IP Library Granted Patent US 12,173,269
Granted Patent B2
US 12,173,269 · App. 18/191,453 · Granted Dec 24, 2024

Incubator with air curtain

Inventors: Royal Q. Le (San Diego, CA); Barry E. Rothenberg (Del Mar, CA); Kyong-su Son (San Diego, CA)
Assignee: Embrient, Inc.
C12M41/34B01D46/0028B01D46/0036B01D53/04B01D53/047C12M23/34C12M29/24B01D2253/102
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Quick Facts
Patent No.
US 12,173,269
App. No.
18/191,453
Granted
Dec 24, 2024
Kind
B2
Abstract

An incubator for cell and tissue culture under controlled atmospheric conditions has a primary air flow control device that forms a primary, preferably laminar flow, air veil across an opening that allows access to the cells or tissue cultures disposed within the incubator. Preferably, most if not all of the air in the primary (laminar flow) air veil is recirculated, and a secondary air flow control device is used that forms a secondary, preferably laminar flow, air veil between the primary (laminar flow) air veil and a user of the incubator.

Claims (34)

1. An incubator, comprising:

a housing that at least partially encloses an internal container, wherein the internal container has an opening;

a primary air flow control device coupled to the housing and/or internal container and positioned relative to the internal container to direct a primary air veil along or substantially parallel to a hypothetical plane covering the opening;

wherein the primary air flow control device further comprises a movable vane that controls a direction of the primary air veil to allow directing of at least some of the air in the primary air veil into the internal container;

a secondary air flow control device coupled to the housing and/or internal container and positioned relative to the internal container to direct a secondary air veil substantially parallel to the primary air veil;

wherein the primary and/or secondary air flow control device is configured to produce a respective primary and/or secondary air veil that has a directional or laminar flow at an air velocity of at least 0.3 meter per second; and

wherein the housing, the internal container, and the primary air flow control device are positioned relative to each other to form a recirculation space that allows for recirculation of air in the primary air veil.

2. The incubator of claim 1 , wherein the primary air veil comprises multiple air veils that are directed along or substantially parallel to the hypothetical plane covering the opening.

3. The incubator of claim 1 , wherein the primary and/or secondary air veil is formed as a composite veil.

4. The incubator of claim 1 , wherein the primary and/or secondary air flow control device comprises a honeycomb structure or plurality of cylindrical structures that form the directional or laminar flow.

5. The incubator of claim 1 , wherein the primary air flow control device recirculates at least 90% of all air in the primary air veil through the recirculation space.

6. The incubator of claim 1 , further comprising a primary and/or secondary suction fan, wherein the primary suction fan is positioned to receive air from the primary air veil, and wherein the secondary suction fan is positioned to receive air from the secondary air veil.

7. The incubator of claim 6 , wherein the secondary air flow control device is configured to receive ambient air and wherein the secondary suction fan expels the secondary air veil to the ambient air.

8. The incubator of claim 1 , wherein the recirculation space at least partially encloses a plurality of sensors selected from the group consisting of a CO 2 sensor, an O 2 sensor, a humidity sensor, an atmospheric pressure sensor, and temperature sensor.

9. The incubator of claim 1 , wherein the recirculation space further at least partially encloses a sterilization unit, a high-efficiency particulate air (HEPA) filter, an activated charcoal filter, and/or a heater.

10. The incubator of claim 1 , further comprising a door that is movably coupled to the housing and/or internal container and further comprising a control unit having a microprocessor and a memory storing instructions executable on the microprocessor, wherein the instructions cause the control unit to:

a) down-regulate the primary air flow control device and optionally cause movement of the movable vane upon the door moving into a closed position;

b) up-regulate the primary air flow control device and an optional secondary air flow control device upon the door moving into an open position; and/or

c) cause movement of the movable vane when the door is in the open position.

11. The incubator of claim 10 , wherein the control unit is further electronically coupled to a temperature sensor, a gas sensor, an atmospheric pressure sensor, and/or a humidity sensor, and wherein the instructions cause the control unit to activate a heater, open a gas valve to allow entry of a gas into the incubator, and/or activate a humidifier.

12. The incubator claim 10 , wherein the control unit is further electronically coupled to an access control device that is programmed to receive a user command and/or validate an authorized user of the incubator, and wherein the instructions cause the control unit to move the door from the closed to the open position upon receiving the user command and/or validation of the authorized user.

13. The incubator of claim 12 , wherein the user commend is a voice command or user gesture, and/or wherein the authorized user is validated by face recognition.

14. The incubator of claim 10 , wherein the door is coupled to the housing and/or internal container such that the entire door is movable away from the hypothetical plane and such that the entire door is moveable in a horizontal or vertical direction.

15. The incubator of claim 14 wherein the door, when in a closed position, is positioned in an area otherwise occupied by the secondary air veil.

16. A method of operating a cell or tissue culture incubator, the incubator having a housing that at least partially encloses an internal container that has an opening, comprising:

using a primary air flow control device that is coupled to the housing and/or internal container to direct a primary air veil along or substantially parallel to a hypothetical plane covering the opening;

wherein the primary air flow control device is configured to produce the primary air veil that has a directional or laminar flow at an air velocity of at least 0.3 meter per second;

using a movable vane that is coupled to the primary air flow control device to direct some air from the primary air veil into the internal container;

using a secondary air flow control device that is coupled to the housing and/or internal container to direct a secondary air veil parallel to the primary air veil; and

wherein the primary and secondary air flow control devices are used when a door that is coupled to the housing and/or internal container is in an open position.

17. The method of claim 16 , wherein the primary air veil comprises multiple air veils that are directed along or substantially parallel to the hypothetical plane covering the opening.

18. The method of claim 16 , wherein the primary and/or secondary air veil is formed as a composite veil.

19. The method of claim 16 , wherein the primary and/or secondary air flow control device comprises a honeycomb structure or plurality of cylindrical structures that form the directional or laminar flow.

20. The method of claim 16 , wherein the housing, the internal container, and the primary air flow control device are positioned relative to each other to form a recirculation space that allows for recirculation of at least 90% of all air in the primary air veil, and further comprising a step of measuring at least one environmental parameter in the recirculation space using a plurality of sensors at least partially disposed in the recirculation space.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 29, 2023
From: ROTHENBERG, BARRY E.; SON, KYONG-SU; LE, ROYAL Q.
To: EMBRIENT, INC.
Reel/Frame 063157/0864 →
Continuity (7)
Continuation 17745473 · May 16, 2022
Continuation 17523558 · Nov 10, 2021
Continuation 17357131 · Jun 24, 2021
Continuation 17102795 · Nov 24, 2020
Continuation 17011249 · Sep 3, 2020
Provisional Application 62895587 · Sep 4, 2019
Related Publication 20230242861A1 · Aug 3, 2023