Invention Grant
- Patent Title: Method of osteogenic differentiation in microfluidic tissue culture systems
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Application No.: US15958142Application Date: 2018-04-20
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Publication No.: US12070746B2Publication Date: 2024-08-27
- Inventor: Dan Gazit , Gadi Pelled , Zulma Gazit , Dmitriy Sheyn , Christopher David Hinojosa , Norman Wen , Geraldine Hamilton
- Applicant: EMULATE,INC. , CEDARS-SINAI MEDICAL CENTER
- Applicant Address: US MA Boston
- Assignee: EMULATE, Inc.,CEDARS-SINAI MEDICAL CENTER
- Current Assignee: EMULATE, Inc.,CEDARS-SINAI MEDICAL CENTER
- Current Assignee Address: US MA Boston; US CA Los Angeles
- Agency: Medlen & Carroll, LLP
- Main IPC: C12N5/077
- IPC: C12N5/077 ; A61K49/00 ; A61K51/02 ; A61L27/38 ; B01L3/00 ; C12N5/00 ; C12N5/071 ; C12N5/074 ; C12N5/0775 ; G01N33/50 ; G01T1/164 ; G01T1/29 ; C07K14/78 ; C12M1/34

Abstract:
Microfluidic “organ-on-a-chip” devices have been developed with the aim to replicate human tissues in vitro. However, there is no option to quantitatively monitor biological processes that take place within the chip, over time. Destructive methods in order to analyze, tissue formation, gene expression, protein secretion etc. require the harvest of the “tissue” at a certain time point. Described herein are methods and compositions for non-destructive molecular imaging methods and systems in order to quantitatively monitor specific biological processes, over time, within the chip, without the need to harvest.
Public/Granted literature
- US20180305668A1 METHOD OF OSTEOGENIC DIFFERENTIATION IN MICROFLUIDIC TISSUE CULTURE SYSTEMS Public/Granted day:2018-10-25
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