PREPARATION OF A SAMPLE FOR HIGH PRESSURE FREEZING
20220074834 · 2022-03-10
Inventors
Cpc classification
F25D2400/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C12M41/36
CHEMISTRY; METALLURGY
F25D3/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The present disclosure relates to a device (10) for preparing a microscopic sample (1) for a high-pressure freezing process in which the sample (1) is provided using an arrangement comprising a middle plate (33) of a high-pressure freezing cartridge (30) and an incubation chamber (100, 200), the middle plate (33) being attached to the incubation chamber (100, 200) and being detachable from the incubation chamber (100, 200) by effecting a relative movement between the middle plate (33) and the incubation chamber (100, 200), and the sample (1) being provided on an enclosing element (37) which is fitted into an opening (36) of the middle plate (33), wherein the device (10) comprises an engagement structure (11, 21) adapted to engage with the middle plate (33) and to restrict a movement of the middle plate (33) while the incubation chamber (100, 200) is moved, such as to effect said relative movement between the middle plate (33) and the incubation chamber (100, 200) and to thereby detach the middle plate (33) from the incubation chamber (100, 200). Also, an incubation chamber (100, 200), a middle plate (33) of a high-pressure freezing cartridge (30), an arrangement comprising these components, and a corresponding method are part of the present disclosure.
Claims
1. A device (10) for preparing a microscopic sample (1) for a high-pressure freezing process in which the sample (1) is provided using an arrangement comprising a middle plate (33) of a high-pressure freezing cartridge (30) and an incubation chamber (100, 200), the middle plate (33) being attached to the incubation chamber (100, 200) and being detachable from the incubation chamber (100, 200) by effecting a relative movement between the middle plate (33) and the incubation chamber (100, 200), and the sample (1) being provided on an enclosing element (37) which is fitted into an opening (36) of the middle plate (33), wherein the device (10) comprises an engagement structure (11, 21) adapted to engage with the middle plate (33) and to restrict a movement of the middle plate (33) while the incubation chamber (100, 200) is moved, such as to effect said relative movement between the middle plate (33) and the incubation chamber (100, 200) and to thereby detach the middle plate (33) from the incubation chamber (100, 200).
2. The device (10) according to claim 1, wherein the device (10) is adapted to hold the middle plate (33) detached from the incubation chamber (100, 200) in place at a processing position, and wherein the device (10) comprises a pivoting arm (24) including a receptacle (26) adapted to receive a further enclosing element (38) to be fitted into the opening (36) of the middle plate (33), such as to enclose the sample (1) therein, wherein the pivoting arm (24) is pivotable between a loading position wherein the further enclosing element (38) is insertable into the receptacle (26) of the pivoting arm (24) and an inserting position in which the further enclosing element (38) in the receptacle (26) of the pivoting arm (24) is placed in the opening (36) of the middle plate (33) held in place at the processing position.
3. The device (10) according to claim 1, wherein the middle plate (33) is attached to a lower surface of a bottom (120) of the incubation chamber (100) by at least one of mechanical and magnetic attachment means, wherein the middle plate (33) is detachable from the incubation chamber (100) by effecting said relative movement in the form of at least one of (i) a linear movement of the incubation chamber (100) in a plane corresponding to the lower surface of the bottom (120) of the incubation chamber (100), (ii) a rotational movement of the incubation chamber (100) in the plane corresponding to the lower surface of the bottom (120) of the incubation chamber (100), (iii) a tilting movement of the incubation chamber (100) around an axis parallel to the lower surface of the bottom (120) of the incubation chamber (100), and (iv) a lifting movement of the incubation chamber (100) in a direction at an angle to the lower surface of the bottom (120) of the incubation chamber (100), and wherein the engagement structure (11, 21) is adapted to engage with the middle plate (33) to restrict said at least one of a linear movement, rotational movement, tilting movement, and lifting movement.
