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US3654925A - Plasma separator system - Google Patents

Plasma separator system
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Publication number
US3654925A
US3654925AUS860191AUS3654925DAUS3654925AUS 3654925 AUS3654925 AUS 3654925AUS 860191 AUS860191 AUS 860191AUS 3654925D AUS3654925D AUS 3654925DAUS 3654925 AUS3654925 AUS 3654925A
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blood
collecting tube
tube
cell
stopper
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US860191A
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William J Holderith
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Becton Dickinson and Co
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Becton Dickinson and Co
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Abstract

A blood-collecting tube of the evacuated type containing an anticoagulant receives through normal techniques whole blood to be tested. Thereafter, a cell-collecting tube is interconnected with the blood-collecting tube through the intermediary of a double-ended needle assembly including an external discoidal hub intermediate the ends thereof, such that the interior of both tubes communicate with one another. The tubes with the interconnecting needle assembly are then subjected to centrifugation with the cell-collecting tube being spaced radially outwardly relative to the blood-collecting tube and the axis of rotation. Upon generation of sufficient centrifugal forces, the plasma separates from the heavier constituents with the latter and particularly the blood cells being forced out into the cell-collecting tube and packed therein. The relative capacities of the tubes are such that in the blood-collecting tube only plasma will remain following completion of centrifugation. The needle assembly is then removed from the blood-collecting tube to effectively separate and remove plasma from the remaining constituents of the blood.

