Particles with multiple functionalized surface domains
This disclosure relates to particles (e.g., nanoparticles and microparticles) that display multiple functionalized surface domains in a controlled mosaic pattern. The disclosure also provides simple methods to create various particles that have multiple functionalized surface domains while allowing the use of a wide variety of diverse core structures. The multiple functionalized domains provide controllable particle binding and orientation, and controlled and sustained drug release profiles.
1. A particle having multiple functionalized surface domains, the particle comprising a core structure having a surface; a plurality of first linkers, each comprising a first end that binds to the surface of the core structure, and a second end that comprises a first functional group; and a plurality of second linkers, each comprising a first end that binds to the surface of the core structure, and a second end that comprises a second functional group, wherein the first and second functional groups are different; wherein the linkers are bound to the surface of the core structure via their respective first ends, and wherein the first and second functional groups form an external mosaic of surface domains, a majority of each domain comprising one type of functional group.
2. The particle of claim 1 , wherein the first and second linkers are the same except for the different functional groups.
3. The particle of claim 1 , wherein the particle comprises three or more different linkers.
4. The particle of claim 1 , wherein the mosaic comprises two surface domains, a first domain comprising a majority of the first functional groups, and a second domain comprising a majority of the second functional groups.
5. The particle of claim 1 , wherein the mosaic comprises multiple surface domains each comprising a majority of first functional groups and multiple surface domains each comprising a majority of second functional groups.
6. The particle of claim 1 , wherein the first ends of the linkers comprise a lipid bound to polyethylene glycol (PEG) and the second ends comprise functional groups bound to the PEG.
7. The particle of claim 1 , wherein the core structure surface comprises a plurality of hydrophilic or hydrophobic groups.
8. The particle of claim 1 , wherein the core structure surface comprises a quantum dot crystalline surface.
9. The particle of claim 1 , wherein the core structure surface comprises a metal oxide surface.
10. The particle of claim 1 , wherein the core structure surface comprises a polymeric shell.
11. The particle of claim 1 , further comprising a targeting moiety.
12. The particle of claim 1 , further comprising an active agent.
13. The particle of claim 1 , wherein the particle has a diameter of 10 nm to 1,000 nm.