Methods of forming microfluidic devices and uses thereof
One microfluidic device of the present invention includes a substrate having a surface and a depression formed in the surface of the substrate. The microfluidic device further includes a detectable marker in the depression and a coating covering the surface. Methods of producing and using the microfluidic device are further described.
1 . A microfluidic device, comprising:
a substrate having a surface;
at least one depression formed in the surface of the substrate;
a coating covering the surface of the substrate; and
at least one detectable marker anchored in the coating.
2 . The microfluidic device of claim 1 , further comprising at least one sensor located in the depression.
3 . The microfluidic device of claim 1 , further comprising a sample.
4 . The microfluidic device of claim 1 , wherein the coating comprises a material selected from the group consisting of: polyvinyl alcohol; albumin; gelatin; casein; starch; gum arabic; sodium or potassium alginate; hydroxyethylcellulose; carboxymethylcellulose; α-, β-, or γ-cyclodextrin; saponified products of copolymers of vinyl acetate; (meth)acrylic acid; maleic acid; crotonic acid; vinylsulfonic acid; styrene sulfonic acid; (meth)acrylamide; homopolymers or copolymers of other monomers with ethylene oxide; polyurethanes; polyacrylamides; water-soluble nylon-type polymers; polyvinyl pyrrolidone; polyesters; polyvinyl lactams; acrylamide polymers; substituted polyvinyl alcohol; polyvinyl acetals; polymers of alkyl and sulfoalkyl acrylates and methacrylates; hydrolyzed polyvinyl acetates; polyamides; polyvinyl pyridines; polyacrylic acid; copolymers with maleic anhydride; polyalkylene oxides; methacrylamide copolymers; maleic acid copolymers; and combinations of any thereof.
5 . The microfluidic device of claim 4 , wherein the coating further comprises a pigment.
6 . The microfluidic device of claim 4 , wherein the coating has been crosslinked.
7 . The microfluidic device of claim 1 , wherein the coating comprises a layer of polyvinyl alcohol is about 10 to 50 microns thick.
8 . The microfluidic device of claim 1 , wherein the at least one depression comprises an analytic chamber and a channel formed in the surface of the substrate, wherein the analytic chamber is operatively connected to the channel.
9 . The microfluidic device of claim 1 , wherein the at least one detectable marker is water soluble.
10 . The microfluidic device of claim 1 , wherein the microfluidic device is operatively connected to an analytic device.
11 . A method for producing a microfluidic device, the method comprising:
forming at least one depression in a surface of a substrate;
placing a coating on at least a portion of the surface of the substrate; and
anchoring a detectable marker in the coating.
12 . The method according to claim 11 , wherein forming the at least one depression comprises forming an analytical chamber, a channel or a combination thereof in the surface of the substrate.
13 . The method according to claim 11 , further comprising placing a sensor in the at least one depression formed in the surface of the substrate.
14 . The method according to claim 11 , further comprising placing a sample in the at least one depression.
15 . The method according to claim 11 , wherein the coating comprises a material selected from the group consisting of: polyvinyl alcohol; albumin; gelatin; casein; starch; gum arabic; sodium or potassium alginate; hydroxyethylcellulose; carboxymethylcellulose; α-, β-, or γ-cyclodextrin; saponified products of copolymers of vinyl acetate; (meth)acrylic acid; maleic acid; crotonic acid; vinylsulfonic acid; styrene sulfonic acid; (meth)acrylamide; homopolymers or copolymers of other monomers with ethylene oxide; polyurethanes; polyacrylamides; water-soluble nylon-type polymers; polyvinyl pyrrolidone; polyesters; polyvinyl lactams; acrylamide polymers; substituted polyvinyl alcohol; polyvinyl acetals; polymers of alkyl and sulfoalkyl acrylates and methacrylates; hydrolyzed polyvinyl acetates; polyamides; polyvinyl pyridines; polyacrylic acid; copolymers with maleic anhydride; polyalkylene oxides; methacrylamide copolymers; maleic acid copolymers; and combinations of any thereof.
16 . The method according to claim 15 , further comprising subjecting the coating to heat.
17 . The method according to claim 11 , wherein placing the coating on the at least a portion of the surface of the substrate comprises at least one of micropipetting the coating on the at least a portion of the surface, dispensing the mixture on the at least a portion of the surface with an ink jet pen, spin coating, blanket deposition, and patterning the coating.
18 . The method according to claim 11 , wherein the detectable marker is water soluble.
19 . The method according to claim 11 , further comprising encapsulating the coating and the detectable marker with a second substrate.
20 . The method according to claim 11 , wherein anchoring the detectable marker in the coating comprises mixing the detectable marker in the coating before the coating is placed on the at least a portion of the surface of the substrate.
21 . A method for analyzing a sample, the method comprising:
forming a depression in a surface of a substrate;
placing a coating on at least a portion of the surface of the substrate;
anchoring a detectable marker in the coating;
placing a sample in the depression; and
analyzing in the sample with the detectable marker.
22 . The method according to claim 21 , further comprising operatively connecting the microfluidic device to an analytical device.
23 . The method according to claim 21 , further comprising encapsulating the coating and the detectable marker with a second substrate.
24 . The method according to claim 21 , wherein analyzing the sample comprises measuring reflectance, absorbance or scattering of light.
25 . The method according to claim 21 , wherein anchoring the detectable marker in the coating comprises mixing the detectable marker in the coating before the coating is placed on the at least a portion of the surface of the substrate.