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  1. Germinal matrix hemorrhage (GMH) is a devastating neonatal stroke, in which neuroinflammation is a critical pathological contributor. Slit2, a secreted extracellular matrix protein, plays a repulsive role in a...

    Authors: Qian Li, Lei Huang, Yan Ding, Prativa Sherchan, Wenjie Peng and John H. Zhang
    Citation: Journal of Neuroinflammation 2023 20:249
  2. Childhood represents a period of significant growth and maturation for the brain, and is also associated with a heightened risk for mild traumatic brain injuries (mTBI). There is also concern that repeated-mTB...

    Authors: Katie J. Neale, Hannah M. O. Reid, Barbara Sousa, Erin McDonagh, Jamie Morrison, Sandy Shultz, Eric Eyolfson and Brian R. Christie
    Citation: Journal of Neuroinflammation 2023 20:250
  3. Disruption of the extracellular matrix at the blood–brain barrier (BBB) underpins neuroinflammation in multiple sclerosis (MS). The degradation of extracellular matrix components, such as heparan sulfate (HS) ...

    Authors: Tessa Peck, Connor Davis, Georgia Lenihan-Geels, Maddie Griffiths, Sam Spijkers-Shaw, Olga V. Zubkova and Anne Camille La Flamme
    Citation: Journal of Neuroinflammation 2023 20:251
  4. Inflammation during pregnancy is associated with an increased risk for neurodevelopmental disorders (NDD). Increased gestational inflammation can be a result of an immune condition/disease, exposure to infecti...

    Authors: Juan M. Tamayo, Hadley C. Osman, Jared J. Schwartzer, Kent E. Pinkerton and Paul Ashwood
    Citation: Journal of Neuroinflammation 2023 20:252
  5. Microglia, an immune cell found exclusively within the CNS, initially develop from haematopoietic stem cell precursors in the yolk sac and colonise all regions of the CNS early in development. Microglia have b...

    Authors: Linda T. Nguyen, Andrea Aprico, Eze Nwoke, Alexander D. Walsh, Farrah Blades, Raphael Avneri, Elodie Martin, Bernard Zalc, Trevor J. Kilpatrick and Michele D. Binder
    Citation: Journal of Neuroinflammation 2023 20:253
  6. Authors: Laura D. Owlett, Berke Karaahmet, Linh Le, Elizabeth K. Belcher, Dawling Dionisio-Santos, John A. Olschowka, Michael R. Elliott and M. Kerry O’Banion
    Citation: Journal of Neuroinflammation 2023 20:254

    The original article was published in Journal of Neuroinflammation 2022 19:38

  7. Enteric glia contribute to the pathophysiology of various intestinal immune-driven diseases, such as postoperative ileus (POI), a motility disorder and common complication after abdominal surgery. Enteric glio...

    Authors: Patrick Leven, Reiner Schneider, Linda Schneider, Shilpashree Mallesh, Pieter Vanden Berghe, Philipp Sasse, Jörg C. Kalff and Sven Wehner
    Citation: Journal of Neuroinflammation 2023 20:255
  8. Efferocytosis is a process that removes apoptotic cells and cellular debris. Clearance of these cells alleviates neuroinflammation, prevents the release of inflammatory molecules, and promotes the production o...

    Authors: Eman Soliman, John Leonard, Erwin Kristobal Gudenschwager Basso, Ilana Gershenson, Jing Ju, Jatia Mills, Caroline de Jager, Alexandra M. Kaloss, Mohamed Elhassanny, Daniela Pereira, Michael Chen, Xia Wang and Michelle H. Theus
    Citation: Journal of Neuroinflammation 2023 20:256
  9. This study investigated chronic and repeated sleep deprivation (RSD)-induced neuronal changes in hexosamine biosynthetic pathway/O-linked N-acetylglucosamine (HBP/O-GlcNAc) cycling of glucose metabolism and furth...

    Authors: Jiwon Park, Dong Yeol Kim, Geum-Sook Hwang and Inn-Oc Han
    Citation: Journal of Neuroinflammation 2023 20:257
  10. Although peripheral nerves have an intrinsic self-repair capacity following damage, functional recovery is limited in patients. It is a well-established fact that macrophages accumulate at the site of injury. ...

