Syringe Adapter with Suction Assembly

The syringe adapter with a suction assembly addresses contamination risks by allowing controlled air aspiration and closed-system transfer, reducing exposure to medical fluids and contaminants during medication handling.

JP7807422B2Active Publication Date: 2026-01-27BECTON DICKINSON & CO LTD
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Patent Information

Application Number
JP2023207757
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2018-04-19
Filing Date
2023-12-08
Publication Date
2026-01-27
Estimated Expiration
2039-04-11

AI Technical Summary

Technical Problem

Healthcare workers are exposed to high risks of contamination from vaporized or aerosolized medical fluids during medication preparation and administration due to the multiple transfer steps between containers, leading to unacceptable drug or contaminant concentrations in their blood or body tissues.

Method used

A syringe adapter with a suction assembly that includes a housing, cannula, seal arrangement, and one-way valve, allowing air to be aspirated into the syringe while preventing fluid flow, and featuring a filter to capture contaminants, ensuring closed-system transfer.

Benefits of technology

The syringe adapter reduces exposure to contaminants by enabling controlled aspiration of air while maintaining a closed system, thereby minimizing the risk of contamination and drug exposure for healthcare providers.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a syringe adapter with an aspiration assembly.SOLUTION: According to the disclosure, a syringe adapter includes a housing, a cannula positioned within the housing, with the cannula having a first end and a second end opposite the first end and defining a transfer opening and a valve opening, a seal arrangement positioned within the housing and movable within the housing, with the seal arrangement including a membrane, and an aspiration assembly positioned within the housing and including an aspiration housing defining an aspiration opening. The seal arrangement has a first position with the second end of the cannula received within the membrane of the seal arrangement and a second position with the second end of the cannula positioned outside of the membrane of the seal arrangement, with the membrane of the seal arrangement engaging and sealing the aspiration opening of the aspiration housing when the seal arrangement is in the second position.SELECTED DRAWING: Figure 9
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Description

[Technical Field]

[0001] The present invention relates to a syringe adapter for connecting a syringe to another medical device or fluid container, and more particularly to a syringe adapter that includes a suction assembly. [Background technology]

[0002] This application claims priority to U.S. Provisional Application No. 62 / 659,840, entitled "Syringe Adapter with Aspiration Assembly," filed April 19, 2018, the entire disclosure of which is incorporated herein by reference in its entirety.

[0003] Healthcare workers, such as pharmacists and nurses, may be subject to acute and long-term health risks as a result of repeated exposure to medications or solvents that may escape into the air during medication preparation, medication administration, and other similar handling activities. For example, when administering an infusion, it is often necessary to inject a medication or other medical substance into an infusion bag or other infusion container. This injection is often performed by piercing a septum or other fluid barrier at an injection port on an infusion bag or infusion fluid line with the needle of a syringe filled with the medical liquid in question. Before penetrating the septum, the medication may need to be transferred from a vial to a syringe and then from the syringe to a container. During each of these steps, the clinician or healthcare provider may be exposed to medical fluids that result in contamination, for example, from vaporized medical fluids or contaminants released as aerosols. For example, contamination may occur by inhaling vaporized or aerosolized contaminants into the lungs. Contamination may also occur when vaporized or aerosolized contaminants condense and penetrate the clinician's or healthcare provider's skin. In some cases, such condensed contaminants may even penetrate the protective gloves.

[0004] Unfortunately, over time, exposure to contaminants may result in unacceptably high concentrations of the drug or contaminant in the clinician's or healthcare provider's blood or body tissues. The risk of contamination is increased due to the numerous transfer steps between containers that must occur during complex infusion preparations. For these reasons, closed-system transfer devices (CSTDs) have been developed to ensure that the drug is contained within the transfer device during its transfer. CSTDs generally include a syringe adapter for connecting to a syringe and another adapter for connecting to a vial, a second syringe, a fluid container, or a conduit providing fluid access to the patient's circulatory system. During use, a clinician or care provider may reconstitute a powder or lyophilized compound with saline or other reconstitution medium by attaching a syringe to a vial through the respective adapter's connection. The drug is then reconstituted by injecting liquid from the syringe into the vial through the respective adapter. In some cases, the reconstituted infusion fluid may be aspirated into the syringe. After aspiration, the adapters can be detached from each other. The clinician or caregiver can then attach the syringe to another adapter to transfer the fluid from the syringe to a fluid conduit or patient delivery device, such as an IV line or syringe, for administration to a patient. In certain situations, air is first drawn into the syringe and injected into the vial before drawing fluid from the vial. Injecting air into the vial pressurizes the vial, and once fluid is drawn from the vial, the pressure within the vial returns to its original pressure. Summary of the Invention [Means for solving the problem]

