Drug delivery device for drug suspensions
11547810 · 2023-01-10
Assignee
Inventors
Cpc classification
A61M5/3134
HUMAN NECESSITIES
A61M5/2066
HUMAN NECESSITIES
A61M5/2448
HUMAN NECESSITIES
A61M5/24
HUMAN NECESSITIES
A61M5/32
HUMAN NECESSITIES
International classification
A61M5/32
HUMAN NECESSITIES
A61M5/20
HUMAN NECESSITIES
A61M5/24
HUMAN NECESSITIES
Abstract
A drug delivery device is provided herein, the device including a reservoir for containing a medicament. The medicament includes a suspension of solids in a liquid carrier. The device also includes a needle having a distal end for injection into a patient, a proximal end in communication with the reservoir, and a lumen extending between the distal and proximal ends. A path is defined from the reservoir to the distal end of the needle through the lumen, the path having an inner diameter that decreases in a proximal to distal direction along at least a portion thereof. Advantageously, with the subject invention, a flow path may be defined which provides a more gradual transition in diameter from the reservoir to a distal tip of the needle. In this manner, changes in velocity of the suspension may be less abrupt than in the prior art, thus better maintaining solid particles in the suspension.
Claims
1. A drug delivery device comprising: a reservoir configured to contain a medicament comprising a suspension of solids in a liquid carrier; an elastomeric septum sealing a distal end of said reservoir, said septum having a fluid inlet port; a hub mounted to said distal end of said reservoir, the hub defining a flow control surface configured to be in contiguous contact with the suspension; and a needle mounted to said hub, said needle having a distal end for injection into a patient, a proximal end in communication with said reservoir, and a lumen extending between said distal and proximal ends, a path being defined from said reservoir to said distal end of said needle through said lumen, wherein a proximal end face of the needle defines an opening that is tapered from a proximal end of the proximal end face of the needle to a distal end of the proximal end face of the needle such that an outer diameter of the proximal end face of the needle increases from the proximal end of the proximal end face of the needle to the distal end of the proximal end face of the needle, wherein said flow control surface has one or more step changes narrowing in a proximal-to-distal direction, and wherein said hub has a sleeve disposed within the fluid inlet port of the septum.
2. The drug delivery device of claim 1, wherein said flow control surface is defined within a proximal face of said septum.
3. The drug delivery device of claim 1, wherein at least a portion of a proximal face of said septum is angularly disposed to convergently guide said suspension towards said flow control surface.
4. The drug delivery device of claim 1, wherein an edge at a junction between a proximal face of said septum and said flow control surface is rounded.
5. The drug delivery device of claim 1, wherein said sleeve is tapered.
6. The drug delivery device of claim 1, wherein said sleeve has a sharpened proximal end that pierces through at least a portion of said septum when said hub is mounted to said reservoir.
7. The drug delivery device of claim 1, wherein transitions in diameter along said path are rounded.
8. The drug delivery device of claim 1, wherein an inner diameter of said path decreases in a proximal-to-distal direction with at least one step change in diameter.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
DETAILED DESCRIPTION OF THE INVENTION
(4) With reference to the figures, a drug delivery device 10 is shown for delivery of a drug in a fluid suspension to an individual. As will be appreciated by those skilled in the art, the drug delivery device 10 may be of various forms. With reference to
(5) With reference to
(6) An opening 28 (
(7) As shown in
(8) With reference to
(9) With a pen injector configuration, a drug cartridge 48 is typically provided. The drug cartridge 48 may include the barrel 16, the stopper 22 and the septum 30 and define the reservoir 12. The main difference between the drug cartridge 48 and the configuration of
(10) The suspension 14 includes a medicament for delivery into an individual. The suspension 14 includes solid components held in a liquid carrier. The active medicament agent or agents may be in the solid components of the suspension 14 and/or in the liquid carrier. The suspension 14 may contain solids dissolved to varying degrees, including at least some solids completely dissolved, or it may include solid particles, suspended in the liquid carrier. The suspension 14 may be pre-mixed before it is disposed in the reservoir 12, or it may be mixed after it has been disposed in the reservoir 12. For example, the reservoir 12 may house a liquid diluent and a solid drug in separate compartments, such as in a reconstitution arrangement as is known in the art, where the two components are mixed prior to delivery to an individual. Examples of suitable reconstitution arrangements may be found, for example, in U.S. Pat. No. 4,874,381 and in U.S. Pat. No. 4,968,299, the contents of which are incorporated by reference herein.
(11) It is preferred that a fluid inlet port 53 be provided which is in communication, and contiguous contact, with the suspension 14 in the reservoir 12. The fluid inlet port 53 defines a flow control surface 54 which includes a proximal end 56 and a distal end 58, the proximal end 56 defining a larger diameter than the distal end 58. The proximal end 56 is located to be proximally of the proximal end 40 of the needle cannula 38. In addition, the proximal end 56 of the flow control surface 54 is configured to be larger than the lumen 44 of the needle cannula 38, particularly at the proximal end 40 thereof. The flow control surface 54 is generally tubular extending in a proximal to distal direction and formed with a converging shape going from the proximal end 56 to the distal end 58. The reduction in diameter may be gradual, such as being tapered, as shown in
(12) The suspension 14 flows through the flow control surface 54 and through the needle cannula 38 during administration. A flow path 60 for the suspension 14 is defined by at least the needle cannula 38, particularly the lumen 44, and the flow control surface 54. The flow path 60 is defined from the reservoir 12 to the distal end 42 of the needle cannula 38. With the flow control surface 54, at least a portion of the flow path 60 reduces in diameter as the suspension 14 flows in a distal direction. As shown in
(13) As shown in
(14) Edge 68, defined at the junction of the flow control surface 54 and the proximal face 64, may be rounded to further enhance the gradual change in velocity along the flow path 60. It is preferred that all transitions (corners, edges, changes in diameter) along the fluid path 60 be rounded to define arcuate or radiused transitions. For example, with reference to
(15) As shown in
(16) With reference to
(17) During use, the suspension 14 is caused to be pressurized by the plunger 26 and urged distally. As the suspension 14 traverses the flow path 60, the suspension 14 will be urged along an increasing smaller flow path, particularly across the flow control surface 54. Even with the lumen 44 of the needle cannula 38 having a constant diameter, the flow control surface 54 allows for a gradual change in diameter. In this manner, a more gradual change in velocity is achieved, particularly in transitioning from the reservoir 12 to the proximal end 40 of the needle cannula 38.
(18) It is further possible to provide the lumen 44 of the needle cannula 38 with a change in diameter along the length thereof, particularly in a proximal to distal direction such that the lumen 44 at the proximal end 40 of the needle cannula 38 defines a larger diameter than at the distal end 42 of the needle cannula 38. For example, as shown schematically in
(19) In addition to being formed by the septum 30 or by the barrel 16, the inlet flow port 53 may be defined by an ancillary or secondary component, such as by a sleeve 74. With respect to
(20) As will be appreciated by those skilled in the art, the various arrangements of the inlet fluid port 53 may be used in combination. For example, with reference to