Ceramic powered steel shot magnetic sweeper apparatus
US-2024216927-A1 · Jul 4, 2024 · US
US9393565B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9393565-B2 |
| Application number | US-201414487580-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 16, 2014 |
| Priority date | May 15, 2009 |
| Publication date | Jul 19, 2016 |
| Grant date | Jul 19, 2016 |
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Methods, systems, and apparatus are provided for automated isolation of selected analytes, to which magnetically-responsive solid supports are bound, from other components of a sample. An apparatus for performing an automated magnetic separation procedure includes a mechanism for effecting linear movement of a magnet between operative and non-operative positions with respect to a receptacle device. A receptacle holding station within which a receptacle device may be temporarily stored prior to moving the receptacle to the apparatus for performing magnetic separation includes magnets for applying a magnetic field to the receptacle device held therein, thereby drawing at least a proton of the magnetically-responsive solid supports out of suspension before the receptacle device is moved to the magnetic separation station. An automated receptacle transport mechanism moves the receptacle devices between the apparatus for performing magnetic separation and the receptacle holding station.
Opening claim text (preview).
The invention claimed is: 1. A method for removing a conduit from a distal end of each of a plurality of fluid transfer probes, comprising: a) effecting powered linear translation of a movable slide in a direction transverse to the axes of the probes from a first location with respect to a receptacle carrier to a second location with respect to the receptacle carrier, wherein the slide includes a lateral surface with conduit-stripping portions thereon, wherein when the slide is in the first location, no portion of the slide is in a position to be engaged by any of the probes, and when the slide is in the second location, the conduit-stripping portions of the slide are in positions to be engaged by the distal ends of the probes, wherein the slide comprises one or more magnets mounted thereon such that, when the slide is in the first location, the one or more magnets have substantially no effect on magnetically-responsive solid supports contained in a receptacle device held in the receptacle carrier, the receptacle device comprising multiple receptacles that each have a wall and contain a fluid, and wherein the multiple receptacles of the receptacle device held in the receptacle carrier are positioned so as to be operatively engageable by the probes, and when the slide is in the second location, the one or more magnets are positioned adjacent to the receptacle device held in the receptacle carrier so that the magnets will draw at least a portion of the magnetically-responsive solid supports to the walls of the multiple receptacles; b) removing the receptacle device from the receptacle carrier; and c) after step b), and with the slide in the second location, effecting powered axial movement of the probes with respect to the slide to engage the distal ends of the probes with the conduit-stripping portions of the slide and to strip the conduits from the probes. 2. The method of claim 1 , wherein stripping the conduits from the distal ends of the probes comprises moving the probes in an axial direction toward the slide until the conduits disposed on the distal ends of the probes engage the conduit-stripping portions of the slide and then moving the probes in an opposite axial direction away from the slide while retaining the conduits with the conduit-stripping portions of the slide to pull the conduits from the distal ends of the probes. 3. The method of claim 2 , wherein retaining the conduits with the conduit-stripping portions of the slide comprises: providing, for each conduit-stripping portion, a key-hole opening formed in the lateral surface, the key-hole opening having a first portion with a transverse size sufficient to permit the conduit to pass therethrough and a second portion with a transverse size sufficient to permit the probe to pass therethrough, but not sufficient to permit the conduit to pass therethrough; passing the distal end of the probe with the conduit disposed thereon through the first portion of the key-hole opening; effecting a relative movement between the probe and the slide so that the probe is in the second portion of the key-hole opening; and withdrawing the probe from the key-hole opening, the conduit being retained by the conduit-stripping portion when the conduit is unable to pass through the second portion of the key-hole opening. 4. The method of claim 2 , comprising sequentially retaining each of the conduits during axial movement of the probes away from the slide so that all conduits are not pulled from the distal ends of the probes simultaneously. 5. The method of claim 1 , wherein the magnetically-responsive solids supports are adapted to immobilize an analyte thereon. 6. The method of claim 1 , further comprising mixing the contents of the multiple receptacles positioned so as to be operatively engageable by the probes when the slide is in the first location. 7. The method of claim 1 , further comprising, before performing steps a and b, performing the steps of: c) placing the receptacle device containing magnetically-responsive solid supports in the receptacle carrier; d) effecting powered axial movement of the probes to engage a conduit with the distal end of each probe to removably secure the engaged conduits onto the distal ends of the probes; e) effecting powered linear translation of the slide to the second location adjacent the receptacle device placed in the receptacle carrier in step c to draw at least a portion of the magnetically-responsive solid supports to the walls of the multiple receptacles; f) aspirating at least a portion the fluid contained in each of multiple receptacles with the probes; g) effecting powered linear translation of the slide to the first location; h) dispensing a wash solution into each of the multiple receptacles; i) agitating the receptacle device to mix the contents of the multiple receptacles; j) repeating step e; and k) repeating step f.
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