4. The device (10) according to claim 3, wherein the middle plate (33) protrudes from the bottom (120) of the incubation chamber (100) when attached to the bottom (120) of the incubation chamber (100), and wherein the engagement structure (11, 21) includes a recess having a shape complementary to at least a part of a shape of the middle plate and is adapted to receive at least a part of the middle plate (33) protruding from the bottom (120) of the incubation chamber (100).
5. The device (20) according to claim 1, wherein a bottom (120) of the incubation chamber (200) comprises an opening having a guiding structure (165) adapted to slidingly receive the middle plate (33), wherein the middle plate (33) is detachable from the incubation chamber (200) by effecting said relative movement in the form of a linear movement defined by said guiding structure (165) and wherein the engagement structure (11, 21) comprises a stop to hold the middle plate (33) in place while effecting said relative movement.
6. The device (10) according to claim 2, wherein the receptacle (26) is adapted to adhesively hold the further enclosing element (38).
7. An incubation chamber (100, 200) adapted to be used in an arrangement comprising the incubation chamber (100, 200) and a middle plate (33) of a high-pressure freezing cartridge (30), the incubation chamber (100, 200) comprising means to attach the middle plate (33) to the incubation chamber (100, 200) such that the middle plate (33) is detachable from the incubation chamber (100, 200) by effecting a relative movement between the middle plate (33) and the incubation chamber (100, 200).
8. A middle plate (33) of a high-pressure freezing cartridge (30) adapted to be used in an arrangement comprising an incubation chamber (100, 200) and the middle plate (33), the middle plate (33) comprising means to attach the middle plate (33) to the incubation chamber (100, 200) such that the middle plate (33) is detachable from the incubation chamber (100, 200) by effecting a relative movement between the middle plate (33) and the incubation chamber (100, 200).
9. An apparatus comprising: an incubation chamber (100, 200); and a middle plate (33) of a high-pressure freezing cartridge (30); wherein one of the incubation chamber (100, 200) and the middle plate (33) comprises attachment means for attaching the middle plate (33) to the incubation chamber (100, 200) such that the middle plate (33) is detachable from the incubation chamber (100, 200) by effecting a relative movement between the middle plate (33) and the incubation chamber (100, 200).
10. A method for preparing a microscopic sample (1) for a high-pressure freezing process, the method comprising: providing an incubation chamber (100, 200); providing a middle plate (33) of a high-pressure freezing cartridge (30), the middle plate (33) being attached to the incubation chamber (100, 200) and being detachable from the incubation chamber (100, 200) by effecting a relative movement between the middle plate (33) and the incubation chamber (100, 200), the middle plate (33) having an opening (36) and an enclosing element (37) fitted into the opening (36); providing a device (10) comprising an engagement structure (11, 21) adapted to engage with the middle plate (33) and to restrict a movement of the middle plate (33) while the incubation chamber (100, 200) is moved; arranging the sample (1) on the enclosing element (37) of the middle plate (33); engaging the engagement structure (11, 21) with the middle plate (33); and effecting said relative movement between the middle plate (33) and the incubation chamber (100, 200), thereby detaching the middle plate (33) from the incubation chamber (100, 200).
11. The method according to claim 10, wherein said device (10) is adapted to hold the middle plate (33) detached from the incubation chamber (100, 200) in place at a processing position, and wherein the device (10) comprises a pivoting arm (24) with a receptacle (26) adapted to receive a further enclosing element (38) to be fitted into the opening (36) of the middle plate (33), such as to enclose the sample (1), wherein the pivoting arm (24) is pivotable between a loading position wherein the further enclosing element (38) is insertable into the receptacle (26) of the pivoting arm (24) and an inserting position wherein the further enclosing element (38) inserted in the receptacle (26) of the pivoting arm (24) is placeable in the opening (36) of the middle plate (33) held in place at the processing position, and wherein said method further comprises holding the middle plate (33) detached from the incubation chamber (100, 200) in place at the processing position and inserting the further enclosing element (38) using the pivoting arm (24) of the device (10).
