Dual Lumen IV Spiked Fluid Transfer Device
The dual-lumen fluid transfer device addresses the risk of undiluted medication administration by using separate pathways for mixing and infusion, enhancing patient safety through its innovative design.
Patent Information
- Application Number
- JP2021210619
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-04-30
- Filing Date
- 2021-12-24
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2040-01-13
AI Technical Summary
Conventional infusion systems risk administering undiluted, highly concentrated medicinal solutions to patients due to inadequate separation of medication and infusion fluid pathways, posing a safety hazard.
A fluid transfer device with dual lumens, one for mixing and one for administration, ensures separate pathways for highly concentrated medicinal solutions and infusion fluids, preventing direct administration of undiluted medication by using a monolithic three-pronged connector body with distinct IV spike lumens for mixing and administration.
Minimizes the risk of administering undiluted medication by ensuring separate fluid pathways, thereby enhancing patient safety during infusion processes.
Smart Images

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Abstract
Description
[Technical Field]
[0001] FIELD OF THE DISCLOSURE The present disclosure relates generally to liquid transfer devices. [Background technology]
[0002] Conventional infusion containers containing infusion fluids administered to patients typically take the form of infusion bags or infusion bottles. Prefilled syringes or vials are typically utilized to add a highly concentrated medication to the infusion contents via a fluid transfer device to form a diluted medicated infusion. The medicated infusion contents can then be infused into the patient by inserting an infusion set containing an IV spike into the IV port of the fluid transfer device. Minimizing the risk to patients of receiving a portion of the medication in a concentrated, undiluted form is important for patient safety.
[0003] The present disclosure provides for the advantageous manufacture of a fluid transfer device having separate lumens, one for mixing a highly concentrated medicinal solution with an infusion fluid and another for transferring a diluted medicinal solution to an infusion set as an additional measure to prevent the patient from receiving an undiluted highly concentrated medicinal solution. Additionally or alternatively, the present disclosure provides for the advantageous construction of a fluid transfer device that allows for mixing of the liquid within the lumen between the IV port and the port connected to the medicated infusion fluid contents prior to administering the medicated infusion fluid contents to the patient.
[0004] Briefly, the present disclosure relates to a fluid transfer device configured for use with an infusion container having an intravenous (IV) port for containing and administering an infusion solution, a vial containing a medicated excipient sealed by a vial stopper, and an infusion set for administration to a patient, the infusion set including an IV spike and connector for sealing insertion into the IV port. The fluid transfer device includes a monolithic three-pronged connector body at a first end defining a barrel, a single IV spike at a second end, and a vial adapter lumen at a third end. The IV port is connected to the barrel and configured to sealingly receive the IV spike of the infusion set. The vial adapter is permanently secured to the vial adapter lumen and adapted to telescopically mount to the vial. The vial adapter includes a vial spike fluidly connected to the vial adapter lumen and configured to pierce the vial stopper when attached to the vial to establish flow communication with the vial adapter lumen. The single IV spike is adapted to be sealed and inserted into the IV port of an infusion container. The single IV spike has a first IV spike lumen. The proximal end of the first IV spike lumen is fluidly connected only to the vial adapter lumen via the three-pronged connector body. The single IV spike has a second IV spike lumen. The proximal end of the second IV spike lumen is fluidly connected only to the IV port via the three-pronged connector body. Thus, fluid communication between the vial adapter and the single IV spike is separated from fluid communication between the IV port and the single IV spike. Meanwhile, the single IV spike allows for initial introduction of a pharmaceutical additive from a vial into an infusion container via the vial adapter and the first IV spike lumen to mix with the infusion solution to form a medicated infusion solution, and further allows for subsequent administration of the medicated infusion solution to a patient from the infusion container through the second IV spike lumen and the IV port to an infusion set. The first IV spike lumens have a first peripherally disposed distal opening and the second IV spike lumens have a second peripherally disposed distal opening.
