Microstructured chip comprising convex surfaces for surface plasmon resonance analysis, analysis device containing said microstructured chip and use of said device
A microstructured chip ( 3; 33; 43; 53; 63 ) for surface plasmon resonance (SPR) analysis, taking the form of a solid formed by: a base ( 5; 77 ); an upper surface ( 4; 44 ), at least part of which is covered with a metal layer ( 2; 22; 42; 52; 62 ); and at least one side surface ( 55; 66 ). The chip is characterized in that the aforementioned upper surface is provided with micrometric zones intended to receive species to be analyzed and selected from among n protrusions and m cavities, and in that when n+m≧2 the zones are separated from one another by planar surfaces, with n varying between 1 and j, m varying between 0 and i, and j and i being integers.
1. A microstructured chip ( 3 ; 33 ; 43 ; 53 ; 63 ) for surface plasmon resonance (SPR) analysis, comprising:
a solid consisting of a base ( 5 ; 77 ), an upper face ( 4 ; 44 ), and at least one side face ( 55 ; 66 );
a metal layer ( 2 ; 22 ; 42 ; 52 ; 62 ) that covers at least one part of the upper face; and
zones of micrometric size provided on the upper face, the zones having at least two of i) a length dimension, ii) a width dimension, and iii) a height dimension ranging from 1 μm to 1000 μm, the zones being intended to receive species to be analyzed, the zones comprising n protuberances and m cavities, wherein n+m≧2, and said zones are separated from one another by planar surfaces, with n ranging from 1 to j and m ranging from 0 to i, j and i being integers,
wherein each of the n protuberances and each of the m cavities ( 1 ; 11 ; 41 ; 51 ; 61 ) comprise a curved surface with a radius of curvature (“R”), between 0.1 and 600 mm.
2. The microstructured chip ( 3 ; 33 ; 43 ; 53 ; 63 ) according to claim 1 , wherein the radius of curvature (“R”) of each of the n protuberances and the m cavities ( 1 ; 11 ; 41 ; 51 ; 61 ) is identical.
3. The microstructured chip ( 3 ; 33 ; 43 ; 53 ; 63 ) according to claim 1 , wherein the radius of curvature (“R”) of at least one of the n protuberances and the m cavities ( 1 ; 11 ; 41 ; 51 ; 61 ) is different from the radius of curvature (“R”) of all other ones of the n protuberances and the m cavities.