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Linking the low-density lipoprotein receptor-binding segment enables the therapeutic 5-YHEDA peptide to cross the blood-brain barrier and scavenge excess iron and radicals in the brain of senescent mice

INTRODUCTION: Iron accumulates in the brain during aging, which catalyzes radical formation, causing neuronal impairment, and is thus considered a pathogenic factor in Alzheimer's disease (AD). To scavenge excess iron-catalyzed radicals and thereby protect the brain and decrease the incidence o...

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Autores principales: Zou, Zhenyou, Shao, Shengxi, Zou, Ruyi, Qi, Jini, Chen, Liguan, Zhang, Hui, Shen, Qiqiong, Yang, Yue, Ma, Liman, Guo, Ruzeng, Li, Hongwen, Tian, Haibo, Li, Pengxin, Yu, Mingfang, Wang, Lu, Kong, Wenjuan, Li, Caiyu, Yu, Zhenhai, Huang, Yuping, Chen, Li, Shao, Qi, Gao, Xinyan, Chen, Xiaolin, Zhang, Zhengbo, Yan, Jianguo, Shao, Xiaoyun, Pan, Ru, Xu, Lu, Fang, Jing, Zhao, Lei, Huang, Yaohui, Li, Anqi, Zhang, Yuchong, Huang, Wenkao, Tian, Kechun, Hu, Minxin, Xie, Linchao, Wu, Lingbin, Wu, Yu, Luo, Zhen, Xiao, Wenxin, Ma, Shanshan, Wang, Jianan, Huang, Kaixin, He, Siyuan, Yang, Fan, Zhou, Shuni, Jia, Mo, Lu, Hongsheng, Wang, Xinjuan, Tan, Jie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wiley-Blackwell 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6944740/
https://www.ncbi.nlm.nih.gov/pubmed/31921964
http://dx.doi.org/10.1016/j.trci.2019.07.013
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author Zou, Zhenyou
Shao, Shengxi
Zou, Ruyi
Qi, Jini
Chen, Liguan
Zhang, Hui
Shen, Qiqiong
Yang, Yue
Ma, Liman
Guo, Ruzeng
Li, Hongwen
Tian, Haibo
Li, Pengxin
Yu, Mingfang
Wang, Lu
Kong, Wenjuan
Li, Caiyu
Yu, Zhenhai
Huang, Yuping
Chen, Li
Shao, Qi
Gao, Xinyan
Chen, Xiaolin
Zhang, Zhengbo
Yan, Jianguo
Shao, Xiaoyun
Pan, Ru
Xu, Lu
Fang, Jing
Zhao, Lei
Huang, Yaohui
Li, Anqi
Zhang, Yuchong
Huang, Wenkao
Tian, Kechun
Hu, Minxin
Xie, Linchao
Wu, Lingbin
Wu, Yu
Luo, Zhen
Xiao, Wenxin
Ma, Shanshan
Wang, Jianan
Huang, Kaixin
He, Siyuan
Yang, Fan
Zhou, Shuni
Jia, Mo
Zhang, Hui
Lu, Hongsheng
Wang, Xinjuan
Tan, Jie
author_facet Zou, Zhenyou
Shao, Shengxi
Zou, Ruyi
Qi, Jini
Chen, Liguan
Zhang, Hui
Shen, Qiqiong
Yang, Yue
Ma, Liman
Guo, Ruzeng
Li, Hongwen
Tian, Haibo
Li, Pengxin
Yu, Mingfang
Wang, Lu
Kong, Wenjuan
Li, Caiyu
Yu, Zhenhai
Huang, Yuping
Chen, Li
Shao, Qi
Gao, Xinyan
Chen, Xiaolin
Zhang, Zhengbo
Yan, Jianguo
Shao, Xiaoyun
Pan, Ru
Xu, Lu
Fang, Jing
Zhao, Lei
Huang, Yaohui
Li, Anqi
Zhang, Yuchong
Huang, Wenkao
Tian, Kechun
Hu, Minxin
Xie, Linchao
Wu, Lingbin
Wu, Yu
Luo, Zhen
Xiao, Wenxin
Ma, Shanshan
Wang, Jianan
Huang, Kaixin
He, Siyuan
Yang, Fan
Zhou, Shuni
Jia, Mo
Zhang, Hui
Lu, Hongsheng
Wang, Xinjuan
Tan, Jie
author_sort Zou, Zhenyou
collection PubMed