[0005] According to one aspect of the present disclosure, a syringe adapter includes a housing having a first end and a second end opposite the first end, the housing including a connector body disposed at the first end of the housing and configured to be secured to a syringe barrel, a cannula disposed within the housing, the cannula having a first end and a second end opposite the first end and defining a transfer opening and a valve opening, a seal arrangement movably disposed within the housing, the seal arrangement including a membrane and a suction assembly disposed within the housing, the suction housing including a suction housing defining the suction opening, a filter received by the suction housing, and a one-way valve received by the suction housing, the valve opening of the cannula disposed within the suction housing, and air configured to flow into the filter through the suction opening, into the one-way valve, and into the valve opening of the cannula.

[0006] The suction assembly may further include a base secured to the suction housing and engaging the filter and one-way valve. The base may be secured to the connector body. The first end of the cannula may be secured to the connector body such that the cannula extends through the base, the one-way valve, the filter, and the suction housing, the second end of the cannula being configured to be received by the sealing arrangement. The one-way valve may prevent fluid flow from the one-way valve to the filter and the suction opening of the suction housing. The sealing arrangement may have a first position in which the second end of the cannula is received within a membrane of the sealing arrangement, a second position in which the second end of the cannula is disposed outside the membrane of the sealing arrangement, and the membrane of the sealing arrangement engages and seals with the suction opening of the suction housing when the sealing arrangement is in the second position. At least a portion of the suction assembly may be received within the connector body. The valve opening of the cannula may include multiple openings. The filter and one-way valve may be annular, and the one-way valve may be received within the filter. The one-way valve may include a valve body and a valve member movable radially inward relative to the valve body. The valve member of the one-way valve may be elastomeric.

[0007] In a further aspect, the syringe adapter includes a housing having a first end and a second end opposite the first end, the housing including a connector body disposed at the first end of the housing and configured to be secured to the syringe barrel, a cannula disposed within the housing, the cannula having a first end and a second end opposite the first end, a sealing arrangement movably disposed within the housing, the sealing arrangement including a membrane and a suction assembly disposed within the housing, the suction assembly including a suction housing defining a suction opening, a filter received by the suction housing, and a one-way valve received by the suction housing, wherein air is configured to flow through the suction opening, through the one-way valve, through the filter, and into the suction housing.

[0008] The suction assembly may further include a base secured to the suction housing and engaging the filter. The base may define an opening, and the connector body may define an opening fluidly communicating with the opening in the base and the central passage of the connector body. The connector body may define an opening fluidly communicating with the suction housing and the central passage of the connector body, wherein air is configured to pass through the filter and enter the opening of the connector body. A first end of a cannula may be secured to the connector body, and the cannula may extend through the filter, the one-way valve, and the suction housing, the second end of which is configured to be received by the sealing arrangement. The one-way valve may prevent fluid flow from within the suction housing to the suction opening. The sealing arrangement may have a first position in which the second end of the cannula is received within the membrane of the sealing arrangement, a second position in which the second end of the cannula is disposed outside the membrane of the sealing arrangement, and the sealing arrangement may engage and seal with the suction opening of the suction housing when the sealing arrangement is in the second position. When the sealing arrangement is in the second position, one of the membrane and the sealing gasket may seal the suction opening of the suction housing. The one-way valve may be an umbrella valve.

