Method and device for filling an analysis card with a liquid medium

Abstract
Device for filling, with a liquid medium (1), an analysis card (2) comprising a body (3) in which at least one reading cavity (3a) is formed, and an orifice (4) communicating with the cavity via at least one internal channel (7), with an external conduit (9) communicating with the orifice, this device comprising an evacuation device (50). It comprises: a connecting device (11) including on one side a joining piece (12) for leaktight and removable coupling to the free end (9a) of the open external conduit, and communicating directly on the other side with the evacuation device (50); a device (34) for closing and re-opening the external conduit.
Description




BACKGROUND OF THE INVENTION




1. Field of the Invention




The invention concerns filling an analysis card with a liquid medium.




2. State of the Art




“Analysis card” is to be understood as any means, which may or may not be disposable, with which it is possible to perform one or more analyses simultaneously using a single sample and one or more reagents, and to do this in a way that is sealed off from the external environment, the result of the analysis or analyses being obtained optically, for example. Such an analysis card generally comprises a body in which there is formed at least one reading cavity which, during use, receives all or part of the sample and has at least one reagent already present in said cavity, and an orifice communicating with said cavity via at least one internal channel. Said cavity or cavities thus communicate(s) with the outside only via the aforementioned orifice, whilst the card is generally joined to or cooperates with a flexible, external conduit communicating in a leaktight manner with this orifice. It is through this external conduit that it is possible to admit, in the manner described hereinafter, a sample of the liquid medium which is to be analyzed.




Such cards are well known in the prior art and in particular in U.S. Pat. Nos. 3,963,355 and 4,038,151, to which reference will be made as and when necessary.




“Liquid medium” is to be understood as any substance or body which is liquid, at any rate capable of flowing by means of pumping, irrespective of the viscosity or fluidity of this liquid; in particular, where a biological analysis is concerned, the term liquid medium is to be understood as a medium which includes, for example, one or more microorganisms or a biological substance to be analyzed.




As regards the filling of an analysis card as defined above, the procedure to date has been as follows:




—use is made of a sealed chamber, with means for controlling the internal pressure, and in particular the vacuum when said chamber has been depressurized;




—on the one hand, a receptacle, for example a test tube, holding the liquid medium to be sampled or removed, is placed in the chamber, and, on the other hand, alongside the receptacle, the analysis card with the free end of the external conduit immersed in the liquid medium contained by the receptacle;




—the air is evacuated from the chamber until a significant vacuum has been created, for example below 100 mbar absolute, by which means the air is evacuated from the analysis card and the evacuated air passes through the liquid medium in the receptacle;




—after ending the vacuum, and returning the chamber to atmospheric pressure, the liquid medium is aspirated into the analysis card as far as the reading cavity or cavities, which are thus filled.




Such a procedure appears to be particularly contaminating, since the bubbling which occurs as the vacuum is established is capable of projecting particles or droplets of the liquid medium out of the receptacle and thus subsequently into contact with the user or operator, and this despite all the precautions that can be taken in this regard. In the case of a liquid medium containing a pathogenic agent, this seems to be unsatisfactory.




SUMMARY OF THE INVENTION




The subject of the present invention is a method for filling an analysis card in a non-contaminating manner since it proceeds at all times under negative pressure, that is to say without any possibility of the liquid medium used being evacuated to the outside.




According to the present invention, the following steps are carried out in succession:




—to evacuate the gas contained in the analysis card, the free end of the open external conduit is connected in a leaktight manner directly to an evacuation means outside the liquid medium used;




—the external conduit is closed in order to maintain the negative pressure in the analysis card;




—the free end of the closed external conduit is immersed in the liquid medium;




—and the external conduit is re-opened, after immersion of this free end, in order to aspirate the liquid medium into the analysis card.




The present invention also affords the crucial advantage that pumping the gas contained in the analysis card requires limited work and is consequently compatible with relatively simple, even rudimentary, pumping means, in particular manual ones. Moreover, the filling procedure described above can be used both manually as well as in the context of an automatic analysis.











BRIEF DESCRIPTION OF THE DRAWINGS




The present invention is now described with reference to the attached drawing, in which:





FIG. 1

shows a perspective and diagrammatic representation of an analysis card as envisaged by the present invention;





FIG. 2

shows a diagrammatic representation of a filling device according to the invention;





FIG. 3

is a perspective representation of an embodiment of the device shown diagrammatically in

FIG. 2

;




and

FIG. 4

represents a cross section through the connecting means and the closing means which form part of the device represented in FIG.


3


.











BRIEF DESCRIPTION OF PREFERRED EMBODIMENTS




An analysis card


2


, treated by the filling method according to the invention, with the device represented in

FIGS. 2 and 3

, comprises:




—a body


3


made of plastic, molded in a generally flat and rectangular shape, in which there are formed, on the one hand, several series of reading cavities


3




a


, and, on the other hand, internal open channels


7


as well as an orifice


4


;




—two sheets


10


of transparent plastic material which are adhesively bonded in a leaktight manner upon the respective two faces of the body


3


;




—and a flexible external conduit


9


having the shape of a bent straw, joined in a leaktight manner to the body


3


, at the time of use of the analysis card, including a free end


9




a


, and an opposite end communicating in a leaktight manner with the orifice


4


after mounting or assembly.




