Claims
- 1. A dual invertible microtube and connector assembly for transfer and treatment of micro solutions and centrifugation comprising in operative combination:
- a) a first source microtube having a first open end and terminating in a second, tapered, permanently closed end, said first microtube adapted to contain a micro solution sample therein for treatment by inversion;
- b) a second target microtube having substantially the same shape as said first microtube and having a first open end and terminating in a second, tapered, permanently closed end;
- c) each of said microtubes includes adjacent to its open end:
- i) threads disposed along a first peripheral wall surface; and
- ii) a smooth, cylindrical second peripheral wall surface;
- d) a connector assembly for connecting the open end of said first microtube to the open end of said second microtube, said connector assembly having a first generally cylindrical connector end having a smooth inner peripheral wall surface for slip fit connection about an outer peripheral wall of the open end of either of said first or second microtubes, and a second threaded connector end for threaded engagement with the threaded open end of the other one of said first or second microtubes;
- e) a generally tubular membrane support having an outer peripheral wall, an inner peripheral wall and a generally flat foraminous membrane support surface disposed within said inner peripheral wall, said inner peripheral wall and said membrane foraminous support defining a central cavity for insertion within the open end of the microtube having said first connector end slip-fitted thereover;
- f) a single means for securing a membrane to said foraminous surface of said membrane support in a manner to provide a liquid tight seal between the periphery of said membrane support and said membrane;
- g) said membrane support in combination with said securing means retaining said membrane at a recessed distance within the open end of either of said first or second microtubes for filtering and applying a predetermined treatment to said sample solution while passing said sample solution from said first source microtube into said second target microtube by inversion of said first source microtube containing said sample solution to be filtered over said second target microtube; and
- h) said dual invertible microtube and connector assembly are adapted for inversion for unvented treatment of said sample solution, and for direct centrifugation of treated samples retained in said microtubes.
- 2. A dual microtube and connector assembly for micro solution samples as in claim 1 wherein said membrane support includes threads along an outer peripheral wall thereof for threaded engagement with said threads of either said first or second microtubes.
- 3. A dual microtube and connector assembly for micro solution samples as in claim 2 wherein said securing means for said membrane is a stopper member in the shape of a ring having an outer surface configuration adapted for snap fit insertion within said central cavity of said member support.
- 4. A dual microtube and connector assembly for micro solution samples as in claim 3 wherein said membrane is an ultrafiltration membrane having an average pore size of about 0.45 .mu.m.
- 5. A dual invertible microtube and connector assembly for transfer and treatment of micro solutions and centrifugation comprising in operative combination:
- a) a first, source microtube having a first open end and terminating in a second, tapered, permanently closed end, said first microtube adapted to contain a micro solution sample therein;
- b) a second, target microtube having substantially the same shape as said first microtube and having a first open end and terminating in a second, tapered, permanently closed end;
- c) each of said microtubes includes adjacent to its open end:
- i) threads disposed along a first peripheral wall surface; and
- ii) a smooth, cylindrical second peripheral wall surface;
- d) a connector assembly for connecting the open end of said first microtube to the open end of said second microtube, said assembly includes means for retaining a membrane at a recessed distance within the open end of said second microtube for filtering and applying a predetermined treatment to said micro solution sample while passing said micro solution sample from said first source microtube into said second target microtube by inversion of said first source microtube containing said sample solution to be filtered over said second target microtube, and said connector assembly includes:
- i) an outer sleeve portion having an inner wall with a first threaded connector portion thereof for engaging the threaded open end of said first microtube, and a second connector portion of said wall having a smooth surface to slip over the threads of said second microtube end;
- ii) an inner tubular membrane support having a first end integrally attached to said outer sleeve inner wall and a second free end sized for fitted insertion within the open end of said second microtube, said second end of said inner tubular membrane support includes a generally flat foramenous surface for receiving said membrane;
- iii) a means for securing said membrane to said foramenous surface of said membrane support, and for liquid tight sealing between a periphery of said membrane support and said membrane and to substantially eliminate retention of fluid in said connector and said first microtube; and
- e) said dual invertible microtube and connector assembly are adapted for inversion for unvented treatment of said sample solution and for direct centrifugation of treated samples retained in said microtubes.
