TWI571238B - Noninvasive metabolites sensor - Google Patents

Noninvasive metabolites sensor Download PDF

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TWI571238B
TWI571238B TW104101540A TW104101540A TWI571238B TW I571238 B TWI571238 B TW I571238B TW 104101540 A TW104101540 A TW 104101540A TW 104101540 A TW104101540 A TW 104101540A TW I571238 B TWI571238 B TW I571238B
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metabolite
detection device
invasive
current
electrode group
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TW104101540A
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TW201626933A (en
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黃素華
程德勝
張清濠
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亞洲大學
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非侵入式代謝產物偵測裝置 Non-invasive metabolite detection device

本發明是有關於一種非侵入式代謝產物偵測裝置,特別是有關於以電極貼片產生的電位差,使代謝產物反向透入並抽出皮膚表面,再進行代謝產物的後續檢測,以達到非侵入式偵測之目的。 The invention relates to a non-invasive metabolite detection device, in particular to a potential difference generated by an electrode patch, which allows a metabolite to be reversely penetrated and extracted from the surface of the skin, and then subjected to subsequent detection of the metabolite to achieve non- The purpose of intrusive detection.

生化檢驗是在臨床的疾病防治中,以及在醫學科學研究中都占有重要地位。隨著醫學科學的發展,生化檢驗的指標日益增多,其品質和費用問題越來越受到人們的關注。在生技產業的市場中,體外檢驗試劑的市場產值僅低於製藥業,但卻沒有製藥業的高風險與需要長時間投入,目前全球每年約維持著三百億美元的檢驗試劑市場,由此可知研發體外檢驗是值得開發。 Biochemical tests are important in clinical disease prevention and in medical science research. With the development of medical science, the indicators of biochemical tests are increasing, and the quality and cost issues are getting more and more attention. In the biotechnology industry, the market value of in vitro test reagents is only lower than that of the pharmaceutical industry, but there is no high risk and long-term investment in the pharmaceutical industry. At present, the global market for test reagents is maintained at about 30 billion US dollars per year. It is known that research and development in vitro testing is worth developing.

為了要精確的檢測出人體代謝產物,常以侵入式的方式進行採血,之後將血液導入並與酵素反應,以取得對應之代謝產物的訊號,再以電化學或光學偵測之。但是侵入式(扎針)的過程中造成疼痛問題,常使病人產生恐懼,進而產生抗拒的心理,產生的傷口亦有可能造成感染。 In order to accurately detect human metabolites, blood is often taken in an invasive manner, and then the blood is introduced and reacted with the enzyme to obtain a signal of the corresponding metabolite, which is then detected electrochemically or optically. However, the intrusive (needle-needle) process causes pain problems, often causing fear to the patient, which in turn creates a resistance, and the resulting wound may also cause infection.

目前,市面上亦有他種非侵入式的偵測方式,例如採用代謝熱整合法、光子晶體技術和GlucoWatch® G2 Biographer,然而非侵入式偵測意味並 非直接為欲偵測的代謝產物,因此需同時考量檢測方式是否具有代表性。因此,有必要提出一種發展他種非侵入式代謝產物偵測裝置,以解決侵入性因採血方式造成的問題、並提升檢測方式的精準度。 At present, there are also non-invasive detection methods on the market, such as metabolic thermal integration, photonic crystal technology and GlucoWatch® G2 Biographer. However, non-invasive detection means It is not directly a metabolite to be detected, so it is necessary to consider whether the detection method is representative. Therefore, it is necessary to develop a non-invasive metabolite detection device to solve the problems caused by the invasive method of blood collection and improve the accuracy of the detection method.

有鑑於上述習知技術之問題,本發明之目的就是在提供一種非侵入式代謝產物偵測裝置,並改善偵測的精準度之問題。 In view of the above problems of the prior art, the object of the present invention is to provide a non-invasive metabolite detection device and to improve the accuracy of detection.

