نتایج جستجو برای: 3d culture

تعداد نتایج: 461478  

2015
Junji Itou Sunao Tanaka Wenzhao Li Yoshiaki Matsumoto Fumiaki Sato Masakazu Toi

Three-dimensional (3D) cell culture is a powerful tool to study cell growth under 3D condition. To perform a simple test for anti-cancer drugs in 3D culture, visualization of non-proliferated cells is required. We propose a fluorescent imaging-based assay to analyze cancer cell proliferation in 3D culture. We used a pulse-labeling technique with a photoconvertible fluorescent protein Kaede to i...

Journal: :Biopolymers and Cell 2011

Journal: :Biochimica et Biophysica Acta (BBA) - Molecular Cell Research 2016

2016
Donglai Lv Shi-cang Yu Yi-fang Ping Haibo Wu Xilong Zhao Huarong Zhang Youhong Cui Bing Chen Xia Zhang Jianwu Dai Xiu-wu Bian Xiao-hong Yao

Three-dimensional (3D) culture, which can simulate in vivo microenvironments, has been increasingly used to study tumor cell biology. Since most preclinical anti-glioma drug tests still rely on conventional 2D cell culture, we established a collagen scaffold for 3D glioma cell culture. Glioma cells cultured on these 3D scaffolds showed greater degree of dedifferentiation and quiescence than cel...

Journal: :Cytotherapy 2002
T Sasaki M Takagi T Soma T Yoshida

BACKGROUND The in vivo hematopoietic microenvironment is composed of stromal cells and extracellular matrix in a 3D configuration. We have created a 3D microenvironment in vitro, employing spatial development of stromal cells in a nonwoven fabric porous carrier, Fibra-cel (FC). We compared its performance with that of a 2D microenvironment. METHODS Primary murine BM cells were inoculated on t...

Journal: :Oncology reports 2015
Yoshinori Imamura Toru Mukohara Yohei Shimono Yohei Funakoshi Naoko Chayahara Masanori Toyoda Naomi Kiyota Shintaro Takao Seishi Kono Tetsuya Nakatsura Hironobu Minami

It is becoming recognized that screening of oncology drugs on a platform using two-dimensionally (2D)-cultured cell lines is unable to precisely select clinically active drugs; therefore three-dimensional (3D)-culture systems are emerging and show potential for better simulating the in vivo tumor microenvironment. The purpose of this study was to reveal the differential effects of chemotherapeu...

Journal: :Biomaterials 2005
Harpreet K Dhiman Alok R Ray Amulya K Panda

Three-dimensional (3D) culture of cancer cell lines has long been advocated as a better model of the malignant phenotype that is most closely related to tumorigenicity in vivo. Moreover, new drug development requires simple in vitro models that resemble the in vivo situation more in order to select active drugs against solid tumours and to decrease the use of experimental animals. A biodegradab...

2017
Hua Mei Sheyla González Martin N. Nakatsu Elfren R. Baclagon Felix V. Chen Sophie X. Deng

The most efficient method to expand limbal stem cells (LSCs) in vitro for clinical transplantation is to culture single LSCs directly on growth-arrested mouse fibroblast 3T3 cells. To reduce possible xenobiotic contamination from 3T3s, primary human adipose-derived stem cells (ASCs) were examined as feeder cells to support the expansion of LSCs in vitro. To optimize the ASC-supported culture, f...

Journal: :Investigative ophthalmology & visual science 2018
Nagayoshi Asano Ulrike Hampel Fabian Garreis Antje Schröder Martin Schicht Christian M Hammer Friedrich Paulsen

Purpose To establish a simplified three-dimensional (3D) meibomian gland culture model using a meibomian gland epithelial cell (HMGEC) line that might be a useful tool to gain deeper insights into meibomian gland dysfunction. For this purpose, 3D differentiation patterns and growth characteristics of HMGECs were studied on various membranes/scaffolds as well as in hanging drops. Methods Sever...

2017
Florian Meier Nora Freyer Joanna Brzeszczynska Fanny Knöspel Lyle Armstrong Majlinda Lako Selina Greuel Georg Damm Eva Ludwig-Schwellinger Ulrich Deschl James A. Ross Mario Beilmann Katrin Zeilinger

Human induced pluripotent stem cells (hiPSCs) are a promising source from which to derive distinct somatic cell types for in vitro or clinical use. Existent protocols for hepatic differentiation of hiPSCs are primarily based on 2D cultivation of the cells. In the present study, the authors investigated the generation of hiPSC-derived hepatocyte-like cells using two different 3D culture systems:...

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