Method and apparatus for delivery of submicroliter volumes onto a substrate
A slotted pin tool, a delivery system containing the pin tool, a substrate for use in the system and methods using the pin tool and system are provided. The slotted pin tool contains a plurality of pins having slotted ends designed to fit around each loci of material deposited on a surface, such as a microarray, without contacting any of the deposited material. Sample is delivered by contacting the pin tool with the surface; the amount delivered is proportional to the velocity of the pin tool as it contacts the surface or the velocity of the liquid when movement of the pin is halted.
1. A pin tool device for control and delivery of a range of volumes of fluid, comprising:
a pin tool comprising, a solid core pin comprising a shaft, a tip and a slot at the tip; a pin holding block comprising side walls, an upper wall that includes one or more apertures and a bottom wall that includes one or more apertures; and a spring comprising a top and a bottom, which spring extends from the upper wall of the pin holding block to a point on the shaft of the pin where the bottom of the spring is attached via a spring clip,
which slot is configured to hold a volume of fluid;
which pin is configured to move up and down relative to the pin holding block through an aperture in the upper wall and an aperture in the lower wall; and
which spring is configured to compress against the upper wall of the holding block when the pin moves upward through the aperture in the upper wall and the aperture in the lower wall of the holding block; and
a controller configure to deliver at least a portion of the volume of fluid in the slot that is delivered by the pin tool by changing the speed of lowering the pin tool, thereby accurately controlling and delivering a desired volume of fluid when downward movement of the pin tool is halted.
2. The pin tool device of claim 1 , wherein a portion of the pin extends through the upper wall and the bottom wall.
3. The pin tool device of claim 1 , wherein a portion of the pin extends through the bottom wall when the spring is in a compressed state and when the spring is in a relaxed state.
4. The pin tool device of claim 1 , wherein a portion of the pin extends through the upper wall and the bottom wall when the spring is in a compressed state and when the spring is in a relaxed state.
5. The pin tool device of claim 1 , comprising a plurality of pins and a spring around each pin.
6. The pin tool device of claim 1 , wherein the tip of the pin is substantially cylindrical and the slot is a lateral slot forming a cavity with a width of about 75μm or greater.
7. The pin tool device of claim 6 , wherein the cavity of the cylindrical tip has a width up to about 500 μm.
8. The pin tool device of claim 6 , wherein the cavity of the cylindrical tip has a height up to about 100 μm.
9. The pin tool device of claim 1 , wherein the pin is tapered.
10. The pin tool device of claim 1 , wherein the pin has an outer surface and an inner surface.
11. The pin tool device of claim 10 , wherein the pin outer surface is more hydrophobic than the pin inner surface.
12. The pin tool device of claim 1 , wherein the portion of the volume of fluid in the slot that is delivered by the pin tool is linearly related to the speed of lowering of the pin tool.