基於上述目的,本發明係提供一種非侵入式代謝產物偵測裝置,其可包含取樣模組以及偵測模組。取樣模組可包含水凝膠貼片、電極組以及供電單元。水凝膠貼片,可貼附於受測者的皮膚上。電極組之一端可分別接觸水凝膠貼片以傳遞電流。供電單元可電性連接電極組之另一端並控制流經電極組之電流波型,以使貼附於皮膚部位之皮下組織液中的代謝產物被電極組吸引,進而自皮下組織液抽取代謝產物,並停留於水凝膠貼片中。偵測模組可包含至少一反應單元以及至少一反應單元,至少一反應單元設置於水凝膠貼片的周圍,並與代謝產物作用產生反應結果。感測單元係對應設置於至少一反應單元的周圍,以感測反應結果並產生對應的生理數值。 Based on the above objects, the present invention provides a non-invasive metabolite detection device, which can include a sampling module and a detection module. The sampling module can include a hydrogel patch, an electrode set, and a power supply unit. A hydrogel patch that attaches to the skin of the subject. One end of the electrode set can contact the hydrogel patch to transfer current. The power supply unit can electrically connect the other end of the electrode group and control the current wave pattern flowing through the electrode group, so that the metabolites in the subcutaneous tissue fluid attached to the skin site are attracted by the electrode group, thereby extracting metabolites from the subcutaneous tissue fluid, and Stay in the hydrogel patch. The detection module may comprise at least one reaction unit and at least one reaction unit, and at least one reaction unit is disposed around the hydrogel patch and reacts with the metabolite to produce a reaction result. The sensing unit is disposed correspondingly around the at least one reaction unit to sense the reaction result and generate a corresponding physiological value.

較佳地,至少一反應單元可為固定化酵素反應單元。 Preferably, at least one of the reaction units may be an immobilized enzyme reaction unit.

較佳地,至少一感測單元可為光學感測單元或電化學感測單元。 Preferably, the at least one sensing unit may be an optical sensing unit or an electrochemical sensing unit.

較佳地,代謝產物包含葡萄糖、乳糖、尿素或其組合。 Preferably, the metabolite comprises glucose, lactose, urea or a combination thereof.

較佳地,供電單元提供給電極組之電流密度係介於0.1mA/cm2至0.5mA/cm2Preferably, the current density provided by the power supply unit to the electrode group is between 0.1 mA/cm 2 and 0.5 mA/cm 2 .

較佳地,電流波型包含直流電流、脈衝電流、兩極電流、脈衝兩 極電流或其組合。 Preferably, the current waveform includes a direct current, a pulse current, a two-pole current, and a pulse two. Extreme current or a combination thereof.

較佳地,偵測模組包含無線傳輸元件電性連接至少一感測單元,以傳送生理數值至監控模組,以監控生理數值。 Preferably, the detecting module comprises a wireless transmission component electrically connected to the at least one sensing unit to transmit the physiological value to the monitoring module to monitor the physiological value.

較佳地,本發明之非侵入式代謝產物偵測裝置更包含攜帶式配戴模組以使水凝膠貼片貼附皮膚上。 Preferably, the non-invasive metabolite detection device of the present invention further comprises a portable wearing module for attaching the hydrogel patch to the skin.

承上所述,本發明之非侵入式代謝產物偵測裝置,係有以下好處: As described above, the non-invasive metabolite detection device of the present invention has the following advantages:

(一)本發明之非侵入式代謝產物偵測裝置,雖為非侵入式取樣,但仍可抽取代謝產物(組織液),進而提升檢驗的準確度。 (1) The non-invasive metabolite detection device of the present invention, although non-invasive sampling, can still extract metabolites (tissue fluid), thereby improving the accuracy of the test.

(二)使用本發明之非侵入式抽取代謝產物之檢測晶片,能可靠性的偵測低血糖和高血糖的生理數值。 (2) Using the non-invasive detection product of the metabolite of the present invention, the physiological value of hypoglycemia and hyperglycemia can be reliably detected.

為了讓上述目的、技術特徵以及實際實施後之增益性更為明顯易懂,於下文中將係以較佳之實施範例輔佐對應相關之圖式來進行更詳細之說明。 In order to make the above-mentioned objects, technical features, and gains after actual implementation more obvious, a more detailed description will be given below with reference to the corresponding drawings in the preferred embodiments.

