Literature DB >> 25322703

Appropriate nonwoven filters effectively capture human peripheral blood cells and mesenchymal stem cells, which show enhanced production of growth factors.

Hideo Hori1, Ushio Iwamoto, Gen Niimi, Masanori Shinzato, Yoshiyuki Hiki, Yasuo Tokushima, Kazunori Kawaguchi, Atsushi Ohashi, Shigeru Nakai, Mikitomo Yasutake, Nobuya Kitaguchi.   

Abstract

Scaffolds, growth factors, and cells are three essential components in regenerative medicine. Nonwoven filters, which capture cells, provide a scaffold that localizes and concentrates cells near injured tissues. Further, the cells captured on the filters are expected to serve as a local supply of growth factors. In this study, we investigated the growth factors produced by cells captured on nonwoven filters. Nonwoven filters made of polyethylene terephthalate (PET), biodegradable polylactic acid (PLA), or chitin (1.2-22 μm fiber diameter) were cut out as 13 mm disks and placed into cell-capturing devices. Human mesenchymal stem cells derived from adipose tissues (h-ASCs) and peripheral blood cells (h-PBCs) were captured on the filter and cultured to evaluate growth factor production. The cell-capture rates strongly depended on the fiber diameter and the number of filter disks. Nonwoven filter disks were composed of PET or PLA fibers with fiber diameters of 1.2-1.8 μm captured over 70% of leukocytes or 90% of h-ASCs added. The production of vascular endothelial growth factor (VEGF), transforming growth factor β1, and platelet-derived growth factor AB were significantly enhanced by the h-PBCs captured on PET or PLA filters. h-ASCs on PLA filters showed significantly enhanced production of VEGF. These enhancements varied with the combination of the nonwoven filter and cells. Because of the enhanced growth factor production, the proliferation of human fibroblasts increased in conditioned medium from h-PBCs on PET filters. This device consisting of nonwoven filters and cells should be investigated further for possible use in the regeneration of impaired tissues.

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Year:  2014        PMID: 25322703     DOI: 10.1007/s10047-014-0794-9

Source DB:  PubMed          Journal:  J Artif Organs        ISSN: 1434-7229            Impact factor:   1.731


  15 in total

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5.  A novel method to isolate mesenchymal stem cells from bone marrow in a closed system using a device made by nonwoven fabric.

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  4 in total

Review 1.  Journal of Artificial Organs 2015: the year in review : Journal of Artificial Organs Editorial Committee.

Authors:  Y Sawa; K Matsuda; E Tatsumi; G Matsumiya; T Tsukiya; T Abe; K Fukunaga; A Kishida; K Kokubo; T Masuzawa; A Myoui; M Nishimura; T Nishimura; T Nishinaka; E Okamoto; S Tokunaga; T Tomo; Y Yagi; T Yamaoka
Journal:  J Artif Organs       Date:  2016-02-20       Impact factor: 1.731

2.  A novel cell-containing device for regenerative medicine: biodegradable nonwoven filters with peripheral blood cells promote wound healing.

Authors:  Ushio Iwamoto; Hideo Hori; Yoshihiro Takami; Yasuo Tokushima; Masanori Shinzato; Mikitomo Yasutake; Nobuya Kitaguchi
Journal:  J Artif Organs       Date:  2015-05-31       Impact factor: 1.731

3.  Chitin powder enhances growth factor production and therapeutic effects of mesenchymal stem cells in a chronic kidney disease rat model.

Authors:  Hideo Hori; Kazuyoshi Sakai; Atsushi Ohashi; Shigeru Nakai
Journal:  J Artif Organs       Date:  2022-08-17       Impact factor: 1.385

4.  Hot-Pressed Wet-Laid Polyethylene Terephthalate Nonwoven as Support for Separation Membranes.

Authors:  Lei Xia; Quping Zhang; Xupin Zhuang; Shuo Zhang; Chengpu Duan; Xiaoyin Wang; Bowen Cheng
Journal:  Polymers (Basel)       Date:  2019-09-23       Impact factor: 4.329

  4 in total

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