[0009] These and other features and characteristics of the present invention, as well as the method of operation and function of the associated elements of construction and economies of combination of parts and manufacture, will become more apparent from a consideration of the following description and the appended claims, with reference to the accompanying drawings, all of which form a part of this specification and in which like reference numerals indicate corresponding parts in the various views. It is to be expressly understood, however, that the drawings are for purposes of illustration and description only and are not intended as a definition of the limits of the invention. As used in this specification and claims, the singular forms "a," "an," and "the" include plural referents unless the context clearly dictates otherwise. [Brief explanation of the drawings]

[0010] [Figure 1] FIG. 1 is a perspective view of a syringe adapter according to one embodiment of the present invention. [Figure 2] FIG. 2 is a cross-sectional view of the syringe adapter of FIG. [Figure 3] 3 is an exploded perspective view of the syringe adapter of FIG. 1. FIG. [Figure 4] FIG. 4 is a perspective view of a suction assembly according to one embodiment of the present invention. [Figure 5] FIG. 5 is a perspective view of a one-way valve according to one embodiment of the present invention. [Figure 6] 6 is a partial cross-sectional view of the syringe adapter of FIG. 1 showing the aspiration channel. [Figure 7] 7 is a partial cross-sectional view of the syringe adapter of FIG. 1 showing a closed path through the one-way valve. [Figure 8] 8 is a partial cross-sectional view of the syringe adapter of FIG. 1 showing the seal arrangement in a second position and highlighting the seal interface between the seal arrangement and the aspiration assembly. [Figure 9] 9 is a partial cross-sectional view of the syringe adapter of FIG. 1 illustrating a second position of the sealing arrangement and a flow path through the syringe adapter and into the syringe. [Figure 10] FIG. 10 is a cross-sectional view of a suction assembly according to a further embodiment of the present invention. [Figure 11] 11 is an exploded perspective view of the suction assembly of FIG. 10. FIG. [Figure 12] FIG. 12 is a cross-sectional view of the suction assembly of FIG. 10, illustrating the flow path through the suction assembly. [Figure 13] FIG. 13 is a cross-sectional view of the aspiration assembly of FIG. 10 showing a closed path through the one-way valve. [Figure 14] FIG. 14 is a cross-sectional view of the suction assembly of FIG. 10 showing the seal arrangement in a second position. [Figure 15] FIG. 15 is a cross-sectional view of the suction assembly of FIG. 10 showing the flow path through the suction assembly to the connector body. [Figure 16] FIG. 16 is a cross-sectional view of the aspiration assembly of FIG. 10, illustrating a flow path arrangement and configuration according to a further embodiment of the present invention. [Figure 17] FIG. 17 is a cross-sectional view of a sealing arrangement according to one embodiment of the present invention. [Figure 18] FIG. 18 is a cross-sectional view of a seal arrangement according to a further embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0011] The figures generally illustrate preferred, non-limiting aspects of the systems and methods of the present disclosure. While the present specification illustrates various aspects of the devices, it should not be construed as limiting the present disclosure. Furthermore, modifications, concepts, and applications of aspects of the present disclosure should be construed by those skilled in the art as included, but not limited to, the illustrations and descriptions herein.

[0012] Hereinafter, for purposes of explanation, the terms "upper," "lower," "right," "left," "vertical," "horizontal," "top," "bottom," "lateral," "longitudinal," and their derivatives shall refer to the present invention as oriented in the drawings. The term "proximal" refers to a direction toward the center or central region of the device. The term "distal" refers to an outward direction extending away from the central region of the device. However, it will be understood that the present disclosure may be subject to various alternative modifications unless expressly specified to the contrary. It should also be understood that the specific devices and processes illustrated in the accompanying drawings and described in the following specification are merely exemplary aspects of the present disclosure. As such, specific dimensions and other physical characteristics relating to aspects disclosed herein should not be considered limiting. For the purposes of facilitating an understanding of the present disclosure, the accompanying drawings and description illustrate preferred embodiments thereof, from which the disclosure, its various aspects of construction, structure and method of operation, and many advantages, can be understood and appreciated.

[0013] According to one aspect of the present disclosure, a syringe adapter 10 is provided for connecting a syringe 12 to another medical device, such as a patient connector 14, or a fluid container. The medical device may be, for example, a patient line, a vial adapter, a fluid container, or an infusion adapter. In other examples, the container may be a medical vial, a syringe barrel, an IV bag, or a similar container for holding a fluid to be administered to a patient. The syringe adapter 10 can be used to facilitate closed transfer of fluid between the syringe 12 and the medical device or fluid container.

