Disposable container and mixing system comprising the container
09975658 · 2018-05-22
Assignee
Inventors
- David Rönnholm (Uppsala, SE)
- Klaus Gebauer (Uppsala, SE)
- Rolf Hjorth (Uppsala, SE)
- Patrick Jonsson (Uppsala, SE)
Cpc classification
B65D25/24
PERFORMING OPERATIONS; TRANSPORTING
B01F35/43
PERFORMING OPERATIONS; TRANSPORTING
B01F33/4535
PERFORMING OPERATIONS; TRANSPORTING
B65D11/20
PERFORMING OPERATIONS; TRANSPORTING
B01F33/5023
PERFORMING OPERATIONS; TRANSPORTING
B65D11/08
PERFORMING OPERATIONS; TRANSPORTING
B01F35/513
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D25/24
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A disposable container comprising a side wall, top and bottom, wherein the side wall comprises a first flexible material and the bottom comprises a rigid or semi-rigid material. The side wall top and bottom are joined together to define the container with an interior compartment for keeping a fluid inside the container. The bottom comprises at least one opening that is fluid-tightly covered with an assembly comprising a second flexible material. The assembly comprises at least one port which provides access to the interior compartment of the container. The invention also relates to a mixing system comprising the disposable container.
Claims
1. A disposable container comprising: a side wall, top and bottom, wherein the side wall comprises a first flexible material and the bottom comprises a rigid or semi-rigid material, wherein the side wall, top and bottom are joined together to define the container with an interior compartment for keeping a fluid inside the container, wherein the bottom comprises at least one opening that is fluid-tightly covered with an assembly comprising a second flexible material and wherein the assembly comprises at least one port which provides access to the interior compartment of the container, wherein the container has a vertical central axis and a horizontal axis perpendicular to the vertical axis, wherein the bottom of the container is circular and comprises a first half and a second half divided by the diameter of the circular bottom, wherein the bottom is inclined in relation to the horizontal axis such that the first half of the bottom is inclined towards a centre of the interior compartment of the container and the second half of the bottom is inclined outwards of the centre of the interior compartment of the container.
2. The disposable container according to claim 1, wherein the rigid or semi-rigid bottom comprises a rim that extends vertically towards the interior compartment of the container.
3. The disposable container according to claim 1, wherein the angle of inclination is from 1-25.
4. The disposable container according to claim 1, wherein the bottom comprises a drainage structure in the second half of the bottom having the lowest point in relation to the vertical axis.
5. The disposable container according to claim 1, wherein the bottom comprises at least one mixing impeller on the first half of the bottom having the highest point in respect to the vertical axis.
6. The disposable container according to a claim 1, wherein the top comprises a rigid or semi-rigid material.
7. The disposable container according to claim 6, wherein the top comprises at least one opening that is fluid-tightly covered with the assembly comprising a second flexible material and wherein the assembly comprises at least one port which provides access to the interior compartment of the container.
8. The disposable container according to claim 1, wherein the first flexible material and the second flexible material are the same materials.
9. The disposable container according to claim 1, wherein the first flexible material and/or the second flexible material is a plastic laminate.
10. The disposable container according to claim 1, wherein the side wall, top and bottom are joined together by a heat seal and/or an adhesive seal.
11. The disposable container according to claim 1, wherein the bottom comprises at least two openings fluid-tightly covered with the assembly.
12. The disposable container according to claim 1, wherein the bottom is circular and has a radius, and wherein the bottom comprises an opening in the centre of the bottom, wherein the opening has a radius that is larger than one half of the radius of the bottom.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Embodiments of the present invention will be discussed in detail below with reference to the attached drawings. The embodiments shown in the figures are examples and should not be regarded as limiting the present invention in any way.
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DETAILED DESCRIPTION
(10) In
(11) What is meant by flexible material, both the first and the second flexible material used in an embodiment of the present invention, is a material that can be easily bent without breaking. The flexible material may have a thickness of less than 1 mm, suitably from about 0.005 mm to about 0.7 mm, and more particularly from about 0.01-0.5 mm depending on the size and form of the container or bag. The flexible material may have a flexural modulus according to ASTM D790 of less than 2000 MPa. The flexibility of the material is further defined by the thickness of the material, i.e., basically that the thinner the material the more flexible the material. However, two materials of equal thickness may have different flexibility due to the differences in flexural modulus of the materials.
(12) Both the first and the second flexible materials may be a polymeric film material and can be made of a mono layer material or a laminate comprising two or more layers, e.g., polymeric material films. The thickness of one or both of the polymer film materials may, e.g., be 50-400 micrometers, such as 100-300 micrometers. The flexible material comprises at least one layer of a polymeric film material having thermoplastic properties. In an embodiment, the polymeric film material may be sterilizable and more particularly resists gamma radiation, i.e., it substantially retains its properties after gamma radiation. Suitable materials may be conventional film materials used in packaging industry and for example mono layer or multi-layer PE (polyethylene), ULDPE (Ultra Low Density Polyethylene), LLDPE (Linear Low density Polyethylene), EVOH (Ethylene Vinyl Alcohol) and PA (polyamide). The material may also be a laminate film comprising one or more polymeric materials or the material may be for example multi-layer coextruded polyethylene film, such as ULDPE/EVOH/PE/PA. The laminate film may be further comprised of two or more material layers of different thermoplastic materials which have different melting points. However, the mentioned flexible materials are only examples of suitable materials and any flexible material with thermoplastic properties which fulfills product requirements can be used. The first and the second flexible materials may be the same or different from each other, depending on the product requirements.
