Patent classifications
C12M23/14
Method and apparatus for spatial control of cellular growth
A three-dimensional cell growth containment article is described, which includes a molded body channelized by removal of sacrificial channelizing element(s) therefrom, so that the molded body contains one or more channel(s) therein, with a matrix material in at least one of such channel(s) that is supportive of three-dimensional cell growth in the matrix material. A method for making such articles is also described, in which a molded body is formed with one or more sacrificial channelizing element(s) therein, following which the sacrificial channelizing element(s) are removed. The three-dimensional cell growth containment articles of the present disclosure may be utilized in any applications in which there exists a need to reproducibly generate three-dimensional cellular structures, e.g., islet transplantation for diabetes treatment, transplantation of hormone secreting cells, cellular scaffolds for wound healing, and generation of tissue engineering structures to regain structural usefulness for orthopedic applications.
BIOLOGICAL COMPONENT CASSETTE, BIOLOGICAL COMPONENT KIT, AND BIOLOGICAL COMPONENT TREATMENT SYSTEM
A biological component cassette includes a cassette main body having a flow path for the liquid in an interior of the cassette main body. The cassette main body is flexible and has a sheet-like shape. The biological component cassette includes a frame that is less flexible than the cassette main body. The frame includes an accommodation chamber in which the cassette main body is accommodated. A side portion of the frame forms at least part of the accommodation chamber. When the cassette main body is accommodated in the accommodation chamber, one surface of the cassette main body is covered by a bottom portion of the accommodation chamber, and another surface of the cassette main body is exposed to an external environment.
Stirred tank reactor systems and methods of use
A reactor system includes a support housing having an interior surface bounding a chamber, the chamber having a vertically extending central longitudinal axis. A flexible bag is disposed within the chamber of the support housing and has an interior surface bounding a compartment. A mixing element is disposed within the compartment of the flexible bag. A drive element, such as a drive shaft, is secured the mixing element, wherein the mixing element is laterally offset from and/or is angled relative to the vertically extending central longitudinal axis of the support housing.
ASEPTIC YEAST TRANSFER APPARATUS AND METHOD
A yeast storage and transfer vessel having semi-permeable materials and a method for transfer of liquid yeast to a fermentor using said vessel and a peristaltic pump. In some embodiments, one or more opening(s) may include a port and valves and/or filters allowing the egress of carbon dioxide and other fermentation gases out of the yeast vessel. The bag storage vessel materials may also include semi-permeable materials. The herein disclosed apparatus and method permit the sterile transfer and mixing of yeast and/or fermentation product into a variety of fermentors, in addition to sterile pumping action in the reverse direction.
Method for producing a biodigester reactor and membrane template
Methods, systems and/or apparatus related to the manufacture and use of biodigesters are disclosed. Moreover, techniques for the manufacture of reactors whose final shape increases the lifespan of the biodigester, as well as modular techniques for the manufacture of the reactors, are included.
Sterile sensor insertion
The present invention provides a system for the insertion of a pre-sterilized sensor probe into a sterile vessel. The system of the invention provides a reliable and straightforward way to insert one or more sterile probes into a sterile vessel. The present invention also provides a sterile vessel that includes one or more of the systems of the invention. The sterile vessel can be a flexible or semi-rigid bag or tubing of the type typically used for carrying out biochemical and/or biological processes and/or manipulating liquids and other products of such processes. Furthermore, the present invention provides a method for aseptically inserting a probe into a sterile vessel where the method makes use of the system of the invention.
FLOW PATH CASSETTE, CELL CULTURING KIT, AND CELL CULTURING SYSTEM
A flow path cassette, a cell culturing kit, and a cell culturing system are provided, which are capable of increasing a degree of freedom in the layout of the flow paths. A flow path cassette, in which flow paths through which a cell-containing liquid flows are aggregated, is equipped with a first cassette main body and a second cassette main body in which the flow paths are formed between resin sheets, and a frame in which these elements are accommodated. The frame accommodates the first cassette main body and the second cassette main body in an accommodation space defined by a recessed shape.
Single Use Bioreactor
A single-use bioreactor is provided. The single-use bioreactor may include a bioprocess container, a shell, at least one agitator, at least one sparger, at least one gas filter inlet port for the sparger(s) and headspace overlay, at least one fill port, at least one harvest port, at least one sample port, and at least one probe. In examples, at least one controller may monitor and control one or more parameters associated with the single-use bioreactor A method to cultivate and propagate mammalian cells is also provided. The method may include cultivating under suitable conditions and in a suitable culture medium in a first single-use bioreactor, transferring the medium containing the cells obtained by propagation from the at least one mammalian cell is into a second single-use bioreactor, transferring the medium containing the cells obtained by propagation from the at least one mammalian cell is into a third single-use bioreactor, and cultivating the cells in the third bioreactor.
Heat exchanger system with flexible bag
A bag assembly for use with a heat exchanger includes a flexible bag having of one or more sheets of polymeric material, the bag having a first end that bounds a first compartment and an opposing second end that bounds a second compartment, a support structure being disposed between the first compartment and the second compartment so that the first compartment is separated and isolated from the second compartment. A first inlet port, a first outlet port, and a first drain port are coupled with the flexible bag so as to communicate with the first compartment. A second inlet port, a second outlet port, and a second drain port are coupled with the flexible bag so as to communicate with the second compartment.
METHODS AND SYSTEMS FOR IN-VITRO MILK PRODUCTION
The disclosure relates to methods, systems and compositions for use in the production of milk. More specifically, the disclosure is directed to systems, compositions and methods for in-vitro production of milk using an array of mammary organoids seeded on tertiary-branched, resilient duct scaffolding.