12. The method according to claim 10, wherein the sample (1) is living matter, and the method further comprises exposing the sample (1) to defined environmental conditions provided in the incubation chamber (100, 200).
Description
BRIEF DESCRIPTION OF THE DRAWING VIEWS
[0052] Further features of the present disclosure will be described in connection with the appended drawings in which embodiments of the disclosure are described vis-à-vis the prior art. Be it noted that specific features of the embodiments described in connection with the drawings and described above can be used in any combination and/or isolatedly without leaving the scope of the disclosure.
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[0061] In the Figures, like elements are indicated with identical reference numerals. Repeated explanations thereof are omitted for reasons of conciseness only.
DETAILED DESCRIPTION
[0062]
[0063]
[0064] The cartridge 30 comprises two holding elements 31, 32, each essentially of a half cylindrical shape. A middle plate 33 is arranged between the holding elements 31, 32 of the cartridge 30. The holding elements 31, 32 provide refrigerant channels 34 therebetween, the refrigerant channels 34 being formed by grooves along the longitudinal direction on the inner flat surfaces of the holding elements 31, 32. Through the refrigerant channels 34, a cryogenic refrigerant can be passed to a sample received or contained in the middle plate 33 in an opening 36 forming a sample space, essentially along the longitudinal axis of the cartridge 30 and in the direction of the dotted arrow 35 as illustrated in
[0065]
[0066] Further details and variants of a cartridge 30 and its middle plate 33 are described in the prior art mentioned. Again, it should be understood that the present disclosure is not limited to the specific configuration of the cartridge 30 and the middle plate 33. The entire cartridge 30 is dimensioned in such a way that the high pressures (e.g. above 2,000 bar) required for high pressure freezing can be built up and be maintained within a period of preferably 200 to 500 ms, whereby rapid freezing of sample 1 is achieved within this time interval.
[0067]
[0068] The elements of the incubation chamber 100 shown in
[0069] Also here, for assembling the incubation chamber 100 shown in
[0070] A middle plate 33, e.g. as previously explained in connection with
[0071]
[0072] In the incubation chamber 200 shown in
[0073]
[0074] In general, as the middle plate 33 protrudes from the bottom 120 of the incubation chamber 100 when attached thereto, an engagement structure 11 may be provided as a recess with a shape complementary to at least a part of a shape of the middle plate which is adapted to receive at least a part of the middle plate 33 protruding from the bottom 120 of the incubation chamber 100. In the specific embodiment shown, in order to restrict a tilting movement, the engagement structure 11 is provided as a structure with an undercut into which a corresponding protrusion 13 provided at the middle plate 33 may be inserted, such that when tilting the incubation chamber 100 while maintaining the protrusion 13 of the middle plate 33 inserted into the undercut, as indicated with a white arrow in
[0075]
[0076] Also here, in general, as the middle plate 33 protrudes from the bottom 120 of the incubation chamber 100 when attached thereto, an engagement structure 11 may be provided as a recess with a shape complementary to at least a part of a shape of the middle plate which is adapted to receive at least a part of the middle plate 33 protruding from the bottom 120 of the incubation chamber 100.
[0077] A lifting movement may specifically be restricted by providing a parallel set of guiding elements with undercuts as the engagement structure 11, e.g. in the form of a dovetail guide, which are adapted to slidingly receive complementary structures provided at the middle plate in the form of protrusions 13 in an insertion direction which is, in the illustration of
[0078] In
[0079]
[0080] The incubation chamber is, in contrast to
[0081] As in the incubation chamber 200 the bottom 120 comprises an opening 160 with a guiding structure 165 adapted to slidingly receive the middle plate 33, and as the middle plate 33 is detachable from the incubation chamber 200 by effecting a movement in the form of a linear movement defined by said guiding structure 165, the engagement structure 21 may be provided as a stop to hold the middle plate 33 in place while effecting said movement. In order to guide the incubation chamber 200 in this movement, a rail structure 12 may be provided in the manner shown or in a similar design.
[0082]
[0083] As shown in