100‧‧‧非侵入式代謝產物偵測裝置 100‧‧‧ Non-invasive metabolite detection device

10‧‧‧取樣模組 10‧‧‧Sampling module

11‧‧‧水凝膠貼片 11‧‧‧Hydrogel patch

12‧‧‧電極組 12‧‧‧Electrode group

121‧‧‧金屬導體 121‧‧‧Metal conductor

122‧‧‧絕緣體 122‧‧‧Insulator

123‧‧‧反向透入供電電極 123‧‧‧Reverse penetration power supply electrode

124‧‧‧參考電極 124‧‧‧ reference electrode

125‧‧‧工作電極 125‧‧‧Working electrode

126‧‧‧輔助電極 126‧‧‧Auxiliary electrode

13‧‧‧供電單元 13‧‧‧Power supply unit

20‧‧‧偵測模組 20‧‧‧Detection module

21‧‧‧反應單元 21‧‧‧Reaction unit

25‧‧‧感測單元 25‧‧‧Sensing unit

50‧‧‧無線傳輸元件 50‧‧‧Wireless transmission components

60‧‧‧監控模組 60‧‧‧Monitoring module

200‧‧‧皮膚 200‧‧‧ skin

110‧‧‧皮下組織液 110‧‧‧Subcutaneous tissue fluid

120‧‧‧代謝產物 120‧‧‧ Metabolites

第1圖係為本發明之非侵入式代謝產物之反向透入法取樣示意圖。 Figure 1 is a schematic representation of the reverse osmosis sampling of the non-invasive metabolites of the present invention.

第2圖係為本發明之非侵入式代謝產物偵測裝置之方塊圖。 Figure 2 is a block diagram of the non-invasive metabolite detection device of the present invention.

第3圖係為本發明之非侵入式代謝產物偵測裝置之檢測晶片示意圖。 Figure 3 is a schematic diagram of the detection wafer of the non-invasive metabolite detection device of the present invention.

第4圖係為本發明之非侵入式代謝產物偵測裝置之偵測葡萄糖訊號的時間對電流之曲線圖。 Figure 4 is a graph showing the time versus current of the glucose signal detected by the non-invasive metabolite detection device of the present invention.

第5圖係為本發明之非侵入式代謝產物偵測裝置之偵測葡萄糖濃度的電流響應圖。 Figure 5 is a graph showing the current response of the non-invasive metabolite detection device of the present invention for detecting glucose concentration.

第6圖係為本發明之非侵入式代謝產物偵測裝置之偵測滲透器內的葡萄糖濃度的電流響應圖。 Figure 6 is a graph showing the current response of the non-invasive metabolite detection device of the present invention for detecting the glucose concentration in the permeator.

為利 貴審查員瞭解本發明之發明特徵、內容與優點及其所能達成之功效,茲將本發明配合附圖,並以實施例之表達形式詳細說明如下,而其中所使用之圖式,其主旨僅為示意及輔助說明書之用,未必為本發明實施後之真實比例與精準配置,故不應就所附之圖式的比例與配置關係解讀、侷限本發明於實際實施上的權利範圍。 The present invention will be described in conjunction with the accompanying drawings in the accompanying drawings, and the drawings The subject matter is only for the purpose of illustration and description. It is not intended to be a true proportion and precise configuration after the implementation of the present invention. Therefore, the scope of the present invention should not be construed as limiting the scope of the present invention.

本發明之優點、特徵以及達到之技術方法將參照例示性實施例及所附圖式進行更詳細地描述而更容易理解,且本發明或可以不同形式來實現,故不應被理解僅限於此處所陳述的實施例,相反地,對所屬技術領域具有通常知識者而言,所提供的實施例將使本揭露更加透徹與全面且完整地傳達本發明的範疇,且本發明將僅為所附加的申請專利範圍所定義。 The advantages and features of the present invention, as well as the technical methods of the present invention, are described in more detail with reference to the exemplary embodiments and the accompanying drawings, and the present invention may be implemented in various forms and should not be construed as limited thereby. The embodiments of the present invention, and the embodiments of the present invention are intended to provide a more complete and complete and complete disclosure of the scope of the present invention, and The scope of the patent application is defined.