[0005] Briefly, another aspect of the present disclosure relates to a method of using a liquid transfer device with a monolithic three-pronged connector body, the liquid transfer device including a monolithic three-pronged connector body defining a barrel at a first end, a single IV spike at a second end, and a vial adapter lumen at a third end, the method including attaching a vial adapter permanently secured to the vial adapter lumen to a vial containing a pharmaceutical additive, followed by piercing the vial stopper with the vial spike of the vial adapter fluidly connected to the vial adapter lumen, piercing an IV port of an infusion container containing the infusion solution with the single IV spike, and adding the pharmaceutical additive in the vial to the infusion solution in the infusion container (i.e., mixing the pharmaceutical additive with the infusion solution) to obtain a medicated infusion solution through the vial adapter lumen and the first IV spike lumen of the single IV spike. The first IV spike lumens have a proximal end fluidly connected only to the vial adapter lumen via the three-pronged connector body and have a first peripherally disposed distal opening adjacent to the distal end of the single IV spike. The method also includes inserting the IV spike of the infusion set into an IV port of the fluid transfer device. The IV port of the fluid transfer device is fluidly connected to a second IV spike lumens of the single IV spike. The second IV spike lumens have a proximal end fluidly connected only to the IV port and have a second peripherally disposed distal opening adjacent to the distal end of the single IV spike, thereby fluidly connecting the infusion set to an infusion container for administering a medicated infusion to a patient. [Brief explanation of the drawings]
[0006] The following detailed description of aspects of the present disclosure will be better understood when read in conjunction with the accompanying drawings, it being understood, however, that the disclosure is not limited to the precise arrangements and instrumentalities shown.
[0007] [Figure 1A] FIG. 1A is a front view of a bag-shaped infusion container that can be used in a liquid transfer device according to the present disclosure. [Figure 1B] FIG. 1B is a front view of an infusion container in the form of a flexible bottle that can be used in the liquid transfer device according to the present disclosure. [Figure 1C] FIG. 1C is a front view of a pre-filled needleless syringe and vial that can be used with a fluid transfer device according to the present disclosure. [Figure 1D] FIG. 1D is a front view of an infusion set that can be used with a fluid transfer device according to the present disclosure. [Figure 2A] FIG. 2A is a perspective view of a liquid transfer device having a depressed plunger structure according to a first embodiment of the present disclosure. [Figure 2B] FIG. 2B is a cross-sectional front view of the liquid transfer device shown in FIG. 2A taken along line 2B-2B. [Figure 3] FIG. 3 is a perspective view of the syringe plunger and IV port of the fluid transfer device shown in FIG. 2A. [Figure 4A] FIG. 4A is a perspective view of a liquid transfer device having a retracted plunger configuration of the present disclosure. [Figure 4B] 4B is a front view of the liquid transfer device shown in FIG. 4, taken along line 4B-4B. [Figure 5] FIG. 5 is a cross-sectional front view of another embodiment of a fluid transfer device having an alternatively configured IV spike. [Figure 6] FIG. 6 is a cross-sectional front view of the fluid transfer device shown in FIG. 2A taken along line 2B-2B, with another alternatively configured IV spike. [Figure 7A] 7A is an enlarged cross-sectional front view of one embodiment of the vial adapter of the liquid transfer device of FIG. 2A. [Figure 7B] 7B is an enlarged cross-sectional front view of another embodiment of the vial adapter of the liquid transfer device of FIG. 2A. [Figure 8] FIG. 8 is a perspective view of a liquid transfer device according to the second embodiment of the present disclosure. [Figure 9] 9 is a cross-sectional front view of the liquid transfer device of FIG. 8 taken along line 9-9. [Figure 10] 10 is a partially enlarged, exploded perspective view of an alternative attachment between a three-pronged connector body and an elongated connecting member, such as an IV port, in the fluid transfer device of FIG. 8. FIG. [Figure 11A] FIG. 11A is a cross-sectional front view of another embodiment of the liquid transfer device of FIG. 6 having an internal valve. [Figure 11B] FIG. 11B is a cross-sectional front view of another embodiment of the liquid transfer device of FIG. 6 having an internal valve. Summary of the Invention
[0008] In the following description, specific terminology is used for convenience, but the present disclosure is not limited thereto. The terms "below," "below," "up," and "above" refer to directions within the drawings to which reference is made. The terms inward, outward, upward, and downward refer, in this disclosure, to directions toward and away from, respectively, the geometric center of the liquid transfer device and its designated portion. Unless otherwise specified herein, the term "one" is not intended to be limited to one component, but should instead be interpreted as meaning "at least one." Specific terminology includes the above words, derivatives thereof, and words of similar import.