(13) By rigid or semi-rigid material is meant a material which is unbending or may be slightly bent, i.e., it has slightly flexible and/or elastic properties. In an embodiment, the flexural modulus of the rigid material is greater than 200 MPa according to ASTM D790. The flexural modulus value may be overlapping with the flexural modulus value of the flexible material, but the rigidity of the material is further defined by the thickness of the material. The rigid material can have a thickness of from about 0.7 mm. There is no upper limit for the thickness of the rigid material. The rigid or semi rigid material is further substantially dimensionally stable and is more particularly moldable and can be a polymeric material. Examples of suitable materials are for example low density polyethylene or high density polyethylene materials, polyamide or polypropylene. Further, the rigid or semi rigid material may be a composite material comprising a polymer matrix, such as a polyester, vinyl ester, polyamide polypropylene or any other mouldable polymer material. In an embodiment, the polymer material has thermoplastic properties and can be sterilized and more particularly resists gamma radiation, i.e., it substantially retains its properties after gamma radiation. The rigid parts can be for example vacuum formed or moulded for example by injection moulding.
(14) The seal between the flexible and the rigid or semi-rigid material, i.e., between the top, bottom, side wall and the assembly of an embodiment of the present invention, can be obtained by several means. The seal should be fluid-tight so that sterile conditions inside the container can be maintained. The seal can be obtained by means of an adhesive, by heat-sealing or by using both heat-sealing and adhesive.
(15) In an embodiment, the adhesives used in the adhesive seal are medical grade adhesives. The adhesives can be for example hot-melt adhesives, UV-curable adhesives or solvent-based adhesives. In an embodiment, the hot-melt adhesives used may have a lower melting point than the flexible film material so that the flexible film does not melt when the hot-melt adhesive is applied to the material. Examples of adhesives are for example epoxy- or silicone-based adhesives, such as MasterBond X17 and 3M DP8005. Further, for example adhesive tape could be used.
(16) The heat seal is obtained by bringing the flexible material in contact with heat, so that the thermoplastic component in the material melts and provides the heat seal. The heat seal may be obtained by any suitable manner, which are per se known to the skilled person, for example by hot air welding or conventional heat mold sealing.
(17) Embodiments of the present invention is further illustrated in the figures as described below.
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(19) As further illustrated more in detail in
(20) Generally, the ports in the assembly 15 and in the rim 11 provide a connection point to different pipes or tubes and/or sensors through which gases and liquids may be provided in or harvested or drained from the container. These ports may function as sterile connections and for example enable sample taking from the container. It is also possible to connect different sensors to the ports whereby it is easy to observe the conditions in the container. The amount of the ports may be easily adjusted by means of the assembly according to the needs in the container or system. The assembly may be provided with several ports or it may only contain one port. Since the ports are provided on a flexible material, the amount of the ports may be easily adjusted. The assembly may be manufactured separately from the rigid or semi-rigid bottom and the amount of openings and ports in the assembly can be adapted to the customer and/or process needs. Thus an easy way to adapt the container to different needs is provided.
(21) It is also possible to have one or more flexible sensor patches, comprising one or more sensors in a patch of flexible material attached to the side wall of the bioreactor. If the sensors are essentially flat, they will not disturb the alignment of the side wall with the support vessel.
(22) An example of an assembly 15 with four ports 25 is shown in
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(24) The inclined bottom may comprise draining means in the second half of the bottom. The draining means may be connected to the ports 25 in the second half (II), or it may be assembled directly in association with the rigid or semi-rigid bottom 7. Since the second half (II) is inclined outwards of the centre of the interior compartment the lowest point in relation to the vertical axis (V) is located in the second half (II), and thus gravity can be utilized in draining of the container. Therefore, efficient draining of the container can be provided.
(25) In another embodiment, only the second half (II) of the bottom, i.e., the half that does not contain the impeller means, is inclined in relation to the horizontal axis (H) outwards of the centre of the interior compartment of the container 1. The first half could be positioned in a horizontal direction in alignment with the horizontal axis (H). Thus, improved stability for the mixer can be provided. Also in this embodiment, the inclined bottom may comprise draining means in the second half of the bottom. The draining means may be connected to the ports 25 in the second half (II), or it may be assembled directly in association with the rigid or semi-rigid bottom 7. Since the second half (II) is inclined outwards of the centre of the interior compartment the lowest point in relation to the vertical axis (V) is located in the second half (II), and thus gravity can be utilized in draining of the container. Therefore, efficient draining of the container can be provided.
(26) In a further embodiment, the draining means could be located substantially in the centre of the bottom. In this embodiment, the bottom could be inclined such that the centre of the bottom containing the draining means is located in the central point of the bottom and this point is arranged as the lowest point. In this embodiment, the bottom forms a slightly funnel-shaped structure, and provides for an even draining of the container.
(27) As shown in
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(29) In
(30) The container 200 illustrated in
(31) In the embodiments shown in
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(33) Embodiments of the present invention further relate to a mixing system, an example of which is shown in
(34) As further shown in
(35) The base is further placed on a frame 302 that supports the mixing system 300. The base 36 is attached to the frame 302 by means of screws, so that it can be easily detached and replaced with another type of base, if needed. Also, it is possible to cover the openings that are not needed with covering caps that are detachably attached to the opening. This provides a smooth surface for the base that lies against the disposable container and thus provides improved mechanical support for the container. Since the caps are detachably attached to the openings, the flexibility of the system is improved while mechanical stability is maintained.
(36) The examples above should not be considered limiting the invention in any way. Instead, the scope of the invention is limited by the appended claims.
(37) This written description uses examples to disclose the invention, including the preferred embodiments, and also to enable any person skilled in the art to practice the invention, including making and using any devices or systems and performing any incorporated methods. The patentable scope of the invention is defined by the claims, and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements with insubstantial differences from the literal languages of the claims.