As regards the circulation of the liquid in the card


2


, a distributor conduit


5


communicates on one side with the orifice


4


and on the other side with a series of branches


6


, to each of which the different reading cavities


3




a


are connected via respective internal channels


7


.




In accordance with

FIG. 3

, a filling device according to the invention comprises:




—a support


18


including a base


19


and a vertical wall comprising two flanks


20




a


and


20




b


at right angles;




—a carriage


21


designed to receive and hold the analysis card


2


in a vertical position, with the external conduit


9


in a likewise vertical position; this carriage is capable of sliding against the flank


20




a


in a controlled manner by virtue of a displacement means


17


, and in particular a slide


23


;




—another carriage


24


mounted slidably at the bottom of the flank


20




b


; this carriage is designed to support the tube or receptacle


16


in which the liquid medium


1


to be analyzed is arranged, as well as the connecting means


11


described below;




—an evacuation means


50


consisting of a reciprocating manual pump fitted on the flank


20




b


and actuated by a lever


44


which can be blocked in rotation by a catch mechanism


26


controlled by an arm


25


;




—a connecting means


11


, represented more particularly in

FIG. 4

, comprising on one side a joining piece


12


for sealed and removable coupling to the free end


9




a


of the external conduit


9


, by virtue of an O-ring seal


14


, clamped between said joining piece and an abutment piece


13


, the latter communicating directly on the other side with the evacuation means


50


;




—a means


34


for closing and re-opening the external conduit


9


, integral with the carriage


21


; this means consist of a screw


15


with which it is possible to pinch the conduit


9


; it can be replaced by a valve;




—a pressure gauge


27


for measuring the negative pressure;




—a circuit


28


equipped with flap valves


29


and


30


(

FIG. 2

) at the outlet of the evacuation means


50


, permitting communication between the outlet of the pump and the inlet of the connecting means


11


.




With the device filled beforehand, the following filling method can be carried out:




—the analysis card


2


to be filled is placed in the carriage


21


and the closure means


34


is left open;




—the carriages


21


and


24


are moved by way of the displacement means


17


in such a way that the free end


9




a


of the external conduit


9


communicates in a leaktight manner with the connecting means


11


(see representation in FIG.


4


);




—by actuating the lever


44


, the gas contained in the analysis card


2


is evacuated, in this case the atmospheric air, and the evacuation pressure is controlled by means of the pressure gauge


27


; this may call for one or more backward and forward turns of the lever


44


, depending on the capacity of the evacuation means


50


; once the desired vacuum has been reached, the lever is fixed in position by means of the catch mechanism


26


;




—at this point the external conduit


9


is closed in a leaktight manner using the screw


15


;




—by means of a further movement of the carriages


21


and


24


, the free end


9




a


of the external conduit


9


is brought into the receptacle


16


, with immersion of this end


9




a


in the liquid medium


1


contained in the receptacle


16


;




—after immersion of this free end, the external conduit


9


is re-opened while keeping the end


9




a


immersed, which causes aspiration of the liquid medium


1


into the analysis card until each of the reading cavities


3




a


is filled;




—and the end of the external conduit


9


, opposite the free end


9




a


, is sealed off, the rest of the conduit being separated off and discarded.




At this point the analysis card is filled and is ready for the required analysis procedure, with the results being read off through the different reading cavities


3




a.