[0009] Terms such as "about," "approximately," "generally," and "substantially," used herein with respect to dimensions and properties of components of the present disclosure, should be understood to mean that the described dimensions and properties are not strict boundaries or parameters, nor do they exclude minor variations thereof that are functionally similar. At a minimum, such references involving numerical parameters will include variations that do not alter the numerical value of the least significant digit, using mathematical and industrial principles accepted in the art (e.g., rounding, measurement or other systematic errors, manufacturing tolerances, etc.). Reference is made to the several drawings, in which like numerals indicate like components. As shown in FIGS. 2A-6, a first embodiment of a liquid transfer device 30 of the present disclosure is intended for use in combination with an infusion container containing an infusion solution and an additive transfer device. In the illustrated embodiment, the liquid transfer device 30 is intended for use with an infusion container in the form of an infusion bag 10 (FIG. 1A). As will be appreciated by those skilled in the art, a conventional infusion bag 10 includes a reservoir 12 containing an infusion fluid in fluid communication with an intravenous administration port 14 and an additive port 16. The infusion bag 10 can be collapsed to administer the infusion fluid from itself. The fluid transfer device 30 may also be used with infusion containers in the form of flexible bottles 18 (FIG. 1B), etc. The illustrated embodiment of the fluid transfer device 30 is intended for use with an additive transfer device in the form of a sealed vial 20 (FIG. 1C). The vial 20 typically contains a highly concentrated medicinal fluid additive or a lyophilized powdered drug that requires reconstitution prior to administration to a patient, i.e., mixing with the infusion fluid in the bag 10 to form the medicinal solution administered to the patient. The contents of the vial 20 are introduced into the infusion bag 10 via the fluid transfer device 30 (as described in further detail below).
[0010] The fluid transfer device 30 includes a three-pronged connector body 32. In the embodiment depicted in FIGS. 2A-6, the three-pronged connector body 32 is a monolithic body defining a barrel 34 at a first end, a single IV spike 36 at a second end, and a vial adapter 38 at a third end. However, the present disclosure is not limited thereto (as further described below). As best shown in FIGS. 2B, 4B, and 5, the barrel 34 defines an internal chamber 34a including an open proximal end 34b for slidably receiving a plunger 40 (as further described below). The IV spike 36 defining the second end of the three-pronged connector body 32 enables use of the fluid transfer device 30 with an infusion bag 10, i.e., for sealingly inserting the IV spike 36 into the administration port 14 of the bag 10. The IV spike 36 may be preferably constructed of a rigid metal, polymer, or plastic material, such as polycarbonate. The IV spike may optionally include features such as a step 35 around the periphery of the surface of the IV spike 36 to limit insertion depth into the administration port 14 of the bag 10. In one embodiment, the flange 33 may be formed as an injection molded monolithic structure with the connector body 32, although the disclosure is not limited in this respect. A spike cap (not shown) may removably cover the IV spike 36 when the IV spike 36 is not in use.
[0011] As shown, the IV spike 36 is disposed coaxially and / or coaxially with the barrel 34 and includes two lumens 36a, 36b. In the illustrated configuration, the lumens 36a, 36b extend generally parallel to one another. The first IV spike lumen 36a is continuously and directly fluidly connected at its proximal end to only the vial adapter lumen 37. The vial adapter lumen 37 is disposed within the vial adapter 38 so as to branch off, i.e., angularly, from the IV spike 36. The first IV spike lumen 36a includes a first peripherally disposed distal opening 36c. As shown more clearly in FIGS. 2B, 4B, and 5, the first IV spike lumen 36a is not fluidly connected at its proximal end to the barrel chamber 34a. The second IV spike lumen 36b is directly and fluidly connectable at its proximal end to only the barrel chamber 34a. The second IV spike lumen 36b includes a second, peripherally disposed distal opening 36d that is separate from the first distal opening 36c of the first IV spike lumen 36a. The second IV spike lumen 36b is not fluidly connected at its proximal end to the vial adapter lumen 37 or at any point along the length of the IV spike 36. That is, the IV spike 36 includes two separate lumens 36a, 36b extending through the IV spike 36, providing separate, unconnected fluid pathways within the IV spike 36. Thus, the fluid communication between the vial adapter 38 and the IV spike 36 is separate from the fluid communication between the barrel chamber 34a and the IV spike 36.
