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Three-dimensional co-culture processThe present invention relates to a 3-dimensional co-culture process, more particularly to methods or co-culturing at least two types of cells in a culture environment, either in space or in unit gravity, with minimum shear stress, freedom for 3-dimensional spatial orientation of the suspended particles and localization of particles with differing or similar sedimentation properties in a similar spatial region to form 3-dimensional tissue-like structures. Several examples of multicellular 3-dimensional experiences are included. The protocol and procedure are also set forth. The process allows simultaneous culture of multiple cell types and supporting substrates in a manner which does not disrupt the 3-dimensional spatial orientation of these components. The co-cultured cells cause a mutual induction effect which mimics the natural hormonal signals and cell interactions found in the intact organism. This causes the tissues to differentiate and form higher 3-dimensional structures such as glands, junctional complexes polypoid geometries, and microvilli which represent the corresponding in-vitro structures to a greater degree than when the cell types are cultured individually or by conventional processes. This process was clearly demonstrated for the case of two epithelial derived colon cancer lines, each co-cultured with normal human fibroblasts and with microcarrier bead substrates. The results clearly demonstrate increased 3-dimensional tissue-like structure and biochemical evidence of an increased differentiation state. With the present invention a variety of cells may be co-cultured to produce tissue which has 3-dimensionality and has some of the characteristics of in-vitro tissue. The process provides enhanced 3-dimensional tissue which create a multicellular organoid differentiation model.
Document ID
19920024985
Acquisition Source
Legacy CDMS
Document Type
Other - Patent
Authors
Wolf, David A.
(NASA Lyndon B. Johnson Space Center Houston, TX, United States)
Goodwin, Thomas J.
(NASA Lyndon B. Johnson Space Center Houston, TX, United States)
Date Acquired
August 15, 2013
Publication Date
October 6, 1992
Subject Category
Life Sciences (General)
Report/Patent Number
Patent Number: US-PATENT-5,153,132
Patent Application Number: US-PATENT-APPL-SN-317776
Patent Number: NASA-CASE-MSC-21560-1
Patent Application Number: US-PATENT-APPL-SN-213558
Patent Application Number: US-PATENT-APPL-SN-213559
Patent Application Number: US-PATENT-APPL-SN-317931
Accession Number
92N34229
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Patent
US-PATENT-5,153,132|NASA-CASE-MSC-21560-1
Patent Application
US-PATENT-APPL-SN-317776|US-PATENT-APPL-SN-213558|US-PATENT-APPL-SN-213559|US-PATENT-APPL-SN-317931
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