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Cold protection allows local cryotherapy in a clinical-relevant model of traumatic optic neuropathy

Therapeutic hypothermia (TH) is potentially an important therapy for central nervous system (CNS) trauma. However, its clinical application remains controversial, hampered by two major factors: (1) Many of the CNS injury sites, such as the optic nerve (ON), are deeply buried, preventing access for l...

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Autores principales: Zhang, Yikui, Li, Mengyun, Yu, Bo, Lu, Shengjian, Zhang, Lujie, Zhu, Senmiao, Yu, Zhonghao, Xia, Tian, Huang, Haoliang, Jiang, WenHao, Zhang, Si, Sun, Lanfang, Ye, Qian, Sun, Jiaying, Zhu, Hui, Huang, Pingping, Hong, Huifeng, Yu, Shuaishuai, Li, Wenjie, Ai, Danni, Fan, Jingfan, Li, Wentao, Song, Hong, Xu, Lei, Chen, Xiwen, Chen, Tongke, Zhou, Meng, Ou, Jingxing, Yang, Jian, Li, Wei, Hu, Yang, Wu, Wencan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9068221/
https://www.ncbi.nlm.nih.gov/pubmed/35352678
http://dx.doi.org/10.7554/eLife.75070
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author Zhang, Yikui
Li, Mengyun
Yu, Bo
Lu, Shengjian
Zhang, Lujie
Zhu, Senmiao
Yu, Zhonghao
Xia, Tian
Huang, Haoliang
Jiang, WenHao
Zhang, Si
Sun, Lanfang
Ye, Qian
Sun, Jiaying
Zhu, Hui
Huang, Pingping
Hong, Huifeng
Yu, Shuaishuai
Li, Wenjie
Ai, Danni
Fan, Jingfan
Li, Wentao
Song, Hong
Xu, Lei
Chen, Xiwen
Chen, Tongke
Zhou, Meng
Ou, Jingxing
Yang, Jian
Li, Wei
Hu, Yang
Wu, Wencan
author_facet Zhang, Yikui
Li, Mengyun
Yu, Bo
Lu, Shengjian
Zhang, Lujie
Zhu, Senmiao
Yu, Zhonghao
Xia, Tian
Huang, Haoliang
Jiang, WenHao
Zhang, Si
Sun, Lanfang
Ye, Qian
Sun, Jiaying
Zhu, Hui
Huang, Pingping
Hong, Huifeng
Yu, Shuaishuai
Li, Wenjie
Ai, Danni
Fan, Jingfan
Li, Wentao
Song, Hong
Xu, Lei
Chen, Xiwen
Chen, Tongke
Zhou, Meng
Ou, Jingxing
Yang, Jian
Li, Wei
Hu, Yang
Wu, Wencan
author_sort Zhang, Yikui
collection PubMed
description Therapeutic hypothermia (TH) is potentially an important therapy for central nervous system (CNS) trauma. However, its clinical application remains controversial, hampered by two major factors: (1) Many of the CNS injury sites, such as the optic nerve (ON), are deeply buried, preventing access for local TH. The alternative is to apply TH systemically, which significantly limits the applicable temperature range. (2) Even with possible access for ‘local refrigeration’, cold-induced cellular damage offsets the benefit of TH. Here we present a clinically translatable model of traumatic optic neuropathy (TON) by applying clinical trans-nasal endoscopic surgery to goats and non-human primates. This model faithfully recapitulates clinical features of TON such as the injury site (pre-chiasmatic ON), the spatiotemporal pattern of neural degeneration, and the accessibility of local treatments with large operating space. We also developed a computer program to simplify the endoscopic procedure and expand this model to other large animal species. Moreover, applying a cold-protective treatment, inspired by our previous hibernation research, enables us to deliver deep hypothermia (4 °C) locally to mitigate inflammation and metabolic stress (indicated by the transcriptomic changes after injury) without cold-induced cellular damage, and confers prominent neuroprotection both structurally and functionally. Intriguingly, neither treatment alone was effective, demonstrating that in situ deep hypothermia combined with cold protection constitutes a breakthrough for TH as a therapy for TON and other CNS traumas.