[0014] 1-9 , a syringe adapter 10 according to one embodiment of the present invention includes a housing 20, a cannula 22 disposed within the housing 20, a seal arrangement 24 disposed within the housing 20 and movable within the housing 20 between a first position and a second position, and a suction assembly 26 disposed within the housing 20. The suction assembly 26 is configured to allow the syringe 12 to aspirate air into the syringe 12 while the syringe adapter 10 is connected to the syringe 12. As noted above, in certain situations, aspirating air into the syringe 12 while connected to the syringe adapter 10 is desirable to allow air to be injected into a vial or other container. In the absence of a suction arrangement, the seal arrangement 24 would prevent air from being aspirated into the syringe 12 when connected to the syringe adapter 10.

[0015] The housing 20 has a first end 30 and a second end 32 opposite the first end 30, and includes a connector body 34 disposed at the first end 30 of the housing 20. The connector body 34 is configured to be secured to the syringe 12. In one embodiment, the connector body 34 includes a female Luer connector 36, although other suitable connection arrangements may be utilized. The cannula 22 has a first end 40 and a second end 42 opposite the first end 40. The cannula 22 defines a transfer opening 44 and a valve opening 46. The transfer opening 44 is disposed adjacent the second end 42 of the cannula 22. The valve opening 46 is disposed intermediate the first and second ends 40, 42 of the cannula 22. The seal arrangement 24 includes a collet 50 and a membrane 52 received within the collet 50, although other suitable seal arrangements may be utilized. Seal arrangement 24 has a first position in which second end 42 of cannula 22 is received within membrane 52 of seal arrangement 24 and a second position in which second end 42 of cannula 22 is disposed outside membrane 52 of seal arrangement 24. Seal arrangement 24 facilitates closed transfer of fluid utilizing syringe adapter 10. Collet 50 cooperates with a mating connector, such as patient connector 14, to connect collet 50 to the mating connector and transition seal arrangement 24 from the first position to the second position to allow fluid to flow through cannula 22. Seal arrangement 24 may function similarly to the seal arrangement shown and described in U.S. Patent Application No. 2015 / 0297454, which is not discussed in detail herein and is incorporated herein by reference in its entirety.

[0016] 3-9, the suction assembly 26 includes a suction housing 56 defining a suction opening 58, a filter 60 received by the suction housing 56, and a one-way valve 62 received by the suction housing 56. As shown in FIG. 6, air is configured to flow through the suction opening 58, into the filter 60, into the one-way valve 62, and into the valve opening 46 of the cannula 22. More specifically, when the syringe plunger 64 is withdrawn, a pressure drop is created within the suction housing 56, opening the one-way valve 62 and allowing air to be drawn through the housing 20, through the suction opening 58, through the filter 60, through the one-way valve 62, into the cannula 22 via the valve opening 46, through the central passage 65 of the connector body 34, and into the syringe 12.

[0017] The suction assembly 26 may also include a base 66 secured to the suction housing 56 and engaging the filter 60 and the one-way valve 62. The base 66 may be secured to the connector body 34. The base 66 may be secured to the suction housing 56 and the connector body 34 via ultrasonic welding, although other suitable fastening arrangements may be utilized. The first end 40 of the cannula 22 is secured to the connector body 34 such that the cannula 22 extends through the base 66, the one-way valve 62, the filter 60, and the suction housing, with the second end 42 of the cannula 22 configured to be received by the seal arrangement 24.

[0018] As shown in FIG. 7 , the one-way valve 62 prevents fluid flow from the one-way valve 62 to the filter 60 and the suction opening 58 of the suction housing 56. As shown in FIGS. 8 and 9 , the membrane 52 of the seal arrangement 24 engages and seals with the suction opening 58 of the suction housing 56 when the seal arrangement 24 is in the second position. In particular, the membrane 52 of the seal arrangement 24 forms a sealed interface 68 with the suction assembly 26, as highlighted in FIG. 8 , preventing the possibility of fluid or contaminants entering or exiting the housing 20 via the suction assembly 26. Rather than utilizing the membrane 52 to seal against the suction assembly 26, a separate sealing gasket or surface may be secured to the seal arrangement 24.

[0019] 6-9, at least a portion of the suction assembly 26 is received within the connector body 34. In one embodiment, the filter 60 and one-way valve 62 are annular, with the one-way valve 62 received within the filter 60. The suction housing 56 is cylindrical, although other suitable shapes and configurations may be utilized. The base 66 includes a planar circular portion 70 with a cylindrical extension 72 extending therefrom. The cylindrical extension 72 defines one or more openings 74 in fluid communication with the suction housing 56. The valve opening 46 of the cannula 22 is disposed within the base 66, and the opening 74 of the base 66 is in fluid communication with the valve opening 46 of the cannula 22. The valve opening 46 of the cannula 22 may include one or more openings 46, as shown in FIGS. 6-9.