    Authors: Eri Oshima, Yoshinori Hayashi, Zhen Xie, Hitoshi Sato, Suzuro Hitomi, Ikuko Shibuta, Kentaro Urata, Junjun Ni, Koichi Iwata, Tatsuo Shirota and Masamichi Shinoda
    Citation: Journal of Neuroinflammation 2023 20:258
  11. Spinal cord injury (SCI) can prompt an immediate disruption to the blood–spinal cord barrier (BSCB). Restoring the integrity of this barrier is vital for the recovery of neurological function post-SCI. The UTX...

    Authors: Yong Xie, Zixiang Luo, Wei Peng, Yudong Liu, Feifei Yuan, Jiaqi Xu, Yi Sun, Hongbin Lu, Tianding Wu, Liyuan Jiang and Jianzhong Hu
    Citation: Journal of Neuroinflammation 2023 20:259
  12. Emerging evidence has shown that myeloid cells that infiltrate into the peri-infarct region may influence the progression of ischemic stroke by interacting with microglia. Properdin, which is typically secrete...

    Authors: Pin-yi Liu, Hui-qin Li, Meng-qi Dong, Xin-ya Gu, Si-yi Xu, Sheng-nan Xia, Xin-yu Bao, Yun Xu and Xiang Cao
    Citation: Journal of Neuroinflammation 2023 20:260
  13. Subarachnoid hemorrhage (SAH) causes significant long-term neurocognitive dysfunction, which is associated with hippocampal neuroinflammation. Growing evidences have shown that astrocytes played a significant ...

    Authors: Ping Chen, Xue-Yan Liu, Mou-Hui Lin, Yu-Xi Li, De-Zhi Kang, Zu-Cheng Ye and Qing-Song Lin
    Citation: Journal of Neuroinflammation 2023 20:261
  14. Ongoing neuroaxonal damage is a major contributor to disease progression and long-term disability in multiple sclerosis. However, spatio-temporal distribution and pathophysiological mechanisms of neuroaxonal d...

    Authors: Tobias Brummer, Miriam Schillner, Falk Steffen, Flores Kneilmann, Beatrice Wasser, Timo Uphaus, Frauke Zipp and Stefan Bittner
    Citation: Journal of Neuroinflammation 2023 20:262
  15. The experimental autoimmune encephalomyelitis (EAE) model of multiple sclerosis was used in combination with a Cav1.2 conditional knock-out mouse (Cav1.2KO) to study the role of astrocytic voltage-gated Ca++ chan...

    Authors: G. E. Denaroso, Z. Smith, C. G. Angeliu, V. T. Cheli, C. Wang and P. M. Paez
    Citation: Journal of Neuroinflammation 2023 20:263
  16. Lipid metabolism has a crucial role in neural repair in neurodegenerative diseases. We recently revealed that lipogenesis-mediated interleukin-33 (IL-33) upregulation lead to blood–brain barrier (BBB) repair a...

    Authors: Haidong Wei, Luming Zhen, Shiquan Wang, Liufei Yang, Shuyue Zhang, Yuanyuan Zhang, Pengyu Jia, Tianyue Wang, Kui Wang, Yan Zhang, Lei Ma, Jianrui Lv and Pengbo Zhang
    Citation: Journal of Neuroinflammation 2023 20:264
  17. Cerebral microhemorrhages (CMH) are associated with stroke, cognitive decline, and normal aging. Our previous study shows that the interaction between oxidatively stressed red blood cells (RBC) and cerebral en...

    Authors: Hai Zhang, Rachita K. Sumbria, Rudy Chang, Jiahong Sun, David H. Cribbs, Todd C. Holmes, Mark J. Fisher and Xiangmin Xu
    Citation: Journal of Neuroinflammation 2023 20:265
  18. Cochlear implants (CIs) restore hearing to deafened patients. The foreign body response (FBR) following cochlear implantation (post-CI) comprises an infiltration of macrophages, other immune and non-immune cel...

    Authors: Muhammad Taifur Rahman, Brian J. Mostaert, Bryce Hunger, Utsow Saha, Alexander D. Claussen, Ibrahim Razu, Farjana Nasrin, Nashwaan Ali Khan, Peter Eckard, Sarah Coleman, Jacob Oleson, Jonathon R. Kirk, Keiko Hirose and Marlan R. Hansen
    Citation: Journal of Neuroinflammation 2023 20:266
  19. Brain pericytes participate in the regulation of cerebral blood flow and the maintenance of blood–brain barrier integrity. Because of their perivascular localization, their receptor repertoire, and their poten...

