FISH EGG PROCESSING APPARATUS
20200137988 ยท 2020-05-07
Assignee
Inventors
Cpc classification
A01K67/0275
HUMAN NECESSITIES
Y02A40/81
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
C12N15/8509
CHEMISTRY; METALLURGY
International classification
Abstract
There is provided a fish egg processing apparatus capable of performing a predetermined processing on fertilized eggs with higher efficiency. A gene injection device 1 which is a fish egg processing apparatus according to the present invention includes a processing water tank 8 which processes collected fish eggs e and a processing device for injecting a predetermined substance into the fish eggs e positioned in the processing water tank 8, wherein the processing water tank 8 includes: a region prior to processing 81 where the width dimension is set such that a plurality of the fish eggs e are not allowed to lie side by side and form a line in order to house the fish eggs e prior to processing; and a region after processing 82 for housing the fish eggs e on which a predetermined processing has been performed.
Claims
1. A fish egg processing apparatus comprising: a processing water tank for processing collected fish eggs; and a processing device for injecting a predetermined substance into the fish eggs positioned in the processing water tank, wherein the processing water tank includes: a region prior to processing where the width dimension of the region prior to processing is set such that the fish eggs form a line in order to house the fish eggs prior to processing; and a region after processing for housing the fish eggs on which a predetermined processing has been performed.
2. The fish egg processing apparatus according to claim 1, wherein the processing device includes: a placing part capable of mounting the fish eggs; and an introducing pipe having a pipe shape capable of introducing a predetermined substance into the fish eggs mounted on the placing part in a predetermined timing.
3. The fish egg processing apparatus according to claim 2, wherein the placing part has: a disc body having a disk shape; and a housing recess capable of housing the fish egg which is formed in the peripheral part of the disk body at a predetermined pitch.
4. The fish egg processing apparatus according to claim 1 including the region prior to processing in which the fish eggs can be visually recognized from the side via the processing water tank.
5. The fish egg processing apparatus according to claim 2 including the region prior to processing in which the fish eggs can be visually recognized from the side via the processing water tank.
6. The fish egg processing apparatus according to claim 3 including the region prior to processing in which the fish eggs can be visually recognized from the side via the processing water tank.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
MODE FOR CARRYING OUT THE INVENTION
[0027] An embodiment of the present invention is explained below with reference to the drawings.
[0028] A gene injection device 1 which is an example of egg processing system or fish egg processing device according to the present embodiment is used to promptly introduce a predetermined gene into each of fertilized eggs, which are fish eggs e collected from a breeding water tank B. Then, in the fish egg e into which the predetermined gene has been injected, cell division is repeated and a protein derived from the base sequence of the introduced gene is synthesized. Then, the protein is collected, extracted, and purified in appropriate timing and is used for, for example, drug development study and mass production.
[0029] As illustrated in
[0030] Further, according to the present embodiment, a zebrafish egg having substantially a spherical shape with a diameter of approximately 1 mm is used as an example of the fish egg e. It is noted that, since fish is a vertebrate, a protein in the form that can be used for drug development is easily obtained by gene introduction, and in particular, zebrafish is known as the species with which the fish eggs e, which are fertilized eggs, are efficiently obtained from the breeding water tank B.
[0031] The configuration of each part of the gene injection device 1 is described below.
[0032] As illustrated in
[0033] As specifically illustrated in
[0034] The vibration conveying unit 4 is intended to guide the fish eggs e to the processing water tank 8 by applying a predetermined vibration to the second net device 32. The fish eggs e to which the vibration has been applied by the vibration conveying unit 4 are conveyed and introduced into the processing water tank 8 quickly and efficiently.
[0035] Here, as illustrated in
[0036] The processing water tank 8 is intended to process the collected fish egg e, and is provided with the gene injection unit 5 which is a processing device for injecting a predetermined substance into fish eggs e, and the alignment conveying unit 6. Specifically, the processing water tank 8 includes: the region prior to processing 81 where the inner thickness dimension is set such that a plurality of fish eggs e are not allowed to lie side by side in order to house the fish eggs e; and the region after processing 82 for housing the fish eggs e on which predetermined processing has been performed. For further details, the processing water tank 8 has, in a planar view, substantially a T-shape in which the region prior to processing 81 where the inner thickness dimension is set such that a plurality of fish eggs e are not allowed to lie side by side, is continuous to the region after processing 82. Further, according to the present embodiment, at least, in order that the inside of the region prior to processing 81 may be visually recognized, at least, the region prior to processing 81 is made up with a transparent material.
[0037] The alignment conveying unit 6 is intended to line up the fish eggs e in order to allow the fish eggs e that have been introduced into the region prior to processing 81 to be easily processed by the gene injection unit 5. The alignment conveying unit 6 has; an alignment board 61 which is a disk body having a disk shape and disposed with a plurality of recesses 63 which are housing recesses formed in the peripheral part of the disk body at a predetermined pitch; and an alignment pump 62 for ejecting the clean water cw toward the alignment board 61. The clean water cw ejected from the alignment pump 62 allows the fish eggs e that have been introduced into the region prior to processing 81 to be smoothly guided to the alignment board 61, and then, the position of each of the fish eggs e is determined in the recess 63. The alignment board 61 corresponds to a placing part capable of mounting the fish eggs e. Then, according to the present embodiment, as illustrated in
[0038] The gene injection 5 is intended to inject a predetermined gene into each of the fish eggs e conveyed by the alignment conveying unit 6 and includes; a capillary 51 having a substantially needle shape for directly injecting the gene into each of the fish eggs e; a syringe pump 52 for supplying a predetermined amount of gene into the capillary 51; and a positioner 53 for determining the vertical position of the capillary 51 and the syringe pump 52. Then, the capillary 51 corresponds to an introducing pipe having a pipe shape capable of introducing a predetermined substance into the fish eggs e in a predetermined timing.
