Patent · US10531657B2 · B2 · US
Low temperature specimen carriers and related methods
- (11) Publication number
- US10531657B2
- (21) Application number
- 15/275,706
- (22) Filing date
- 2016-09-26
- (30) Priority date
- 2015-12-07
- (43) Publication date
- 2020-01-14
- (45) Date of grant
- 2020-01-14
- (51) IPC
- A01N 1/02; B01L 3/00
- (52) CPC
- A01N Preservation of bodies of humans or animals or plants or parts thereof; biocides, e.g. as disinfectants, as pesticides or as herbicides; pest repellants or attractants; plant growth regulators: 1/147, 1/021, 1/0268, 1/0284, 1/122, 1/162
- B01L Chemical or physical laboratory apparatus for general use: 2200/0689, 2300/0832, 2300/1894, 3/50825, 7/50
- (73) Assignee
- CooperSurgical Inc
- (72) Inventors
- Richard I. Farrington; Patrick N. Gutelius; James R. Parys
- (54) Title
- Low temperature specimen carriers and related methods
- (57) Abstract
A specimen carrier includes an elongate member defining an external sealing surface and a support surface upon which a specimen can be carried, the elongate member including a first material having a first coefficient of thermal expansion. The specimen carrier further includes a cap configured to be passed over a portion of the elongate member to close a region of the cap that surrounds the specimen when the cap is passed over the portion of the elongate member, the cap defining an internal sealing surface formed complementary to the external sealing surface, and the cap including a second material having a second coefficient of thermal expansion that is greater than the first coefficient of thermal expansion. When the elongate member and cap are together placed in a cooling substance, the internal sealing surface of the cap compresses the external sealing surface of the elongate member to form a hermetic seal.
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- View on Google Patents
Claims (21)
- A specimen carrier, comprising: an elongate member defining an external sealing surface and a support surface upon which a specimen can be carried, the elongate member defining a flat proximal recess that provides a first tactile feedback to a user of the specimen carrier, and the elongate member comprising a first material having a first coefficient of thermal expansion; and a cap configured to be passed over a portion of the elongate member to close a region of the cap that surrounds the specimen when the cap is passed over the portion of the elongate member, the cap defining an internal sealing surface formed complementary to the external sealing surface, the cap defining a convex distal end that provides a second tactile feedback to the user for tactilely differentiating the elongate member from the cap for appropriate handling of the specimen carrier, and the cap comprising a second material having a second coefficient of thermal expansion that is greater than the first coefficient of thermal expansion, such that when the portion of the elongate member is covered with the cap and the portion of the elongate member and the cap are together placed in a cooling substance, the internal sealing surface of the cap compresses the external sealing surface of the elongate member to form a hermetic seal along an interface formed between the internal sealing surface and the external sealing surface.
- The specimen carrier of claim 1, wherein the cap further defines an internal channel forming the region of the cap that surrounds the specimen when the cap is passed over the portion of the elongate member, the internal sealing surface forming a part of the internal channel.
- The specimen carrier of claim 1, wherein the cap is configured to be passed over the portion of the elongate member in an ambient environment of a first temperature, and the cooling substance is of a second temperature that is lower than the first temperature.
- The specimen carrier of claim 3, wherein the elongate member and the cap are configured such that, at the first temperature, the interface formed between the external and internal sealing surfaces comprises an interference fit.
- The specimen carrier of claim 1, wherein the external and internal sealing surfaces have a frustoconical shape.
- The specimen carrier of claim 1, wherein the first and second coefficients of thermal expansion are independent of a dimensional unit of the first and second materials, respectively.
- The specimen carrier of claim 1, wherein the first material is a transparent or translucent material.
- The specimen carrier of claim 1, wherein the hermetic seal prevents organisms and particulates as small as about 45 nm from entering the region of the cap that surrounds the specimen when the cap is passed over the portion of the elongate member and the portion of the elongate member and the cap are together disposed in the cooling substance.
- The specimen carrier of claim 1, wherein the elongate member comprises a shaft configured for handling of the elongate member.
- The specimen carrier of claim 9, wherein the shaft comprises a plurality of surface facets defining a hexagonal cross-sectional shape that is configured to prevent the elongate member from rolling on a surface.
- The specimen carrier of claim 9, wherein the shaft defines the flat proximal recess that provides the first tactile feedback to the user of the specimen carrier.
- The specimen carrier of claim 1, wherein the cap defines a tapered exterior profile terminating at the convex distal end.
- The specimen carrier of claim 1, wherein the elongate member defines a vertical wall that shields the support surface.
- The specimen carrier of claim 1, wherein the specimen comprises one or more reproductive cells.
- The specimen carrier of claim 1, wherein the cooling substance is a vitrification medium.
- The specimen carrier of claim 1, wherein the cooling substance comprises liquid nitrogen.
