Creative Biolabs provides 3D ex vivo human fallopian tube tissue model to facilitate research and precision interventions for female reproductive disorders of relevance to them.
Introduction to Prostate Tissue
3D Ex Vivo Human Prostate Tissue Model
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The lumenal structure of the prostate gland in vivo is consistent with the lumenal structure of the prostate gland, and the outer layer specifically expresses markers CK5 and p63, and the inner layer expresses marker CK8.
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Exhibits genetic characteristics of primary tissues, including p53 status, hormone receptor status, and microsatellite instability phenotypes, and can be amplified indefinitely in culture in vitro.
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Maintains the characteristics of tumor cells in vivo in various aspects such as gene copy number changes in the genome, mutation mapping, and histomorphological features.
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Direct and rapid amplification from diseased cells facilitates the development of prostate cancer model biobanks and personalized therapy.
Fig 1. Schematic outline of PDCO culture processes.1
Fig 2. Characterization of prostate cancer cell lines in 3D micro-tumor culture.2
Other Models of Potential Interest
Creative Biolabs has developed the 3D ex vivo human prostate tissue model to help customers solve the problem of model building for prostate-related research and greatly contributed to the elucidation of the mechanisms of cell lineage fate transition in prostate related diseases. Please contact us to obtain models to assist in your prostate research.
References
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Heninger, E.; et al. Live cell molecular analysis of primary prostate cancer organoids identifies persistent androgen receptor signaling. Med Oncol. 2021, 38(11): 135. Distributed under Open Access License CC BY 4.0. The original image was modified by keeping part (A).
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Mosaad, E.; et al. The Microwell-mesh: A high-throughput 3D prostate cancer spheroid and drug-testing platform. Sci Rep. 2018, 8(1): 253. Distributed under Open Access License CC BY 4.0. The original image was modified by keeping part (b).
Research Model
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