Nova Patents
EP3720522A1

Drug delivery device

Abstract

This record has no abstract on file.

Term

12.2 yearsto projected expiry

Projected expiry 8 December 2038, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

28 claims: 22 independent, 6 dependent

  1. 1
    Claims of equivalent WO 2019110839 A1 Claims1. A drug delivery device comprising a pumping system and a liquid reservoir (7) fluidly connected to a delivery system outlet (12), the liquid reservoir comprising an elastic plunger (14) sealingly slidable within a rigid container wall (13) of the liquid reservoir for expelling liquid out of the reservoir, the pumping system comprising a piston pump (5) comprising an electrically driven plunger actuator arranged to displace the plunger (14) a predefined distance per pump cycle, and a dosing unit (6) arranged downstream of the liquid reservoir (7) and fluidly connected to the liquid reservoir, the dosing unit (6) comprising a chamber portion (22) arranged between an inlet valve (24) and an outlet valve (26), the chamber portion (22) arranged to receive from the liquid reservoir a discrete pump cycle volume of liquid under an operational pressure generated by the piston pump greater than ambient pressure, and to the deliver said pump cycle volume of liquid to the delivery system outlet, said discrete pump cycle volume being dependent on the operational pressure.
  2. 2
    Drug delivery device according to the preceding claim, wherein the operational pressure is in a range between 10 and 1600 millibars over ambient pressure, preferably in a range between 10 and 1000 millibars over ambient pressure.
  3. 3
    Drug delivery device according to the preceding claim, wherein the operational pressure is in a range between 500 and 1000 millibars over ambient pressure.
  4. 5
    Drug delivery device according to the preceding claim, wherein an elastic property of the elastic expandable chamber portion defined by a volume change AV multiplied by an operational pressure greater than ambient pressure DR is in a range of :5- 10 8 < AVx AP < 1- W 3 [m 3 Pa]
  5. 6
    Drug delivery device according to the preceding claim, wherein the elastic property of the elastic expandable chamber portion defined by the volume change AV multiplied by the operational pressure greater than ambient pressure DR is in a range of :5- 10 6 < DUc DR < 1· ΐs 4 [m 3 Pa]
  6. 7
    Drug delivery device according to any of the preceding claims, wherein the dosing unit comprises a flexible tube (9) incorporating the chamber portion (22).
  7. 8
    Drug delivery device according to any of the preceding claims, wherein the chamber portion comprises top and bottom walls (33, 31 ) that lie against each other when the chamber portion is empty, and that separate apart as the chamber portion is filled with liquid, the bottom wall resting against a base (29) of the dosing unit.
  8. 9
    Drug delivery device according to the preceding claim, wherein the bottom wall is bonded to the base (29), the bonding arranged along at least portions of a perimeter of the bottom wall such that when liquid is injected into the chamber portion and the top wall (33) moves away from the bottom wall (31 ), an elastic tensile stress is generated in the top wall (33) of the chamber portion.
  9. 11
    1 1. Drug delivery device according to any of the preceding claims, comprising a pump chamber actuator (28) arranged to bias against the chamber portion (22) to expel liquid out of the chamber portion to deliver said pump cycle volume of liquid to the delivery system outlet.
  10. 13
    Drug delivery device according to the preceding claim, wherein the linear actuator comprises a linear screw (17) and a nut (19) blocked in rotation and slideably movable upon rotation of the screw.
  11. 14
    Drug delivery device according to either of the two directly preceding claims, wherein the actuation rod (30) comprises a curved spring sheet beam, the actuation rod (30) having a portion (30a) bent in a U-shape between straight sections (30b).
  12. 15
    Drug delivery device according to the preceding claim, wherein the U-Shape bent portion (30a) of the actuation rod is slidably guided in a housing guide slot (34) of the housing.
  13. 16
    Drug delivery device according to the preceding claim, wherein a housing portion forming the housing guide slot (34) in which the actuation rod slides, is made of a polymer.
  14. 17
    Drug delivery device according to the preceding claim, wherein the polymer is Polytetrafluoroethylene (PTFE).
  15. 18
    Drug delivery device according to either of the two directly preceding claims, wherein the housing guide slot (34) comprises roller bearings mounted along the guide slot on a convex side of the bent section (30a).
  16. 19
    Drug delivery device according to any of the three directly preceding claims, wherein the housing guide slot (34) is made integrally with the housing (1 1 ) of injected polymer.
  17. 21
    Drug delivery device according to the preceding claim, wherein the spring metal is a stainless steel alloy.
  18. 22
    Drug delivery device according to any of the preceding claims, wherein the liquid reservoir (7), dosing unit (6), and drug outlet (12) form part of a disposable part (2) of the drug delivery device connectable and separable from a reusable part (3) of the drug delivery device, the reusable part comprising the plunger actuator, a control system for controlling the pump system (4), and an electrical drive unit (11 ) coupled to the plunger actuator.
  19. 23
    Method of operating a drug delivery device according to anyone of the preceding claims comprising the steps of:a) operating the plunger actuator to advance the plunger (14) and create an overpressure in the liquid reservoir (7) due to an elasticity of the plunger,b) opening the inlet valve while the outlet valve (26) and operating the plunger actuator to advance the plunger (14) and fill the chamber portion (22) with a pump cycle volume of liquid thus creating an operational pressure in the chamber portion,c) closing the inlet valve, opening the outlet valve, and emptying the chamber portion (22) by actuation of the pump chamber actuator (28) either passively or actively,d) closing the outlet valve,e) optionally repeating steps b to d. f) optionally operate first steps b to d and then ag) optionally operate steps a and b-d simultaneously.
  20. 24
    Method according to the preceding claim wherein the operational pressure is greater or smaller than a target pressure due to a predefined target volume of liquid being filled in the chamber portion, said target volume being considered as the fill volume of the chamber portion at a target pressure without any pressure exerted by a pump chamber actuator.
  21. 25
    Method according to the preceding claim, wherein the target pressure is ambient pressure, in which case the operational pressure is always greater than the target pressure.
  22. 27
    Method according to the preceding claim, wherein the operational pressure in the chamber portion in step b) is in a range of between 500 and 1000 millibars over ambient pressure.
Independent claims22