    Authors: Nina C. Teske, Susanne Dyckhoff-Shen, Paul Beckenbauer, Jan Philipp Bewersdorf, Joo-Yeon Engelen-Lee, Sven Hammerschmidt, Roland E. Kälin, Hans-Walter Pfister, Matthijs C. Brouwer, Matthias Klein, Rainer Glass, Diederik van de Beek and Uwe Koedel
    Citation: Journal of Neuroinflammation 2023 20:267
  20. Cyanidin-3-O-glucoside (C3G) is a natural anthocyanin with antioxidant, anti-inflammatory, and antitumor properties. However, as the effects of C3G on the amyloidogenic pathway, autophagy, tau phosphorylation,...

    Authors: Hana Baek, Sanjay, Miey Park and Hae-Jeung Lee
    Citation: Journal of Neuroinflammation 2023 20:268
  21. Alzheimer’s disease (AD) pathology and amyloid-beta (Aβ) plaque deposition progress slowly in the cerebellum compared to other brain regions, while the entorhinal cortex (EC) is one of the most vulnerable regi...

    Authors: Jessica R. Gaunt, Norliyana Zainolabidin, Alaric K. K. Yip, Jia Min Tan, Aloysius Y. T. Low, Albert I. Chen and Toh Hean Ch’ng
    Citation: Journal of Neuroinflammation 2023 20:269
  22. Subarachnoid hemorrhage (SAH) is an uncommon type of potentially fatal stroke. The pathophysiological mechanisms of brain injury remain unclear, which hinders the development of drugs for SAH. We aimed to inve...

    Authors: Huaijun Chen, Chaoran Xu, Hanhai Zeng, Zhihua Zhang, Ning Wang, Yinghan Guo, Yonghe Zheng, Siqi Xia, Hang Zhou, Xiaobo Yu, Xiongjie Fu, Tianchi Tang, Xinyan Wu, Zihang Chen, Yucong Peng, Jing Cai…
    Citation: Journal of Neuroinflammation 2023 20:270
  23. Microglia are increasingly understood to play an important role in the pathogenesis of Alzheimer’s disease. The rs75932628 (p.R47H) TREM2 variant is a well-established risk factor for Alzheimer’s disease. TREM2 i...

    Authors: Oliver Cousins, Julia J. Schubert, Avinash Chandra, Mattia Veronese, Polena Valkimadi, Byron Creese, Zunera Khan, Ryan Arathimos, Adam Hampshire, Ivana Rosenzweig, Clive Ballard, Anne Corbett, Dag Aasland, Latha Velayudhan, Michael O’Neill, David Collier…
    Citation: Journal of Neuroinflammation 2023 20:272
  24. Traumatic spinal cord injury can cause immediate physical damage to the spinal cord and result in severe neurological deficits. The primary, mechanical tissue damage triggers a variety of secondary damage mech...

    Authors: Marie-Kim St-Pierre, Fernando González Ibáñez, Antje Kroner and Marie-Ève Tremblay
    Citation: Journal of Neuroinflammation 2023 20:273
  25. Nuclear receptor related-1 (Nurr1), a ligand-activated transcription factor, is considered a potential susceptibility gene for Parkinson’s disease (PD), and has been demonstrated to possess protective effects ...

    Authors: Tianbai Li, Xiang Tan, Lulu Tian, Congcong Jia, Cheng Cheng, Xi Chen, Min Wei, Yuanyuan Wang, Yiying Hu, Qiqi Jia, Yang Ni, Murad Al-Nusaif, Song Li and Weidong Le
    Citation: Journal of Neuroinflammation 2023 20:274
  26. Regulatory T cells (Tregs) are involved in the systemic immune response after ischemic stroke. However, their role remains unclear, and the effect appears to be both neuroprotective and detrimental. Treg suppr...

