Apparatus and method for incubating cell cultures
Abstract
A portable, self-contained incubation apparatus has a cell container in which a cell culture can grow. The cell container resides on a base along with other components that maintain the environmental conditions inside of the container within a desired range. The self-contained incubation apparatus is portable allowing the conditions within the cell container to be precisely controlled even as it is being moved from one location to another. Further, at least one transparent surface of the cell container enables observation of the cell culture. Thus, the culture can be observed while the environmental conditions within the container are being controlled by components of the incubation apparatus. Since the cells can be observed without breaking the air-tight seal of the container, observation of the cells can be performed as often as is desired without introducing contaminants to the culture or otherwise significantly affecting the growth environment within the container. Indeed, observation of the cells can be performed as often as is desired without introducing contaminants to the culture or otherwise significantly affecting the growth environment within the container.
Claims
exact text as granted — not AI-modified1 . An incubation apparatus, comprising:
a removable base segment; a reservoir residing on the removable base segment, the reservoir having a first chamber and a second chamber separated by a gas permeable membrane; a cell growth container residing on the removable base segment, the cell growth container having a chamber for growing cells, the cell growth container further having at least one transparent surface allowing viewing of cells within the chamber through the transparent surface; a pump external to the removable base segment, the pump coupled to the cell growth container and the reservoir such that media in the second chamber of the reservoir is pumped from the reservoir to the chamber of the cell growth container; and a mixer external to the removable base segment, the mixer having a plurality of gas containers coupled to a plurality of valves, respectively, the plurality of gas containers including at least a first gas container containing a first gas and a second gas container containing a second gas, the plurality of valves including at least a first valve coupled to the first gas container and a second valve coupled to the second gas container; a temperature control element; a first temperature sensor; and control logic configured to automatically control the first and second valves such that a desired ratio of at least the first gas and the second gas is mixed by the mixer thereby forming a gas mixture, the control logic further configured to automatically control the temperature control element based on the first temperature sensor such that the media is heated by the first temperature control element to a specified temperature range, wherein the mixer is coupled to the reservoir such that the gas mixture from the mixer enters the first chamber of the reservoir, passes through the membrane, and diffuses into the media in the second chamber of the reservoir.
2 . The apparatus of claim 1 , wherein the first temperature sensor resides on the removable base segment.
3 . The apparatus of claim 1 , wherein the reservoir has a hole extending to the first chamber such that gas within the first chamber can vent from the first chamber.
4 . The apparatus of claim 1 , wherein the membrane is composed of polytetrafluoroethylene.
5 . The apparatus of claim 1 , wherein the reservoir and container are integrated.
6 . The apparatus of claim 1 , wherein the reservoir is external to the cell growth container and coupled to the cell growth container via a hose, and wherein the media passes through the hose while traveling from the second chamber of the reservoir to the chamber of the cell growth container.
7 . The apparatus of claim 1 , wherein the first temperature sensor is for sensing a temperature of the media in the reservoir, wherein the apparatus further comprises a second temperature sensor for sensing a temperature of the media in the cell growth container.
8 . The apparatus of claim 1 , further comprising:
a frame; and a microscope mounted on the frame, wherein the removable base segment is positioned on the frame such that the cells in the cell growth container are viewable to the microscope through the transparent surface.
9 . The apparatus of claim 1 , wherein the cell growth container has a wall having a channel for passing the media into the chamber of the cell growth container, wherein the reservoir is coupled to the cell growth container via a hose, the hose extending from the reservoir to the channel.
10 . The apparatus of claim 1 , wherein the membrane is hydrophobic and forms a water-tight seal between the first chamber and the second chamber
11 . A method, comprising the steps of:
providing an incubation apparatus having a pump and a mixer; inserting a removable base segment into the incubation apparatus, the removable base segment having a reservoir and a cell growth container, wherein the reservoir has a gas permeable membrane separating a first chamber of the reservoir from a second chamber of the reservoir, and wherein the cell growth container has at least one transparent surface; injecting cells into the container; pumping media from the second chamber of the reservoir into the cell growth container via the pump; automatically controlling a plurality of valves respectively coupled to a plurality of gas containers such that at least a first gas from one of the gas containers mixes with a second gas from another of the gas containers thereby forming a gas mixture comprising a desired ratio of at least the first gas and the second gas; causing the gas mixture to pass from the first chamber of the reservoir through the membrane to the second chamber of the reservoir such that the gas mixture diffuses with the media in the second chamber of the reservoir; automatically heating the media based on a temperature sensor; and removing the removable base segment from the incubation apparatus.
12 . The method of claim 11 , wherein the temperature sensor resides on the removable base segment.
13 . The method of claim 11 , wherein the membrane is hydrophobic and forms a water-tight seal between the first chamber and the second chamber.Join the waitlist — get patent alerts
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