[0012] The vial adapter 38 is adapted to be mounted to the vial 20 to enable use of the apparatus 30 with an additive transfer device in the form of the vial 20. In one form, the vial adapter 38 may be integrally formed with the third end of the connector body 32, i.e., integrally formed with or otherwise permanently secured and sealed to the end of the vial adapter lumen 37, although the present disclosure is not limited in this respect. As used throughout this specification and claims, "permanently secured" means non-removable and cannot be separated without damaging the apparatus or a portion thereof. As one non-limiting example, the vial adapter 38 may be ultrasonically welded to the vial adapter lumen 37.
[0013] 7A, vial adapter 38 includes top wall 38d, flexible and / or flared skirt 38a, and vial spike 38b. Flexible and / or flared skirt 38a is for attaching (in a standard manner) to vial 20 with a stretch snap fit. Vial spike 38b is for puncturing vial 20, for example, through its stopper, to establish fluid communication with the interior of vial 20. Vial spike 38b for puncturing includes lumen 38c in fluid communication with vial adapter lumen 37, which in turn is in fluid communication with first spike lumen 36a. As will be appreciated by those skilled in the art, the inner diameter of vial spike 38b, i.e., the diameter of lumen 38c, and / or the outer diameter of vial spike 38b can be sized appropriately for the intended application.
[0014] In the configuration of FIG. 7A , the vial spike 38b includes a base portion 39. The base portion 39 is generally concave relative to the axis of the vial spike 38b. The vial adapter 38 can be configured to minimize / prevent leaks resulting from a breach formed in the stopper of the vial 20 when the vial adapter 38 is pressed down toward the vial 20 and the vial spike 38b advances through the stopper. As shown in FIG. 7B , the extension of the base portion 39′ is generally convex relative to the axis of the vial spike 38b such that the base portion 39′ has a roughly bulbous configuration. When the vial adapter 38 is pressed down onto the vial 20 and the spike 38b advances through the vial stopper, the base portion 39′ is pressed against the upper surface of the vial stopper, causing the compressed material of the vial stopper to surround and seal the breach formed in the vial stopper. The puncturing of the vial stopper by the vial spike 38b generally involves the formation of a depression in the upper surface of the vial stopper. The convex base portion 39' is configured to fill the depression, thereby minimizing / preventing leakage. However, as should be understood by those skilled in the art, different sealing base portions / means, now known or later known, can be used to minimize leakage between the vial spike 38b and the elastomeric stopper of the vial 20. Additionally, other vial adapter structures, now known or later known, can alternatively be used.
[0015] Turning to the plunger 40, as best shown in FIGS. 2B, 3, 4B, and 5, the plunger 40 includes a vertically extending plunger tube 46. The plunger tube 46 defines a plunger tube lumen 46a therein. The plunger tube 46 is slidably engaged with the barrel 34 via a peripheral seal member 42 (e.g., constructed of an elastomeric material, etc.) interposed therebetween in a manner well understood by those skilled in the art. The plunger tube 46 is slidable within the barrel 34, forming a substantially airtight seal between the plunger tube 46 and the interior sidewall of the barrel 34. The plunger tube 46 and the sealing member 42, in combination with the barrel 34, define a sealed proximal end of the barrel chamber 34a. The plunger tube 46 includes a distal extended neck portion 44 that terminates in a check valve 48. In the illustrated embodiment, the check valve 48 has a duckbill valve shape and is constructed of an elastomeric material, etc., although the present disclosure is not limited in this regard. The check valve 48 can take the form of several other types of one-way valves capable of performing the functions of the check valve 48 described herein, such as, but not limited to, a ball valve, a silicone flapper valve, a diaphragm-type valve, an in-line valve, a stop check valve, a lift check valve, and the like.
[0016] As shown, the IV port 50 is fluidly coupled to the proximal end of the plunger tube 46. The IV port 50 includes a twist-off member 50a adjacent the free proximal end of the periphery of the port 50 and an elongated connecting member 52 projecting distally therefrom. The connecting member 52 has an internal lumen 52a extending therethrough and terminating at an open end (the end opposite the twist-off member 50a). The internal lumen 52a of the IV port 50 extends in the same direction as and / or coaxially with the plunger lumen 46a. In one embodiment, the IV port 50 can be constructed from a suitable flexible polymeric or plastic material, such as PVC. In the illustrated embodiment, the elongated connecting member 52 is bonded (e.g., adhesively bonded) to the plunger tube 46, although the present disclosure is not limited in this respect. For example, but not limited to, the elongated connecting member 52 can be permanently fixed and rotatably attached to the plunger tube 46 (e.g., as described in further detail below in conjunction with Figures 8-10).
