Device for connecting a vessel and a container and connection assembly including such a device
10912715 ยท 2021-02-09
Assignee
Inventors
Cpc classification
A61J1/2051
HUMAN NECESSITIES
International classification
Abstract
The device allows the connection between a vessel closed off by a perforable stopper and a container. It comprises a base, which is configured to be mounted on the vessel and which comprises a hollow member for perforating the stopper, this hollow member delimiting at least one opening, and a needle holder, which is waiting to be connected with the container, and which includes a needle, one of the ends of which emerges in the inner volume of the hollow member. The device further comprises a collar attached to a needle holder, and a sheath, which is connected around the collar and which defines a central axis along which it is movable against a resilient force exerted by a spring.
Claims
1. A connecting device between a vessel closed off by a perforable stopper and a container, the device comprising: a base, which is configured to be mounted on the vessel and which comprises a hollow member for perforating the stopper, this hollow member delimiting at least one opening, and a needle holder, which is detachably connected relative to the base, which is configured to be connected with the container, and which includes a hypodermic needle, one end of which emerges in the inner volume of the hollow member, wherein the device further comprises: a collar attached to the needle holder, and a sheath, which is connected to the collar and which defines a central axis along which the sheath is movable relative to the collar and around the latter, against a resilient force exerted by a return means, and wherein the sheath cannot be deformed in compression along the central axis.
2. The device according to claim 1, wherein the return means comprise a spring inserted axially between the collar and an inner radial shoulder of the sheath.
3. The device according to claim 2, wherein the collar comprises at least one radial pin, which is engaged in a corresponding radial opening of the sheath.
4. The device according to claim 3, wherein each opening has a first branch and a second branch that each extend from an axial corridor, the first branch, the second branch and the corridor together forming a Y.
5. The device according to claim 1, wherein the device comprises a sealing sleeve, which is traversed by the needle and which is immobilized inside the base so as to provide sealed communication between the inner volume of the hollow member and a central channel of the needle.
6. The device according to claim 5, wherein the needle has a beveled end, which has a height greater than or equal to the height of a wall of the sleeve traversed by the needle.
7. The device according to claim 1, wherein, in one configuration where the needle holder is detached from the base, the sheath is movable between a first position where it covers the needle and a second position, where the needle is exposed, and in that the return means are configured to return the sheath to its first position.
8. The device according to claim 7, wherein the device comprises means for locking the sheath in the first position, configured to prevent the sheath from returning toward its second position.
9. The device according to claim 7, wherein the needle holder is screwed inside the collar, and wherein each opening is configured such that, when the sheath is returned to its first position, it pivots around its axis in the screwing direction of the needle holder.
10. The device according to claim 1, wherein the needle holder is screwed inside the collar.
11. The device according to claim 1, wherein the sheath comprises two opposite orifices along the central axis.
12. The device according to claim 1, wherein the needle holder comprises a frustoconical inner surface to receive an end part of the container and is sized to be fitted forcibly around said end part.
13. A connecting assembly, comprising a vessel closed off by a perforable stopper, a container and a connecting device according to claim 1.
14. A method for filling a container intended to be equipped with a needle with a product contained in a vessel closed off by a perforable stopper, the method comprising: mounting a connecting device according to claim 1 on the vessel to perforate the stopper with the perforating member, connecting the container with the needle holder, injecting a liquid present in the container into the vessel, through the central channel of the needle and the inner volume of the perforating member, arranging the vessel, the connecting device and the container in a position where the contents of the vessel flow toward the inner volume of the container, through the inner volume of the perforating member and the central channel of the needle, and disconnecting the container and the vessel, the needle holder then being removed from the base, and the sheath being moved as a whole from a preliminary position, in which the sheath is axially abutting against the base and is not axially deformed, by the return means into a first position where it covers the needle.
15. A connecting device between a vessel closed off by a perforable stopper and a container, the device comprising: a base, which is configured to be mounted on the vessel and which comprises a hollow member for perforating the stopper, this hollow member delimiting at least one opening, and a needle holder, which is detachably connected relative to the base, which is configured to be connected with the container, and which includes a hypodermic needle, one end of which emerges in the inner volume of the hollow member, wherein the device further comprises: a collar attached to the needle holder, and a sheath retaining the collar and defining a central axis along which the sheath and the collar are movable relative to one another against a resilient force exerted by a return means, and wherein the sheath is configured to withstand deformable compression along the central axis in response to movement of at least one of the sheath or of the collar relative to one another.
Description
(1) The invention and other advantages thereof will appear more clearly in light of the following description of one embodiment of a connecting device according to its principle, provided as an example and done in reference to the drawings, in which:
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(18) The vessel 20 shown in
(19) In an alternative that is not shown, the vessel 20 comprises, in place of the plastic cap 24, an aluminum ring crimped around the neck 220 of the vial 22. In this case, the resilient tabs 142 of the skirt 141 are jammed bearing against a lower face of the neck 220, which provides the fastening of the base 14 on the vessel 20. The device 10 is therefore compatible with the vessels with plastic caps, of the type of that shown in the figures, and the vessels with aluminum caps.
