1. Field of the Invention
The present invention relates to a method of analyzing a biological component, a biological component analyzer, a reaction cartridge of a biological component analyzer and an extraction cartridge of a biological component analyzer, and more particularly, it relates to a method of analyzing a biological component, a biological component analyzer, a reaction cartridge of a biological component analyzer and an extraction cartridge of a biological component analyzer measuring a biological component extracted from the organism.
2. Description of the Related Art
A biological component analyzer measuring a biological component extracted from the organism is known in general. Such a biological component analyzer is disclosed in U.S. Patent Laying-Open No. 2005-169799, for example.
The biological component analyzer disclosed in U.S. Patent Laying-Open No. 2005-169799 comprises an extraction/reaction chamber holding glucose (biological component) extracted from the cutaneous layer of the arm of a subject and allowing the glucose to cause a prescribed reaction, a detector detecting the extracted glucose, a control part analyzing a detection result of the detector and calculating the blood glucose level and a display displaying the blood glucose level calculated by the control part. The subject measures the blood glucose level by mounting this apparatus on his/her arm.
However, the conventional biological component analyzer disclosed in the aforementioned U.S. Patent Laying-Open No. 2005-169799 is provided with a large number of components such as the extraction/reaction chamber, the detector, the control part and the display, and hence there is such inconvenience that the overall apparatus increases in size and the apparatus increases in weight. Thus, there is such a problem that mounting such a large-size biological component analyzer on his/her arm during all periods of extraction, reaction, detection, analysis and display of glucose is a burden to the subject.
The present invention has been proposed in order to solve the aforementioned problems, and an object of the present invention is to provide a method of analyzing a biological component, a biological component analyzer, a reaction cartridge of a biological component analyzer and an extraction cartridge of a biological component analyzer allowing for reduction in a burden on the subject.
In order to attain the aforementioned object, a method of analyzing a biological component according to a first aspect of the present invention comprises steps of arranging an extraction medium holding device comprising an extraction medium holding part configured to be capable of holding an extraction medium for holding an extract extracted from a subject on the skin of the subject, extracting the extract from the subject to the extraction medium held in the extraction medium holding part, attaching a reaction cartridge comprising a reaction part allowing the extract to cause a prescribed reaction, configured to be detachable on the extraction medium holding part of the extraction medium holding device and to be capable of transferring the extraction medium held in the extraction medium holding part to the reaction part to the extraction medium holding part of the extraction medium holding device arranged on the skin, transferring the extraction medium held in the extraction medium holding part to the reaction part, detecting the extract from the prescribed reaction caused in the reaction part, and analyzing a result of detecting the extract.
In the aforementioned method of analyzing a biological component according to the first aspect, the step of transferring the extraction medium to the reaction part preferably includes a step of transferring the extraction medium through a transfer passage provided in the reaction cartridge for transferring the extraction medium to the reaction part.
In the aforementioned method of analyzing a biological component having the step of transferring the extraction medium through the transfer passage or 2, the step of transferring the extraction medium to the reaction part preferably includes a step of transferring the extraction medium held in the extraction medium holding part to the reaction part through the transfer passage by capillarity.
A biological component analyzer according to a second aspect of the present invention comprises an extraction medium holding device having an extraction medium holding part configured to be capable of holding an extraction medium for holding an extract extracted from a subject, a reaction cartridge including a reaction part allowing the extract to cause a prescribed reaction and a transfer passage for transferring the extraction medium held in the extraction medium holding part to the reaction part, configured to be detachable on the extraction medium holding part of the extraction medium holding device, a detecting part detecting the extract from the prescribed reaction caused in the reaction part, and an analysis part analyzing a result of detecting the extract.
In the aforementioned biological component analyzer according to the second aspect, the transfer passage is preferably configured to transfer the extraction medium held in the extraction medium holding part to the reaction part by capillarity.
In the aforementioned biological component analyzer according to the second aspect, the transfer passage is preferably configured to come into contact with the extraction medium held in the extraction medium holding part when the reaction cartridge is attached to the extraction medium holding part of the extraction medium holding device.
The aforementioned biological component analyzer according to the second aspect is preferably provided with a detecting device including the detecting part and a cartridge holding part detachably holding the reaction cartridge.
In this case, the detecting device preferably includes the analysis part.
The aforementioned biological component analyzer according to the second aspect preferably further comprises transfer monitoring means monitoring that the extraction medium has been transferred from the extraction medium holding part to the reaction part.
In the aforementioned biological component analyzer according to the second aspect, the extraction medium holding device preferably includes an extraction cartridge having the extraction medium holding part and a mounting part detachably holding the extraction cartridge, detachably mounted on an extract extraction position of the subject.
