This invention relates to valve assemblies for use with liquid containers and drug vials.
U.S. Pat. No. 4,607,671 to Aalto et al. illustrates and describes a reconstitution device for constituting a drug in a standard drug vial with a liquid in a second container such as a parenteral solution container. The reconstitution device includes a housing and a hollow, double-pointed needle mounted within the housing. The housing includes a sheath having a substantially circular base and a skirt depending from the base. The skirt includes a free end, a substantially cylindrical inner surface and an outer surface. A plurality of inwardly projecting bumps are intermittently spaced about the inner surface. The bumps are disposed a substantially equal distance from the base, the distance being substantially equal to the width of the malleable band.
U.S. Pat. No. 5,304,163 to Bonnici et al. illustrates and describes an integral reconstitution device including a flexible container having an administration port and a flexible tube extending therefrom. The administration port includes an access membrane through which a spiked cannula can be inserted to gain access to the interior of the flexible container. The flexible tube contains a frangible or breakaway valve therein. Permanently secured to the end of the flexible tube is a sheath having a substantially circular base and an open-ended skirt including an inner surface depending from the base. The skirt includes a plurality of inwardly projecting bumps intermittently spaced around the inner surface to sealingly engage a standard drug vial. A sharp cannula is mounted within the skirt to pierce the stopper of the standard drug vial to establish fluid communication between the cannula and the interior of the drug vial. A peelable closure is provided covering the skirt opening prior to use to maintain a sterile condition of the device. A lumen is provided in housing to establish fluid communication between the cannula and the frangible or breakaway valve.
U.S. Pat. No. 8,025,653 to Capitaine et al. illustrates and describes a luer connector, a medical connector for a receptacle having a piercable stopper and a transfer set including such a luer connector. This luer connector comprises an internal conduit for a fluid to pass, elements of connection to a second luer connector having a perforator, these connection elements being placed at one of its ends. This end also includes a continuous rim forming a projection in the conduit so as to provide a seal thereon when the perforator is introduced into the conduit with a view to coupling these connectors. A breakable membrane is also placed in the conduit so as to be separated when the second luer connector is coupled to this luer connector.
The present invention is directed towards valve assemblies for use with a liquid container and a medicament containing drug vial for enabling an initial transfer of liquid contents from the liquid container to the drug vial for liquid drug formation purposes and a subsequent transfer of liquid drug contents from the drug vial to the liquid container for administration purposes. The liquid container can be a bottle, an IV bag, and the like. The liquid container typically includes dual access ports. The liquid contents can either reconstitute a powder medicament or dilute a liquid medicament contained in the drug vial.
The valve assemblies include a conventional drug vial adapter with a cannula and a male connector and an access port adapter having an access port connector for sealing insertion into one of the dual access ports and a female connector for sealingly mounting on the male connector. The drug vial adapter is manually reciprocal with respect to the access port adapter between a closed position for precluding flow communication between a liquid container and a drug vial and an open position for enabling flow communication between a liquid container and a drug vial.
Manual reciprocal arrangements can include inter alia screw thread arrangements, push-pull arrangements, and the like. The reciprocal arrangements enable sealing of the valve assembly after transfer of the liquid contents from a drug vial to a liquid container to avoid draining or leakage from the liquid container to the drug vial. The reciprocal arrangements also preclude breakage of a seal thereby ensuring that no seal fragments or particulates mix with the drug vial contents on transfer of liquid contents.
The male connector is preferably a male Luer lock connector. Suitable drug vial adapters with male Luer lock connectors are commercially available from West Pharmaceutical Services, Inc. Lionville, Pa. 19341, USA www.westpharma.com. The drug vial adapters can be implemented in non-vented and vented versions. The valve assemblies are preferably pre-attached to a liquid container to form a liquid drug transfer set with a removable sealing member mounted on its cannula for ensuring sterile condition until use. Alternatively, liquid drug transfer sets can include a valve assembly packaged in sterile blister packaging ready for attachment to a liquid container prior to use.
