The Iridoid Glycoside Loganin Modulates Autophagic Flux Following Chronic Constriction Injury-Induced Neuropathic Pain

被引:4
|
作者
Cheng, Kuang-, I [1 ,2 ]
Chang, Yu-Chin [3 ]
Chu, Li-Wen [4 ]
Hsieh, Su-Ling [5 ]
An, Li-Mei [3 ]
Dai, Zen-Kong [6 ,7 ]
Wu, Bin-Nan [3 ,8 ]
机构
[1] Kaohsiung Med Univ, Coll Med, Sch Med, Dept Anesthesiol, Kaohsiung 80708, Taiwan
[2] Kaohsiung Med Univ Hosp, Dept Anesthesiol, Kaohsiung 80708, Taiwan
[3] Kaohsiung Med Univ, Grad Inst Med, Coll Med, Drug Dev & Value Creat Res Ctr,Dept Pharmacol, Kaohsiung 80708, Taiwan
[4] Yuh Ing Jr Coll Hlth Care & Management, Dept Cosmet Applicat & Management, Dept Nursing, Kaohsiung 80776, Taiwan
[5] Kaohsiung Med Univ Hosp, Dept Pharm, Kaohsiung 80708, Taiwan
[6] Kaohsiung Med Univ, Coll Med, Sch Med, Dept Pediat, Kaohsiung 80708, Taiwan
[7] Kaohsiung Med Univ Hosp, Dept Pediat, Div Pediat Cardiol & Pulmonol, Kaohsiung 80708, Taiwan
[8] Kaohsiung Med Univ Hosp, Dept Med Res, Kaohsiung 80708, Taiwan
关键词
peripheral nerve injury; neuropathic pain; loganin; autophagy; apoptosis; SIGNALING PATHWAY; HYPERALGESIA; ATORVASTATIN; PLASTICITY; RATS;
D O I
10.3390/ijms232415873
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Autophagy facilitates the degradation of organelles and cytoplasmic proteins in a lysosome-dependent manner. It also plays a crucial role in cell damage. Whether loganin affects autophagy in chronic constriction injury (CCI)-induced neuropathic pain remains unclear. We investigated the neuroprotective effect of loganin on the autophagic-lysosomal pathway in the rat CCI model. Sprague-Dawley rats were divided into sham, CCI, sham + loganin, and CCI + loganin. Loganin (5 mg/kg/day) was intraperitoneally injected once daily, and rats were sacrificed on day 7 after CCI. This study focused on the mechanism by which loganin modulates autophagic flux after CCI. CCI enhanced the autophagic marker LC3B-II in the ipsilateral spinal cord. The ubiquitin-binding protein p62 binds to LC3B-II and integrates into autophagosomes, which are degraded by autophagy. CCI caused the accumulation of p62, indicating the interruption of autophagosome turnover. Loganin significantly attenuated the expression of Beclin-1, LC3B-II, and p62. Double immunofluorescence staining was used to confirm that LC3B-II and p62 were reduced by loganin in the spinal microglia and astrocytes. Loganin also lessened the CCI-increased colocalization of both proteins. Enhanced lysosome-associated membrane protein 2 (LAMP2) and pro-cathepsin D (pro-CTSD) in CCI rats were also attenuated by loganin, suggesting that loganin improves impaired lysosomal function and autophagic flux. Loganin also attenuated the CCI-increased apoptosis protein Bax and cleaved caspase-3. Loganin prevents CCI-induced neuropathic pain, which could be attributed to the regulation of neuroinflammation, neuronal autophagy, and associated cell death. These data suggest autophagy could be a potential target for preventing neuropathic pain.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Analgesic Action of Catechin on Chronic Constriction Injury-Induced Neuropathic Pain in Sprague-Dawley Rats
    Foudah, Ahmed I.
    Alqarni, Mohammed H.
