BIO KIT FOR EXTRACTING BODILY FLUIDS CONTAINING STEM CELLS
20220313891 · 2022-10-06
Inventors
Cpc classification
B01L2200/12
PERFORMING OPERATIONS; TRANSPORTING
A61M1/3693
HUMAN NECESSITIES
B01L2300/048
PERFORMING OPERATIONS; TRANSPORTING
B01L3/5021
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present invention may include an upper cap having an opening/closing member for opening and closing an inlet through which a blood is injected; a main body housing having an open upper end outer surface thereof assembled with the upper cap, and having an inner space in which the blood is filled with; an adjustment housing that is coupled to the main body housing to seal the open lower end of the main body housing, and is movably assembled with respect to the main body housing so that a buffy coat layer is positioned on a neck portion; and a side cap fixed to the neck portion by forming a needle hole through which an end of an injection needle for extraction enters and exits in area corresponding to a sealing member to seal an extraction hole formed through the neck portion.
Claims
1. A bio kit for extracting bodily fluids containing stem cells in a kit for extracting a buffy coat separated into a layer, after centrifugation of blood in a centrifuge to separate into a red blood cell layer, a buffy coat layer and a plasma layer and comprising: an upper cap having an opening/closing member for opening and closing an inlet through which the blood is injected; a main body housing having an open upper end outer surface thereof assembled with the upper cap, having a neck portion of a certain length having an inner diameter smaller than an inner diameter of the open upper end in the middle of the length, and having an inner space in which the blood is filled with a certain amount; an adjustment housing that is coupled to the main body housing to seal the open lower end of the main body housing, and is movably assembled with respect to the main body housing so that the buffy coat layer is positioned on the neck portion; and a side cap fixed to the neck portion by forming a needle hole through which an end of an injection needle for extraction enters and exits in area corresponding to a sealing member to seal an extraction hole formed through the neck portion.
2. The bio kit for extracting bodily fluids containing stem cells of claim 1, wherein the opening/closing member comprises a first opening/closing member having an external tube body that forms on the inner surface a female threaded portion screwed with a male threaded portion formed on the inlet extending from the upper cap to a predetermined height, and having an inner tube body correspondingly inserted into the inner hole of the inlet; and a second opening/closing member that have a membrane member covering a central hole formed through to communicate with the inner hole of the inner tube body, and that is inserted and placed in a placement portion recessed in the first opening/closing member.
3. The bio kit for extracting bodily fluids containing stem cells of claim 2, wherein the membrane member is provided as a plate-shaped filter member that allows gas inside the main body housing to permeate and does not allow the blood inside the main body housing to permeate.
4. The bio kit for extracting bodily fluids containing stem cells of claim 1, wherein the inner surface of the side cap is fixedly coupled by an ultrasonic welding method with the upper end of a hollow extension tube, which extends outward by a predetermined length from the neck portion formed through the extraction hole and on which the sealing member is press-fitted.
5. The bio kit for extracting bodily fluids containing stem cells of claim 1, further comprising a bucket housing coupled to the adjustment housing by forming a guided groove corresponding to a guide groove formed in the longitudinal direction on the lower end outer surface of the adjustment housing on the inner surface in the longitudinal direction.
6. The bio kit for extracting bodily fluids containing stem cells of claim 2, further comprising a bucket housing coupled to the adjustment housing by forming a guided groove corresponding to a guide groove formed in the longitudinal direction on the lower end outer surface of the adjustment housing on the inner surface in the longitudinal direction.
7. The bio kit for extracting bodily fluids containing stem cells of claim 3, further comprising a bucket housing coupled to the adjustment housing by forming a guided groove corresponding to a guide groove formed in the longitudinal direction on the lower end outer surface of the adjustment housing on the inner surface in the longitudinal direction.
8. The bio kit for extracting bodily fluids containing stem cells of claim 4, further comprising a bucket housing coupled to the adjustment housing by forming a guided groove corresponding to a guide groove formed in the longitudinal direction on the lower end outer surface of the adjustment housing on the inner surface in the longitudinal direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0028] The above and other aspects, features, and advantages of the present invention will become more apparent to those of ordinary skill in the art by describing embodiments thereof in detail with reference to the accompanying drawings, in which:
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0037] Hereinafter, exemplary embodiments of the present invention will be described in detail so that those of ordinary skill in the art can readily implement the present invention with reference to the accompanying drawings. The present invention may be embodied in many different forms and is not limited to the embodiments set forth herein. In the drawings, parts unrelated to the description are omitted for clarity. Throughout the specification, like reference numerals denote like elements.