[0017] The IV port 50 includes a septum 50b disposed within the elongated connecting member 52 and sealing across the inner lumen 52a. The twist-off member 50a can therefore be removed without providing fluid communication across the septum 50b. Fluid communication across the septum 50b, for example, with the plunger lumen 46a and beyond, is achieved only by puncturing the septum 50b (as described in more detail below). The twist-off member 50a keeps the IV port 50, and in particular the septum 50b, sterile until use.
[0018] In use, the fluid transfer device 30 can be coupled to the infusion bag 10 via the IV spike 36 (as described above). The user then withdraws the plunger 40 in a distal direction (e.g., away from the IV spike 36 (FIGS. 4A and 4B)). Alternatively, a dedicated handle can be used to attach the plunger 40 for transfer. When the plunger 40 is withdrawn while the distal opening 36d is immersed in the infusion fluid inside the bag 10, the infusion fluid is directed from the bag 10 through the distal opening 36d and the second IV spike lumen 36b into the barrel chamber 34a. The duckbill valve 48 prevents the infusion fluid from entering the plunger tube lumen 46a when the plunger 40 is withdrawn. As will be appreciated by those skilled in the art, withdrawal of the plunger 40 creates a vacuum within the barrel chamber 34a, creating a pressure differential against the infusion bag 10 and directing the infusion fluid into the barrel chamber 34a. It will also be appreciated that the infusion fluid will remain within barrel chamber 34a and second IV spike lumen 36b until manually expelled by methods well understood by those skilled in the art.
[0019] Before or after directing the infusion fluid from the infusion bag 10 into the barrel chamber 34a, the fluid transfer device 30 can be coupled to the vial 20 via the vial adapter 38 (as described above). A user may mix the contents of the vial 20 with the contents of the infusion bag 10 via the vial adapter lumen 37 and the first IV spike lumen 36a. That is, the infusion bag 10 and device 30 can be inverted, for example, so that the vial 20 is positioned above the bag 10, causing the contents of the vial 20 to flow into the infusion bag 10. If the vial 20 contains a lyophilized powdered medication, the medication can be reconstituted in a similar manner. After connecting the vial 20 to the fluid transfer device 30, the infusion bag 10 is held above the vial 20, allowing the infusion fluid from the infusion bag 10 to flow into the vial 20 and reconstitute the contents of the vial 20. The infusion bag 10 and device 30 are then inverted as described above, causing the contents of the reconstituted vial 20 to be expelled into the bag 10.
[0020] After orienting the fluid transfer device 30 to mix / combine the contents of the infusion bag 10 and the contents of the vial 20 and allow the mixed / combined fluid to flow into the infusion bag 10, the plunger 40 is depressed at least partially into the duckbill valve 48, engaging the distal end / rim of the second IV spike lumen 36b. In the illustrated embodiment, at least one of the elastomeric lips / flaps of the duckbill valve 48 is adjacent to and displaced / compressed by the proximal end 41 of the second IV spike lumen 36b, thereby opening the duckbill valve 48 for fluid flow. This is due to the sustained pressure exerted on at least one of the elastomeric lips / flaps of the duckbill valve 48 as a result of the plunger 40 being depressed into engagement with the proximal end / rim 41 of the second IV spike lumen 36b. The elastomeric lips / flaps of the valve 48 are displaced toward one another, thereby breaking the seal therebetween and allowing fluid flow therethrough. The twist-off member 50a is then removed (by well-known methods) to gain access to the internal lumen 52a. The IV port spike 96 of the infusion set 95 (FIG. 1D) is sealingly inserted into the internal lumen 52a and completely penetrates the septum 50b, thereby fluidly connecting the IV port spike 96 through the septum 50b to the remainder of the internal lumen 52a, and then (through the open duckbill valve 48) to the plunger lumen 46a and the second IV spike lumen 36b for administration of the medicated infusion to the patient. The IV port spike 96 typically extends from the end of the drip chamber 97a of the infusion set 95. Conventionally, the infusion set 95 further includes a roller clamp 97c for controlling fluid administration to the patient, a male luer connector 97d, and tubing 97b for fluidly connecting the roller clamp 97c to the drip chamber 97a.
