Cargando…

Uncemented three-dimensional-printed prosthetic replacement for giant cell tumor of distal radius: a new design of prosthesis and surgical techniques

INTRODUCTION: Currently, it is challenging to treat giant cell tumor (GCT) of distal radius. For Campanacci grade III or recurrent GCTs, en bloc resection has been accepted as a better treatment option. Although numerous methods are available for reconstruction, all of them have some limitations in...

Descripción completa

Detalles Bibliográficos
Autores principales: Lu, Minxun, Min, Li, Xiao, Cong, Li, Yongjiang, Luo, Yi, Zhou, Yong, Zhang, Wenli, Tu, Chongqi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5808706/
https://www.ncbi.nlm.nih.gov/pubmed/29445303
http://dx.doi.org/10.2147/CMAR.S146434
_version_ 1783299490453651456
author Lu, Minxun
Min, Li
Xiao, Cong
Li, Yongjiang
Luo, Yi
Zhou, Yong
Zhang, Wenli
Tu, Chongqi
author_facet Lu, Minxun
Min, Li
Xiao, Cong
Li, Yongjiang
Luo, Yi
Zhou, Yong
Zhang, Wenli
Tu, Chongqi
author_sort Lu, Minxun
collection PubMed
description INTRODUCTION: Currently, it is challenging to treat giant cell tumor (GCT) of distal radius. For Campanacci grade III or recurrent GCTs, en bloc resection has been accepted as a better treatment option. Although numerous methods are available for reconstruction, all of them have some limitations in joint function and complications. In this study, our aims were to treat the GCT of distal radius with uncemented three-dimensional (3D)-printed prosthesis and to present and evaluate the surgical techniques and short-term outcomes. METHODS: Between September 2015 and March 2017, 11 patients with distal radius GCTs were treated with personalized uncemented 3D-printed prosthesis. The preoperative/postoperative pain, range of motion, and grip strengths of all patients were evaluated. Oncological results, complications, and degenerative changes in the wrist joint were evaluated. Functional outcomes were assessed according to the disabilities of the arm, shoulder, and hand (DASH) questionnaire and Mayo wrist scoring systems. RESULTS: The average follow-up was 14.45 months (range, 8–18 months). There was a significant decrease in the mean postoperative visual analog scale score (2.33) compared with the preoperative score (5.22; p<0.001). The mean DASH score and Mayo wrist score of the wrist joint function were 18.7 and 72, respectively. There was no local recurrence or lung metastasis. No complication associated with prosthesis was observed, including aseptic loosening, subluxation, and breakage. Joint space narrowing, or disuse osteoporosis, was also not found in all cases. CONCLUSION: En bloc resection and reconstruction with a personalized uncemented 3D-printed prosthesis can be alternative options to treat Campanacci grade III or recurrent GCTs of distal radius and can result in short-term oncologic salvage, good postoperative function, and low complication rate. However, a long-term follow-up is required to determine the outcome.
format Online
Article
Text
id pubmed-5808706
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Dove Medical Press
record_format MEDLINE/PubMed
spelling pubmed-58087062018-02-14 Uncemented three-dimensional-printed prosthetic replacement for giant cell tumor of distal radius: a new design of prosthesis and surgical techniques Lu, Minxun Min, Li Xiao, Cong Li, Yongjiang Luo, Yi Zhou, Yong Zhang, Wenli Tu, Chongqi Cancer Manag Res Original Research INTRODUCTION: Currently, it is challenging to treat giant cell tumor (GCT) of distal radius. For Campanacci grade III or recurrent GCTs, en bloc resection has been accepted as a better treatment option. Although numerous methods are available for reconstruction, all of them have some limitations in joint function and complications. In this study, our aims were to treat the GCT of distal radius with uncemented three-dimensional (3D)-printed prosthesis and to present and evaluate the surgical techniques and short-term outcomes. METHODS: Between September 2015 and March 2017, 11 patients