IP Library › Granted Patent US 10,844,366
Granted Patent B2
US 10,844,366 · App. 16/033,767 · Granted Nov 24, 2020

Apparatus and method for dehydrating biological materials with freezing and microwaving

Inventors: Timothy D. Durance (Vancouver, CA); Jun Fu (Port Coquitlam, CA); Parastoo Yaghmaee (Vancouver, CA); Robert L. Pike (Vancouver, CA)
Assignee: Enwave Corporation
C12N13/00A23L3/54C12M47/14C12N1/04C12N9/96F26B5/06F26B25/001
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Quick Facts
Patent No.
US 10,844,366
App. No.
16/033,767
Granted
Nov 24, 2020
Kind
B2
Abstract

An apparatus and method for dehydrating biological materials, such as vaccines and microorganism cultures, in which the materials are dehydrated in an evacuated container which is in a microwave waveguide that is open to the atmosphere. The apparatus comprises means for freezing the container of biological material, a microwave generator, a waveguide, means for introducing the container into the waveguide, means for applying a vacuum to the container and means for removing the dehydrated material from the waveguide. In the method of the invention, the container of biological material is put in a microwave waveguide open to the atmosphere, a vacuum is applied to the container, the material is frozen and is radiated to dehydrate it. The dehydrated material is then removed from the waveguide.

Claims (39)

1. An apparatus for dehydrating a biological material, comprising:

(a) a microwave generator;

(b) a waveguide to direct microwave radiation from the generator, the waveguide being open to the atmosphere;

(c) a container-lifting mechanism for introducing a microwave-transparent container of the material into the waveguide;

(d) a vacuum source for applying a vacuum to the container sufficient to cause or maintain freezing of the material; and

(e) a container-lowering mechanism for removing the container from the waveguide.

2. An apparatus for dehydrating a biological material, comprising:

(a) a microwave generator;

(b) a waveguide to direct microwave radiation from the generator, the waveguide being open to the atmosphere;

(c) a microwave-transparent container in the waveguide for holding the material;

(d) a vacuum source for applying a vacuum to the container sufficient to cause or maintain freezing of the material; and

(e) a container-removing mechanism for removing the container from the waveguide.

3. An apparatus for dehydrating a biological material, comprising:

(a) a microwave generator;

(b) a waveguide to direct microwave radiation from the generator, the waveguide being open to the atmosphere;

(c) means for introducing a microwave-transparent container of the material into the waveguide;

(d) means for applying a vacuum to the container sufficient to cause or maintain freezing of the material; and

(e) means for removing the material from the waveguide.

4. An apparatus for dehydrating a biological material, comprising:

(b) a microwave generator;

(b) a waveguide to direct microwave radiation from the generator, the waveguide being open to the atmosphere;

(c) a microwave-transparent container in the waveguide for holding the material;

(d) means for applying a vacuum to the container sufficient to cause or maintain freezing of the material; and

(e) means for removing the material from the waveguide.

5. A method for dehydrating a biological material, comprising the steps of:

(a) providing a microwave-transparent container holding the biological material to be dehydrated;

(b) putting the container in a microwave waveguide that is open to the atmosphere;

(c) applying a vacuum to the container in the waveguide;

(d) freezing the material;

(e) applying microwave radiation to dehydrate the material in the container by sublimation; and

(f) removing the dehydrated material from the waveguide.

6. The method according to claim 5 , wherein the freezing of the material is done by the applying of the vacuum to the container.

7. A method for dehydrating a biological material, comprising the steps of:

(a) providing a microwave-transparent container holding the material to be dehydrated;

(b) freezing the material;

(c) putting the container of frozen material into a microwave waveguide that is open to the atmosphere;

(d) applying a vacuum to the container in the waveguide;

(e) applying microwave radiation to dehydrate the material in the container by sublimation; and

(f) removing the dehydrated material from the waveguide.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2018
From: DURANCE, TIMOTHY D.; FU, JUN; YAGHMAEE, PARASTOO; PIKE, ROBERT L.
To: ENWAVE CORPORATION
Reel/Frame 046540/0116 →
Continuity (3)
Continuation 13063718
Provisional Application 61096567 · Sep 12, 2008
Related Publication 20180327737A1 · Nov 15, 2018
Cited By (1)
US 12,584,687