- 6. A dual microtube and connector assembly for micro solution samples as in claim 5 wherein:
- a) said securing means for said membrane includes a generally tubular stopper member adapted for fitted insertion within said membrane support and having a bottom end wall coaligned with an upraised perimeter rib member provided to said foramenous surface of said membrane support for pinning said membrane to said membrane support.
- 7. A dual microtube and connector assembly for micro solution samples as in claim 6 wherein said outer surface portions of said first and second microtubes and said outer sleeve of said connector member are knurled.
- 8. A dual microtube and connector assembly for micro solution samples as in claim 7 which includes a membrane.
- 9. A dual microtube and connector assembly for micro solution samples as in claim 8 wherein said membrane is an ultrafiltration membrane having an average pore size of about 0.45 .mu.m.
- 10. A dual microtube and connector assembly for micro solution samples as in claim 9 wherein said ultrafiltration membrane includes a component for treating said solution during passage therethrough.
- 11. A dual invertible microtube and connector assembly for transfer and treatment of micro solutions and centrifugation comprising in operative combination:
- a) a first source microtube having a first open end and terminating in a second, tapered, permanently closed end, said first microtube adapted to contain a micro solution sample therein for treatment by inversion;
- b) a second target microtube having substantially the same shape as said first microtube and having a first open end and terminating in a second, tapered, permanently closed end;
- c) each of said microtubes includes adjacent to its open end:
- i) threads disposed along a first peripheral wall surface; and
- ii) a smooth, cylindrical second peripheral wall surface;
- d) a connector assembly for connecting the open end of said first microtube to the open end of said second microtube;
- e) said connector assembly including means for retaining a membrane at a recessed distance within the open end of said second microtube for filtering and applying a predetermined treatment to said micro solution sample while passing said micro solution sample from said first source microtube into said second target microtube by inversion of said first source microtube containing said microsolution sample to be filtered over said second target microtube, and said connector assembly includes:
- i) an outer sleeve portion having an inner wall with a first threaded connector portion thereof for engaging the threaded open end of said first microtube, and a second connector portion of said wall having a smooth surface to slip over the threads of said second microtube end;
- ii) an inner tubular membrane support having a first end integrally attached to said outer sleeve inner wall and a second free end sized for fitted insertion within the open end of said second microtube, said second end of said inner tubular membrane support includes a generally flat foraminous surface for receiving said membrane; and
- iii) means for securing said membrane to said foraminous surface of said membrane support and for liquid tight sealing between a periphery of said membrane support and said membrane and to substantially eliminate retention of fluid in said connector and said first microtube;
- f) a tubular adapter receivingly engaging at least said connector assembly for properly positioning and supporting said dual microtube and connector assembly within a centrifuge rotor when said first and second microtubes are connected by said connector means; and
- g) said dual invertible microtube and connector assembly are adapted for inversion for unvented treatment of said sample solution and for direct centrifugation of treated samples retained in said microtubes.
- 12. A dual microtube and connector assembly for treatment of micro solution samples as in claim 11 which includes an ultrafiltration membrane having an average pore size of about 0.45 .mu.m.
- 13. A dual microtube and connector assembly for treatment of micro solution samples as in claim 12 wherein said ultrafiltration membrane includes a component for treating said solution during passage therethrough.
- 14. A dual microtube and connector assembly for treatment of micro solution samples as in claim 11 wherein said tubular adapter comprises in operative combination:
- a) a first outer centrifuge adapter tube having slip-fit therewithin a second, shorter inner adapter tube;
- b) said outer tube having an inside diameter sized to receive said connector means in slip-fit engagement;
- c) said inner tube having an inside diameter sized to receive the exterior of said second microtube and to provide a shoulder for receiving said connector means in abutment thereagainst;
- d) said inner tube having an axial length to support said container with its closed end spaced from the bottom of said inner tube; and
- e) said adapter combination permitting proper positioning and support of said dual microtube and connector assembly within a centrifuge rotor.
- 15. A universal adapter assembly as in claim 14 wherein:
- a) a hole is provided in at least one of said adapter tubes to permit air to escape upon assembly thereof.