In this case, the extraction cartridge preferably includes a liquid tank storing the extraction medium held in the extraction medium holding part, connected to the extraction medium holding part.
The aforementioned biological component analyzer according to the second aspect, the extraction medium holding device preferably further comprises an extraction promoting part promoting extraction of the extract.
The aforementioned biological component analyzer according to the second aspect, the extract is preferably glucose, and the analysis part preferably analyzes a detection result of the detecting part and acquires a blood glucose level.
A reaction cartridge according to a third aspect of the present invention is detachably attached to a biological component analyzer including an extraction medium holding device comprising an extraction medium holding part configured to be capable of holding an extraction medium for holding an extract extracted from a subject and comprises a reaction part allowing the extract to cause a prescribed reaction and a transfer passage so configured that one end thereof comes into contact with the extraction medium held in the extraction medium holding part and the extraction medium is transferred to the reaction part by capillarity, when attaching the reaction cartridge to the extraction medium holding device.
An extraction cartridge according to a fourth aspect of the present invention is employed in a biological component analyzer analyzing an extract extracted from a subject and comprises an extraction medium holding part holding an extraction medium, a liquid tank storing the extraction medium held in the extraction medium holding part, connected to the extraction medium holding part, and an air vent provided in the extraction medium holding part for moving the extraction medium from the liquid tank to the extraction medium holding part.
An embodiment of the present invention will be hereinafter described with reference to the drawings.
The structure of a blood glucose meter 100 according to the embodiment will be now described with reference to
The blood glucose meter 100 according to the embodiment is an apparatus extracting glucose which is one of biochemical components from an organism and calculating a blood glucose level by analyzing the extracted glucose. This blood glucose meter 100 comprises an extraction medium holding device 101 comprising an extraction unit 1 and an extraction cartridge 50 (see
The device body 10 of the extraction unit 1 includes a detecting unit mounting hole 11 arranged on a front surface side (arrow Z2 direction side in
The extraction cartridge attachment part 13 of the device body 10 includes a pair of rib-shaped projecting parts 13a functioning as guides when attaching the extraction cartridge 50 and four engaging parts 13b for attaching the extraction cartridge 50, as shown in
The four engaging parts 13b of the extraction cartridge attachment part 13 are elastically deformably provided thereby allowing the extraction cartridge 50 to be attached and detached. The engaging pawl 14 of the device body 10 is provided to engage with the engaging hole 20b of the holding member 20 described later when the device body 10 is in a closed state (see
The constant-voltage power supply 16 is connected to a pair of terminals 13c and 13d provided in the extraction cartridge attachment part 13 of the device body 10, as shown in
The holding member 20 is configured to rotatably hold the device body 10 and to be capable of being mounted on the arm 110 of the subject with no space therebetween, as shown in
The device body 10 is attached to the hinge holding part 20a of the holding member 20 to be rotatable in directions A and B (see
According to the embodiment, the extraction cartridge 50 is configured by a cartridge body 51 made of acrylic resin or the like, a tape 52 (see
The pair of extraction medium holding parts 54a and 54b of the cartridge body 51 are provided on a side (an arrow Z1 direction side in
Outer peripheral parts of these extraction medium holding parts 54a and 54b are integrally formed with the cartridge body 51, and parts of the extraction medium holding parts 54a and 54b on the arrow Z2 direction (see
The extraction medium holding parts 54a and 54b may be provided with detecting means (not shown) detecting that the extraction medium has flowed in the extraction medium from the liquid tanks 55a and 55b and confirming that the extraction medium has been held in the extraction medium holding parts 54a and 54b. This detecting means (not shown) can be configured to detect change in the resistance value by applying a minute voltage between the electrodes 53a and 53b.
As shown in
An air vent 53e is formed in a part of the electrode 53b covering a side of the extraction medium holding part 54b in the arrow Z2 direction (see
The liquid tanks 55a and 55b store the extraction medium of pure water supplied to the extraction medium holding parts 54a and 54b, respectively. These liquid tanks 55a and 55b are connected to the extraction medium holding parts 54a and 54b respectively, and inner peripheral surfaces of the liquid tanks 55a and 55b are coated with water-repellent metal. Thus, the extraction medium of pure water can be smoothly supplied to the extraction medium holding parts 54a and 54b. According to the embodiment, the volumes of the liquid tanks 55a and 55b are a little larger than the volumes of the extraction medium holding parts 54a and 54b. Thus, the extraction medium can be derived from the opening 53c formed in the electrode 53a on an upper part of the extraction medium holding part 54a when the extraction medium flows in the extraction medium holding part 54a from the liquid tank 55a. The extraction medium derived from this opening 53c comes into contact with a transfer passage 92 described later, inserted in the vicinity of the opening 53c and is transferred to the detecting unit 60 (sensor member 94) by capillarity of the transfer passage 92.