Description

United States Patent [151 3,654,925 51 Apr. 11,1972
Holderith [54] PLASMA SEPARATOR SYSTEM [72] Inventor: William J. Holderith, Wyckoff, NJ.
[73] Assignee: Becton, Dickinson and Company, East Rutherford, NJ.
[22] Filed: Sept. 23, 1969 [21] Appl. No; 860,191
[52] US. Cl ..128/272, 128/318 M [51] Int. Cl. ..A61j 01/00 [58] Field ofSearch ..l28/2,2l8 M,218D, 272
[56] References Cited UNITED STATES PATENTS 1,614,067 1/1927 Heublein ..128/272 1,928,998 10/1933 Kovacs ..128/272 2,342,214 2/1944 Perelson... ..128/272 UX 2,655,919 10/1953 Goodstein et a1. ..128/218 M 2,734,649 2/1956 Callahan et al. ....128/272 X 2,908,274 10/1959 Bujan ....128/272 3,200,813 8/1965 Christakis. ..128/2 3,221,741 12/1965 LeVeen ....128/272 3,490,437 l/1970 Bakondy et a1. ..128/272 X Primary Examiner-Joseph S. Reich Attorney-Kane, Dalsimer, Kane, Sullivan and Smith [5 7] ABSTRACT A blood-collecting tube of the evacuated type containing an anticoagulant receives through normal techniques whole blood to be tested. Thereafter, a cell-collecting tube is interconnected with the blood-collecting tube through the intermediary of a double-ended needle assembly including an external discoidal hub intermediate the ends thereof, such that the interior of both tubes communicate with one another. The tubes with the interconnecting needle assembly are then subjected to centrifugation with the cell-collecting tube being spaced radially outwardly relative to the blood-collecting tube and the axis of rotation. Upon generation of sufficient centrifugal forces, the plasma separates from the heavier constituents with the latter and particularly the blood cells being forced out into the cell-collecting tube and packed therein. The relative capacities of the tubes are such that in the bloodcollecting tube only plasma will remain following completion of centrifugation. The needle assembly is then removed from the blood-collecting tube to effectively separate and remove plasma from the remaining constituents of the blood.
1 Claims, 3 Drawing Figures PLASMA SEPARATOR SYSTEM BACKGROUND OF THE INVENTION In the testing of blood, it is often desired to obtain a sample of blood plasma, the clear, straw-colored liquid left when all formed elements in uncoagulated blood have been removed. To obtain plasma, it is common practice to draw blood into a tube containing an anticoagulant, centrifuge this sample, and remove the supernatant plasma either by decanting (pouring it off) or removing it with an aspirating device such as a pipette or syringe. These removal methods are not entirely satisfactory in that both require the tube to be opened and exposed to the air, thereby risking contamination. The decanting method also risks mixing of the formed elements with the plasma, rendering the plasma unusable. The transfer method is also unsatisfactory in that the sample may be contaminated by the transfer device, and the cost of the transfer device adds extra expense to the determination and analysis.
SUMMARY OF THE INVENTION It is, therefore, an object of this invention to provide a more effective system and procedure for removing plasma from whole blood after the sample has been centrifuged.
Another object is to provide a device and system of this type which permits the removal of the plasma portion without disturbing the packed red cells thus allowing the use of pure plasma in many tests wherein the presence of formed elements might render the test invalid.
A further object is to provide a system of this type which is essentially closed" in that neither portion of the original sample is exposed to the atmosphere.
BRIEF DESCRIPTION OF THE DRAWING FIG. 3 is a similar longitudinal sectional view showing theblood-collecting tube associated with the cell-collecting tube through the intermediary of the double-ended needle.
DESCRIPTION OF THE PREFERRED EMBODIMENTS The illustrated blood plasma collecting system includes a blood-collecting tube such as is described in US. Pat. No. 2,460,641 titled Blood Collecting Apparatus, granted Feb. 21, 1949 a cell-collecting tube 12, and anintermediate needle assembly 14 which may be either affixed to the stopper of the cell-collecting tube 12 or be constructed as a separate unattached assembly. Referring initially to thetube 10, it will be noted that atubular body 16 of essentially cylindrical configuration includes a closedend 18 and anopen end 20. Sealing theopen end 20 is a penetrable self-sealable stopper 22. In accordance with conventional practice, thestopper 22 cooperates in maintaining a vacuum within thetube 10 which also conveniently receives an anticoagulant for whole blood. Thestopper 22 includes an interiorly disposedplug portion 24 and an exterior radially extendingflange portion 26 disposed against theopen end 20. An exteriorconical recess 28 facilitates penetration of thestopper 22 by a pointed needle. The interior of theplug portion 24 includes aninner end 30 forming the base of a truncated conical recess, the conical walls of which serve a funneling function in facilitating the complete removal of the solid constituents of whole blood during centrifugation in a manner to be described in detail below.
The cell-collecting tube 12, on the other hand, includes atubular body portion 32 having a closedend 34 and anopen end 36 across which astopper 38 extends in sealing relationship. In this connection, the capacity oftube 10 relative totube 12 should be such that all of the heavier constituents of the separated blood are accommodated and only a minimum amount of plasma will be present. Thestopper 38 includes theusual plug portion 40 andflange portion 42. This stopper is also adapted to be penetrated and self-scalable. For purposes of this invention, thetube 12 need not be evacuated and may possess essentially the same capacity astube 10, but is preferably smaller in volume.
Theneedle assembly 14 is provided with a double-ended cannula 44 having bevelpointed ends 46 and 48. Ahub 50 is affixed to acannula 44 intermediate its ends. Theneedle assembly 14 may conveniently form a part of thetube 12 as shown in FIG. 2 or be an independent assembly but necessary component or part of the plasma-collecting system of this invention.
In use, the blood-collectingtube 10 is employed together with a double-ended hypodermic needle (not shown) to collect a sample of venous or arterial blood in a manner similar to that disclosed in US. Pat. No. 2,460,641. As soon as convenient thereafter, the cell-collecting tube 12 is attached totube 10 by inserting thebevel end 46 ofcannula 44 throughstopper 22, such that the parts assume the position illustrated in FIG. 3. The assembly is then placed in a centrifuge (not shown) and held therein in such a manner that centrifugal forces will act along the common axis of the assembly from the blood-collectingtube 10 towards the cell-collectingtube 12. The centrifuge is run for a sufficient period of time to enable the generated centrifugal forces to force the liquid in thetube 10 to displace the air intube 12 and eventually urge the solid constituents of the blood and particularly the cells thereof to be packed within thetubular body 32 of cell-collectingtube 12 as shown in FIG. 3. The plasma passes through thecannula 44 into thetube 10 with a minor portion of the plasma remaining intube 12. When centrifugation is complete the assembly is removed and thetube 10 separated from the needle assembly l4, and consequently thetube 12. Remixing of plasma and the fomied elements or solid constituents of the blood is prevented by removal of the connecting cannula, while the assembly is held vertically and contamination is prevented by maintaining a closed system which can be made entirely sterile if desired.
As stated in the foregoing, theconical recess 30 ofstopper 22 avoids entrapment of red cells or other solid constituents in theupper tube 10 during centrifugation. It is also preferred that thebevel end 46 ofcannula 44 not protrude into theconical recess 30 for this same reason but be disposed in thecylindrical extension 32 of this recess. By the same token, thebevel end 48 ofcannula 44 should be disposed within thetube 12 and related to its internal capacity such that this bevel end be disposed in the plasma portion and not protrude into the packed cell portion following centrifugation.
In an alternate embodiment of the plasma separator system,tubes 10 and 12 may be of substantially equal size and capacity. With this in mind both tubes may be utilized to collect blood. However, theneedle assembly 14 does not form part oftube 12 and is a separate unit which is thereafter employed to join the tubes together. This assembly is then centrifuged and the blood separated. The plasma and cells are then isolated one from the other and collected for the intended purposes.
Thus, the aforenoted objects and advantages are most effectively obtained. Although several preferred embodiments of the invention have been disclosed and described in detail herein, it should be understood that this invention is in no sense limited thereby and its scope is to be determined by that of his appended claims.
Iclaim:
l. A plasma separating system comprising in combination a blood-collecting tube comprising a tubular body having a closed end and an open end fitted with a needle penetrable stopper; said stopper extending across and covering the open end thereof; said blood-collecting tube having whole blood disposed therein; a cell-collecting tube comprising a tubular body having a closed end and an open end fitted with a stopper; said stopper extending across and closing the open end thereof; said cell-collecting tube having a volume such that the cells obtained from separating whole blood disposed in the blood-collecting tube would fill a major portion of the cell-collecting tube; a double-ended needle assembly mounted on the blood-collecting and cell-collecting tubes; said doubleended needle assembly having cannula and a hub disposed between the ends thereof, each end of the cannula having a beveled pointed end so as to penetrate through the stopper of the blood-collecting tube and the stopper of the cell-collecting tube so that the interior of each of said tubes is in fluid communication with each other whereby the cells contained in the whole blood are adapted to be separated by external forces on said system and when separated will substantially till a major portion of the cell-collecting tube by passing through the cannula of the double needle assembly and, at the same time, the liquid plasma portion of the whole blood will fill at least a portion of the blood-collecting tube, and said hub being adapted to engage with an exterior surface of said stopper on said cellcollecting tube such that the pointed end of the needle associated with the cell-collecting tube is disposed interiorly thereof and short of the cells of the blood collected therein following said separation.

