Literature DB >> 29620098

Maintenance of the spheroid organization and properties of glandular progenitor cells by fabricated chitosan based biomaterials.

Hao-Wei Lee1, Ya-Chuan Hsiao, Tai-Horng Young, Tsung-Lin Yang.   

Abstract

Dysfunctional salivary gland (SG) is an unsolved clinical challenge, which is presented as xerostomia. Cell therapy is a promising treatment for restoring SG function. Salispheres are spheroid cellular organizations derived from SG stem cells. Benefitting from these cellular organizations, SG stem cells can be expanded to regenerate SG. During in vitro culture, the spontaneous reorganization of salispheres may change the features of residing SG stem cells. Therefore, it is imperative to explore ways to maintain the spheroid structure of salispheres during cell expansion in vitro. Herein, we explored biomaterial approaches using chitosan. Chitosan based biomaterials were fabricated in different forms to offer distinct interactive surfaces for cultured salispheres. The number and size of the salispheres increase in the chitosan-containing systems without increasing the incidence of spheroid cavitation. The effect of chitosan increases with high chitosan concentrations, which is optimum when chitosan is fabricated in a soluble form. The chitosan effect contributes to the regulation of the intercellular interactions and polarization within the spheroid structures. By retarding the process of salisphere cavitation, chitosan preserves the features of salivary gland progenitor cells in the cultured salispheres. The results suggest that the chitosan-containing system could effectively maintain the primitive structures and properties of salispheres during in vitro expansion, which demonstrates the potential application of salispheres for cell therapy of dysfunctional SG.

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Year:  2018        PMID: 29620098     DOI: 10.1039/c7bm00559h

Source DB:  PubMed          Journal:  Biomater Sci        ISSN: 2047-4830            Impact factor:   6.843


  3 in total

1.  Optimizing Soluble Cues for Salivary Gland Tissue Mimetics Using a Design of Experiments (DoE) Approach.

Authors:  Lindsay R Piraino; Danielle S W Benoit; Lisa A DeLouise
Journal:  Cells       Date:  2022-06-18       Impact factor: 7.666

Review 2.  Nanoscale and Macroscale Scaffolds with Controlled-Release Polymeric Systems for Dental Craniomaxillofacial Tissue Engineering.

Authors:  Saeed Ur Rahman; Malvika Nagrath; Sasikumar Ponnusamy; Praveen R Arany
Journal:  Materials (Basel)       Date:  2018-08-20       Impact factor: 3.623

3.  Thermoresponsive fiber-based microwells capable of formation and retrieval of salivary gland stem cell spheroids for the regeneration of irradiation-damaged salivary glands.

Authors:  Hye Jin Hong; Jae-Min Cho; Yeo-Jun Yoon; DoJin Choi; Soohyun Lee; Hwajung Lee; Sujeong Ahn; Won-Gun Koh; Jae-Yol Lim
Journal:  J Tissue Eng       Date:  2022-04-07       Impact factor: 7.813

  3 in total

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