The tape 52 is attached to cover the first surface (surface on the arrow Z2 direction side in
A negative voltage is applied to the electrode 53a, and a positive voltage is applied to the electrode 53b. Thus, a current flows in the extraction medium held in the extraction medium holding part 54a, the arm 110 of the subject and the extraction medium held in the extraction medium holding part 54b when voltages are applied to the electrodes 53a and 53b in a state where the extraction medium is held in the extraction medium holding parts 54a and 54b. At this time, the speed of extracting glucose from the arm 110 of the subject is increased.
The detecting unit 60 is configured to transfer the extraction medium to which glucose is extracted in the extraction unit 1 and has a function of detecting the glucose from the transferred extraction medium. The detecting unit 60 also has a function of acquiring the blood glucose level of the subject by analyzing a detection result of the glucose.
As shown in
The cartridge holding part 62 is substantially T-shaped to be capable of storing the reaction cartridge 90 and is configured to be capable of projecting the transfer passage 92 of the reaction cartridge 90 in an arrow Z1 direction, as shown in
An engaging hole 61a is provided on a side of the cartridge holding part 62 of the detecting unit body 61 in the arrow Y2 direction, and a pair of hinge parts 61b are provided on a side of the cartridge holding part 62 of the detecting unit body 61 in the arrow Y1 direction. The door member 63 is attached to the pair of hinge parts 61b. Thus, the door member 63 is openable/closable with respect to the cartridge holding part 62. The door member 63 is provided with an engaging pawl 63a being capable of engaging with the engaging hole 61a of the detecting unit body 61 and a release button 63b being capable of releasing engagement of the engaging pawl 63a engaging with the engaging hole 61a and the engaging hole 61a. Thus, the door member 63 can be locked in a closed state with respect to the cartridge holding part 62 and can be easily unlocked.
The display 64 on the side of the detecting unit body 61 in the arrow X1 direction in
According to the embodiment, as shown in
The sensor member 94 has a measurement face 94a performing analysis of glucose in a central part (shaded area in
A pair of the diffraction gratings 97a and 97b are provided on the lower surface side (arrow X2 direction side) of the substrate of the sensor member 94 in the arrow Y1 direction and the arrow Y2 direction, respectively. The diffraction grating 97a is irradiated by the light source 68 (see
The mesh member 95 extends in the arrow Y1 direction and the arrow Y2 direction between the diffraction grating 97a and the diffraction grating 97b and has a T shape diverging to projecting on a side (arrow Z1 direction side) of the transfer passage 92 from a middle part between the diffraction grating 97a and the diffraction grating 97b. A part of this mesh member 95 on the side of the transfer passage 92 and is configured to allow the extraction medium soaked up by the transfer passage 92 to smoothly move to a side of the measurement face 94a. The extraction medium is held substantially equally throughout the mesh member 95 and can be infiltrated into the overall measurement face 94a.
A clearance 98a having a prescribed width is formed between the two-sided tape 96a and the two-sided tape 96c, and a clearance 98b having a prescribed width is formed between the two-sided tape 96b and the two-sided tape 96c, as shown in
According to the embodiment, the transfer passage 92 is attached to the cartridge body 91 of the reaction cartridge 90. The transfer passage 92 is configured by two plates 92a and 92b made of resin and two-sided tapes 99a and 99b for attaching the two plates 92a and 92b to each other, as shown in
According to the embodiment, the control part 66 has a function of monitoring that the extraction medium has been transferred from the extraction medium holding part 54a to the sensor member 94, as shown in
A use procedure of the blood glucose meter 100 according to the embodiment will be now described with reference to
According to the embodiment, at a step S1 in
Next, at a step S3, the extraction cartridge 50 is engaged with the four engaging parts 13b of the extraction unit 1 by the subject, as shown in
Thereafter, at a step S4, glucose is extracted from the arm 110 (micropores 111) of the subject to the extraction medium. More specifically, as shown in
While the glucose is extracted from the arm 110 of the subject for the prescribed time at the aforementioned step S4 or after the glucose is extracted for the prescribed time, the reaction cartridge 90 is attached to the detecting unit 60 at a step S5. Thereafter, at a step S6, the detecting unit 60 to which the reaction cartridge 90 is attached is fitted into the detecting unit mounting hole 11 of the extraction unit 1 by the subject, as shown in
At a step S7, the glucose is detected and the blood glucose level is measured by the control part 66 of the detecting unit 60. At this time, a measurement result of the measured blood glucose level is displayed on the display 64, and measurement by the blood glucose meter 100 is terminated. Operations of the control part 66 of the detecting unit 60 at this step S7 will be described in detail later.