    Authors: Maria Lukasik, Magdalena Telec, Radoslaw Kazmierski, Izabela Wojtasz, Natalia Andrzejewska-Gorczyńska, Wojciech Kociemba, Grzegorz Dworacki, Wojciech P. Kozubski and Magdalena Frydrychowicz
    Citation: Journal of Neuroinflammation 2023 20:275
  27. Chronic activation and dysfunction of microglia have been implicated in the pathogenesis and progression of many neurodegenerative disorders, including Huntington’s disease (HD). HD is a genetic condition caus...

    Authors: Noam Steinberg, Danny Galleguillos, Asifa Zaidi, Melanie Horkey and Simonetta Sipione
    Citation: Journal of Neuroinflammation 2023 20:276
  28. Luteolin is a flavonoid found in high concentrations in celery and green pepper, and acts as a neuroprotectant. PSMC5 (proteasome 26S subunit, ATPase 5) protein levels were reduced after luteolin stimulation i...

    Authors: Wei Bi, Keyao Bao, Xinqi Zhou, Yihui Deng, Xiaoting Li, Jiawei Zhang, Xin Lan, Jiayi Zhao, Daxiang Lu, Yezi Xu, Yanmei Cen, Rui Cao, Mengyang Xu, Wenbin Zhong and Lihong Zhu
    Citation: Journal of Neuroinflammation 2023 20:277
  29. Synaptic loss is closely associated with tau aggregation and microglia activation in later stages of Alzheimer’s disease (AD). However, synaptic damage happens early in AD at the very early stages of tau accum...

    Authors: Marcel S. Woo, Johanna Nilsson, Joseph Therriault, Nesrine Rahmouni, Ann Brinkmalm, Andrea L. Benedet, Nicholas J. Ashton, Arthur C. Macedo, Stijn Servaes, Yi-Ting Wang, Cécile Tissot, Jaime Fernandez Arias, Seyyed Ali Hosseini, Mira Chamoun, Firoza Z. Lussier, Thomas K. Karikari…
    Citation: Journal of Neuroinflammation 2023 20:278
  30. Vision loss in patients with wet/exudative age-related macular degeneration (AMD) is associated with choroidal neovascularization (CNV), and AMD is the leading cause of irreversible vision impairment in older ...

    Authors: Yu-Hsien Chang, Chung-Hsi Hsing, Chiao-Juno Chiu, Yi-Rou Wu, Sheng-Min Hsu and Yu-Hsiang Hsu
    Citation: Journal of Neuroinflammation 2023 20:279
  31. Neonatal encephalopathy following hypoxia–ischemia (HI) is a leading cause of childhood death and morbidity. Hypothermia (HT), the only available but obligatory therapy is limited due to a short therapeutic wi...

    Authors: Nicole Labusek, Parnian Ghari, Yanis Mouloud, Christian Köster, Eva Diesterbeck, Martin Hadamitzky, Ursula Felderhoff-Müser, Ivo Bendix, Bernd Giebel and Josephine Herz
    Citation: Journal of Neuroinflammation 2023 20:280
  32. Inflammatory response triggered by innate immunity plays a pivotal element in the progress of ischemic stroke. Receptor-interacting kinase 2 (RIP2) is implicated in maintaining immunity homeostasis and regulat...

    Authors: Shengnan Zheng, Yiquan Li, Xiaomeng Song, Mengting Wu, Lu Yu, Gan Huang, Tengfei Liu, Lei Zhang, Mingmei Shang, Qingfen Zhu, Chengjiang Gao, Lin Chen and Huiqing Liu
    Citation: Journal of Neuroinflammation 2023 20:281
  33. The gut microbiota has recently attracted attention as a pathogenic factor in Alzheimer’s disease (AD). Microfold (M) cells, which play a crucial role in the gut immune response against external antigens, are ...

    Authors: Namkwon Kim, In Gyoung Ju, Seung Ho Jeon, Yeongae Lee, Min-Ji Jung, Min Sung Gee, Jae Seok Cho, Kyung-Soo Inn, Lee Ann Garrett-Sinha, Myung Sook Oh and Jong Kil Lee
    Citation: Journal of Neuroinflammation 2023 20:282
  34. Neuroinflammation mediated by microglial pyroptosis is an important pathogenic mechanism of septic encephalopathy (SAE). It has been reported that TRIM45 is associated with tumours and inflammatory diseases. H...