(20) The container 30 shown in
(21) As shown in
(22) As shown in
(23) As shown in
(24) As shown in
(25) An elastomeric sealing sleeve 13 is mounted inside the chimney 140, as shown in
(26) The sleeve 13 comprises a bottom wall 130 that is traversed by a metal needle 180. The needle 180 is a hypodermic needle intended to traverse the skin of the human body to inject a substance. The needle 180 includes a beveled end 180a, which has a height h180a that is greater than a height h130 of the bottom wall 130, the height h130 and the height h180a being measured parallel to the axis X13. Thus, there is no coring of the sleeve 13 when the needle 180 traverses its bottom wall 130.
(27) The end 180a of the needle 180 emerges in the inner volume V144 of the hollow member 144. The sleeve 13 provides sealed communication between the inner volume V144 of the hollow member 144 and the central channel of the needle 180.
(28) As shown in particular in
(29) Still in reference to
(30) Each pin 160 is engaged in a corresponding opening 110 of a sheath 11 arranged coaxially around the collar 16. Each opening 110 of the sheath 11 is Y-shaped, i.e., it has a first branch 110a and a second branch 110b that each extend from an axial corridor 110c. The sheath 11 is then connected to the collar 16 by cooperation of the pins 160 with the openings 110.
(31) The sheath 11 has a tubular shape and defines a central axis X11, along which it is movable relative to the collar 16. The sheath 11 therefore defines two opposite orifices along the axis X11. The two orifices are substantially the same size. Advantageously, the sheath 11 is made from a rigid material, such as plastic. Unlike the resilient sealing sleeve disclosed in US-A-2014/0261877, the sheath 11 is not deformable in compression in the direction of the axis X11.
(32) Return means 15 make it possible to keep the sheath 11 in a preliminary position, in which the sheath 11 is axially abutting against the base 14 and in which the pins 160 are at the intersection between the first branch 110a and the corridor 110c of the openings 110. The return means 15 comprise a spring inserted axially between the collar 16 and an inner radial shoulder of the sheath 11, arranged at the end.
(33) In the assembled state of the device 10, the axes X11, X13, X18, X16 and X14 are combined with a same axis X10 of the device 10
(34) Below, in reference to
(35) A first step shown in
(36) When the base 14 is mounted on the vessel 20, the hollow member 144 perforates the stopper 26, such that the inner volume V144 of the hollow member 144 communicates with the inner volume V22 of the vial 22 through the openings 146. In this configuration, the needle holder 18 is waiting to be connected with the end part 320 of the container 30. Furthermore, the axes X10 and X22 are combined.
(37) A second step shown in
(38) A third step shown in
(39) A fourth step shown in
(40) When the drug M has been completely transferred from the vessel 20 to the container 30, the user can disconnect the container 30 and the vessel 20, as shown by the arrows F8 in
(41) After disconnection, i.e., in a configuration where the needle holder 18 is detached from the base 14, the protective sheath 11 moves from the preliminary position toward a first position under the return force exerted by the spring 15. This movement is illustrated by arrow F9 in
(42) During an injection, the user presses the syringe S against the epidermis of the patient, which causes the protective sheath 11 to withdraw in contact with the skin, against the resilient force of the spring 15, from its first position toward a second position. This movement is illustrated by arrows F10 in
(43) When the injection is complete and the syringe S is removed from the patient's body, the protective sheath 11 moves from its second position toward its first position under the action of the spring 15. Each pin 160 then moves from the bottom of the corridor 110c toward the bottom of the branch 110b of the corresponding radial opening 110. This results in rotating the sheath 11 around its axis X11. The syringe S is then in the configuration of
(44) Each opening 110 is configured such that, when the sheath 11 withdraws from its first position toward its first position and returns to its first position, it pivots around the axis X11 in the counterclockwise direction when one looks at the needle 180 from the side. Thus the sheath 11, by pivoting around its axis X11, exerts a torque on the collar 16 that is oriented in the counterclockwise direction. Advantageously, this torque tends to further screw the needle holder 18 inside the collar 16. Thus, the needle holder 18 does not risk unscrewing during an injection. In other words, the sheath 11 rotates in the screwing direction of the needle holder 18.
(45) As shown in
(46) In the example of the figures, the preliminary position is a position midway between the first position and the second position. The sheath 11 is then shorter and narrower than if the device was arranged such that the sheath 11 would be in the first position in the configuration mounted on the vessel 20. This position at the mid-point therefore limits the bulk of the device 10 in the radial and axial directions.
(47) In an alternative that is not shown, another system is used to connect the needle holder 18 to the syringe body 32. For example, this may be a screwed system, of the luer lock (registered trademark) type. This system has the advantage that the needle holder 18 is easy to disassemble.
(48) In an alternative that is not shown, a container 30 other than a syringe body is used.
(49) The features of the main embodiment and alternatives considered above may be combined with one another to create new embodiments of the invention.