- 16. A connector assembly for connecting the threaded open ends of a pair of substantially identical, generally tubular microtubes in a connection-type invertible treatment system for micro solutions wherein a sample solution placed in a first microtube is passed through a membrane by inversion of the microtube containing the sample solution to be filtered over a second microtube with the treated sample collected in the second microtube with a minimum of solution loss, said connector comprising in operative combination:
- a) an outer sleeve portion having a first threaded connector end for engaging the threaded open end of said first microtube and a second connector end sized for slip fit engagement with the open end of said second microtube;
- b) means for retaining a membrane at a recessed distance within the open end of said second container and which includes:
- i) an inner tubular membrane support having a first end integrally attached to said outer sleeve member adjacent said outer sleeve first threaded end and a second free end disposed sized for insertion within the open end of said second microtube;
- ii) said second end of said inner tubular membrane support having a generally flat foraminous surface for receiving a membrane;
- c) means for securing said membrane to said foraminous membrane support, and for liquid tight sealing between a periphery of said membrane support and said membrane and to substantially eliminate retention of fluid in said connector and said first container; and
- d) said first and said second microtubes and said connector providing an invertible dual microtube and connector assembly adapted for inversion for unvented treatment of of a sample solution and for direct centrifugation of treated samples retained in said microtubes.
- 17. A microsolution test kit comprising in operative combination:
- a) a plurality of microtubes and at least one connector to permit formation of a dual invertible microtube and connector assembly for transfer and treatment of micro solutions and centrifugation as in claim 1;
- b) a predetermined quantity of a known reagent coated on at least a portion of the inner wall surface of at least one of said first and said second microtubes to provide at least one micro solution reaction microtube;
- c) a filter member disposable in said connector for filtering and/or applying a predetermined treatment to a sample solution while passing said sample solution from laid source microtube to said target microtube by inversion of said source microtube containing said sample solution to be treated over said second target microtube;
- d) said reagent providing, upon introduction of a preselected reactant solution into the microtube containing said reagent, in situ delivery without meniscus errors of quantitatively correct amount of a required reagent for precise control of a reaction therewith; and
- e) a container having therein a plurality of said cooperating micro solution reaction microtubes, at least one connector assembly and at least one said filter member, together forming a test kit to provide at least one dual invertible microtube and connector assembly adapted for inversion for unvented treatment of said sample solution and for direct centrifugation of treated samples retained in said microtubes.
- 18. A microsolution test kit as in claim 17 wherein:
- a) said reagent is selected from a compound, composition, mixture or element.
- 19. A microsolution test kit as in claim 18 wherein:
- a) said reagent is a lyophilized material.
- 20. A microsolution test kit as in claim 19 wherein:
- a) said reagent comprises an enzyme.
- 21. A microsolution test kit as in claim 20 wherein:
- a) said enzyme is neuraminidase.
- 22. A microsolution test kit as in claim 17 which includes:
- a) a filter member disposed in said connector means to filter reaction solution passing from said micro solution reaction microtube to a connected, receiving target microtube upon inversion.
- 23. A microsolution test kit as in claim 17 which includes:
- a) at least one aliquot of a buffer.
- 24. A microsolution test kit as in claim 23 wherein:
- a) said buffer is in tablet form or an ampoule of solution.
- 25. A microsolution test kit as in claim 17 which includes:
- a) at least one chart providing to the user of the kit a typical analyses, and the expected result of a preselected reaction product related to the associated reaction of a sample solution and the reagent in said micro solution reaction microtube.
- 26. A reaction kit as in claim 21 which includes:
- a) at least one chart providing to the user of the kit a typical analyses, and the expected result, of a preselected reaction product related to the associated reaction of a sample solution and the reagent in said micro solution reaction microtube.
- 27. A microsolution test kit comprising in operative combination:
- a) a plurality of microtubes and at least one connector to permit formation of a double microtube and connector assembly as in claim 5;
- b) a predetermined quantity of a known reagent coated on at least a portion of the inner wall surface of at least one of said first and said second microtubes to provide at least one micro solution reaction microtube;
- c) a filter member disposable in said connector for filtering and/or applying a predetermined treatment to a sample solution while passing said sample solution from said source microtube to said target microtube;
- d) said reagent providing, upon introduction of a preselected reactant solution into the microtube containing said reagent, in situ delivery of quantitatively correct amount of a required reagent for precise control of a reaction therewith; and
- e) a container having therein a plurality of said cooperating micro solution reaction microtubes, at least one connector assembly and at least one said filter member, together forming a test kit.
