Chemistries for biocompatible additive nanolithography
A mixed acrylate-siloxane polymer can be used to create three-dimensional (3D) structures of arbitrary shape via nanolithography. Treatment of such structures with amine (such as diamine) makes them permissive for neuronal cell adhesion and growth without need of additional modification such as poly-lysine (D or L) nor laminin.
1. A structure for cellular growth comprising:
a substrate; and
an acrylate-containing polymer attached thereto and in a state of having been functionalized using an amine so as to provide free amine groups on the polymer,
wherein the structure is suitable for the growth of mammalian cells thereon, and
wherein at least a portion of the free amine groups are protected by a photo-cleavable functionality.
2. The structure of claim 1 , wherein said acrylate-containing polymer is an acrylate-siloxane polymer.
3. The structure of claim 1 , wherein said amine is a diamine.
4. The structure of claim 3 , wherein said diamine is selected from the group consisting of 1,2-ethane diamine; 1,3-propane diamine; 1,4-butane diamine; and 1,6-hexane diamine.
5. The structure of claim 1 , wherein said substrate is glass.
6. A structure for cellular growth comprising:
a glass substrate; and
an acrylate-containing polymer attached thereto and in a state of having been functionalized using a diamine so as to provide free amine groups on the polymer,
wherein the structure is suitable for the growth of mammalian cells thereon, and
wherein at least a portion of the free amine groups are protected by a photo-cleavable functionality.
7. The structure of claim 6 , wherein said diamine is selected from the group consisting of 1,2-ethane diamine; 1,3-propane diamine; 1,4-butane diamine; and 1,6-hexane diamine.