In order to understand the invention and to see how it can be carried out in practice, preferred embodiments will now be described, by way of non-limiting examples only, with reference to the accompanying drawings in which similar parts are likewise numbered, and in which:
The drug vial adapter 40 has a longitudinal drug vial adapter axis 40A and includes a drug vial adapter body 41 with a top wall 42 transverse to the longitudinal drug vial adapter axis 40A, a downward depending flared skirt 43 with a multitude of flex members 44 for snap fitting onto the drug vial 10, a pointed tubular cannula 46 with a cannula tip 47 for puncturing the drug vial stopper 16, and a flow communication lumen 48 in flow communication with the cannula 46. The flow communication lumen 48 terminates in an upright male connector 49 mounted on the top wall 42 opposite the cannula 46. The male connector 49 has an annular male connector rim 51. The male connector 49 is formed with a locking collar 52 having an internal screw thread 53 and a pair of opposite peripheral slots 54. The peripheral slots 54 each have a sector angle between about 45° and about 90° to delimit rotation between the drug vial adapter 40 and the access port adapter 60.
The access port adapter 60 has a longitudinal access port adapter axis 60A intended to be co-directional with the longitudinal drug vial adapter axis 40A and preferably co-axial therewith. The access port adapter 60 includes a tubular main body 61 having a lumen 62, an access port connector 63 for sealing insertion into the access port 21 and a female connector 64 for sealingly mounting on the male connector 49. The female connector 64 has a distal end 64A with an external screw thread 66 for screw thread engagement with the internal screw thread 53. The lumen 62 includes a transverse crosspiece 67 midway between the access port connector 63 and the female connector 64. The crosspiece 67 has a crosspiece upperside 67A facing towards the access port connector 63 and a crosspiece underside 67B facing towards the female connector 64. The crosspiece 67 includes four equispaced longitudinal throughgoing bores 68 peripherally disposed adjacent the main body 61. The crosspiece underside 67B is formed with a sealing projection 69 for selective sealing insertion into the flow communication lumen 48 at the male connector 49.
The access port adapter 60 includes a pair of longitudinal directed legs 71 each having an inwardly directed projection 72 facing towards the external screw thread 66 for insertion into the peripheral slots 54. The access port adapter 60 includes a pair of opposite radial directed wings 73 for assisting manual rotation of the drug vial adapter 40 relative to the access port adapter 60. The wings 73 have uppermost wing surfaces 73A. The female connector 64's pair of longitudinal directed legs 71 with their corresponding inwardly directed projections 72 are rotatable in the locking collar 52's pair of peripheral slots 54 between a first extreme position corresponding with a closed position of the valve assembly 30A (see
In the closed position, the annular male connector rim 51 bears against the crosspiece underside 67B to seal the peripheral throughgoing bores 68 for sealing the lumen 62 for precluding flow communication between the IV bag 20 and the drug vial 10. The sealing projection 69 is sealingly inserted in the flow communication lumen 48 at the male connector 49 in the closed position to ensure no liquid leakage through the lumen 62. The uppermost wing surfaces 73A define a height H1 relative to a reference surface S in the closed position. Manual loosening rotation of the drug vial adapter 40 relative to the access port adapter 60 delimited by the movement of the inwardly directed projections 72 within the peripheral slots 54 displaces the annular male connector rim 51 from the crosspiece underside 67B to unseal the peripheral throughgoing bores 68 for unsealing the lumen 62 in the open position for enabling flow communication between the access port connector 63 and the female connector 64 (see
The sealing member 90 includes a securing member 91 extending across the skirt 43 and a sleeve 92 mounted upright on the securing member 91 for sealingly mounting on the cannula 46. The securing member 91 includes slits 93 for fitting onto opposite flex member distal ends. The sealing member 90 includes a tamper proof evidence foil 94 for indicating integrity of the valve assembly 30A prior to use.
The valve assemblies 30B and 30C are shown in use with an IV bag 20 having a first access port 21 fitted with a self-sealing plug 24 and a second access port 22 fitted a twist off cap 26. The valve assemblies 30B, 30C and 30D are intended to be supplied as a discrete item in a sterile blister pack 31 therefore precluding the need for the sealing member 90.
The leading access port adapter component 81 includes a pair of longitudinal lumens 83 lateral to a sealing projection 84. The trailing access port adapter component 82 includes a longitudinal lumen 86 in flow communication with the lumen 62. In the closed position of the valve assembly 30C, the sealing projection 84 seals the lumen 86 for precluding flow communication between an IV bag and a drug vial. In the open position of the valve assembly 30C, the sealing projection 84 is disposed above the lumen 86 for enabling flow communication between the lumens 83 and the lumen 86 and therefore between an IV bag and drug vial.
While the invention has been described with respect to a limited number of embodiments, it will be appreciated that many variations, modifications, and other applications of the invention can be made within the scope of the appended claims.
Number | Date | Country | Kind |
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215699 | Oct 2011 | IL | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IL2012/000354 | 10/10/2012 | WO | 00 | 3/14/2014 |