[0038] Terms and words used in the present specification and claims should not be construed as limited to their usual or dictionary definition, and they should be interpreted as a meaning and concept consistent with the technical idea of the present invention based on the principle that inventors may appropriately define the terms and concept in order to describe their own invention in the best way.
[0039] Accordingly, the embodiments described in the present specification and the configurations shown in the drawings correspond to preferred embodiments of the present invention, and do not represent all the technical spirit of the present invention, so the configurations may have various examples of equivalent and modification that can replace them at the time of filing the present invention.
[0040] It is understood that the terms “comprise” or “have” when used in this specification, are intended to describe the presence of stated features, integers, steps, operations, elements, components and/or a combination thereof but not preclude the possibility of the presence or addition of one or more other features, integers, steps, operations, elements, components, or a combination thereof.
[0041] The presence of an element in/on “front”, “rear”, “upper or above or top” or “lower or below or bottom” of another element includes not only being disposed in/on “front”, “rear”, “upper or above or top” or “lower or below or bottom” directly in contact with other elements, but also cases in which another element being disposed in the middle, unless otherwise specified. In addition, unless otherwise specified, that an element is “connected” to another element includes not only direct connection to each other but also indirect connection to each other.
[0042] Hereinafter, a bio kit for extracting bodily fluids containing stem cells according to an embodiment of the present invention will be described in detail with reference to the drawings.
[0043] As shown in
[0044] As shown in
[0045] An outer rim of the upper cap 10 may have an outer extension 13 formed on an inner surface of a female threaded portion screwed with a male threaded portion formed on an outer surface of the open upper end of the main body housing 20, and an inner extension 13a that is press-fitted to the inner surface of the open upper end of the main body housing 20 may be provided inside the outer extension.
[0046] Between the outer extension 13 and the inner extension 13a, a ring-shaped sealing member 13b may be provided for sealing the coupling portion between the upper cap 10 and the main body housing 20 to prevent blood from flowing out during centrifugation when the upper cap and the main body housing are coupled.
[0047] And, as shown in
[0048] The opening/closing member 15 may include a first opening/closing member 16 having an external tube body 16a that forms on the inner surface a female threaded portion screwed with a male threaded portion formed on the outer surface of the inlet 11 extending from the upper surface of the upper cap 10 to a predetermined height, and having an inner tube body 16b correspondingly inserted into the inner hole of the inlet 11 so that the outer surface is in close contact with the inner hole; and may include a second opening/closing member 17 that have a membrane member 17b covering and closing a central hole 17a formed through to communicate with the inner hole of the inner tube body, and that is inserted, placed and fixed in a placement portion 16c recessed in the upper surface of the first opening/closing member.
[0049] In this case, the membrane member 17b may be made of a plate-shaped filter member that allows gas such as air to permeate and liquid such as blood not to permeate, thereby blocking the external outflow of blood injected into the inner space of the main body housing when the blood is centrifuged, while discharging the air remaining inside the main body housing to the outside to prevent the internal pressure of the main body housing from rising more than necessary.
[0050] Accordingly, as shown in
[0051] As shown in
[0052] The main body housing 20 may have a neck portion 21 having an inner diameter smaller than the inner diameter of the open upper end coupled to the upper cap 10 in the middle of the length, and have a side cap 40 coupled to the neck portion 21 so that the buffy coat layer S2 separated into a layer can be selectively separated and extracted.
[0053] The main body housing 20 may include an upper hollow tube 22 having a cross-section in which the inner diameter gradually increases from the upper end of the hollow cylindrical neck portion 21 having a constant inner diameter toward the open upper end coupled to the upper cap 10 to form an inclined inner surface, and may include a lower hollow tube 23 extending a certain length downward from the lower end of the neck portion 21 and having a male threaded portion for adjustment 24 formed on the outer surface so as to be screwed with the adjustment housing 30.
[0054] The lower hollow tube 23 preferably has an O-ring groove 25 in which at least one O-ring member 26 is disposed to be closed while sliding in contact with the inner surface of the adjustment housing 30 on the lower end outer surface corresponding to the inner surface of the adjustment housing.