[0021] Advantageously, the medicated infusion fluid is fluidly coupled to the infusion set 95 via the second IV spike lumens 36b, rather than via the first IV spike lumens 36a, which are utilized solely for mixing the highly concentrated medicated additive contained in the vial 20 with the infusion fluid contained in the infusion bag 10. This minimizes the possibility of administering a portion of the medicated additive to the patient in its undiluted, highly concentrated form. Furthermore, when the plunger 40 is depressed (as described above), the infusion fluid within the barrel chamber 34a is expelled through the second IV spike lumens 36b and the distal opening 36d. Thus, after the contents of the infusion bag 10 and the contents of the vial 20 are mixed using the fluid transfer device 30, the second IV spike lumens 36b and the distal opening 36d are not used for mixing, but are flushed out prior to use for transferring the medicated infusion fluid from the infusion bag 10 to the infusion set 95. This further minimizes the possibility of administering a portion of the medicated additive to the patient in its undiluted, highly concentrated form.
[0022] In another embodiment, as shown in FIG. 5, the distal end of the IV spike 36' is configured such that the first IV spike lumens 36a' extend further distally than the second IV spike lumens 36b'. Advantageously, therefore, the first distal opening 36c' is spaced a distance d from the distal opening 36d', thereby further minimizing the chance of undiluted, concentrated medicated infusion solution flowing out of the first distal opening 36c' and into the distal opening 36d'. The distance d is preferably greater than or equal to about 1.0 mm, more preferably greater than or equal to about 2.5 mm, and most preferably greater than or equal to about 4.0 mm.
[0023] In another alternative embodiment, as shown in FIG. 6, the IV spike 36'' includes a single lumen 36a'' with a single distal opening 36c''. This embodiment operates in a manner similar to the embodiment shown in FIGS. 2-4B, except that the withdrawal of fluid from or discharge of fluid into the barrel chamber 34a, and the mixing of the medication and fluid, occur in part through a common portion of the single lumen 36a''. As described above, flushing of the lumen 36a'' occurs between the steps of mixing the contents of the infusion bag 10 with the contents of the vial 20 and removing the twist-off member 50a to allow connection of the infusion set 95.
[0024] In the preferred embodiment shown in FIGS. 11A and 11B, a flow control valve 43 may be incorporated into the device, allowing a user to selectively fluidly connect either the vial adapter lumen 37 or the barrel chamber 34a to the single lumen 36a″ by rotating the flow control valve 43. The valve 43 can prevent highly concentrated drug additives contained in the vial 20 from being drawn into the barrel chamber 34a when the plunger tube 46 is withdrawn, as shown in FIG. 11A. Prior to mixing the contents of the vial 20 with the contents of the infusion bag 10, the valve 43 may be rotated to fluidly connect the vial adapter lumen 37 to the single lumen 36a″ and seal the barrel chamber 34a, as shown in FIG. 11B. Prior to depressing the plunger tube 46, the valve 43 may be rotated back to its original position shown in FIG. 11A to flush the infusion solution from the single lumen 36a″.
[0025] In another alternative embodiment, the vial adapter 38 may be removable. For example, the device may include a valve, such as the needleless additive control valve disclosed in U.S. Patent No. 8,551,067, the contents of which are incorporated herein by reference. Such a valve would allow the vial adapter 38 to be removed before the plunger tube 46 is withdrawn. The vial adapter 38 and the vial 20 are then connected via the valve, allowing the concentrated contents of the vial 20 to flow into the bag 20, followed by depressing the plunger tube 46 to flush the single lumen 36a''.
[0026] 8-10 illustrate a second embodiment of the liquid transfer device 130. The reference numerals of the second embodiment are distinguishable from the reference numerals of the first embodiment configuration (FIGS. 2A-7B) above, but otherwise refer to the same elements as above, except where otherwise noted. The liquid transfer device 130 of this embodiment is similar to the configuration of the first embodiment. Accordingly, a description of specific similarities and modes of operation between the embodiments will be omitted herein for brevity and convenience, but is not intended to be limiting.
