IP Library Granted Patent US 11,434,032
Granted Patent B2
US 11,434,032 · App. 16/770,981 · Granted Sep 6, 2022

Modular aseptic production system

Inventor: Francesco Sanmartin (King of Prussia, PA)
Assignee: GlaxoSmithKline Intellectual Property Development Limited
B65B59/04A61L2/04B65B3/003B65B7/2821B65B43/42B65B55/025A61L2202/21
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Quick Facts
Patent No.
US 11,434,032
App. No.
16/770,981
Granted
Sep 6, 2022
Kind
B2
Abstract

A modular production system including a plurality of production modules connected in a linear series to form a production tunnel, and collectively defining a production channel, and wherein at least one fluid inlet port defined along the production tunnel, said inlet port is in fluid communication with a pressurized fluid source, whereby influx of fluid from said fluid source through said fluid inlet port acts to maintain the fluid pressure within the production channel at a higher pressure than the atmospheric pressure outside of the production tunnel; and wherein one of said production modules positioned between said proximal-most and distal-most production modules comprises a depyrogenator and/or sterilization module, comprising a transparent tubular body, and an irradiation source positioned external to said transparent tubular body, said irradiation source capable of heating the internal environment of the depyrogenation and/or sterilization module to a temperature sufficient to depyrogenate or sterilize articles passing therethrough.

Claims (41)

1. A modular production system comprising:

a plurality of production modules, each production module comprising a module housing comprising a proximal end, a distal end, and a central cavity extending between said ends; and

wherein the plurality of production modules are connected in a linear series to form a production tunnel, wherein the central cavities of each module housing collectively define a production channel, the series having a proximal end and a distal end defining the proximal end and the distal end of the production tunnel, respectively, and wherein the module at the proximal end of the series defines the proximal-most module and comprises a proximal article passage port, and the module at the distal end of the series defines a distal-most module and comprises a distal article passage port;

at least one fluid inlet port defined along the production tunnel, said inlet port being in fluid communication with a pressurized fluid source, whereby influx of fluid from said fluid source through said fluid inlet port acts to maintain the fluid pressure within the production channel at a higher pressure than the atmospheric pressure outside of the production tunnel, such that fluid flows from both the proximal and distal article passage ports to minimize entry of air into the production channel from either the proximal or the distal article passage ports;

wherein one of said production modules positioned between said proximal and distal end of the series comprises a depyrogenator module, said depyrogenator module comprising a transparent tubular body defining at least a portion of the central cavity of said production module, and an irradiation source positioned external to said transparent tubular body, said irradiation source capable of heating the internal environment of the depyrogenation module to a temperature sufficient to sterilize or depyrogenate articles passing therethrough, and

an article transport system positioned within said production channel and extending between said proximal article passage port and said distal article passage port, said article transport system configured to move containers entering the production channel from said proximal article passage port to said distal article passage port.

2. The modular production system of claim 1 , wherein the proximal-most module comprises a proximal exhaust vent, said proximal exhaust vent being positioned relative to said proximal article passage port to form vertical washout at the proximal end of the production tunnel for air which may enter the production channel from outside of the production tunnel through the proximal article passage port.

3. The modular production system of claim 2 , wherein the distal-most module comprises a distal exhaust vent, said distal exhaust vent being positioned relative to said distal article passage port to form a vertical washout at the distal end of the production tunnel for air which may enter the production channel from outside of the production tunnel through the distal article passage port.

4. The modular production system of claim 1 , wherein the irradiation source is a light source.

5. The modular production system of claim 4 , wherein the light source is selected from the group consisting a halogen short wave light emitter or a carbon medium wave emitter.

6. The modular production system of claim 1 , wherein said transparent tubular housing comprises quartz.

7. The modular production system of a claim 1 , wherein the transparent tubular housing comprises an exterior surface that is at least partially covered or coated with an insulative, conductive or reflective material.

8. The modular production system of claim 7 , wherein the reflective layer comprises a metallic coating or layer.

9. The modular production system of claim 8 , metallic coating or layer is selected from the group consisting of aluminum foil, an aluminized coating or nanocoating and a gold coating or nanocoating.