Claims (1)

1. A plasma separating system comprising in combination a bloodcollecting tube comprising a tubular body having a closed end and an open end fitted with a needle penetrable stopper; said stopper extending across and covering the open end thereof; said bloodcollecting tube having whole blood disposed therein; a cellcollecting tube comprising a tubular body having a closed end and an open end fitted with a stopper; said stopper extending across and closing the open end thereof; said cell-collecting tube having a volume such that the cells obtained from separating whole blood disposed in the blood-collecting tube would fill a major portion of the cell-collecting tube; a double-ended needle assembly mounted on the blood-collecting and cell-collecting tubes; said double-ended needle assembly having cannula and a hub disposed between the ends thereof, each end of the cannula having a beveled pointed end so as to penetrate through the stopper of the blood-collecting tube and the stopper of the cell-collecting tube so that the interior of each of said tubes is in fluid communication with each other whereby the cells contained in the whole blood are adapted to be separated by external forces on said system and when separated will substantially fill a major portion of the cell-collecting tube by passing through the cannula of the double needle assembly and, at the same time, the liquid plasma portion of the whole blood will fill at least a portion of the blood-collecting tube, and said hub being adapted to engage with an exterior surface of said stopper on said cellcollecting tube such that the pointed end of the needle associated with the cell-collecting tube is disposed interiorly thereof and short of the cells of the blood collected therein following said separation.
US860191A1969-09-231969-09-23Plasma separator systemExpired - LifetimeUS3654925A (en)