- 28. A microsolution test kit as in claim 27 wherein:
- a) said reagent is selected from a compound, composition, mixture or element.
- 29. A microsolution test kit as in claim 28 wherein:
- a) said reagent is a lyophilized material.
- 30. A microsolution test kit as in claim 29 wherein:
- a) said reagent comprises an enzyme.
- 31. A microsolution ion test kit as in claim 30 wherein:
- a) said enzyme is neuraminidase.
- 32. A microsolution test kit as in claim 27 which includes:
- a) a filter member disposed in said connector to filter reaction solution passing from said micro solution reaction microtube to a connected, receiving target microtube upon inversion.
- 33. A microsolution test kit as in claim 27 which includes:
- a) at least one aliquot of a buffer.
- 34. A microsolution test kit as in claim 33 wherein:
- said buffer is in tablet form or an ampoule of solution.
- 35. A microsolution test kit as in claim 27 which includes:
- a) at least one chart providing to the user of the kit a typical analyses, and the expected result of a preselected reaction product related to the associated reaction of a sample solution and the reagent in said micro solution reaction microtube.
- 36. A reaction kit as in claim 31 which includes:
- a) at least one chart providing to the user of the kit a typical analyses, and the expected result, of a preselected reaction product related to the associated reaction of a sample solution and the reagent in said micro solution reaction microtube.
- 37. A filter member as in claim 17 wherein said filter member is for single use and has deposited thereon a color indicator reagent which changes color when a fluid is passed therethrough.
- 38. A connector as in claim 17 wherein said connector is for single use only and having disposed therein a single use filter member, said filter member having deposited thereon a color indicator reagent which changes color when a fluid is passed through said single use filter member.
- 39. A filter member as in claim 27 wherein said filter member is for single use and has deposited thereon a color indicator reagent which changes color when a fluid is passed therethrough.
- 40. A connector as in claim 27 wherein said connector is for single use only and having disposed therein a single use filter member, said filter member having deposited thereon a color indicator reagent which changes color when a fluid is passed through said single use filter member.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of three applications, all filed by one of us. The first application is Ser. No. 08/094,659, filed on Jul. 20, 1993, now abandoned for Connection Type Treatment System For Micro Solution And Method Of Treatment, which in turn is a C-I-P of Ser. No. 07/930,017 filed Aug. 13, 1992 now abandoned, of the same title, now abandoned, which in turn is a C-I-P of Ser. No. 07/791,837 filed Nov. 14, 1991 now abandoned, of the same title, now abandoned, the benefit of the filing dates of which we claimed under 35 U.S.C. .sctn.120.
This application is a C-I-P of a second application of the same inventor, Ser. No. 08/136,711, filed Oct. 12, 1993, for Connection Type Treatment System For Micro Solution And Method Of Treatment now abandoned, which is a file wrapper continuation of Ser. No. 07/930,017, filed Aug. 13, 1992, of the same title, now abandoned, which in turn is a C-I-P of Ser. No. 07/791,837 filed Nov. 14, 1991, of the same title, now abandoned, the benefit of the filing dates of which we claimed under 35 U.S.C. .sctn.120.
This application is a C-I-P of a third application of the same inventor, Ser. No. 08/006,783, filed Jan. 21, 1993, now abandoned, for biochemical Microanalysis System, which is a C-I-P of Ser. No. 07/930,017, filed Aug. 13, 1992, now abandoned, for Connection Type Treatment System For Micro Solution And Method Of Treatment, now abandoned, which in turn is a C-I-P of Ser. No. 07/791,837 filed Nov. 14, 1991, of the same title, now abandoned, the benefit of the filing dates of which we claimed under 35 U.S.C. .sctn.120.
US Referenced Citations (14)
Foreign Referenced Citations (1)
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7218833 |
Mar 1972 |
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Related Publications (2)
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Oct 1993 |
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6783 |
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Continuations (1)
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Continuation in Parts (4)
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Jul 1993 |
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