According to the embodiment, at a step S11, the glucose is extracted from the arm 110 (micropores 111) of the subject for the prescribed time in a state where the extraction medium is held in the part surrounded by the arm 110 of the subject and the extraction medium holding parts 54a and 54b, as shown in
Processing operations of the control part 66 when detecting the glucose and measuring the blood glucose level in the detecting unit 60 of the blood glucose meter 100 according to the embodiment will be now described with reference to
According to the embodiment, at a step S21, the control part 66 of the detecting unit 60 determines whether or not the extraction medium has been transferred to the sensor member 94, as shown in
Thereafter, at the step S22, the detection of the glucose starts. More specifically, the control part 66 continuously monitors absorbance when light of the light source 68 is absorbed by a chromogenic dye of the sensor member 94 from time t1 in
According to this embodiment, as hereinabove described, the reaction cartridge 90 including the sensor member 94 allowing glucose to cause a prescribed reaction and the transfer passage 92 for transferring the extraction medium held in the extraction medium holding parts 54a and 54b to the sensor member 94, configured to be detachable on the extraction medium holding parts 54a and 54b of the extraction unit 1 (extraction cartridge 50) is provided, whereby the reaction cartridge 90 can be attached to the extraction medium holding parts 54a and 54b of the extraction unit 1 and the glucose can be transferred from the extraction medium holding parts 54a and 54b to the sensor member 94 through the transfer passage 92 after extracting the glucose by mounting the extraction unit 1 in a state where the reaction cartridge 90 is detached on the arm 110 of the subject, and hence the subject does not have to mount a large-size and heavy apparatus at the time of extraction. Thus, a burden on the subject at the time of extraction can be reduced.
According to this embodiment, as hereinabove described, the transfer passage 92 is configured to transfer the extraction medium held in the extraction medium holding parts 54a and 54b to the sensor member 94 by capillarity, whereby the extraction medium held in the extraction medium holding parts 54a and 54b can be transferred to the sensor member 94 without a drive unit for transferring the extraction medium such as a pump, for example.
According to this embodiment, as hereinabove described, the transfer passage 92 is configured to come into contact with the extraction medium held in the extraction medium holding part 54a when the reaction cartridge 90 (detecting unit 60) is attached to the extraction medium holding part 54a of the extraction unit 1, whereby the extraction medium held in the extraction medium holding part 54a can be easily transferred.
According to this embodiment, as hereinabove described, the detecting unit 60 including the detecting part 69 and the cartridge holding part 62 detachably holding the reaction cartridge 90 is provided, whereby the detecting unit 60 enabling replacement of the reaction cartridge 90 can be obtained.
According to this embodiment, as hereinabove described, the detecting unit 60 is provided with the control part 66 analyzing a detection result, whereby the detecting unit 60 being capable of not only detecting glucose (extract) but also analyzing the detection result can be obtained.
According to this embodiment, as hereinabove described, the control part 66 monitoring that the extraction medium has been transferred from the extraction medium holding part 54a to the sensor member 94 is provided, whereby the control part 66 can be inhibited from performing an operation for analyzing the glucose in the extraction medium before the extraction medium is transferred to the sensor member 94.
According to this embodiment, as hereinabove described, the extraction unit 1 is provided with the holding member 20 and the mounting belt 30 detachably holding the extraction cartridge 50 and detachably mounted on the arm 110 of the subject, whereby the extraction unit 1 can be easily mounted on the arm 110 of the subject.
According to this embodiment, as hereinabove described, the extraction unit 1 is provided with the extraction cartridge 50 having the extraction medium holding parts 54a and 54b and the mounting belt 30 detachably holding the extraction cartridge 50 and detachably mounted on the arm 110 (extract extraction position) of the subject, whereby the extraction cartridge 50 can be exchanged every measurement, and no cleaning of the extraction unit 1 contaminated by the extract is required.
According to this embodiment, as hereinabove described, the extraction cartridge 50 is provided with the liquid tanks 55a and 55b storing the extraction medium held in the extraction medium holding parts 54a and 54b, connected to the extraction medium holding parts 54a and 54b, whereby the extraction medium can be directly supplied from the liquid tanks 55a and 55b provided in the extraction cartridge 50 to the extraction medium holding parts 54a and 54b, and hence the extraction medium can be inhibited from being mixed with impurities as compared with a case where the extraction medium is supplied externally.
