Analytical measuring device with lancing device

Surgery – Diagnostic testing – Liquid collection

Reexamination Certificate

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C600S584000, C600S309000

Reexamination Certificate

active

06379317

ABSTRACT:

BACKGROUND OF THE INVENTION
The invention concerns a system and its use for determining the presence or the content of an analyte in blood wherein the system comprises a measuring instrument for measuring and displaying the change of a characteristic property of a test element which correlates with the analyte and it concerns a lancing device for obtaining blood from a body region of a test person.
The determination of the content of a particular analyte in blood, for example glucose or lactate, requires the collection of an adequate amount of sample (blood) and the provision of a suitable measuring system for the analyte. In addition to medical practices and laboratories, medical laymen are increasingly carrying out such determinations for their own use. Measuring systems that are designed to be used by the test persons themselves are wide-spread especially for the determination and monitoring of the blood sugar value i.e. the blood glucose content in the case of diabetics and also to determine other parameters such as the lactate content or cholesterol level.
Conventional measuring systems often contain test elements in the form of so-called test strips which, together with appropriate measuring instruments, allow the determination of one or several analytes in the blood. In addition the user generally also requires a lancet which is used to pierce the skin of particular body regions for example of the finger pad or earlobe and thus obtain blood which is to be used for the measurement. Various manufacturers offer lancing devices for a comfortable blood collection which insert the lancets into the skin in a controlled and guided manner in order to thus control the piercing depth and to minimize the pain.
Since the user requires several separate components (test elements, measuring instrument, lancing device, lancets etc.) in order to measure an analyte in blood and has to carry them with him for an outside analysis for example when travelling or for sport, it is understandable that especially diabetics, which additionally have to carry insulin and a syringe, consider it desirable to reduce the individual components that they have to have with them.
There have therefore been no lack of various attempts at reducing the number of individual components. One solution is to package the necessary components such as measuring instrument, lancing device, lancets and test strips in a common transport case. However, these are often voluminous and for example too large and too heavy to be kept in a jacket or shirt pocket.
Another solution is to integrate as many of the above-mentioned components as possible into one instrument. An example of this is the integration of a test strip storage system into a measuring instrument as described in U.S. Pat. No. 5,489,414 or U.S. Pat. No. 5,645,798.
Systems in which the lancing device and measuring instrument have been amalgamated into one instrument are described for example in U.S. Pat. No. 5,029,583 and U.S. Pat. No. 4,637,403. Although these integrated systems essentially solve the problem of reducing the number of individual components that one has to carry, the handling of such integrated systems for blood collection is unsatisfactory since the systems are usually cumbersome and comparatively heavy and thus make it difficult to precisely aim at a lancing site.
The object of the present invention was to eliminate the disadvantages of the prior art. In particular the aim was to find a system which combines the measuring instrument and lancing device and allows a precise aiming at the lancing site with an overall reduction of the number of individual components that one has to carry.
SUMMARY OF THE INVENTION
The object is achieved by the subject matter of the invention as characterized in the patent claims.
The invention concerns a system for determining the presence or the content of an analyte in blood comprising a measuring instrument for measuring and displaying the change of a characteristic property of a test element which correlates with the analyte and a lancing device for obtaining blood from a body region of a test person characterized in that the measuring instrument and the lancing device are directly connected to one another in a detachable manner.
The invention also concerns the use of the system according to the invention to determine the presence or the content of an analyte in blood.
Finally the invention concerns the individual components of the system according to the invention i.e. a lancing device and a measuring instrument that are suitable for a direct detachable connection to one another.
The system according to the invention is suitable for the determination of the presence or the content of an analyte in blood. The determination of the presence of an analyte can for example be used for the qualitative diagnosis of an infection (e.g. with viruses such as HIV or HCV) or for the qualitative determination of a particular state of the body (e.g. pregnancy, cardiac infarction). The determination of the content of an analyte can be used to monitor the course of a disease or response to therapy and gives detailed information on the state of the body of a test person. Examples of this are the measurement of the blood glucose, the lactate or cholesterol concentration in the blood and such like. The system according to the invention preferably enables the determination of one parameter. The simultaneous determination of several parameters is also possible in a further embodiment of the system according to the invention.
According to the invention the measuring instrument of the system measures and displays the change of a characteristic property of a test element that correlates with the analyte. The test element can be present in any form that is well-known to a person skilled in the art for example in the form of a test strip or a cuvette where the reagents required for the detection reaction are present in or on the test element. When one or several analytes are present, the test element enables the generation of a detectable signal as a characteristic property of the test element which correlates with the analyte. Examples of this are colour changes in a detection reagent layer which can be measured photometrically, or electrical currents or changes in potential which can be detected by electrode systems. The signals generated in this manner are then measured and evaluated by the measuring instrument by for example comparison with calibration values. Different detection and determination methods are possible depending on the analyte to be examined which differ in the physicochemical detection principle (e.g. photometry, electrochemistry) and, on the other hand, in the bio(chemical) interactions which lead to the characteristic, detectable changes (e.g. detection by means of enzymatic or immunological reactions, nucleic acid sequence test).
In addition to the measuring instrument, the system according to the invention contains a lancing device which can be used to obtain a blood sample of a test person. Lancing devices are known for example to a person skilled in the art from EP-B 0 565 970 and are sold commercially in different forms by various vendors. They are used in combination with lancets to obtain blood for example from the finger pad or the earlobe in a comfortable, reproducible and painless manner.
In the claimed system the lancing device is connected according to the invention with the measuring instrument in a direct and detachable manner. Direct connection should be understood to mean that apart from the lancing device and the measuring instrument, no additional separate devices such as pockets, covers, tapes or cases are necessary to connect the lancing device and measuring instrument. In contrast the measuring instrument or the lancing device or both components contain appropriate connecting means which preferably match and fit one another and allow a detachable connection of the two components of the system. Possible connecting means are plug connections, clamp connections, connections using profiled rails, co

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