Apparatus, system, and method using immiscible-fluid-discrete-volumes
Various embodiments of the teachings relate to a system or method for sample preparation or analysis in biochemical or molecular biology procedures. The sample preparation can involve small volume processed in discrete portions or segments or slugs, herein referred to as discrete volumes. A molecular biology procedure can be nucleic acid analysis. Nucleic acid analysis can be an integrated DNA amplification/DNA sequencing procedure.
1. A system comprising:
at least one conduit;
an aqueous sample fluid introduction unit in fluid communication with the at least one conduit;
a spacing fluid introduction unit in fluid communication with the at least one conduit, the aqueous sample fluid introduction unit and the spacing fluid introduction unit comprising separate units each in fluid communication with the at least one conduit;
a control unit configured to control a flow an aqueous sample fluid and a spacing fluid from the aqueous sample fluid introduction unit and the spacing fluid introduction unit, respectively, to form discrete volumes of the aqueous sample fluid within the spacing fluid in the at least one conduit, wherein the aqueous sample fluid contains at least one nucleic acid fragment, and the sample fluid introduction unit is further configured to inject volumes of aqueous sample fluid such that at least 1% of the discrete volumes contain a single nucleic acid fragment; and
a detector configured to detect the at least one nucleic acid fragment within the discrete volumes of aqueous sample flowing through the at least one conduit.
2. The system of claim 1 , wherein an inner surface of the at least one conduit comprises an attached linker moiety.
3. The system of claim 1 , further comprising an aqueous sample fluid source in fluid communication with the aqueous sample fluid introduction unit, and a spacing fluid source in fluid communication with the spacing fluid introduction unit.
4. The system of claim 1 , wherein the detector is configured to detect a component of the aqueous sample fluid source, or a product thereof, while in the conduit.
5. The system of claim 4 , wherein the detector comprises at least one of a spectrophotometer, a refractive index detector, and a fluorometer.
6. The system of claim 1 , further comprising a thermal-cycling device adapted to thermally cycle an aqueous sample fluid in the at least one conduit.
7. The system of claim 1 , wherein the conduit comprises a conduit having an inner diameter and the inner diameter is about 300 microns or less.
8. The system of claim 7 , wherein the inner diameter is about 50 microns or less.