POLYMER MICROFILTERS, DEVICES COMPRISING THE SAME, METHODS OF MANUFACTURING THE SAME, AND USES THEREOF
First Claim
Patent Images
1. A microfilter comprising:
- a first polymer layer formed from a photo-definable dry film, wherein the first polymer layer comprises a surface modified by at least one of changing of the surface energy, altering of the surface topography, and altering of the surface chemistry; and
a plurality of first apertures each extending through the first polymer layer.
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Abstract
A microfilter having a hydrophilic surface and suited for size-based capture and analysis of cells, such as circulating cancer cells, from whole blood and other human fluids is disclosed. The filter material is photo-definable, allowing the formation of precision pores by UV lithography. Exemplary embodiments provide a device that combines a microfilter with 3D nanotopography in culture scaffolds that mimic the 3D in vivo environment to better facilitate growth of captured cells.
12 Citations
52 Claims
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1. A microfilter comprising:
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a first polymer layer formed from a photo-definable dry film, wherein the first polymer layer comprises a surface modified by at least one of changing of the surface energy, altering of the surface topography, and altering of the surface chemistry; and a plurality of first apertures each extending through the first polymer layer. - View Dependent Claims (2, 4, 6, 7, 8)
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9. A method for forming microfilters comprising:
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forming one or more polymer layers from a photo-definable dry film; forming a plurality of apertures each extending through the polymer layers, and modifying the surface of one or more polymer layer, by at least one of changing of the surface energy, altering of the surface topography, and altering of the surface chemistry. - View Dependent Claims (12, 24, 28, 31, 33, 37, 38, 39, 45, 47, 48)
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23. A method comprising:
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providing a microfilter comprising a first polymer layer formed from a photo-definable dry film, wherein the first polymer layer comprises a surface modified by at least one of changing of the surface energy, altering of the surface topography, and altering of the surface chemistry, and a plurality of first apertures each extending through the first polymer layer; and performing with said microfilter at least one of; assays on bodily fluids, isolating and detecting large rare cells from a bodily fluid, collecting circulating tumor cells (CTCs) from peripheral blood from cancer patients passed through the microfilter, collecting circulating endothelial cells, fetal cells and other large cells from the blood and body fluids, capturing tumor cells from blood, urine, bone marrow, bladder wash, rectal brushings, fecal matter, saliva and/or other body fluids, capturing epithelial-mesenchymal transition (EMT) cells from peripheral blood, capturing stem cells from peripheral blood and cord blood, capturing circulating endothelial cells from peripheral blood, capturing circulating cancer associated macrophage-like cells (CAMLs) from peripheral blood, capturing circulating fetal cells in a mother'"'"'s blood, collecting or enriching stromal cells, mesenchymal cells, endothelial cells, epithelial cells, stem cells, non-hematopoietic cells, etc. from a blood sample, collecting tumor or pathogenic cells in urine, collecting tumor cells in spinal and cerebral fluids, capturing analytes bound to latex beads or antigen-caused particle agglutination whereby the analyte/latex bead or agglutinated clusters are captured on the membrane surface, performing erythrocyte deformability testing, performing leukocyte/red blood cell separation, collecting large cells from processed tissue samples, and collecting cells for at least one downstream process.
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49. A method of filtration, comprising:
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providing a microfilter comprising a first polymer layer formed from a photo-definable dry film, wherein the first polymer layer comprises a surface modified by at least one of changing of the surface energy, altering of the surface topography, and altering of the surface chemistry, and a plurality of first apertures each extending through the first polymer layer; and passing a fluid through a plurality of apertures of a microfilter formed from an photo-definable dry film, wherein the microfilter has sufficient strength and flexibility to filter the fluid, and wherein the apertures are sized to allow passage of a first type of component in the fluid and to substantially prevent passage of a second type of component in the fluid; wherein the fluid is selected from the group consisting of blood, urine, bone marrow, bladder wash, rectal brushings, fecal matter, saliva, cord blood and other body fluids; and wherein the second type of component in the fluid comprises at least one member selected from the group consisting of;
hematopoietic cells, analytes bound to latex beads and antigen-induced particle agglutinations; andcollecting the second type of component in the fluid from the filter, and performing, on the collected second type of component, one or more of identification, immunofluorescence, enumeration, sequencing, PCR, fluorescence in situ hybridization, mRNA in situ hybridization, other molecular characterizations, immunohistochemistry, histopathological staining, flow cytometry, image analysis, enzymatic assays, gene expression profiling analysis, erythrocyte deformability, white blood cell reactions, efficacy tests of therapeutics, culturing of enriched cells, and therapeutic use of enriched rare cells.
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50. A method of filtration comprising:
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providing a microfilter comprising a first polymer layer formed from a photo-definable dry film, wherein the first polymer layer comprises a surface modified by at least one of changing of the surface energy, altering of the surface topography, and altering of the surface chemistry, and a plurality of first apertures each extending through the first polymer layer; and passing a liquid through a plurality of apertures of the microfilter, wherein the microfilter comprises a structure to filter the liquid including apertures sized to essentially allow passage of a first type of component in the liquid and to substantially prevent passage of a second type of component in the liquid. - View Dependent Claims (51, 52)
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Specification