請參閱第1圖,其係為本發明之非侵入式代謝產物之反向透入法取樣示意圖。反向透入法是透過水凝膠貼片11與電極組12形成的電極貼片,並由供電單元13產生低電流通過皮膚200,將皮膚200下代謝產物120導向正或負極,其原理是根據同電相斥、異電相吸。當代謝產物120是負電時(例如尿素),會被帶正電的電極貼片所吸引,而不帶電(例如葡萄糖)則會被電滲流帶到負電的 電極貼片,進而從皮膚200底下抽取皮下組織液110中的代謝產物120,再以與酵素反應之後,取得對應的生理數值。 Please refer to Fig. 1, which is a schematic diagram of the reverse osmosis sampling method of the non-invasive metabolite of the present invention. The reverse penetration method is an electrode patch formed by the hydrogel patch 11 and the electrode group 12, and the low current is generated by the power supply unit 13 through the skin 200, and the metabolite 120 of the skin 200 is directed to the positive or negative electrode. The principle is According to the same electric repellent, different electric attraction. When the metabolite 120 is negatively charged (eg, urea), it is attracted to the positively charged electrode patch, while the uncharged (eg, glucose) is carried by the electroosmotic flow to the negatively charged The electrode patch is further used to extract the metabolite 120 in the subcutaneous tissue fluid 110 from the bottom of the skin 200, and then react with the enzyme to obtain a corresponding physiological value.

請參閱同時參閱第1圖及第2圖,其係為本發明之非侵入式代謝產物之反向透入法取樣示意圖及非侵入式代謝產物偵測裝置之方塊圖。圖中,一種非侵入式代謝產物偵測裝置100,係包含取樣模組10以及偵測模組20。取樣模組10可包含水凝膠貼片11、電極組12以及供電單元13,偵測模組20可包含反應單元21以及感測單元25。 Please refer to both FIG. 1 and FIG. 2, which are schematic diagrams of the reverse penetration method of the non-invasive metabolite of the present invention and a block diagram of the non-invasive metabolite detection device. In the figure, a non-invasive metabolite detection device 100 includes a sampling module 10 and a detection module 20. The sampling module 10 can include a hydrogel patch 11 , an electrode group 12 , and a power supply unit 13 . The detection module 20 can include a reaction unit 21 and a sensing unit 25 .

上述的水凝膠貼片11與電極組12可組合形成電極貼片,由水凝膠貼片11盛載電極組12並貼附於受測者的皮膚200,並使電極組12之兩端接觸水凝膠貼片11與供電單元13形成電通路。供電單元13用於控制流經電極貼片之電流波型,並於貼附皮膚200部位之皮下組織中的代謝產物120被電極組12吸引,進而自皮膚200下抽取代謝產物120並停留於水凝膠貼片11中。 The hydrogel patch 11 and the electrode group 12 described above may be combined to form an electrode patch, and the electrode group 12 is carried by the hydrogel patch 11 and attached to the skin 200 of the subject, and the both ends of the electrode group 12 are provided. The contact hydrogel patch 11 forms an electrical path with the power supply unit 13. The power supply unit 13 is for controlling the current wave pattern flowing through the electrode patch, and the metabolite 120 in the subcutaneous tissue attached to the skin 200 is attracted by the electrode group 12, thereby extracting the metabolite 120 from the skin 200 and staying in the water. In the gel patch 11.

進而,供電單元13提供之電流波型可包含直流電流、脈衝電流、兩極電流、脈衝兩極電流,並使用對應之電化學分析方法。 Furthermore, the current waveform provided by the power supply unit 13 may include a direct current, a pulse current, a two-pole current, a pulsed two-pole current, and a corresponding electrochemical analysis method.

偵測模組20中的反應單元21係設置於水凝膠貼片11的周圍,並與停留於水凝膠貼片11中的代謝產物120作用產生反應結果,感測單元25係對應設置於反應單元21的周圍,以感測反應結果並產生對應的生理數值數值。 The reaction unit 21 in the detecting module 20 is disposed around the hydrogel patch 11 and reacts with the metabolite 120 staying in the hydrogel patch 11 to generate a reaction result, and the sensing unit 25 is correspondingly disposed on The periphery of the reaction unit 21 is used to sense the reaction result and generate corresponding physiological value values.