[0027] One difference between the liquid transfer device 130 and the liquid transfer device 30 relates to the configuration of the first end of the connector body 132. As shown in FIGS. 8 and 9 , the plunger 40 has been removed, and the IV port 50 is directly and permanently fixed and sealed to the barrel 134, i.e., it cannot be removed or disassembled without damaging at least one of the IV port 150 or the barrel 134 or other parts of the device 130. Thus, the second IV spike lumen 136b of the single IV spike 136 is in direct and continuous fluid communication at its proximal end only with the inner lumen 152a of the elongated connecting member 152 of the IV port 150, and is not in fluid communication with the vial adapter lumen 137. The first IV spike lumen 136a of the single IV spike 136 is in direct and continuous fluid communication at its proximal end only with the vial adapter lumen 137, and is not in fluid communication with the inner lumen 152a of the elongated connecting member 152.
[0028] As shown in FIGS. 8 and 9 , the elongated connecting member 152 is bonded, e.g., adhesively bonded, to the barrel 134. As previously mentioned, the elongated connecting member 152 is permanently fixed to the barrel 134. As shown in FIG. 10 , for example, the barrel 134 terminates in an engaging member 154 having an open end 154 a. The engaging member 154 is configured to be sized, dimensioned, and made of a material appropriate to the inner diameter and material of the elongated connecting member 152, and is capable of entering the interior lumen 152 a to form an engaging, frictional, or interference fit therebetween. As should be understood by those skilled in the art, the orientation of the barbed engaging member 154 allows it to enter the interior lumen 152 a and sealingly securely attach the IV port 150 in that orientation above the barrel 134 of the connector body 132. It also substantially prevents withdrawal of the engaging member 154 without damaging at least one of the elongated connecting member 152 and the barbed engaging member 154.
[0029] As shown, engaging member 154 has a frusto-conical shape and a diameter that gradually increases away from open end 154a. The opposite end of engaging member 154 has a diameter that is larger than the diameter of barrel 134, such that any attempt to withdraw engaging member 154 from elongated connecting member 152 will result in interference between the inner wall of elongated connecting member 152 and annular rib 156. Thus, engaging member 154 can be advanced within inner lumen 152a of elongated connecting member 152 during assembly, but cannot be easily withdrawn thereafter without causing damage.
[0030] Additionally, the rim of the elongated connecting member 152 defines an open end 152b and includes at least one notch 158a. The barrel 134 includes at least one corresponding radial tab 158b. The radial tab 158b protrudes from the barrel 134 and is adapted to mate with the at least one notch 158a. In the illustrated embodiment, the elongated connecting member 152 includes a plurality of angularly spaced notches 158a, and the barrel 134 includes a plurality of correspondingly angularly spaced tabs 158b. The tabs 158b mate with the notches 158a upon attachment of the IV port 150 to the engaging member 154 of the barrel 134 to rotationally secure the IV port 150 relative to the rest of the fluid transfer device 130. Tab 158b also prevents relative rotation between barrel 134 and elongated connecting member 152, allowing twist-off member 150a to be removed prior to connection to infusion set 95, as described below.
[0031] In use, the fluid transfer device 130 can be coupled to a vial 20 via the vial adapter 138. A user may mix the contents of the vial 20 with the contents of the infusion bag 10 via the vial adapter lumen 137 and the first IV spike lumen 136a. After mixing the contents of the vial 20 with the contents of the infusion bag 10 and orienting the fluid transfer device 130 so that the mixed liquid flows into the infusion bag 10, the twist-off member 150a is removed (in a well-understood manner) to allow access to the internal lumen 152a. The IV port spike 96 of the infusion set 95 (FIG. 1D) is hermetically inserted into the internal lumen 152a and completely penetrates the septum 50b, thereby fluidly connecting the IV port spike 96 with the remainder of the internal lumen 152a beyond the septum 50b and then with the second IV spike lumen 136b for administering the medicated infusion to the patient.