description INTRODUCTION: Iron accumulates in the brain during aging, which catalyzes radical formation, causing neuronal impairment, and is thus considered a pathogenic factor in Alzheimer's disease (AD). To scavenge excess iron-catalyzed radicals and thereby protect the brain and decrease the incidence of AD, we synthesized a soluble pro-iron 5-YHEDA peptide. However, the blood-brain barrier (BBB) blocks large drug molecules from entering the brain and thus strongly reduces their therapeutic effects. However, alternative receptor- or transporter-mediated approaches are possible. METHODS: A low-density lipoprotein receptor (LDLR)-binding segment of Apolipoprotein B-100 was linked to the 5-YHEDA peptide (bs-5-YHEDA) and intracardially injected into senescent (SN) mice that displayed symptoms of cognitive impairment similar to those of people with AD. RESULTS: We successfully delivered 5-YHEDA across the BBB into the brains of the SN mice via vascular epithelium LDLR-mediated endocytosis. The data showed that excess brain iron and radical-induced neuronal necrosis were reduced after the bs-5-YHEDA treatment, together with cognitive amelioration in the SN mouse, and that the senescence-associated ferritin and transferrin increase, anemia and inflammation reversed without kidney or liver injury. DISCUSSION: bs-5-YHEDA may be a mild and safe iron remover that can cross the BBB and enter the brain to relieve excessive iron- and radical-induced cognitive disorders.
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spelling pubmed-69447402020-01-09 Linking the low-density lipoprotein receptor-binding segment enables the therapeutic 5-YHEDA peptide to cross the blood-brain barrier and scavenge excess iron and radicals in the brain of senescent mice Zou, Zhenyou Shao, Shengxi Zou, Ruyi Qi, Jini Chen, Liguan Zhang, Hui Shen, Qiqiong Yang, Yue Ma, Liman Guo, Ruzeng Li, Hongwen Tian, Haibo Li, Pengxin Yu, Mingfang Wang, Lu Kong, Wenjuan Li, Caiyu Yu, Zhenhai Huang, Yuping Chen, Li Shao, Qi Gao, Xinyan Chen, Xiaolin Zhang, Zhengbo Yan, Jianguo Shao, Xiaoyun Pan, Ru Xu, Lu Fang, Jing Zhao, Lei Huang, Yaohui Li, Anqi Zhang, Yuchong Huang, Wenkao Tian, Kechun Hu, Minxin Xie, Linchao Wu, Lingbin Wu, Yu Luo, Zhen Xiao, Wenxin Ma, Shanshan Wang, Jianan Huang, Kaixin He, Siyuan Yang, Fan Zhou, Shuni Jia, Mo Zhang, Hui Lu, Hongsheng Wang, Xinjuan Tan, Jie Alzheimers Dement (N Y) Featured Article INTRODUCTION: Iron accumulates in the brain during aging, which catalyzes radical formation, causing neuronal impairment, and is thus considered a pathogenic factor in Alzheimer's disease (AD). To scavenge excess iron-catalyzed radicals and thereby protect the brain and decrease the incidence of AD, we synthesized a soluble pro-iron 5-YHEDA peptide. However, the blood-brain barrier (BBB) blocks large drug molecules from entering the brain and thus strongly reduces their therapeutic effects. However, alternative receptor- or transporter-mediated approaches are possible. METHODS: A low-density lipoprotein receptor (LDLR)-binding segment of Apolipoprotein B-100 was linked to the 5-YHEDA peptide (bs-5-YHEDA) and intracardially injected into senescent (SN) mice that displayed symptoms of cognitive impairment similar to those of people with AD. RESULTS: We successfully delivered 5-YHEDA across the BBB into