[0055] Accordingly, as shown in
[0056] As shown in
[0057] The adjustment housing 30 may be assembled to be movable up and down by having a female threaded portion for adjustment 34 on the upper outer surface so that it can be screwed with the male threaded portion for adjustment 24 formed on the lower hollow tube 23 of the main body housing 20 so that after centrifugation of blood, the buffy coat layer S2 separated into a layer can be properly positioned in the neck portion 21 corresponding to the side cap 40.
[0058] Accordingly, as shown in
[0059] As shown in
[0060] As shown in
[0061] In this case, the sealing member 44 is preferably made of a rubber material so that the injection needle for extraction that enters through the needle hole 42 of the side cap is elastically press-fitted while penetrating into the inside of the neck portion 21 to prevent the outflow of blood.
[0062] Accordingly, as the blood separated into the red blood cell layer S1, the buffy coat layer S2 and the plasma layer S3 injected into the inner space of the main body housing 20 after centrifugation in the centrifuge is adjusted up and down by the rotation operation of the adjustment housing, the buffy coat layer S2, which is an intermediate layer, corresponds to the side cap 40 of the neck portion 21 in one-to-one correspondence with each other.
[0063] In this state, as shown in
[0064] Then, after the separation extraction of the buffy coat layer S2 using the injection needle for extraction N2 is completed, even though the injection needle for extraction is pulled out and separated from the sealing member 44, the area through which the injection needle for extraction has penetrated is restored to its original state and resealed by the elastic restoring force of the sealing member 44 made of rubber material, thus following separation and extraction of the buffy coat layer S2, the red blood cell layer S1 or the plasma layer S3 remaining in the main body housing 20 can be prevented from flowing out.
[0065] Meanwhile, as shown in
[0066] The bucket housing 50 may be coupled to the adjustment housing so that, when the main body housing is accommodated inside, the open upper inner rim of the bucket housing is in contact with the outer surface of the upper housing of the main body housing.
[0067] The bucket housing 50 may have a ring-shaped latching jaw 54 formed protruding to be hooked and connected to a latching groove of a rotating body rotating at high speed by the rotational driving force of a motor member in a centrifuge.
[0068] Accordingly, after a kit 100 in which blood to be centrifuged is injected into the main body housing is inserted into the bucket housing correspondingly, in the centrifugation process, as the rotating body of the centrifuge rotates at high speed, the kit is rotated at high speed while accommodating the kit inside so that the blood is centrifuged.
[0069] And, as shown in
[0070] That is, when the operator rotates the body housing 20 in a screw method with respect to the bucket housing in the forward or reverse direction while holding the bucket housing, as the guided groove 52 of the bucket housing 50 and the guide groove 32 are assembled and the adjustment housing 30 disposed inside the bucket housing is relatively moved in the longitudinal direction in proportion to the amount of rotation, the adjustment housing can reduce or expand the volume of the centrifugal separation space formed by the upper cap 10, the main body housing 20 and the adjustment housing 30, and thus can adjust and position properly the buffy coat layer S2 separated into an intermediate layer to correspond to the side cap 40 provided in the neck portion 21 having a constant inner diameter.
[0071] Although exemplary embodiments of the present invention have been described, the spirit of the present invention is not limited to the embodiments set forth herein. Those of ordinary skill in the art who understand the spirit of the present invention may easily propose other embodiments through supplement, change, removal, addition, etc. of elements within the same spirit, but the embodiments will be also within the scope of the present invention.
DESCRIPTION OF SYMBOLS
[0072] 10: upper cap [0073] 11: inlet [0074] 15: opening/closing member [0075] 16: first opening/closing member [0076] 17: second opening/closing member [0077] 20: main body housing [0078] 21: neck portion [0079] 22: upper hollow tube [0080] 23: lower hollow tube [0081] 24: male threaded portion for adjustment [0082] 30: adjustment housing [0083] 32: guide groove [0084] 34: female threaded portion for adjustment [0085] 40: side cap [0086] 42: needle hole [0087] 44: sealing member [0088] 50: bucket housing [0089] S1: red blood cell layer [0090] S2: buffy coat layer [0091] S3: plasma layer [0092] N1: injection needle for injection [0093] N2: injection needle for extraction