well plate is configured to be used in a centrifugation process of a test sample including a sample material and a wash liquid. The test sample configured to be received within the sample well and the reservoir. The membrane configured to filter the wash liquid from the test sample during the centrifugation process such that the wash liquid can pass from the reservoir, through the membrane and can be captured within a collection chamber while the sample material remains within the reservoir.
대표청구항▼
1. An apparatus, comprising: a well plate including a top portion, a bottom portion, and a membrane disposed between the top portion and the bottom portion,the top portion defining a sample well in fluid communication with an opening defined by the membrane and with a reservoir defined by the bottom
1. An apparatus, comprising: a well plate including a top portion, a bottom portion, and a membrane disposed between the top portion and the bottom portion,the top portion defining a sample well in fluid communication with an opening defined by the membrane and with a reservoir defined by the bottom portion,the well plate configured to be used in a centrifugation process of a test sample including a sample material and a wash liquid, the test sample configured to be received within the sample well and the reservoir; anda collection chamber in fluid communication with the reservoir via the membrane, the membrane configured to filter the wash liquid from the test sample during the centrifugation process such that the wash liquid can pass from the reservoir, through the membrane, through a drain hole defined by the membrane, and be captured within the collection chamber while the sample material remains within the reservoir. 2. The apparatus of claim 1, wherein the sample material is a cell. 3. The apparatus of claim 1, further comprising: a trapping element disposed within the collection chamber and configured to absorb at least a portion of the wash liquid captured within the collection chamber. 4. The apparatus of claim 1, further comprising: a trapping element disposed within the collection chamber and configured to absorb at least a portion of the wash liquid captured within the collection chamber,the trapping element being configured to neutralize biohazards within the filtered wash liquid captured within the collection chamber. 5. The apparatus of claim 1, wherein the top portion defines a drain hole, and the bottom portion defines a drain hole in fluid communication with the drain hole of the top portion, the drain hole of the membrane is in fluid communication with the drain hole of the top portion and the drain hole of the bottom portion, the drain hole of the top portion, the drain hole of the bottom portion and the drain hole of the membrane each in fluid communication with the collection chamber, the drain hole of the top portion, the drain hole of the bottom portion and the drain hole of the membrane each configured to receive therethrough at least a portion of the wash liquid filtered through the membrane prior to being captured within the collection chamber. 6. The apparatus of claim 1, wherein at least a portion of an inner bore of the sample well is tapered from a top portion to a bottom portion of the sample well such that a test sample received therethrough can be directed to a central recessed portion of the reservoir. 7. The apparatus of claim 1, wherein the sample well is a first sample well, the reservoir is a first reservoir, the opening in the membrane is a first opening, the test sample is a first test sample, the top portion includes a second sample well, the bottom portion includes a second reservoir in fluid communication with the second sample well and the membrane includes a second opening in fluid communication with the second sample well and the second reservoir,a second test sample configured to be received within the second sample well and the second reservoir, the second test sample including a sample material and a wash liquid,the membrane configured to filter the wash liquid from the second test sample during the centrifugation process such that the wash liquid from the second test sample can pass from the second reservoir, through the membrane and into the collection chamber while the sample material of the second test sample remains within the second reservoir. 8. The apparatus of claim 1, wherein the sample well is a first sample well, the reservoir is a first reservoir, the opening in the membrane is a first opening, the test sample is a first test sample, the top portion includes a second sample well and defines a drain channel, the bottom portion includes a second reservoir in fluid communication with the second sample well and the membrane includes a second opening in fluid communication with the second sample well and the second reservoir,a second test sample configured to be received within the second sample well and the second reservoir, the second test sample including a sample material and a wash liquid,the membrane configured to filter the wash liquid from the second test sample during the centrifugation process such that the wash liquid from the second test sample can pass from the second reservoir, through the membrane and into the collection chamber while the sample material of the second test sample remains within the second reservoir,the drain channel of the to portion configured to receive the filtered wash liquid from the first test sample and the filtered wash liquid from the second test sample and direct the filtered wash liquid from the first test sample and the filtered wash liquid from the second test sample into the collection chamber. 9. The apparatus of claim 1, wherein at least one of the top plate or the bottom plate is formed with a transparent material. 10. An apparatus, comprising: a well plate including a plurality of sample wells each in fluid communication with a reservoir from a plurality of reservoirs, and a membrane at least partially disposed between the plurality of sample wells and the plurality of reservoirs, the membrane defining a plurality of openings each in fluid communication with a sample well from the plurality of sample wells and a reservoir from the plurality of reservoirs,each sample well from the plurality of sample wells and each reservoir from the plurality of reservoirs configured to receive a test sample including a test material and a wash liquid; anda collection chamber in fluid communication with the reservoir via the membrane, the membrane configured to filter the wash liquid from the test sample of each test sample disposed within the plurality of sample wells and plurality of reservoirs during a centrifugation process such that the wash liquid can pass from each reservoir from the plurality of reservoirs through the membrane through a drain hole from a plurality of drain holes defined by the membrane, and be captured within the collection chamber while the sample material of each test sample remains within the respective reservoir from the plurality of reservoirs. 11. The apparatus of claim 10, wherein at least one sample material within the plurality of sample wells and plurality of reservoirs is a cell. 12. The apparatus of claim 10, further comprising: a trapping membrane disposed within the collection chamber and configured to absorb at least a portion of the wash liquid captured within the collection chamber. 13. The apparatus of claim 10, further comprising: a trapping membrane disposed within the collection chamber and configured to absorb at least a portion of the wash liquid captured within the collection chamber,the trapping membrane being configured to neutralize biohazards within the filtered wash liquid captured within the collection chamber. 14. The apparatus of claim 10, further comprising a top plate and a bottom plate, the top plate includes the plurality of sample wells, the bottom plate defines the plurality of reservoirs, the top plate defining a plurality of drain holes, the bottom plate defining a plurality of drain holes each in fluid communication with a drain hole from the plurality of drain holes of the top plate, each drain hole from the plurality of drain holes of the membrane being in fluid communication with a drain hole from the plurality of drain holes of the top plate and a drain hole from the plurality of drain holes of the bottom plate, the plurality of drain holes of the top plate, the plurality of drain holes of the bottom plate and the plurality of drain holes of the membrane each configured to receive therethrough at least a portion of the wash liquid filtered through the membrane prior to being captured within the collection chamber. 15. The apparatus of claim 10, wherein at least a portion of an inner bore of each sample well from the plurality of sample wells is tapered from a top portion to a bottom portion of the sample well such that a test sample received therethrough can be directed to a central recessed portion of a respective reservoir from the plurality of reservoirs.
Kevin S. Bodner ; Alfred P. Madden ; Joseph Jackson ; Jason H. Halsey ; Mark T. Reed ; Ward Frye ; Mark F. Oldham ; Stephen E. Moring ; Jon Hoshizaki, Multi-well microfiltration apparatus.
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