實施上,反應單元21可為固定化酵素反應單元,增加其穩定性及其使用壽命。可在電極貼片周圍設置多種反應單元21及對應之感測單元25,以同時偵測不同種類之代謝產物120。且感測單元25可使用光學感測單元或電化學感測單元以對應反應單元21,以檢測呈色法或檢測電子轉移取得生理數值。 In practice, the reaction unit 21 can be an immobilized enzyme reaction unit, which increases its stability and its service life. A plurality of reaction units 21 and corresponding sensing units 25 may be disposed around the electrode patch to simultaneously detect different types of metabolites 120. And the sensing unit 25 can use the optical sensing unit or the electrochemical sensing unit to correspond to the reaction unit 21 to detect the coloring method or detect the electron transfer to obtain the physiological value.

實施上,本發明之非侵入式代謝產物偵測裝置100更可包含導液 單元,並由導液單元接觸水凝膠貼片11與反應單元21,以使水凝膠貼片11中停留的代謝產物120,以毛細現象輸送至反應單元21中進行作用,以使電極貼片成為拋棄式的耗材,使其具有方便、衛生且可防止交叉感染。 In practice, the non-invasive metabolite detection device 100 of the present invention may further comprise a liquid guiding solution. And contacting the hydrogel patch 11 and the reaction unit 21 with the liquid guiding unit, so that the metabolite 120 staying in the hydrogel patch 11 is transported to the reaction unit 21 by capillary action to act on the electrode The sheet becomes a disposable consumable that is convenient, hygienic and prevents cross-contamination.

實施上,偵測模組20可包含無線傳輸元件50電性連接感測單元25,以傳送生理數值至監控模組60,監控模組60可為個人電腦、攜帶型電子裝置或醫療器材,以監控生理數值。 In an implementation, the detection module 20 can include a wireless transmission component 50 electrically connected to the sensing unit 25 to transmit physiological values to the monitoring module 60. The monitoring module 60 can be a personal computer, a portable electronic device, or a medical device. Monitor physiological values.

實施上,本發明之非侵入式代謝產物偵測裝置100,可以將取樣模組10製作成晶片的形式,並由攜帶式配戴載體,使水凝膠貼片11固定於皮膚200上,以形成隨身攜帶型的生理檢測裝置。 In practice, the non-invasive metabolite detection device 100 of the present invention can form the sampling module 10 in the form of a wafer, and the carrier-type carrier can be used to fix the hydrogel patch 11 to the skin 200. A portable detection type physiological detecting device is formed.

請同時參閱第3圖、第4圖以及第5圖,係為本發明之非侵入式代謝產物偵測裝置之檢測晶片示意圖、偵測葡萄糖訊號的時間對電流之曲線圖以及偵測葡萄糖濃度的電流響應圖。於本實施例中,是以反向透入的原理抽取葡萄糖,並以葡萄糖氧化酶(glucose oxidase,GOD)及二茂鐵(Ferrocene),依序傳遞氧化葡萄糖產生的電子流,並以電化學的方式偵測以取得生理數值。所有的電化學檢測方式是以變異數分析(ANOVA),所有數據是以SPSS(v.11.5 software SPSS Inc.,Chicago,Illinois,USA)統計軟體進行分析,並設定以0.05作為顯著性的水平標準。 Please also refer to FIG. 3, FIG. 4 and FIG. 5 as a schematic diagram of the detection of the non-invasive metabolite detection device of the present invention, a time-to-current curve for detecting the glucose signal, and a glucose concentration detection. Current response diagram. In the present embodiment, the glucose is extracted by the principle of reverse penetration, and the electron flow generated by the oxidation of glucose is sequentially transmitted by glucose oxidase (GOD) and ferrocene, and electrochemically. The way to detect to get physiological values. All electrochemical detection methods were analysis of variance (ANOVA), all data were analyzed by SPSS (v.11.5 software SPSS Inc., Chicago, Illinois, USA) statistical software, and 0.05 was set as the significant level standard. .