with distal radius GCTs were treated with personalized uncemented 3D-printed prosthesis. The preoperative/postoperative pain, range of motion, and grip strengths of all patients were evaluated. Oncological results, complications, and degenerative changes in the wrist joint were evaluated. Functional outcomes were assessed according to the disabilities of the arm, shoulder, and hand (DASH) questionnaire and Mayo wrist scoring systems. RESULTS: The average follow-up was 14.45 months (range, 8–18 months). There was a significant decrease in the mean postoperative visual analog scale score (2.33) compared with the preoperative score (5.22; p<0.001). The mean DASH score and Mayo wrist score of the wrist joint function were 18.7 and 72, respectively. There was no local recurrence or lung metastasis. No complication associated with prosthesis was observed, including aseptic loosening, subluxation, and breakage. Joint space narrowing, or disuse osteoporosis, was also not found in all cases. CONCLUSION: En bloc resection and reconstruction with a personalized uncemented 3D-printed prosthesis can be alternative options to treat Campanacci grade III or recurrent GCTs of distal radius and can result in short-term oncologic salvage, good postoperative function, and low complication rate. However, a long-term follow-up is required to determine the outcome. Dove Medical Press 2018-02-08 /pmc/articles/PMC5808706/ /pubmed/29445303 http://dx.doi.org/10.2147/CMAR.S146434 Text en © 2018 Lu et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Lu, Minxun
Min, Li
Xiao, Cong
Li, Yongjiang
Luo, Yi
Zhou, Yong
Zhang, Wenli
Tu, Chongqi
Uncemented three-dimensional-printed prosthetic replacement for giant cell tumor of distal radius: a new design of prosthesis and surgical techniques
title Uncemented three-dimensional-printed prosthetic replacement for giant cell tumor of distal radius: a new design of prosthesis and surgical techniques
title_full Uncemented three-dimensional-printed prosthetic replacement for giant cell tumor of distal radius: a new design of prosthesis and surgical techniques
title_fullStr Uncemented three-dimensional-printed prosthetic replacement for giant cell tumor of distal radius: a new design of prosthesis and surgical techniques
title_full_unstemmed Uncemented three-dimensional-printed prosthetic replacement for giant cell tumor of distal radius: a new design of prosthesis and surgical techniques
title_short Uncemented three-dimensional-printed prosthetic replacement for giant cell tumor of distal radius: a new design of prosthesis and surgical techniques
title_sort uncemented three-dimensional-printed prosthetic replacement for giant cell tumor of distal radius: a new design of prosthesis and surgical techniques
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5808706/
https://www.ncbi.nlm.nih.gov/pubmed/29445303
http://dx.doi.org/10.2147/CMAR.S146434
work_keys_str_mv AT luminxun uncementedthreedimensionalprintedprostheticreplacementforgiantcelltumorofdistalradiusanewdesignofprosthesisandsurgicaltechniques
AT minli uncementedthreedimensionalprintedprostheticreplacementforgiantcelltumorofdistalradiusanewdesignofprosthesisandsurgicaltechniques
AT xiaocong uncementedthreedimensionalprintedprostheticreplacementforgiantcelltumorofdistalradiusanewdesignofprosthesisandsurgicaltechniques
AT liyongjiang uncementedthreedimensionalprintedprostheticreplacementforgiantcelltumorofdistalradiusanewdesignofprosthesisandsurgicaltechniques
AT luoyi uncementedthreedimensionalprintedprostheticreplacementforgiantcelltumorofdistalradiusanewdesignofprosthesisandsurgicaltechniques
AT zhouyong uncementedthreedimensionalprintedprostheticreplacementforgiantcelltumorofdistalradiusanewdesignofprosthesisandsurgicaltechniques
AT zhangwenli uncementedthreedimensionalprintedprostheticreplacementforgiantcelltumorofdistalradiusanewdesignofprosthesisandsurgicaltechniques
AT tuchongqi uncementedthreedimensionalprintedprostheticreplacementforgiantcelltumorofdistalradiusanewdesignofprosthesisandsurgicaltechniques