the brains of the SN mice via vascular epithelium LDLR-mediated endocytosis. The data showed that excess brain iron and radical-induced neuronal necrosis were reduced after the bs-5-YHEDA treatment, together with cognitive amelioration in the SN mouse, and that the senescence-associated ferritin and transferrin increase, anemia and inflammation reversed without kidney or liver injury. DISCUSSION: bs-5-YHEDA may be a mild and safe iron remover that can cross the BBB and enter the brain to relieve excessive iron- and radical-induced cognitive disorders. Wiley-Blackwell 2019-11-06 /pmc/articles/PMC6944740/ /pubmed/31921964 http://dx.doi.org/10.1016/j.trci.2019.07.013 Text en © 2019 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Featured Article
Zou, Zhenyou
Shao, Shengxi
Zou, Ruyi
Qi, Jini
Chen, Liguan
Zhang, Hui
Shen, Qiqiong
Yang, Yue
Ma, Liman
Guo, Ruzeng
Li, Hongwen
Tian, Haibo
Li, Pengxin
Yu, Mingfang
Wang, Lu
Kong, Wenjuan
Li, Caiyu
Yu, Zhenhai
Huang, Yuping
Chen, Li
Shao, Qi
Gao, Xinyan
Chen, Xiaolin
Zhang, Zhengbo
Yan, Jianguo
Shao, Xiaoyun
Pan, Ru
Xu, Lu
Fang, Jing
Zhao, Lei
Huang, Yaohui
Li, Anqi
Zhang, Yuchong
Huang, Wenkao
Tian, Kechun
Hu, Minxin
Xie, Linchao
Wu, Lingbin
Wu, Yu
Luo, Zhen
Xiao, Wenxin
Ma, Shanshan
Wang, Jianan
Huang, Kaixin
He, Siyuan
Yang, Fan
Zhou, Shuni
Jia, Mo
Zhang, Hui
Lu, Hongsheng
Wang, Xinjuan
Tan, Jie
Linking the low-density lipoprotein receptor-binding segment enables the therapeutic 5-YHEDA peptide to cross the blood-brain barrier and scavenge excess iron and radicals in the brain of senescent mice
title Linking the low-density lipoprotein receptor-binding segment enables the therapeutic 5-YHEDA peptide to cross the blood-brain barrier and scavenge excess iron and radicals in the brain of senescent mice
title_full Linking the low-density lipoprotein receptor-binding segment enables the therapeutic 5-YHEDA peptide to cross the blood-brain barrier and scavenge excess iron and radicals in the brain of senescent mice
title_fullStr Linking the low-density lipoprotein receptor-binding segment enables the therapeutic 5-YHEDA peptide to cross the blood-brain barrier and scavenge excess iron and radicals in the brain of senescent mice
title_full_unstemmed Linking the low-density lipoprotein receptor-binding segment enables the therapeutic 5-YHEDA peptide to cross the blood-brain barrier and scavenge excess iron and radicals in the brain of senescent mice
title_short Linking the low-density lipoprotein receptor-binding segment enables the therapeutic 5-YHEDA peptide to cross the blood-brain barrier and scavenge excess iron and radicals in the brain of senescent mice
title_sort linking the low-density lipoprotein receptor-binding segment enables the therapeutic 5-yheda peptide to cross the blood-brain barrier and scavenge excess iron and radicals in the brain of senescent mice
topic Featured Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6944740/
https://www.ncbi.nlm.nih.gov/pubmed/31921964
http://dx.doi.org/10.1016/j.trci.2019.07.013
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