請同時參見閱的第1圖及第3圖,為使用印刷塗佈的方式製程本發明之檢測晶片的過程,第3圖之(a)部分為提供盛載電極的水凝膠貼片11,第3圖之(b)部分為在電極上塗佈四條金屬導體121以形成電通路,四條金屬導體121之一端連接供電單元13或電化學感測單元,以提供反向透入抽取之電位差或進行電化學檢測分析,其中一條為中央圓點,另外三條則以中央圓點為圓心圍繞的圓周線,且四條金屬導體121皆不接觸。 Please refer to FIG. 1 and FIG. 3 simultaneously for the process of detecting the wafer of the present invention by using a printing coating method, and part (a) of FIG. 3 is a hydrogel patch 11 for providing an electrode. Part (b) of Fig. 3 is to apply four metal conductors 121 on the electrodes to form electrical paths, and one end of the four metal conductors 121 is connected to the power supply unit 13 or the electrochemical sensing unit to provide a potential difference of reverse penetration extraction or Electrochemical detection analysis is carried out, one of which is a central dot, and the other three are circumferential lines surrounded by a central dot, and the four metal conductors 121 are not in contact.

第3圖之(c)部分是在金屬導體121上再塗佈一層絕緣體122並裸 露出部分的金屬導體121,第3圖之(d)部分中係於中央的金屬導線上塗佈銀/氯化銀(Ag/AgCl)電極作為反向透入供電電極123,並於其中一條金屬導體121末端之圓周線塗佈銀/氯化銀電極作為參考電極124,第3圖之(d)部分是則是在最後兩條金屬導體121末端之圓周使用石墨作為工作電極125及輔助電極126,並將反應單元21設置於工作電極125。 Part (c) of Figure 3 is a layer of insulator 122 coated on the metal conductor 121 and bare a portion of the metal conductor 121 is exposed, and a silver/silver chloride (Ag/AgCl) electrode is applied to the central metal wire in the portion (d) of FIG. 3 as a reverse penetration power supply electrode 123, and one of the metals A circumferential line of the end of the conductor 121 is coated with a silver/silver chloride electrode as the reference electrode 124, and part (d) of the third figure is a graphite electrode as the working electrode 125 and the auxiliary electrode 126 at the end of the last two metal conductors 121. And the reaction unit 21 is disposed at the working electrode 125.

請參見第3圖及第4圖,圖中係以12.5mg/mL葡萄糖氧化酶和0.1M二茂鐵作為反應單元21,且流經反向透入供電電極123,當將4mM的葡萄糖溶液混入0.01M的磷酸鹽緩衝液(pH7.4)中時,其還原電流增加並於10秒時到達穩定電流。能達到如此短的檢測時間之關鍵因素在於,葡萄糖氧化酶、二茂鐵和反向透入供電電極123的位置非常接近,因此降低了擴散的能量障礙,測得還原電流時可較快到達穩定電流。 Please refer to Fig. 3 and Fig. 4, in which 12.5 mg/mL glucose oxidase and 0.1 M ferrocene are used as the reaction unit 21, and flow through the reverse penetration power supply electrode 123, when 4 mM glucose solution is mixed. In 0.01 M phosphate buffer (pH 7.4), the reduction current increased and reached a steady current at 10 seconds. The key factor that can achieve such a short detection time is that the positions of glucose oxidase, ferrocene and reverse penetration power supply electrode 123 are very close, thus reducing the energy barrier of diffusion, and the reduction current can be stabilized when measured. Current.

請參見第3圖及第5圖,圖中係以8.5mg/mL葡萄糖氧化酶和0.05M二茂鐵作為反應單元21,並做三重複實驗,實驗結果以橫坐標為葡萄糖濃度(mM),縱坐標為檢測晶片測得響應電流(μA)之量值,檢測晶片對葡萄糖濃度的靈敏度是由電流響應與葡萄糖濃度曲線圖的回歸線的斜率來確定。如圖所示,葡萄糖濃度由0.5mM至4mM時,偵測之響應電流(μA)量值的回歸線斜率為0.9913,顯示本發明之檢測晶片對葡萄糖具有良好的準確度。 Please refer to Fig. 3 and Fig. 5, in which 8.5 mg/mL glucose oxidase and 0.05 M ferrocene are used as reaction unit 21, and three repeated experiments are performed, and the experimental results are plotted on the abscissa as glucose concentration (mM). The ordinate is the magnitude of the measured response current (μA) of the test wafer. The sensitivity of the test wafer to the glucose concentration is determined by the slope of the regression line of the current response and the glucose concentration profile. As shown, when the glucose concentration is from 0.5 mM to 4 mM, the regression line slope of the detected response current (μA) magnitude is 0.9913, indicating that the detection wafer of the present invention has good accuracy for glucose.