- The specimen carrier of claim 1, wherein the cap further comprises a third material surrounding the second material, the third material having a third coefficient of thermal expansion that is greater than the second coefficient of thermal expansion.
- The specimen carrier of claim 17, wherein the second and third materials together provide an aggregate coefficient of thermal expansion that is greater than the second coefficient of thermal expansion and less than the third coefficient of thermal expansion.
- The specimen carrier of claim 1, wherein the specimen carrier is configured to preserve the specimen in a viable state within the cooling substance over a period of at least 40 years.
- The specimen carrier of claim 11, wherein the recess further provides a visual indication that the specimen carrier is oriented correctly while submerged in the cooling sub stance.
- The specimen carrier of claim 11, wherein the recess comprises a textured profile on which information can printed.
Description
This disclosure relates to low temperature specimen carriers and related methods.
Low temperature specimen carriers, such as cryopreservation devices, are used in the field of assisted reproductive technology (ART) to store and preserve living reproductive cells (e.g., oocytes, embryos, and blastocysts). Cryopreservation refers to a process where cells are preserved over extended periods of time by cooling to sub-zero temperatures. For example, a cryopreservation device can house and support cells undergoing vitrification, which is the rapid transition of a substance from a liquid phase to a solid phase (e.g., glass) without the formation of ice crystals.
Vitrifying reproductive cells using a cryopreservation device includes immersing the cells in a vitrification medium and loading the cells, suspended in a volume of the vitrification medium, onto a support member of the cryopreservation device. The support member may then be capped and plunged into a container of cooling medium (e.g., liquid nitrogen), causing the cells loaded thereon to rapidly cool to a glass state before ice crystals can form within the cells. The cryopreservation device can be stored in the cooling medium until the cells are ready to be used in reproductive procedures. At that time, the cells, which have been preserved in a viable state, can be thawed via standard warming protocols in which the cryopreservation device is removed from the cooling medium and the support member is uncapped to provide access to the cells.
Citations (146)
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Record as JSON
{
"publication_number": "US10531657B2",
"country": "US",
"kind": "B2",
"title": "Low temperature specimen carriers and related methods",
"abstract": "A specimen carrier includes an elongate member defining an external sealing surface and a support surface upon which a specimen can be carried, the elongate member including a first material having a first coefficient of thermal expansion. The specimen carrier further includes a cap configured to be passed over a portion of the elongate member to close a region of the cap that surrounds the specimen when the cap is passed over the portion of the elongate member, the cap defining an internal sealing surface formed complementary to the external sealing surface, and the cap including a second material having a second coefficient of thermal expansion that is greater than the first coefficient of thermal expansion. When the elongate member and cap are together placed in a cooling substance, the internal sealing surface of the cap compresses the external sealing surface of the elongate member to form a hermetic seal.",
"claims": [
"1. A specimen carrier, comprising: an elongate member defining an external sealing surface and a support surface upon which a specimen can be carried, the elongate member defining a flat proximal recess that provides a first tactile feedback to a user of the specimen carrier, and the elongate member comprising a first material having a first coefficient of thermal expansion; and a cap configured to be passed over a portion of the elongate member to close a region of the cap that surrounds the specimen when the cap is passed over the portion of the elongate member, the cap defining an internal sealing surface formed complementary to the external sealing surface, the cap defining a convex distal end that provides a second tactile feedback to the user for tactilely differentiating the elongate member from the cap for appropriate handling of the specimen carrier, and the cap comprising a second material having a second coefficient of thermal expansion that is greater than the first coefficient of thermal expansion, such that when the portion of the elongate member is covered with the cap and the portion of the elongate member and the cap are together placed in a cooling substance, the internal sealing surface of the cap compresses the external sealing surface of the elongate member to form a hermetic seal along an interface formed between the internal sealing surface and the external sealing surface.",
"2. The specimen carrier of claim 1, wherein the cap further defines an internal channel forming the region of the cap that surrounds the specimen when the cap is passed over the portion of the elongate member, the internal sealing surface forming a part of the internal channel.",
"3. The specimen carrier of claim 1, wherein the cap is configured to be passed over the portion of the elongate member in an ambient environment of a first temperature, and the cooling substance is of a second temperature that is lower than the first temperature.",
"4. The specimen carrier of claim 3, wherein the elongate member and the cap are configured such that, at the first temperature, the interface formed between the external and internal sealing surfaces comprises an interference fit.",