[0020] 4-9, the one-way valve 62 includes a valve body 76 and a valve member 78 that is movable radially inward relative to the valve body 76. The valve member 78 of the one-way valve 62 is elastomeric, although other suitable materials may be utilized. The valve member 78 may be overmolded onto the valve body 76, although other suitable configurations may be utilized. The valve member 78 includes a sloped surface 80 that cooperates with a corresponding sloped surface 82 on the valve body 76 to allow only radially inward movement of the valve member 78. Thus, the one-way valve 62 permits aspiration of air into the aspiration assembly 26, which entails movement of air from the one-way valve 62 (FIG. 6) and syringe 12 into the aspiration assembly 26 (FIG. 7), as the sloped surface 80 of the valve member 78 engages and seals with the sloped surface 82 of the valve body 76, thereby preventing flow through the one-way valve 62. Due to the one-way valve 62 disposed within the filter 60, the filter 60 is also configured to prevent the valve member 78 from moving radially outward. In other words, the filter 60 limits any radially outward movement of the valve member 78. During aspiration into the syringe 2, the filter 60 is configured to filter any contaminants from the air as it is drawn through the aspiration assembly 26 and into the syringe 12. The filter 60 may be hydrophobic and / or oleophobic.

[0021] 10-18, a suction assembly 126 according to a further embodiment of the present invention is provided. The suction assembly 126 is similar to the suction assembly 26 of FIGS. 1-9 and functions in a similar manner. The suction assembly 126 is incorporated into a syringe adapter in a similar manner to the suction assembly 26 of FIGS. 1-9. The suction assembly 126 of FIGS. 10-18 includes a suction housing 156 defining a suction opening 158, a filter 160 received by the suction housing 156, and a one-way valve 162 received by the suction housing 156, wherein air is configured to flow through the suction opening 158, through the one-way valve 162, through the filter 160, and into the suction housing 156. The suction assembly 126 includes a base 166 secured to the suction housing 156 and engaging the filter 160. 1-9 , base 166 defines an opening 170 and connector body 34 defines an opening 172. Opening 172 in connector body 34 is in fluid communication with opening 170 in base 166 and central passageway 65 in connector body 34. Thus, as shown in FIG. 12 , a flow path is provided through suction opening 158 in suction housing 156, through one-way valve 162, through filter 160, through opening 170 in base 166, through opening 172 in connector body 34, and into central passageway 65 in connector body 34.

[0022] 12-18, first end 40 of cannula 22 is secured to connector body 34, and cannula 22 is configured to extend through filter 160, one-way valve 162, and suction housing 158, which is configured such that second end 42 of cannula 22 is received by seal arrangement 24. One-way valve 162 prevents fluid flow from within suction housing 156 to suction opening 158. Similar to syringe adapter 10 described above in connection with FIGS. 1-9, seal arrangement 24 engages and seals with suction opening 158 of suction housing 156 when seal arrangement 24 is in the second position. Membrane 52 of seal arrangement 24 may engage and seal with suction opening 158, as shown in FIGS. 14 and 17. Alternatively, in a further embodiment shown in FIG. 18, sealing gasket 176 is received by collet 50, and sealing gasket 176 engages and seals with suction opening 158 of suction housing 156. The one-way valve 162 is an umbrella valve, although other suitable configurations may be provided. The one-way valve 162 includes a central body 180 defining a passageway 182 and an umbrella-shaped flange 184 extending from the central body 180. As shown in FIG. 12 , the umbrella-shaped flange 184 is resilient and configured to lift away from the suction opening 158 of the suction housing 156 when air is drawn through the syringe 12 through the suction opening 158 toward the opening 170 in the base 166 and the opening 172 in the connector body 34. In particular, withdrawing the plunger 64 of the syringe 12 creates a pressure drop within the suction housing 156, which opens the one-way valve 162 and draws air through the suction opening 158 as described above. 13 and 14 , air or fluid flowing through the central passage 65 of the connector body 34, through the opening 172 in the connector body 34, through the opening 170 in the base 166, and into the suction housing 156 forces the umbrella flange 184 of the one-way valve 162 against the suction housing 156, blocking the suction openings 157. Although multiple suction openings 158 are shown, one or more suction openings 158 may be provided. During suction, the filter 160 filters any contaminants passing through the suction housing 156 and into the connector body 34.The filter 160 may be hydrophobic and / or oleophobic.