請同時參閱第1圖、第3圖及第6圖,其係為本發明之非侵入式代謝產物偵測裝置之檢測晶片示意圖及偵測滲透器內的葡萄糖的電流響應圖。圖中,係將檢測晶片設於滲透器(diffusion cell)上,並於滲透器之內測放置磷酸鹽緩衝液(pH 7.4,0.1M)及不同濃度之葡萄糖溶液,葡萄糖濃度為3mM、5mM、15mM係模擬低血糖、正常、高血糖的情況,並做五重複實驗,供電單元13於電極組12上提供30分鐘為一週期兩極電流(bipolar current),於常溫(22~24℃)下進行90分鐘的反向透入,且流經電極的電流密度為0.3mA/cm2,以抽出滲透 器內的葡萄糖,檢測晶片上的反應單元21為12.5mg/mL葡萄糖氧化酶和0.1M二茂鐵。 Please also refer to FIG. 1 , FIG. 3 and FIG. 6 , which are schematic diagrams of the detection wafer of the non-invasive metabolite detection device of the present invention and a current response diagram for detecting glucose in the permeator. In the figure, the detection wafer is placed on a diffusion cell, and a phosphate buffer (pH 7.4, 0.1 M) and a glucose solution of different concentrations are placed in the permeator, and the glucose concentration is 3 mM, 5 mM, The 15 mM system simulates hypoglycemia, normal, and hyperglycemia, and performs five repeated experiments. The power supply unit 13 provides a bipolar current for 30 minutes on the electrode group 12, and is performed at a normal temperature (22 to 24 ° C). 90 minutes of reverse penetration, and the current density flowing through the electrode was 0.3 mA/cm 2 to extract the glucose in the permeator, and the reaction unit 21 on the detection wafer was 12.5 mg/mL glucose oxidase and 0.1 M dioxin. iron.

如圖所示,葡萄糖濃度在3mM至15mM之範圍內時,偵測之響應電流(μA)量值的回歸線斜率為0.99,顯示本發明之檢測晶片對葡萄糖具有良好的準確度。和目前商品化的GlucoWatch相比,本發明之檢測晶片能可靠的偵測到低血糖和高血糖。 As shown, when the glucose concentration is in the range of 3 mM to 15 mM, the regression line slope of the detected response current (μA) magnitude is 0.99, indicating that the detection wafer of the present invention has good accuracy for glucose. Compared with the currently commercialized GlucoWatch, the detection wafer of the present invention can reliably detect hypoglycemia and hyperglycemia.

以上所述之實施例僅係為說明本發明之技術思想及特點,其目的在使熟習此項技藝之人士能夠瞭解本發明之內容並據以實施,當不能以之限定本發明之專利範圍,即大凡依本發明所揭示之精神所作之均等變化或修飾,仍應涵蓋在本發明之專利範圍內。 The embodiments described above are merely illustrative of the technical spirit and the features of the present invention, and the objects of the present invention can be understood by those skilled in the art, and the scope of the present invention cannot be limited thereto. That is, the equivalent variations or modifications made by the spirit of the present invention should still be included in the scope of the present invention.

