Literature DB >> 28287080

Three-dimensional tissues using human pluripotent stem cell spheroids as biofabrication building blocks.

Haishuang Lin1, Qiang Li, Yuguo Lei.   

Abstract

A recently emerged approach for tissue engineering is to biofabricate tissues using cellular spheroids as building blocks. Human pluripotent stem cells (hPSCs), including human embryonic stem cells (hESCs) and induced pluripotent stem cells (iPSCs), can be cultured to generate large numbers of cells and can presumably be differentiated into all the cell types of the human body in vitro, thus are an ideal cell source for biofabrication. We previously developed a hydrogel-based cell culture system that can economically produce large numbers of hPSC spheroids. With hPSCs and this culture system, there are two potential methods to biofabricate a desired tissue. In Method 1, hPSC spheroids are first utilized to biofabricate an hPSC tissue that is subsequently differentiated into the desired tissue. In Method 2, hPSC spheroids are first converted into tissue spheroids in the hydrogel-based culture system and the tissue spheroids are then utilized to biofabricate the desired tissue. In this paper, we systematically measured the fusion rates of hPSC spheroids without and with differentiation toward cortical and midbrain dopaminergic neurons and found spheroids' fusion rates dropped sharply as differentiation progressed. We found Method 1 was appropriate for biofabricating neural tissues.

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Year:  2017        PMID: 28287080     DOI: 10.1088/1758-5090/aa663b

Source DB:  PubMed          Journal:  Biofabrication        ISSN: 1758-5082            Impact factor:   9.954


  13 in total

Review 1.  Engineering principles for guiding spheroid function in the regeneration of bone, cartilage, and skin.

Authors:  Marissa A Gionet-Gonzales; J Kent Leach
Journal:  Biomed Mater       Date:  2018-03-21       Impact factor: 3.715

2.  Scaffold-Free Spheroids with Two-Dimensional Heteronano-Layers (2DHNL) Enabling Stem Cell and Osteogenic Factor Codelivery for Bone Repair.

Authors:  Xifeng Liu; Linli Li; Bipin Gaihre; Sungjo Park; Yong Li; Andre Terzic; Benjamin D Elder; Lichun Lu
Journal:  ACS Nano       Date:  2022-01-24       Impact factor: 18.027

3.  Three-dimensional Printing of Multilayered Tissue Engineering Scaffolds.

Authors:  Sean M Bittner; Jason L Guo; Anthony Melchiorri; Antonios G Mikos
Journal:  Mater Today (Kidlington)       Date:  2018-03-20       Impact factor: 31.041

4.  Electrical Stimulation with a Conductive Polymer Promotes Neurite Outgrowth and Synaptogenesis in Primary Cortical Neurons in 3D.

Authors:  Qingsheng Zhang; Stephen Beirne; Kewei Shu; Dorna Esrafilzadeh; Xu-Feng Huang; Gordon G Wallace
Journal:  Sci Rep       Date:  2018-06-29       Impact factor: 4.379

5.  Transcriptomic Analysis of Naïve Human Embryonic Stem Cells Cultured in Three-Dimensional PEG Scaffolds.

Authors:  Christina McKee; Christina Brown; Shreeya Bakshi; Keegan Walker; Chhabi K Govind; G Rasul Chaudhry
Journal:  Biomolecules       Date:  2020-12-28

Review 6.  A review on 3D printing functional brain model.

Authors:  Roya Samanipour; Hamed Tahmooressi; Hojatollah Rezaei Nejad; Minoru Hirano; Su-Royn Shin; Mina Hoorfar
Journal:  Biomicrofluidics       Date:  2022-02-03       Impact factor: 2.800

7.  Bioinspired 3D Culture in Nanoliter Hyaluronic Acid-Rich Core-Shell Hydrogel Microcapsules Isolates Highly Pluripotent Human iPSCs.

Authors:  Jiangsheng Xu; James G Shamul; Nicholas A Staten; Alisa M White; Bin Jiang; Xiaoming He
Journal:  Small       Date:  2021-07-14       Impact factor: 15.153

8.  A Preview of Selected Articles in This Issue.

Authors:  Stuart P Atkinson
Journal:  Stem Cells Transl Med       Date:  2018-03       Impact factor: 6.940

9.  Directed fusion of cardiac spheroids into larger heterocellular microtissues enables investigation of cardiac action potential propagation via cardiac fibroblasts.

Authors:  Tae Yun Kim; Celinda M Kofron; Michelle E King; Alexander R Markes; Amenawon O Okundaye; Zhilin Qu; Ulrike Mende; Bum-Rak Choi
Journal:  PLoS One       Date:  2018-05-01       Impact factor: 3.240

Review 10.  Bioprinting Neural Systems to Model Central Nervous System Diseases.

Authors:  Boning Qiu; Nils Bessler; Kianti Figler; Maj-Britt Buchholz; Anne C Rios; Jos Malda; Riccardo Levato; Massimiliano Caiazzo
Journal:  Adv Funct Mater       Date:  2020-04-22       Impact factor: 18.808

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