[0032] Those skilled in the art will appreciate that modifications can be made to the above-described embodiments without departing from the broad inventive concept thereof. For example, instead of a vial adapter, the three-pronged connector body 32, 134 could include a normally closed (NC) needleless additive port (not shown) at its third end (allowing for the option of use with a syringe 22 or a vial 20). As another example, the vial adapter 38, 138 could be replaced by a manually operated stopcock or the like. As yet another example, the liquid transfer device 30 could include a locking mechanism for stabilizing and / or locking the plunger 40 in its different positions. It will be understood, therefore, that the present invention is not limited to the particular embodiments disclosed, but is intended to cover modifications within the spirit and scope of the present disclosure, as defined by the appended claims.
[0033] This application claims priority to and the benefit of U.S. Provisional Patent Application No. 62 / 840,620, entitled "Fluid Transfer Device with Dual Lumen IV Spike," filed April 30, 2019, the entire contents of which are incorporated herein by reference.
Claims
1. a vial adapter configured to receive a vial containing a medication, the vial adapter having a vial spike in communication with the vial adapter lumen and configured to puncture a stopper of the vial; an IV spike configured to be sealedly inserted into an administration port of a container of infusion fluid, the IV spike having a first IV spike lumens fluidly connected to the vial adapter lumen and a second IV spike lumens fluidly connected to an infusion set; a barrel coupled to an IV port configured to sealingly receive a port spike of the infusion set for connection to the infusion set; a plunger housed within the barrel, the plunger including a plunger tube slidable in a first direction while forming an airtight seal between the plunger and an inner sidewall of the barrel, the plunger tube being fluidly connected to the IV port; a connector having a first fluid path for introducing the medication from the vial to the container through the vial adapter lumen and the first IV spike lumen to mix with the infusion solution to produce a medicated infusion solution, and a second fluid path for introducing the medicated infusion solution from the container to the infusion set through the second IV spike lumen; the first IV spike lumens and the second IV spike lumens are separated from each other by a wall extending in the first direction; the first IV spike lumen extends in the first direction; the first IV spike lumen has a first opening at an end in the first direction; the second IV spike lumen has a second opening; The plunger tube is provided with a check valve configured to fluidly disconnect the IV port from the second IV spike lumen. Liquid transfer device.
2. The connector is a monolithic three-prong connector The liquid transfer device according to claim 1.
3. The IV port is integrally formed with or permanently secured to the plunger. The liquid transfer device according to claim 1 or 2.
4. The IV port includes a septum configured to be pierceable by the IV spike of the infusion set. The liquid transfer device according to any one of claims 1 to 3.
5. The IV port includes a removable member proximal to the septum.
5. The liquid transfer device according to claim 4.
6. The first IV spike lumens and the second IV spike lumens extend parallel to each other. The liquid transfer device according to any one of claims 1 to 5.
7. The vial adapter has a flexible and / or flared skirt The liquid transfer device according to any one of claims 1 to 6.
8. The vial adapter is adapted to snap fit onto the vial. The liquid transfer device according to any one of claims 1 to 7.
9. The IV port is fluidly connected to the second IV spike lumens when the check valve is in an open position and is isolated from the second IV spike lumens when the check valve is in a closed position. The fluid transfer device of claim 1 .
10. The barrel is provided along the IV spike, and the vial adapter branches off from the IV spike. The fluid transfer device according to any one of claims 1 to 9.
11. The vial spike is integrally provided with the vial adapter. The fluid transfer device according to any one of claims 1 to 9.
12. the first opening faces distally and the second opening faces laterally; A fluid transfer device according to any one of claims 1 to 11.
13. The IV spike tapers toward a distal tip, and the second opening is located proximal to the distal tip of the IV spike. A fluid transfer device according to any one of claims 1 to 12.
14. the vial adapter includes a skirt configured to telescopically receive the vial; The skirt includes at least two inward projections that snap fit under the flange of the vial. A fluid transfer device according to any one of claims 1 to 13.
15. The IV port is a connecting member having an internal lumen and a septum configured to be punctured by the port spike of the infusion set; Twist-off member and Including, The twist-off member is configured to be detachable from the connecting member. A fluid transfer device according to any one of claims 1 to 14.
16. The connector has a grippable flange A fluid transfer device according to any one of claims 1 to 15.
17. The flange extends in a circumferential direction.
17. The fluid transfer device of claim 16.
18. The IV port is housed within the plunger tube. The liquid transfer device according to any one of claims 1 to 17.
19. The check valve is located at the distal end of the plunger tube.
19. A liquid transfer device according to any one of claims 1 to 18.
Citation Information
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