[0023] The suction housing 156 is cylindrical, although other suitable shapes and configurations may be utilized. The base 166 includes a planar circular portion 188 with a cylindrical extension 190 extending from the planar circular portion 188. The filter 160 is annular and is disposed on the cylindrical extension 190 of the base 166. The cylindrical extension 190 of the base 166 also extends through the passage 182 of the central body 180 of the one-way valve 162. The one-way valve 162 and a portion of the base 166 extend from the suction housing 156, although other suitable configurations may be utilized.

[0024] 16, rather than providing a base 166 as shown in FIG. 15, the connector body 34 may provide a cylindrical extension 194 that extends through the filter 160, the one-way valve 162, and the suction housing 156. The opening 172 of the connector body 34 is in direct fluid communication with the suction housing 156, with a fluid path formed through the suction opening 158, past the one-way valve 162, into the suction housing 156, through the filter 160, into the opening 172 of the connector body 34, and into the central passageway 65 of the connector body 34.

[0025] While the present invention has been described in detail for purposes of illustration, based on what are presently considered to be the most practical and preferred embodiments, it will be understood that such detail is for that purpose only, and that the invention is not limited to the disclosed embodiments, but on the contrary, is intended to cover modifications and equivalent arrangements within the spirit and scope of the appended claims. For example, it will be understood that the present invention contemplates combining, to the extent possible, one or more features of any embodiment with one or more features of any other embodiment.

Claims

1. 1. A syringe adapter comprising: a housing having a first end and a second end disposed opposite the first end, the housing including a connector body disposed at the first end of the housing and configured to be secured to a syringe barrel; a cannula disposed within the housing, the cannula having a first end and a second end opposite the first end, the cannula defining a transfer opening and a valve opening; a sealing arrangement disposed within the housing and movable within the housing, the sealing arrangement including a membrane; and a suction housing disposed within the housing, the valve opening of the cannula being disposed within the suction housing and defining a suction opening. the sealing arrangement is movable relative to the housing and the cannula to have a first position in which the second end of the cannula is received within the membrane of the sealing arrangement and a second position in which the second end of the cannula is disposed outside the membrane of the sealing arrangement, wherein when the sealing arrangement is in the first position, the membrane is axially spaced from the aspiration opening and when the sealing arrangement is in the second position, the membrane engages and seals the aspiration opening.

2. a filter received by the suction housing; and a one-way valve in fluid communication with the suction opening. The syringe adapter of claim 1 , wherein the valve opening of the cannula is disposed within the aspiration housing.

3. 3. The syringe adapter of claim 2, wherein the syringe barrel has a syringe plunger disposed therein, and when the syringe plunger is withdrawn, a pressure drop is created within the aspiration housing acting to open the one-way valve to draw air through the housing, through the aspiration opening, through the filter, through the one-way valve, into the cannula, and into the syringe.

4. The syringe adapter of claim 3 , further comprising a base secured to the aspiration housing and engaging the filter and the one-way valve.

5. The syringe adapter of claim 4 , wherein the base is fixed to the connector body.

6. 5. The syringe adapter of claim 4, wherein the first end of the cannula is secured to the connector body such that the cannula extends through the base, the one-way valve, the filter, and the aspiration housing configured to be received by the sealing arrangement.

7. 3. The syringe adapter of claim 2, wherein the one-way valve prevents fluid flow from the one-way valve to a filter and the aspiration opening of the aspiration housing.

8. The syringe adapter of claim 4 , wherein at least a portion of the suction housing is received within the connector body.

9. The syringe adapter of claim 1 , wherein the valve opening of the cannula comprises a plurality of openings.

10. 3. The syringe adapter of claim 2, wherein the filter and the one-way valve are annular, and the one-way valve is received within the filter.

11. 3. The syringe adapter of claim 2, wherein the one-way valve comprises a valve body and a valve member movable radially inward relative to the valve body.

12. 12. The syringe adapter of claim 11, wherein the valve member of the one-way valve is elastomeric.

Citation Information

Patent Citations

  • System for closed transfer of fluids

    JP2016511121A