"5. The specimen carrier of claim 1, wherein the external and internal sealing surfaces have a frustoconical shape.",
"6. The specimen carrier of claim 1, wherein the first and second coefficients of thermal expansion are independent of a dimensional unit of the first and second materials, respectively.",
"7. The specimen carrier of claim 1, wherein the first material is a transparent or translucent material.",
"8. The specimen carrier of claim 1, wherein the hermetic seal prevents organisms and particulates as small as about 45 nm from entering the region of the cap that surrounds the specimen when the cap is passed over the portion of the elongate member and the portion of the elongate member and the cap are together disposed in the cooling substance.",
"9. The specimen carrier of claim 1, wherein the elongate member comprises a shaft configured for handling of the elongate member.",
"10. The specimen carrier of claim 9, wherein the shaft comprises a plurality of surface facets defining a hexagonal cross-sectional shape that is configured to prevent the elongate member from rolling on a surface.",
"11. The specimen carrier of claim 9, wherein the shaft defines the flat proximal recess that provides the first tactile feedback to the user of the specimen carrier.",
"12. The specimen carrier of claim 1, wherein the cap defines a tapered exterior profile terminating at the convex distal end.",
"13. The specimen carrier of claim 1, wherein the elongate member defines a vertical wall that shields the support surface.",
"14. The specimen carrier of claim 1, wherein the specimen comprises one or more reproductive cells.",
"15. The specimen carrier of claim 1, wherein the cooling substance is a vitrification medium.",
"16. The specimen carrier of claim 1, wherein the cooling substance comprises liquid nitrogen.",
"17. The specimen carrier of claim 1, wherein the cap further comprises a third material surrounding the second material, the third material having a third coefficient of thermal expansion that is greater than the second coefficient of thermal expansion.",
"18. The specimen carrier of claim 17, wherein the second and third materials together provide an aggregate coefficient of thermal expansion that is greater than the second coefficient of thermal expansion and less than the third coefficient of thermal expansion.",
"19. The specimen carrier of claim 1, wherein the specimen carrier is configured to preserve the specimen in a viable state within the cooling substance over a period of at least 40 years.",
"20. The specimen carrier of claim 11, wherein the recess further provides a visual indication that the specimen carrier is oriented correctly while submerged in the cooling sub stance.",
"21. The specimen carrier of claim 11, wherein the recess comprises a textured profile on which information can printed."
],
"description_excerpt": "This disclosure relates to low temperature specimen carriers and related methods.\n\nLow temperature specimen carriers, such as cryopreservation devices, are used in the field of assisted reproductive technology (ART) to store and preserve living reproductive cells (e.g., oocytes, embryos, and blastocysts). Cryopreservation refers to a process where cells are preserved over extended periods of time by cooling to sub-zero temperatures. For example, a cryopreservation device can house and support cells undergoing vitrification, which is the rapid transition of a substance from a liquid phase to a solid phase (e.g., glass) without the formation of ice crystals.\n\nVitrifying reproductive cells using a cryopreservation device includes immersing the cells in a vitrification medium and loading the cells, suspended in a volume of the vitrification medium, onto a support member of the cryopreservation device. The support member may then be capped and plunged into a container of cooling medium (e.g., liquid nitrogen), causing the cells loaded thereon to rapidly cool to a glass state before ice crystals can form within the cells. The cryopreservation device can be stored in the cooling medium until the cells are ready to be used in reproductive procedures. At that time, the cells, which have been preserved in a viable state, can be thawed via standard warming protocols in which the cryopreservation device is removed from the cooling medium and the support member is uncapped to provide access to the cells.",
"cpc": [
"A01N 1/147",
"A01N 1/021",
"A01N 1/0268",
"A01N 1/0284",
"A01N 1/122",
"A01N 1/162",
"B01L 2200/0689",
"B01L 2300/0832",
"B01L 2300/1894",
"B01L 3/50825",
"B01L 7/50"
],
"ipc": [
"A01N 1/02",
"B01L 3/00"
],
"assignees": [
"CooperSurgical Inc"
],
"inventors": [
"Richard I. Farrington",
"Patrick N. Gutelius",
"James R. Parys"
],
"filing_date": "2016-09-26",
"publication_date": "2020-01-14",
"grant_date": "2020-01-14",
"priority_date": "2015-12-07",
"application_number": "US-201615275706-A",
"family_id": "57138124",
"cited_by_count": 13,
"citations": [
"US2994349A",
"US3233785A",
"US3212207A",
"US4184483A",
"US4134359A",
"WO1983002386A1",
"EP0085629A1",
"US4515697A",
"US4559298A",
"US4567847A",
"EP0181235A2",
"US4712607A",
"FR2574919A1",
"US4688387A",
"US4877037A",
"EP0364633A1",
"US4707998A",
"US4799358A",
"US4779768A",
"DE3802087A1",
"US4978504A",
"US5078968A",
"US5163441A",
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"US5026342A",
"US4939884A",
"EP0480109A1",
"US5190880A",
"US5283170A",
"WO1991003935A1",
"US5036904A",
"US5358931A",
"US5160312A",
"US5217693A",
"US5334348A",
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"EP0562947A1",
"US5357762A",
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}
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