According to this embodiment, as hereinabove described, the extraction unit 1 is provided with the terminals 13c and 13d promoting the extraction of the glucose and the extraction cartridge 50 is provided with the electrodes 53a and 53b being in contact with the terminals 13c and 13d, whereby the glucose can be extracted to the extraction medium supplied to the extraction medium holding parts 54a and 54b in less time.
According to this embodiment, as hereinabove described, the control part 66 analyzing the glucose (extract) is configured to analyze a detection result of the detecting part 69 and acquire the blood glucose level, whereby the blood glucose meter 100 being capable of acquiring the blood glucose level based on the detection result of the extracted glucose can be obtained.
According to this embodiment, as hereinabove described, the transfer passage 92 configured to transfer the extraction medium to the sensor member 94 by capillarity is provided, whereby the extraction medium held in the extraction medium holding part 54a can be transferred to the sensor member 94 without a drive unit for transferring the extraction medium such as a pump, for example.
According to this embodiment, as hereinabove described, the extraction medium holding parts 54a and 54b holding the extraction medium and the liquid tanks 55a and 55b storing the extraction medium held in the extraction medium holding parts 54a and 54b, connected to the extraction medium holding parts 54a and 54b are provided, whereby the extraction medium can be directly supplied from the liquid tanks 55a and 55b to the extraction medium holding parts 54a and 54b, and hence the extraction medium can be inhibited from being mixed with impurities as compared with a case where the extraction medium is supplied externally. The extraction medium holding parts 54a and 54b are provided with the air vents 52a and 52b for moving the extraction medium from the liquid tanks 55a and 55b to the extraction medium holding parts 54a and 54b, whereby the extraction medium can be smoothly moved to the extraction medium holding parts 54a and 54b following discharge of air existing in the extraction medium holding parts 54a and 54b from the air vents 52a and 52b.
The embodiment disclosed this time must be considered as illustrative in all points and not restrictive. The range of the present invention is shown not by the above description of the embodiment but by the scope of claims for patent, and all modifications within the meaning and range equivalent to the scope of claims for patent are further included.
For example, while the blood glucose meter has been described as an example of a biological component analyzer in the aforementioned embodiment, the present invention is not restricted to this, but the present invention can also be applied to another biological component analyzer.
While the example of forming the micropores (extraction holes) on the subject's arm by the micropore forming device on the basis of the subject's operation and promoting the extraction of the glucose by applying voltages to the electrodes has been shown in the aforementioned embodiment, the present invention is not restricted to this, but either the aforementioned step of forming the micropores (extraction holes) on the subject's arm or the aforementioned step of promoting the extraction of the glucose by applying voltages to the electrodes may be omitted.
While the example of providing both of the detecting part and the control part in the detecting unit has been shown in the aforementioned embodiment, the present invention is not restricted to this, but the detecting part and the control part may be configured by separate devices. In this case, the detecting unit is preferably provided with a transmitter being capable of transmitting a detection result to the detecting unit via radio waves, and the analyzer is preferably provided with a receiver receiving the detection result.
While the example of the structure allowing the extraction medium to flow in the extraction medium holding part from the liquid tank has been shown in the aforementioned embodiment, the present invention is not restricted to this, but the extraction medium may be previously stored in the extraction medium holding part.
While the example of attaching the reaction cartridge to the detecting unit by arranging the reaction cartridge in the cartridge holding part and covering the cartridge holding part by the door member has been shown in the aforementioned embodiment, the present invention is not restricted to this, but the reaction cartridge may be attached to the detecting unit by providing an engaging part being capable of engaging with the detecting unit and the reaction cartridge and enabling the reaction cartridge to be directly attached to the detecting unit.
While the example of arranging (inserting) the transfer passage in the vicinity of the opening of the electrode provided on the extraction medium holding part and transferring the extraction medium flowing out from the opening to the sensor member has been shown in the aforementioned embodiment, the present invention is not restricted to this, but the extraction medium in the extraction medium holding part may be directly transferred by inserting the transfer passage in the opening not in the vicinity of the opening of the electrode provided on the extraction medium holding part.
Number | Date | Country | Kind |
---|---|---|---|
JP2008-070652 | Mar 2008 | JP | national |
This application is a continuation of PCT/JP2009/054029 filed on Mar. 4, 2009, which claims priority to Japanese Application No. JP2008-070652 filed on Mar. 19, 2008. The entire contents of these applications are incorporated herein by reference.
Number | Date | Country | |
---|---|---|---|
Parent | PCT/JP2009/054029 | Mar 2009 | US |
Child | 12884750 | US |