[0039] In addition, according to the present embodiment, the gene injection device 1 includes a selection and collection unit 7 for efficiently collecting the fish eggs e into which the gene has been injected from the alignment conveying unit 6 to the region after processing 82.
[0040] The selection and collection unit 7 corresponds to a collection device or a collection tank for collecting fish eggs e after processing. The selection and collection unit 7 includes: a collection container 71 which is the collection tank housed in the region after processing 82; a collection pump 72 that is provided in the region prior to processing 81 in the vicinity of the region after processing 82 and intended to eject the clean water cw toward the alignment board 61; an ejecting unit 73 for ejecting the fish eggs e into which the gene was not able to be accurately introduced by the gene injection unit 5 that constitute a processing device out of a processing tank 8; and a guide 75 that is provided such that the lower half of the alignment board 61 is covered in the processing tank 8 and intended to guide the fish eggs e from the region prior to processing 81 to the region after processing 82. Then, the collection container 71 according to the present embodiment is provided with a slit 74 at the part on the region prior to processing 81. Whereby, it is possible that the collection container 71 efficiently introduces the fish eggs e that have moved from the region prior to processing 81 into the collection container 71. Further, according to the present embodiment, a part of the guide 75 forms so as to enter into the collection container 71, whereby, the fish eggs e can be efficiently guided to the collection container 71.
[0041] Here, according to the present embodiment, as illustrated in
[0042] As described above, the gene injection device 1 which is the fish egg processing apparatus according to the present embodiment is characterized by including; the processing tank 8 for processing the fish eggs e collected, and the processing device for injecting a predetermined substance into the fish eggs e positioned in the processing tank 8, wherein the processing tank 8 includes: a region prior to processing 81 where the width dimension set such that a plurality of the fish eggs e are not allowed to lie side by side and form a line in order to house the fish eggs e prior to processing; and a region after processing 82 for housing the fish eggs e on which a predetermined processing has been performed.
[0043] With the configuration, realized is the gene injection device 1 capable of performing a predetermined processing on the fertilized eggs collected and obtained from a predetermined species of fish with higher efficiency.
[0044] As a configuration such that a predetermined processing is more certainly performed on the fish eggs e, according to the present embodiment, applied is the configuration in that the processing device includes, the alignment conveying unit 6 which is a placing part on which the fish eggs e can be mounted; and the capillary 51 which is a introducing pipe having a pipe shape that allows a predetermined substance to be introduced in a predetermined timing into the fish eggs e mounted on the alignment conveying unit 6.
[0045] Further, in order that the fish eggs e may be processed with higher efficiency, according to the present embodiment, the alignment conveying unit 6 is configure to have; the alignment board 61 which is a disk body having a disk shape; and the recess 63 capable of housing the fish egg e which is formed in the peripheral part of the disk body 61 at a predetermined pitch.
[0046] Then, in order that operators may process on the fish eggs e more certainly, according to the present embodiment, in order to configure the processing tank 8 in the region prior to processing 81 capable of being visually recognized from the side, specifically, a material with which the region prior to processing 81 is made up, is configure to be transparent. Accordingly, the inserting depth of the capillary 51 into the fish eggs e, housing condition of the fish eggs e into the recess 63, and also, in many cases, injecting position of the gene for injection prospectively colored or the distribution can be clearly imaged with the camera C from the side. Further, for example, when an image processing method or the like is separately used, a series of these processing is entirely automized easily. Relative position of the capillary 51 to the fish eggs e can be appropriately adjusted. Therefore, this does not only allow to effectively prevent damage due to a wrong operation of the capillary 51, but also contributes to creation of system that allows to effectively improve a production efficiency of a target substance derived from the injected gene due to an accurate operation of the capillary 51.
[0047] In addition, in order that the fish eggs e after processing may be efficiently collected, according to the present embodiment, provided is the collection container 71 which is a collection tank for collecting the fish eggs e on which a predetermined processing has been performed.
[0048] Additionally, in order to further improve quality of the fish eggs e after processing to be collected, according to the present embodiment, provided is the ejecting unit 73 for ejecting the fish eggs e on which a predetermined processing could not been performed by the processing device.
[0049] Although the embodiment of the present invention has been described above, the present invention is not limited to the configuration according to the above-described embodiment. Although the mode for introducing a gene into a fish egg is disclosed in the above embodiment, the mode for injecting different substances from genes, e.g., cells such as human cancer cells, drugs, drug candidate substances, chemical substances such as toxic substances, or food additives such as seasonings or coloring agents into a fish egg is not prevented. In addition, according to the above embodiment, although a zebrafish egg is used as a fish egg, it is obviously possible to use another kind of fish egg. Further, as well as the specific arrangement of individual components, the detailed mode such as specific water flow in the processing water tank or other configurations can be variously modified within the scope of the present invention.
INDUSTRIAL APPLICABILITY
[0050] The present invention is available as a fish egg processing apparatus for performing a predetermined processing mainly on fish eggs.
DESCRIPTION OF REFERENCE NUMERALS
[0051] 1 gene injection device [0052] 2 collected-egg conveying unit [0053] 3 unnecessary-material separating unit [0054] 4 vibration conveying unit [0055] 5 gene injection unit [0056] 6 alignment conveying unit [0057] 7 selection and collection unit [0058] 8 processing water tank [0059] B breeding water tank [0060] e fish egg [0061] cw clean water [0062] w breeding water