Fixtures for use in parallel processing bio-chips
View Patent ↗A holder ( 10 ) housing defines a plurality of individual wells ( 14 ) sized to retain a substrates such as a bio-chip ( 20 ) or microscope slide in a vertical orientation, and to retain a volume of liquid ( 22 ) sufficient to immerse the bio-chip. The wells are spaced-apart with an approximately 9 mm pitch and the holder has a form factor approximating an SBS Standard 96-well microplate. The holder configuration is such that it can be manipulated with standard robotic equipment ( 30 ), and can be fabricated using injection molding processes.
1. A kit for use with a plurality of substrates selected from a group consisting of bio-chips and microscope slides, comprising:
a holder including a housing whose upper region defines a plurality of separate channels spaced-apart from each other with a pitch P, each of said channels sized to receive one of said substrates in a vertical orientation and to retain an amount of liquid sufficient to immerse a received substrate;
a reservoir holder sized to receive said holder;
a positioning tool sized to retain the plurality of said substrates spaced-apart from each other with said pitch P; and
a removal tool for removing said plurality of substrates from said holder, said removal tool comprises: a base member; two spaced-apart short sidewall members; and two spaced-apart longer sidewall members, wherein an upper ledge formed on each of said longer sidewall members defines a series of notches, spaced-apart with the same pitch P of said holder; said notches can frictionally engage respective edges of substrates in said holder to at least partially withdrawing said substrates from said holder.
2. The kit of claim 1 , wherein an upper surface of holder conforms to an SBS Standard 96-well microplate.
3. The kit of claim 1 , wherein said pitch P is about 9 mm.
4. The kit of claim 1 , wherein each of said substrates is a bio-chip having the same dimensions as a standard microscope slide.
5. The kit of claim 1 , further including a lid member, with dimensions sized to sealingly attach to an upper surface of said holder.
6. The kit of claim 1 , wherein volume of liquid retainable in each said channel is less than about 4 ml.
7. The kit of claim 1 , wherein volume of liquid retainable in each said channel is about 3.4 ml.
8. The kit of claim 1 , wherein said holder is manufactured by an injection molding technique.
9. The kit of claim 1 , wherein each of said holder, said reservoir holder and said positioning tool is sized to accommodate manipulation by a robotic mechanism.
10. The kit of claim 1 , wherein said reservoir holder is a single large reservoir holder.
11. The kit of claim 1 , wherein said reservoir holder consists of separate reservoirs such that each substrate is fluidically isolated in use.