    Devi, Sushma
    Singh, Akanksha
    Alam, Aftab
    Alam, Pravej
    Singh, Sima
    FRONTIERS IN PHARMACOLOGY, 2022, 13
  • [22] MicroRNA-144 relieves chronic constriction injury-induced neuropathic pain via targeting RASA1
    Zhang, Xianjie
    Guo, Hongli
    Xie, An
    Liao, Ou
    Ju, Feng
    Zhou, YuKai
    BIOTECHNOLOGY AND APPLIED BIOCHEMISTRY, 2020, 67 (02) : 294 - 302
  • [23] Inhibition effect of choline and parecoxib sodium on chronic constriction nerve injury-induced neuropathic pain in rats
    Na Zhang
    Yang Li
    Zeguo Feng
    BMC Anesthesiology, 23
  • [24] Paeoniflorin attenuates chronic constriction injury-induced neuropathic pain by suppressing spinal NLRP3 inflammasome activation
    Liu, Pei
    Cheng, Jianjun
    Ma, Shuai
    Zhou, Jianyu
    INFLAMMOPHARMACOLOGY, 2020, 28 (06) : 1495 - 1508
  • [25] TLR4-mediated autophagic impairment contributes to neuropathic pain in chronic constriction injury mice
    Piao, Yibo
    Gwon, Do Hyeong
    Kang, Dong-Wook
    Hwang, Tae Woong
    Shin, Nara
    Kwon, Hyeok Hee
    Shin, Hyo Jung
    Yin, Yuhua
    Kim, Jwa-Jin
    Hong, Jinpyo
    Kim, Hyun-Woo
    Kim, Yonghyun
    Kim, Sang Ryong
    Oh, Sang-Ha
    Kim, Dong Woon
    MOLECULAR BRAIN, 2018, 11
  • [26] TLR4-mediated autophagic impairment contributes to neuropathic pain in chronic constriction injury mice
    Yibo Piao
    Do Hyeong Gwon
    Dong-Wook Kang
    Tae Woong Hwang
    Nara Shin
    Hyeok Hee Kwon
    Hyo Jung Shin
    Yuhua Yin
    Jwa-Jin Kim
    Jinpyo Hong
    Hyun-Woo Kim
    Yonghyun Kim
    Sang Ryong Kim
    Sang-Ha Oh
    Dong Woon Kim
    Molecular Brain, 11
  • [27] Loganin prevents chronic constriction injury-provoked neuropathic pain by reducing TNF-α/IL-1β-mediated NF-κB activation and Schwann cell demyelination
    Chu, Li-Wen
    Cheng, Kuang-, I
    Chen, Jun-Yih
    Cheng, Yu-Chi
    Chang, Yu-Chin
    Yeh, Jwu-Lai
    Hsu, Jong-Hau
    Dai, Zen-Kong
    Wu, Bin-Nan
    PHYTOMEDICINE, 2020, 67
  • [28] Neuroprotective and Anti-inflammatory Role of Atorvastatin and Its Interaction with Nitric Oxide (NO) in Chronic Constriction Injury-induced Neuropathic Pain
    Hasanvand, Amin
    Ahmadizar, Fariba
    Abbaszadeh, Abolfazl
    Dehpour, Ahmad-Reza
    Amini-khoei, Hossein
    Abbasnezhad, Amir
    Kharazmkia, Ali
    IRANIAN JOURNAL OF PHARMACEUTICAL RESEARCH, 2020, 19 (04): : 67 - 75
  • [29] RIP3 Inhibition ameliorates chronic constriction injury-induced neuropathic pain by suppressing JNK signaling
    He, Na
    Qu, Yu-Juan
    Li, Dan-Yang
    Yue, Shou-Wei
    AGING-US, 2021, 13 (21): : 24417 - 24431
  • [30] Cedrol protects against chronic constriction injury-induced neuropathic pain through inhibiting oxidative stress and inflammation
    Sakhaee, Mohammad Hossein
    Sayyadi, Seyed Amir Hossein
    Sakhaee, Nader
    Sadeghnia, Hamid R.
    Hosseinzadeh, Hossein
    Nourbakhsh, Fahimeh
    Forouzanfar, Fatemeh
    METABOLIC BRAIN DISEASE, 2020, 35 (07) : 1119 - 1126