Claims
  • 1. A method for filling, with a liquid medium, an analysis card comprising a body in which at least one reading cavity is formed, an orifice communicating with said cavity via at least one internal channel, an external conduit having one end in communication with said orifice and a free end, and a means for closing and opening the external conduit, wherein gas contained in the card is evacuated via said external conduit and the liquid medium is introduced into the evacuated card by immersion of the free end of said external conduit in the liquid medium, said method comprising, in succession:to evacuate the gas contained in the analysis card, connecting the free end of the open external conduit in a leaktight manner directly to an evacuation means, outside the liquid medium; closing the external conduit in order to maintain negative pressure in the analysis card; immersing the free end of the closed external conduit in the liquid medium; and opening the external conduit, after immersion of said free end, in order to aspirate the liquid medium into the analysis card.
  • 2. The method of claim 1, wherein the means for closing and opening the external conduit is a pinching means.
  • 3. The method of claim 1, wherein the means for closing and opening the external conduit is a screw.
  • 4. The method of claim 1, wherein the means for closing and opening the external conduit is a valve.
  • 5. The method of claim 1, wherein the liquid medium is contained in a receptacle, said method comprising, in succession:connecting said free end of said open external conduit to the evacuation means outside the receptacle, immersing said free end of said closed external conduit in the liquid medium in said receptacle, and opening the external conduit, while maintaining said free end immersed in said receptacle.
  • 6. The method of claim 1, wherein the external conduit is a flexible conduit, wherein closing the conduit is obtained by pinching said conduit, and opening the conduit is obtained by releasing said pinching.
  • 7. The method of claim 1, wherein the evacuation means is a pump.
  • 8. The method of claim 1, wherein the evacuation means is a manual pump.
  • 9. The method of claim 1, wherein the evacuation means is a reciprocating pump.
  • 10. The method of claim 1, wherein the evacuation means is a reciprocating manual pump.
Priority Claims (1)
Number Date Country Kind
97 04851 Apr 1997 FR
PCT Information
Filing Document Filing Date Country Kind
PCT/FR98/00747 WO 00
Publishing Document Publishing Date Country Kind
WO98/46977 10/22/1998 WO A
US Referenced Citations (76)
Number Name Date Kind
3860488 Cooper, III Jan 1975 A
3870602 Froman et al. Mar 1975 A
3880978 Apostoleris et al. Apr 1975 A
3942526 Wilder et al. Mar 1976 A
3957583 Gibson et al. May 1976 A
3963355 Aldridge, Jr. et al. Jun 1976 A
D243542 Fadler et al. Mar 1977 S
D243543 Fadler et al. Mar 1977 S
4018652 Lanham et al. Apr 1977 A
4038151 Fadler et al. Jul 1977 A
4074940 Tarbet Feb 1978 A
4077845 Johnson Mar 1978 A
4090920 Studer, Jr. May 1978 A
4116775 Charles et al. Sep 1978 A
4118280 Charles et al. Oct 1978 A
4159875 Hauser Jul 1979 A
D254687 Fadler et al. Apr 1980 S
4207394 Aldridge, Jr. et al. Jun 1980 A
4260687 Jacobson et al. Apr 1981 A
4318884 Suzuki Mar 1982 A
4318994 Meyer et al. Mar 1982 A
4327042 Hagino et al. Apr 1982 A
4395125 Kaneko et al. Jul 1983 A
4661458 Berry et al. Apr 1987 A
4693983 Davies et al. Sep 1987 A
4713974 Stone Dec 1987 A
4806316 Johnson et al. Feb 1989 A
4818493 Coville et al. Apr 1989 A
4839292 Cremonese Jun 1989 A
4848493 Hitchcock Jul 1989 A
4912057 Guirguis et al. Mar 1990 A
4912744 Hurst Mar 1990 A
4937196 Wrasidlo et al. Jun 1990 A
5010014 Gebhardt Apr 1991 A
5047215 Manns Sep 1991 A
5079168 Amiot Jan 1992 A
5084246 Lyman et al. Jan 1992 A
5089413 Nelson et al. Feb 1992 A
5110556 Lyman et al. May 1992 A
5110727 Oberhardt May 1992 A
5120662 Chan et al. Jun 1992 A
5139951 Butz et al. Aug 1992 A
5141718 Clark Aug 1992 A
5168766 Stoffel Dec 1992 A
5180555 Monget Jan 1993 A
5210021 Goodwin, Jr. May 1993 A
5219528 Clark Jun 1993 A
5227137 Monti et al. Jul 1993 A
5230866 Shartle et al. Jul 1993 A
5284753 Goodwin, Jr. Feb 1994 A
5290700 Binot et al. Mar 1994 A
5307144 Hiroshi et al. Apr 1994 A
5326533 Lee et al. Jul 1994 A
5330908 Spaulding Jul 1994 A
5336893 Smith et al. Aug 1994 A
5338666 Monthony et al. Aug 1994 A
5340141 Thorndyke Aug 1994 A
5340747 Eden Aug 1994 A
5342581 Sanadi Aug 1994 A
5346000 Schlitt Sep 1994 A
5358871 Stevens et al. Oct 1994 A
5366893 Stevens et al. Nov 1994 A
5374395 Robinson et al. Dec 1994 A
5453246 Nakayama et al. Sep 1995 A
5589350 Bochner Dec 1996 A
5594183 Colin Jan 1997 A
5609828 O'Bear et al. Mar 1997 A
5669528 Romero et al. Sep 1997 A
5746980 O'Bear et al. May 1998 A
5804437 Tegeler et al. Sep 1998 A
5932177 O'Bear et al. Aug 1999 A
5965090 Fanning et al. Oct 1999 A
6015531 Colin et al. Jan 2000 A
6045758 Staples et al. Apr 2000 A
6124138 Woudenberg et al. Sep 2000 A
6272939 Frye et al. Aug 2001 B1
Foreign Referenced Citations (16)
Number Date Country
29 41 177 Apr 1981 DE
44 29 739 Mar 1996 DE
0 107 631 May 1984 EP
0 282 840 Sep 1988 EP
0 445 053 Sep 1991 EP
0 526 222 Feb 1993 EP
0 703 052 Mar 1996 EP
0 745 856 Dec 1996 EP
2 350 593 Dec 1977 FR
2 368 774 May 1978 FR
2 025 611 Jan 1980 GB
WO 8303677 Oct 1983 WO
WO 8807351 Oct 1988 WO
WO 9008308 Jul 1990 WO
WO 9411489 May 1994 WO
WO 9418369 Aug 1994 WO