100‧‧‧非侵入式代謝產物偵測裝置 100‧‧‧ Non-invasive metabolite detection device

10‧‧‧取樣模組 10‧‧‧Sampling module

11‧‧‧水凝膠貼片 11‧‧‧Hydrogel patch

12‧‧‧電極組 12‧‧‧Electrode group

13‧‧‧供電單元 13‧‧‧Power supply unit

20‧‧‧偵測模組 20‧‧‧Detection module

21‧‧‧反應單元 21‧‧‧Reaction unit

25‧‧‧感測單元 25‧‧‧Sensing unit

50‧‧‧無線傳輸元件 50‧‧‧Wireless transmission components

60‧‧‧監控模組 60‧‧‧Monitoring module

Claims (8)

一種非侵入式代謝產物偵測裝置,係包含:一取樣模組,係包含:一水凝膠貼片,係貼附於受測者的一皮膚上;一電極組,該電極組之一端分別係接觸該水凝膠貼片以傳遞電流;以及一供電單元,係電性連接該電極組之另一端並控制流經該電極組之一電流波型,以使貼附於該皮膚部位之一皮下組織液中的一代謝產物被該電極組吸引,進而自該皮下組織液抽取該代謝產物並停留於該水凝膠貼片中;以及一偵測模組,係包含:至少一反應單元,係設置於該水凝膠貼片的周圍,並與該代謝產物作用產生一反應結果;以及至少一感測單元,係對應設置於該至少一反應單元的周圍,以感測該反應結果並產生一生理數值。 A non-invasive metabolite detection device comprises: a sampling module comprising: a hydrogel patch attached to a skin of a subject; an electrode group, one of the electrode groups respectively Contacting the hydrogel patch to transfer current; and a power supply unit electrically connecting the other end of the electrode group and controlling a current wave pattern flowing through the electrode group to adhere to one of the skin portions a metabolite in the subcutaneous tissue fluid is attracted by the electrode group, and the metabolite is extracted from the subcutaneous tissue fluid and stays in the hydrogel patch; and a detection module comprises: at least one reaction unit, the system is configured Surrounding the hydrogel patch and reacting with the metabolite to produce a reaction result; and at least one sensing unit correspondingly disposed around the at least one reaction unit to sense the reaction result and generate a physiological condition Value. 如申請專利範圍第1項所述之非侵入式代謝產物偵測裝置,其中該至少一反應單元係為固定化酵素反應單元。 The non-invasive metabolite detection device according to claim 1, wherein the at least one reaction unit is an immobilized enzyme reaction unit. 如申請專利範圍第1項所述之非侵入式代謝產物偵測裝置,其中該至少一感測單元係為光學感測單元或電化學感測單元。 The non-invasive metabolite detection device of claim 1, wherein the at least one sensing unit is an optical sensing unit or an electrochemical sensing unit. 如申請專利範圍第1項所述之非侵入式代謝產物偵測裝置,其中該代謝產物包含葡萄糖、乳糖、尿素或其組合。 The non-invasive metabolite detection device of claim 1, wherein the metabolite comprises glucose, lactose, urea or a combination thereof. 如申請專利範圍第1項所述之非侵入式代謝產物偵測裝置,其 中該供電單元提供給該電極組之電流密度係介於0.1mA/cm2至0.5mA/cm2The non-invasive metabolite detection device according to claim 1, wherein the power supply unit supplies the electrode group with a current density of 0.1 mA/cm 2 to 0.5 mA/cm 2 . 如申請專利範圍第1項所述之非侵入式代謝產物偵測裝置,其中該電流波型包含直流電流、脈衝電流、兩極電流、脈衝兩極電流或其組合。 The non-invasive metabolite detection device of claim 1, wherein the current waveform comprises a direct current, a pulse current, a two-pole current, a pulsed two-pole current, or a combination thereof. 如申請專利範圍第1項所述之非侵入式代謝產物偵測裝置,其中該偵測模組包含一無線傳輸元件電性連接該至少一感測單元,以傳送該生理數值至一監控模組,以監控該生理數值。 The non-invasive metabolite detection device of claim 1, wherein the detection module comprises a wireless transmission component electrically connected to the at least one sensing unit to transmit the physiological value to a monitoring module. To monitor the physiological value. 如申請專利範圍第1項所述之非侵入式代謝產物偵測裝置,更包含一攜帶式配戴模組以使該水凝膠貼片貼附該皮膚上。 The non-invasive metabolite detection device of claim 1, further comprising a portable wearing module for attaching the hydrogel patch to the skin.
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