IP Library Granted Patent US 10,145,817
Granted Patent B2
US 10,145,817 · App. 14/757,285 · Granted Dec 4, 2018

Anti-traditional vertical slice gel electrophoresis cell and a telescopic urging mechanism

Inventor: Deming Zhou (Allen, TX)
G01N27/44704G01N27/453
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Quick Facts
Patent No.
US 10,145,817
App. No.
14/757,285
Granted
Dec 4, 2018
Kind
B2
Abstract

Vertically cut a “quasi-upper buffer chamber” (such as the part 11 of US 8808520) into 2 pieces of U-shaped doorframes, and then fix them onto the 2 opposite side walls of a transparent ark, so as to divide the ark into 3 compartments. Position a tubular telescopic urging mechanism into the middle compartment, and then use it to push 2 vertical slice gel cassettes to resting against the 2 door-frames respectively, so as to convert the 3 compartments into 3 watertight compartments. Wherein, the middle one is the lower buffer chamber, while the other 2 are the 2 upper buffer chambers of the present anti-traditional vertical slice gel electrophoresis cell.

Claims (4)

1. A non-traditional vertical slice gel electrophoresis cell having an urging mechanism, wherein said electrophoresis cell has a main body that is a box-shaped container, made of transparent plastic having at least one pair of U-shaped frames fixed at the inside thereof; each of said U-shaped frame has a U-shaped rubber sealing gasket rimmed along it when there is one pair of said U-shaped frames fixed at the inside of the box-shaped container, the pair of said U-shaped frames divide the inside of the box-shaped container into three compartments, which are two side compartments and one middle compartment; the middle compartment is for housing said urging mechanism as well as two vertical slice gel cassettes; when the two vertical slice gel cassettes are pushed to rest against said two U-shaped rubber sealing gaskets respectively, resulted in the three compartments become three water-tight compartments, wherein the two side water-tight compartments are the two upper buffer chambers of the present electrophoresis cell, while the middle water-tight compartment is the lower buffer chamber thereof.

2. A non traditional vertical slice gel electrophoresis cell having an urging mechanism, wherein said urging mechanism is made of plastic comprising one center threaded tube and two aside threaded tubes; one end of said center threaded tube is rotatably coupled with one of said two aside threaded tube by screwing the left-handed thread of one tube onto the left-handed thread of the other tube; while the other end of said center threaded tube is rotatably coupled with the other of said two aside threaded tubes by screwing the right-handed thread of one tube onto the right-handed thread of the other tube; each of said aside threaded tube has a square frame at the un-coupled end mainly for pushing against a vertical slice gel cassette; turning said center threaded tube in one direction will cause said urging mechanism to stretch axially, while turning said center threaded tube in the opposite direction will cause said urging mechanism to shorten axially.

3. The non-traditional vertical slice gel electrophoresis cell of claim 2 , wherein said urging mechanism further comprises a flanged ring at the middle of said center threaded tube for turning it more easily, and also comprises four pairs of retractable tubules connected with the corresponding corners of said two square frames, functionally for preventing said urging mechanism from twisting.

4. A non-traditional vertical slice gel electrophoresis cell having an urging mechanism, wherein said urging mechanism is made of plastic comprising one rotatable threaded tube and one non-rotatable threaded tube; the two threaded tubes are rotatably coupled to each other by screwing one thread tube onto the other thread tube; said rotatable threaded tube has a convex closed un-coupled end, while said non-rotatable threaded tube has a square frame at the un-coupled end for pushing against a vertical slice gel cassette as well as for preventing the tube from rotation; turning said rotatable threaded tube in one direction will cause said urging mechanism to stretch axially, while turning said rotatable threaded tube in the opposite direction will cause said urging mechanism to shorten axially.

Continuity (2)
Provisional Application 62124463 · Dec 19, 2014
Related Publication 20160334368A1 · Nov 17, 2016
Cited By (3)
US 1,065,585 US 1,108,658 US 12,292,408