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spelling pubmed-90682212022-05-05 Cold protection allows local cryotherapy in a clinical-relevant model of traumatic optic neuropathy Zhang, Yikui Li, Mengyun Yu, Bo Lu, Shengjian Zhang, Lujie Zhu, Senmiao Yu, Zhonghao Xia, Tian Huang, Haoliang Jiang, WenHao Zhang, Si Sun, Lanfang Ye, Qian Sun, Jiaying Zhu, Hui Huang, Pingping Hong, Huifeng Yu, Shuaishuai Li, Wenjie Ai, Danni Fan, Jingfan Li, Wentao Song, Hong Xu, Lei Chen, Xiwen Chen, Tongke Zhou, Meng Ou, Jingxing Yang, Jian Li, Wei Hu, Yang Wu, Wencan eLife Medicine Therapeutic hypothermia (TH) is potentially an important therapy for central nervous system (CNS) trauma. However, its clinical application remains controversial, hampered by two major factors: (1) Many of the CNS injury sites, such as the optic nerve (ON), are deeply buried, preventing access for local TH. The alternative is to apply TH systemically, which significantly limits the applicable temperature range. (2) Even with possible access for ‘local refrigeration’, cold-induced cellular damage offsets the benefit of TH. Here we present a clinically translatable model of traumatic optic neuropathy (TON) by applying clinical trans-nasal endoscopic surgery to goats and non-human primates. This model faithfully recapitulates clinical features of TON such as the injury site (pre-chiasmatic ON), the spatiotemporal pattern of neural degeneration, and the accessibility of local treatments with large operating space. We also developed a computer program to simplify the endoscopic procedure and expand this model to other large animal species. Moreover, applying a cold-protective treatment, inspired by our previous hibernation research, enables us to deliver deep hypothermia (4 °C) locally to mitigate inflammation and metabolic stress (indicated by the transcriptomic changes after injury) without cold-induced cellular damage, and confers prominent neuroprotection both structurally and functionally. Intriguingly, neither treatment alone was effective, demonstrating that in situ deep hypothermia combined with cold protection constitutes a breakthrough for TH as a therapy for TON and other CNS traumas. eLife Sciences Publications, Ltd 2022-03-30 /pmc/articles/PMC9068221/ /pubmed/35352678 http://dx.doi.org/10.7554/eLife.75070 Text en https://creativecommons.org/publicdomain/zero/1.0/This is an open-access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 public domain dedication (https://creativecommons.org/publicdomain/zero/1.0/) .
spellingShingle Medicine
Zhang, Yikui
Li, Mengyun
Yu, Bo
Lu, Shengjian
Zhang, Lujie
Zhu, Senmiao
Yu, Zhonghao
Xia, Tian
Huang, Haoliang
Jiang, WenHao
Zhang, Si
Sun, Lanfang
Ye, Qian
Sun, Jiaying
Zhu, Hui
Huang, Pingping
Hong, Huifeng
Yu, Shuaishuai
Li, Wenjie
Ai, Danni
Fan, Jingfan
Li, Wentao
Song, Hong
Xu, Lei
Chen, Xiwen
Chen, Tongke
Zhou, Meng
Ou, Jingxing
Yang, Jian
Li, Wei
Hu, Yang
Wu, Wencan
Cold protection allows local cryotherapy in a clinical-relevant model of traumatic optic neuropathy
title Cold protection allows local cryotherapy in a clinical-relevant model of traumatic optic neuropathy
title_full Cold protection allows local cryotherapy in a clinical-relevant model of traumatic optic neuropathy
title_fullStr Cold protection allows local cryotherapy in a clinical-relevant model of traumatic optic neuropathy
title_full_unstemmed Cold protection allows local cryotherapy in a clinical-relevant model of traumatic optic neuropathy
title_short Cold protection allows local cryotherapy in a clinical-relevant model of traumatic optic neuropathy
title_sort cold protection allows local cryotherapy in a clinical-relevant model of traumatic optic neuropathy
topic Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9068221/
https://www.ncbi.nlm.nih.gov/pubmed/35352678
http://dx.doi.org/10.7554/eLife.75070
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