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US3866608A (en)*1973-10-231975-02-18Sorenson Research CoAseptic suction collection system and method
US3939822A (en)*1974-08-141976-02-24Jack MarkowitzDisposable blood collection and filtering device
US4230584A (en)*1976-10-211980-10-28Terumo CorporationLiquid separating composition and apparatus for applying said composition
US4811866A (en)*1987-01-021989-03-14Helena Laboratories CorporationMethod and apparatus for dispensing liquids
US4818386A (en)*1987-10-081989-04-04Becton, Dickinson And CompanyDevice for separating the components of a liquid sample having higher and lower specific gravities
US4824560A (en)*1985-04-181989-04-25Assaf Pharmaceutical Industries Ltd.Separation of materials from a liquid dispersion by sedimentation
US5555920A (en)*1991-04-301996-09-17Automed CorporationMethod and apparatus for aliquotting blood serum or blood plasma
US5968018A (en)*1996-10-301999-10-19Cohesion CorporationCell separation device and in-line orifice mixer system
US5997811A (en)*1997-07-021999-12-07Cohesion Technologies, Inc.Method for sterile syringe packaging and handling
US6132353A (en)*1996-10-212000-10-17Winkelman; James W.Apparatus and method for separating plasma or serum from the red cells of a blood sample
US20020169408A1 (en)*1997-06-242002-11-14Roberto BerettaSystems and methods for preparing autologous fibrin glue
US20040071786A1 (en)*1997-06-242004-04-15Grippi Nicholas A.Methods and devices for separating liquid components
US20060196885A1 (en)*2005-02-212006-09-07Biomet Manufacturing Corp.Method and apparatus for application of a fluid
WO2007021344A1 (en)*2005-08-172007-02-22Cascade Medical Enterprises, LlcSystems and methods for preparing autologous fibrin glue
US20080190857A1 (en)*2005-03-222008-08-14Cascade Medical Entrprises, LlcSystem and Methods of Producing Membranes
US20090250413A1 (en)*2008-04-042009-10-08Biomet Biologics, LlcSterile Blood Separating System
US20090258056A1 (en)*1997-06-242009-10-15Cascade Medical Enterprises, LlcSystems and methods for preparing autologous fibrin glue
US20100288694A1 (en)*2009-05-152010-11-18Becton, Dickinson And CompanyDensity Phase Separation Device
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US8313954B2 (en)2009-04-032012-11-20Biomet Biologics, LlcAll-in-one means of separating blood components
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US8337711B2 (en)2008-02-292012-12-25Biomet Biologics, LlcSystem and process for separating a material
US8567609B2 (en)2006-05-252013-10-29Biomet Biologics, LlcApparatus and method for separating and concentrating fluids containing multiple components
US8591391B2 (en)2010-04-122013-11-26Biomet Biologics, LlcMethod and apparatus for separating a material
US8596470B2 (en)2007-04-122013-12-03Hanuman, LlcBuoy fractionation system
US8603346B2 (en)2002-05-242013-12-10Biomet Biologics, LlcApparatus and method for separating and concentrating fluids containing multiple components
WO2014019255A1 (en)*2012-07-312014-02-06上海科华检验医学产品有限公司Vacuum blood collection pipe capable of directly separating serum and method thereof
US8783470B2 (en)2009-03-062014-07-22Biomet Biologics, LlcMethod and apparatus for producing autologous thrombin
US8808551B2 (en)2002-05-242014-08-19Biomet Biologics, LlcApparatus and method for separating and concentrating fluids containing multiple components
US8950586B2 (en)2002-05-032015-02-10Hanuman LlcMethods and apparatus for isolating platelets from blood
US9011800B2 (en)2009-07-162015-04-21Biomet Biologics, LlcMethod and apparatus for separating biological materials
US9339741B2 (en)2008-07-212016-05-17Becton, Dickinson And CompanyDensity phase separation device
US9556243B2 (en)2013-03-152017-01-31Biomet Biologies, LLCMethods for making cytokine compositions from tissues using non-centrifugal methods
US9642956B2 (en)2012-08-272017-05-09Biomet Biologics, LlcApparatus and method for separating and concentrating fluids containing multiple components
US9682373B2 (en)1999-12-032017-06-20Becton, Dickinson And CompanyDevice for separating components of a fluid sample
US9694359B2 (en)2014-11-132017-07-04Becton, Dickinson And CompanyMechanical separator for a biological fluid
US9701728B2 (en)2008-02-272017-07-11Biomet Biologics, LlcMethods and compositions for delivering interleukin-1 receptor antagonist
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US9897589B2 (en)2002-05-242018-02-20Biomet Biologics, LlcApparatus and method for separating and concentrating fluids containing multiple components
US10183042B2 (en)2002-05-242019-01-22Biomet Manufacturing, LlcApparatus and method for separating and concentrating fluids containing multiple components
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US8567609B2 (en)2006-05-252013-10-29Biomet Biologics, LlcApparatus and method for separating and concentrating fluids containing multiple components
US9649579B2 (en)2007-04-122017-05-16Hanuman LlcBuoy suspension fractionation system
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US9211487B2 (en)2008-04-042015-12-15Biomet Biologics, LlcSterile blood separating system
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