Interfacial effects enable droplet actuation, inhibition relief, and early sensing of polymerase chain reaction
Disclosed are devices, systems and methods of use utilizing interfacial effects enabling droplet actuation, inhibition and early sensing of molecular reactions, such as of polymerase chain reaction.
1. An apparatus, comprising:
two chambers containing a hydrophobic liquid, wherein a first chamber of the two chambers comprises a first heater maintaining the hydrophobic liquid at a first temperature, and a second chamber of the two chambers comprises a second heater maintaining the hydrophobic liquid at a second temperature;
a channel hydraulically connecting the two chambers and containing the hydrophobic liquid, wherein a temperature gradient in the hydrophobic liquid between the first temperature and the second temperature is formed between the first chamber and the second chamber along the channel;
a transparent window in the channel positioned between the two chambers;
a movement device adapted to move between the two chambers and along the channel;
a droplet manipulating device coupled to the movement device and immersed in the hydrophobic liquid, wherein the droplet manipulating device comprises a temperature sensing device comprising a looped thermocouple positioned inside a droplet within the droplet manipulating device; and
a controller operably connected to the movement device and the temperature sensing device within the droplet manipulating device, the controller being configured to command the movement device along the channel based on a sensed temperature inside the droplet.
2. The apparatus of claim 1 , further comprising a second temperature sensing device coupled to the movement device and configured to sense a temperature of the hydrophobic liquid.
3. The apparatus of claim 1 , wherein the channel is arced.
4. The apparatus of claim 1 , wherein the transparent window is positioned equidistant from the two chambers.
5. An apparatus, comprising:
a chamber containing a hydrophobic liquid and a heater maintaining the hydrophobic liquid at a temperature;
a channel hydraulically coupled to the chamber and extending from the chamber a distance sufficient to form a temperature gradient along the hydrophobic liquid;
a transparent window positioned on the channel;
a movement device adapted to move along the channel;
a droplet manipulating device coupled to the movement device and immersed in the hydrophobic liquid, wherein the droplet manipulating device comprises a temperature sensing device comprising a looped thermocouple positioned inside a droplet within the droplet manipulating device; and
a controller operably connected to the movement device and the temperature sensing device, the controller being configured to command the movement device along the channel based on a sensed temperature inside the droplet.
6. The apparatus of claim 5 , further comprising a second temperature sensing device coupled to the movement device and configured to sense a temperature of the hydrophobic liquid.
7. The apparatus of claim 5 , wherein the channel is arced.
8. The apparatus of claim 1 , wherein the first temperature is 45-50° C. and the second temperature is 100-105° C., or wherein the first temperature is 100-105° C. and the second temperature is 45-50° C.