The invention relates to a multifunction instrument for measuring biochemical and medical samples, which are preferably placed into the wells of the sample plates and measured by a detector, the instrument having means for moving the detector into two different positions for using at least two different light paths for measuring the samples.
The known measuring devices are usually intended for one measuring process, as for example radioactive labels, luminescence, several types of fluorescence or absorption. Also multifunction measuring instruments have been made, typically involving either non-radioactive methods or radioactivity counting and luminescence. Instruments measuring both radioactive labels and fluorescence are not known to exist. The aim of the present invention is to solve the problems and provide a new multifunction instrument capable to measure all commonly used techniques
The document U.S. Pat. No. 6,191,852 presents an optical measuring system for detecting luminescence or fluorescence signals. In the device there is a glass-fiber taper element and an image sensor situated opposite the small end surface of the image sensor. The combination of the glass-fiber taper element and the image sensor is fitted on a fixed frame allowing it to pivot through 180° about a rotary spindle. In the first position a first microtitre plate is measured from the top and in the second position a second microtitre plate is measured from the bottom through the transparent bottom of the microtitre plate. The arrangement is not suitable for measuring radioactive labels by liquid scintillation counting because the decreasing cross-sectional area of the glass-fiber taper element will result a significant loss of light photons. The signal level is therefore highly reduced and under the minimum for liquid scintillation counting. The document U.S. Pat. No. 4,132,653 presents a polarization analyzer for vacuum ultraviolet and x-ray radiation. In the device the detector is pivotable 90° between two positions. In a first position the detector is placed in front of the mirror to detect the radiation Ri incident on mirror, and in a second position detector is rotated 90° to detect the radiation Rr reflected by mirror. The arrangement is suitable for the polarization analyzer because the strong beam of radiation is emerged for example from a monochromator or from a syncrothron. However, the arrangement is not suitable for measuring radioactive labels by liquid scintillation counting because the detector could not detect weak light photons emitted from a radioactive sample.
The aim of the present invention is to solve the above problems and provide a new multifunction instrument.
The present invention may be briefly described and summarised that the multifunction instrument is provided with a device for moving the detector into the following two different positions for two different light paths:
According to a preferred embodiment of the invention the multifunction instrument is provided with a rotating device for rotating the detector in two different positions for the said two different light paths.
According to a second preferred embodiment of the invention in the first position the detector the first light path is provided for liquid scintillation counting and/or luminescence counting, and that the second light path is provided for fluorescence measuring.
According to a third preferred embodiment of the invention the multifunction instrument has a light source provided for excitation light with the second light path for fluorescence measuring.
According to a fourth preferred embodiment of the invention the multifunction instrument is provided with an absorbance detector to be used with the said light source.
According to a fifth preferred embodiment of the invention the detector is provided with slide and guide elements, the rotating device is provided to turn the detector into vertical position for liquid scintillation measuring and/or luminescence counting above the sample plate, and that the rotating device is provided to turn the detector into horizontal position for fluorescence measuring via the second light path.
The multifunction instrument according to the invention can measure radioactive labels by using liquid scintillation counting and/or luminescence counting process and also non-radioactive labels by using fluorescence process. For both of these measurements can be used the same rotating detector, a photo multiplier tube above the sample.
The second photo multiplier tube under the sample, primarily used in liquid scintillation counting for better efficiency, can also be used for absorbance measuring. However, the absorbance measurements can also be carried out with a separate absorbance detector, if there is no photo multiplier tube under the sample.
In that case the same light source can be used in the excitation of fluorescence measurement and in the absorbance measurement.
In liquid scintillation counting the radioactive labels such as tritium H3, radiocarbon C14, phosphor P32, iodine I125 and other beta emitting isotopes can be measured.
In fluorescence measurements the excitation light and the emission light have different wavelengths. The excitation light pulse of about 1 μs is partly in UV area having wavelength of 240-500 nm. The light emitted from the sample label is visible light having wavelength of 400-650 nm. The prompt, time-resolved and polarization processes can be used.
According to a further embodiment of the invention
According to a further embodiment of the invention the vertical first position of the detector the detector is used for liquid scintillation counting and placed above the sample well without any intermediate components.
According to a further embodiment of the invention in the vertical first position a cover plate provided with an aperture is placed between the detector and the sample well for guiding the light from the sample through the aperture to the detector.
According to a further embodiment of the invention
Due to the different size measuring apertures in the slide element the different size of sample wells can be measured. For most common diameter of wells, 24 and 96 wells, to be measured there is an appropriate aperture in the cover plate.
According to a further embodiment of the invention at least one aperture in the slide element is funnel shaped so that the aperture end of smaller diameter facing the sample well substantially fits the size of the diameter of the sample well. The opposite aperture end of larger diameter is facing the detector. The arrangement ensures that the detector detects all light photons emitted from the radioactive sample.
An embodiment of the invention is described in the following by means of an example with reference to the appended drawings. However, the present invention should not be construed to be limited thereto. In the drawings
In
For measuring different kind of sample plates 12 there are cover plates 24 and 25 between the sample plate 12 and the detectors 20 and 21. The cover plates 24 and 25 are slides, which have measuring apertures of different size diameters. By moving the cover plates 24 and 25 in horizontal direction the measuring apertures for the detectors 20 and 21 can be changed. So e.g. the sample plates for 24 or 96 sample wells can be measured.
In the multifunction instrument 10 of
In
In the multifunction instrument 10 of
The multifunction instrument 10 of
It is obvious to a person skilled in the art that the different embodiments of the invention may vary within the scope of the claims presented below.
Number | Date | Country | Kind |
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20021423 | Jul 2002 | FI | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/FI03/00585 | 7/30/2003 | WO | 12/15/2005 |