10. The modular production system of claim 7 , further comprising a reflecting apron extending from the external surface of the transparent tubular housing toward the irradiation source, the reflecting apron acting to redirect light toward the central cavity defined through the transparent tubular housing.

11. The modular production system of claim 1 , further comprising at least one cooling module positioned distal to the depyrogenation module, said cooling module comprising

a-tubular housing defining at least portion of the central cavity of said cooling module, and

a cooling sparger positioned within said central cavity of said cooling module, said cooling sparger being in fluid communication with a cold fluid source,

wherein said cooling sparger acts to reduce the temperature of materials present within the central cavity of the cooling channel.

12. The modular production system of claim 1 , further comprising one or more filling modules, said filling module positioned distal of the depyrogenation module and proximal of the distal-most production module, said one or more filling modules comprising one or more filling station.

13. The modular production system of claim 12 , further comprising a filling mechanism attachable to the filling module, said filling mechanism adapted to deliver a material to an article, said article comprising container, when said container is positioned at the filling station within the filling module.

14. The modular production system of claim 13 , wherein the filling mechanism comprises a filling needle having a first end, a second end and defining a lumen extending therebetween, said first end of said needle being attached to a source of material to be delivered to a container through said lumen.

15. The modular production system of claim 12 , further comprising a closure module positioned distal to said one or more filling modules, said closure module comprising a closure mechanism for sealing a container.

16. The modular production system of claim 15 , wherein said sealing of the container is achieved by one of a closure, a cap, or a crimp.

17. The modular production system of claim 16 , wherein said closure mechanism comprises a piston, having a sealing head, which acts upon a closure, to cause the closure to seal a container.

18. The modular production system of claim 1 , wherein said article transport system comprises

one or more moveable support rail sections, and

one or more stationary support rail sections, and

wherein the one or more moveable support rail sections move articles progressively along said one or more stationary support rail sections,

wherein the one or more moveable support rail sections is operably connected to a drive frame.

19. The modular production system of claim 18 , wherein the drive frame comprises one or more flexible components which provide for movement of the moveable support.

20. The modular production system of claim 18 , wherein said drive frame comprises one or more flexible vertical lamella, a front structural support, one or more flexible horizontal lamella, and a rear structural support;

wherein said one or more vertical flexible lamella and one or more horizontal flexible lamella each comprise a first end and a second end; and

wherein said front structural support defines a first portion distanced from a second portion,

wherein said first end of said one or more vertical flexible lamella is held in a fixed position relative to an interior wall of said module housing, and said second end of said vertical lamella is connected to the first portion of said front structural support, whereby said first vertical lamella may flex vertically;

wherein said first end of said one or more horizontal flexible lamella is connected to the second portion of said front structural support, and said second end of said one or more horizontal lamella is connected to the rear structural support;

whereby flexion of the one or more vertical lamella allows vertical movement of the rear structural support, and flexion of the one or more horizontal lamella allows for horizontal movement of the rear structural support.

21. The modular production system of claim 18

wherein said article transport system comprises a plurality of sections, wherein a given section is positioned within a given module making up said production tunnel, wherein said sections of said article transport system act in a synchronized fashion to move articles through the production tunnel.

22. The modular production system of claim 20 , wherein the rear structural support comprises a follower magnet, and where the modular production system further comprises one or more drive magnet aligned with said follower magnet, a drive magnet being coupled to a follower magnet by magnetic coupling therebetween, whereby movement of said one or more drive magnet causes corresponding movement of an aligned and magnetically coupled follower magnet.

23. The modular production system of claim 19 , wherein at least a portion of the moveable support rail, the stationary support rail, or both, are selected from the group consisting borosilicate or quartz.

Assignments (1)
CHANGE OF ADDRESS Recorded Oct 8, 2025
From: GLAXOSMITHKLINE INTELLECTUAL PROPERTY DEVELOPMENT LIMITED
To: GLAXOSMITHKLINE INTELLECTUAL PROPERTY DEVELOPMENT LIMITED
Reel/Frame 073032/0390 →
Continuity (2)
Provisional Application 62597310 · Dec 11, 2017
Related Publication 20210362898A1 · Nov 25, 2021
Cited By (1)
US 12,569,447