IP Library Granted Patent US 10,241,011
Granted Patent B2
US 10,241,011 · App. 15/646,701 · Granted Mar 26, 2019

Apparatus and method for producing specimens for electron microscopy

Inventors: Bridget Carragher (San Diego, CA); Clinton S. Potter (San Diego, CA); Tilak Jain (Encinitas, CA); Peter Kahn (Phoenix, AZ); Peter Wiktor (Phoenix, AZ)
Assignees: The Scripps Research Institute; Engineering Arts LLC
G01N1/28G01N1/2813G01N1/42H01J37/261H01J37/26H01J2237/2001H01J2237/2802
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Quick Facts
Patent No.
US 10,241,011
App. No.
15/646,701
Granted
Mar 26, 2019
Kind
B2
Abstract

The invention provides methods and devices for preparing frozen vitrified samples for transmission electron microscopy. By reducing the volume of sample from microliter scale to picoliter scale, the requirement for blotting of excess fluid is minimized or eliminated.

Claims (21)

1. A system for preparing an electron microscopy sample on an electron microscopy (EM) sample grid, comprising:

a. a plunger assembly comprising a shaft, a holder for reversibly receiving an EM sample grid at a first end of the shaft, and a triggering mechanism configured to cause the plunger assembly to move from a first position to a second position upon occurrence of a triggering event;

b. a fluid dispenser comprising one or more fluid dispensing elements, each configured to dispense a sub-microliter fluid volume therefrom, and a positioning drive configured to move the one or more fluid dispensing elements relative to the EM sample grid;

c. a computer system configured to control the positioning drive to move the one or more fluid dispensing elements relative to the EM sample grid, and to control the fluid dispenser to dispense a plurality of sub-microliter fluid volumes onto a plurality of discrete, fluidly discontinuous locations on the EM grid, wherein the plurality of sub-microliter fluid volumes are dispensed without stopping the motion of the one or more fluid dispensing elements while dispensing the plurality of sub-microliter fluid volumes;

d. a sample reservoir operably linked to the fluid dispenser; and

e. a cryogen reservoir configured to position a cryogenic liquid to receive the EM sample grid when the plunger assembly moves to the second position.

2. A system according to claim 1 , further comprising an environmental chamber configured to control relative humidity and temperature at the EM sample grid during dispensing of the plurality of sub-microliter fluid volumes.

3. A system according to claim 1 , wherein the one or more fluid dispensing elements dispense fluid using a piezoelectric impulse.

4. A system according to claim 1 , further comprising one or both of (i) and (ii):

(i) a first camera system configured to provide monitoring of fluid dispensed from the one or more dispensing elements, and

(ii) a second camera system configured to provide monitoring alignment of the position of the dispensing elements relative to the EM sample grid in the first position and/or monitoring of droplet characteristics on the EM sample grid.

5. A method for preparing an electron microscopy sample on an EM sample grid, comprising:

(1) positioning the EM sample grid on a plunger assembly of an apparatus, the apparatus comprising:

a. a plunger assembly comprising a shaft, a holder for reversibly receiving an EM sample grid at a first end of the shaft, and a triggering mechanism configured to cause the plunger assembly to move from a first position to a second position upon occurrence of a triggering event;

b. a fluid dispenser comprising one or more fluid dispensing elements, each configured to dispense a sub-microliter fluid volume therefrom, and a positioning drive configured to move the one or more fluid dispensing elements relative to the EM sample grid;

c. a computer system configured to control the positioning drive to move the one or more fluid dispensing elements relative to the EM sample grid, and to control the fluid dispenser to dispense a plurality of sub-microliter fluid volumes onto a plurality of discrete, fluidly discontinuous locations on the EM grid, wherein the plurality of sub-microliter fluid volumes are dispensed without stopping the motion of the one or more fluid dispensing elements while dispensing the plurality of sub-microliter fluid volumes;

d. a sample reservoir operably linked to the fluid dispenser; and

e. a cryogen reservoir configured to position a cryogenic liquid to receive the EM sample grid when the plunger assembly moves to the second position;

with the plunger assembly in the first position or between the first and second positions, causing the computer system to control the fluid dispenser to dispense a plurality of sub-microliter fluid volumes onto a plurality of discrete, fluidly discontinuous locations on the EM grid; and

(2) activating the triggering mechanism to displace the shaft to the second position, wherein the EM sample grid is immersed into the cryogenic liquid contained within the cryogen reservoir.

6. A method according to claim 5 , wherein the one or more dispensing elements dispense fluid using a piezoelectric impulse.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2018
From: POTTER, CLINTON S.; CARRAGHER, BRIDGET; JAIN, TILAK
To: THE SCRIPPS RESEARCH INSTITUTE
Reel/Frame 046524/0110 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2017
From: KAHN, PETER; WIKTOR, PETER
To: ENGINEERING ARTS LLC
Reel/Frame 043599/0739 →
Continuity (3)
Continuation 14372277
Provisional Application 61632047 · Jan 17, 2012
Related Publication 20170350798A1 · Dec 7, 2017