Ramicotomy is a surgical procedure, with less adverse effects than conventional sympathectomy, however, it was abandoned due to the high recurrence rate. Twenty-eight pigs underwent bilateral videothoracoscopic ramicotomy and were divided into five groups. The animals were sacrificed at 15th, 45th, 90th, 135th and 180th postoperative days (POD). The segments were removed and evaluated for macroscopic regeneration and histological analysis. The data were compared to the control group of 10 intact segments of the sympathetic. There was no macroscopic regeneration on the 15th POD, and present on 41.6% on the 180th POD (P<0.05). The Schwann cells presented a similar evolution in both rami beginning at the 45th POD, with a smaller count in the gray rami. The collagen and reticular fibers presented a negative correlation (r=-0.414; P<0.01). The deposition of the collagen fibers was greater in the gray rami with a peak deposition on the 135th POD and a diminishing rate in the 180th POD (P<0.05). Ramicotomy allows complete section of all rami communicantes of the sympathetic ganglia. The histological regeneration might be greater than the recurrence rates of clinical symptoms seen in a human being due to non-functional regenerations.
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http://dx.doi.org/10.1510/icvts.2009.202150 | DOI Listing |
Acta Biomater
January 2025
School of Life Sciences, Keele University, Staffordshire, UK. Electronic address:
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December 2024
Department of Orthopaedic Surgery, Kyoto University, Kyoto, Japan.
Unlabelled: Human umbilical cord-derived mesenchymal stromal cells (UC-MSCs), which can be prepared in advance and are presumed to be advantageous for nerve regeneration, have potential as a cell source for Bio 3D conduits. The purpose of this study was to evaluate the nerve regeneration ability of Bio 3D conduits made from UC-MSCs using a rat sciatic nerve defect model.
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View Article and Find Full Text PDFBiomater Res
December 2024
School of Materials Science and Engineering, Gwangju Institute of Science and Technology, Gwangju 61005, Republic of Korea.
Mesenchymal stem cells (MSCs) offer a promising avenue for cartilage regeneration; however, their therapeutic efficacy requires substantial improvement. Cell priming using electrical stimulation (ES) is a promising approach to augmenting the therapeutic potential of MSCs and has shown potential for various regenerative applications. This study aimed to promote the ES-mediated chondrogenic differentiation of human MSCs and facilitate the repair of injured articular cartilage.
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