    Authors: Xuliang Huang, Changzhou Ye, Xinyu Zhao, Yao Tong, Wen Lin, Qingqing Huang, Yuhao Zheng, Junlu Wang, Anqi Zhang and Yunchang Mo
    Citation: Journal of Neuroinflammation 2023 20:284
  35. Cerebral ischemia‒reperfusion injury causes significant harm to human health and is a major contributor to stroke-related deaths worldwide. Current treatments are limited, and new, more effective prevention an...

    Authors: Zhaohui Ruan, Guosheng Cao, Yisong Qian, Longsheng Fu, Jinfang Hu, Tiantian Xu, Yaoqi Wu and Yanni Lv
    Citation: Journal of Neuroinflammation 2023 20:285
  36. Alterations in progranulin (PGRN) expression are associated with multiple neurodegenerative diseases (NDs), including frontotemporal dementia (FTD), Alzheimer’s disease (AD), Parkinson’s disease (PD), and lyso...

    Authors: Drew A. Gillett, Rebecca L. Wallings, Oihane Uriarte Huarte and Malú Gámez Tansey
    Citation: Journal of Neuroinflammation 2023 20:286
  37. Authors: Jonathan C. Vincent, Colleen N. Garnett, James B. Watson, Emma K. Higgins, Teresa Macheda, Lydia Sanders, Kelly N. Roberts, Ryan K. Shahidehpour, Eric M. Blalock, Ning Quan and Adam D. Bachstetter
    Citation: Journal of Neuroinflammation 2023 20:287

    The original article was published in Journal of Neuroinflammation 2023 20:248

  38. Sepsis-associated encephalopathy (SAE) is characterized by symptoms of delirium including hallucinations, impaired concentration, agitation, or coma and is associated with poor outcome in the early phase of se...

    Authors: Nils Mein, Nikolai von Stackelberg, Jonathan Wickel, Christian Geis and Ha-Yeun Chung
    Citation: Journal of Neuroinflammation 2023 20:289
  39. Glial cell-mediated neuroinflammation and neuronal attrition are highly correlated with cognitive impairment in Alzheimer’s disease. YKL-40 is a secreted astrocytic glycoprotein that serves as a diagnostic bio...

    Authors: Xiaoyan Zeng, Stanley K. K. Cheung, Mengqi Shi, Penelope M. Y. Or, Zhining Li, Julia Y. H. Liu, Wayne L. H. Ho, Tian Liu, Kun Lu, John A. Rudd, Yubing Wang and Andrew M. Chan
    Citation: Journal of Neuroinflammation 2023 20:290
  40. Current effective therapies for autoimmune diseases rely on systemic immunomodulation that broadly affects all T and/or B cell responses. An ideal therapeutic approach would combine autoantigen-specific target...

    Authors: Mathangi Janakiraman, Alexei Leliavski, Jeeva Varadarajulu, Dieter Jenne and Gurumoorthy Krishnamoorthy
    Citation: Journal of Neuroinflammation 2023 20:291
  41. Neuroinflammation appears to involve some degree of excitotoxicity promulgated by microglia, which release glutamate via the system xC (SxC) cystine-glutamate antiporter. With the aim of mitigating this source ...

    Authors: Mariusz P. Gajewski and Steven W. Barger
    Citation: Journal of Neuroinflammation 2023 20:292
  42. Depression is two-to-three times more frequent among women. The hypothalamus, a sexually dimorphic area, has been implicated in the pathophysiology of depression. Neuroinflammation-induced hypothalamic dysfunc...

    Authors: Fu-Rong Xu, Zhen-Hong Wei, Xiao-Xia Xu, Xiao-Gang Zhang, Chao-Jun Wei, Xiao-Ming Qi, Yong-Hong Li, Xiao-Ling Gao and Yu Wu
    Citation: Journal of Neuroinflammation 2023 20:293
  43. Skull bone marrow is thought to be an immune tissue closely associated with the central nervous system (CNS). Recent studies have focused on the role of skull bone marrow in central nervous system disorders. I...

    Authors: Chaoran Xu, Qia Zhang, Yi Zhang, Huaijun Chen, Tianchi Tang, Junjie Wang, Siqi Xia, Gao Chen and Jianmin Zhang
    Citation: Journal of Neuroinflammation 2023 20:294
  44. The role of high mobility group box 1 (HMGB1) in inflammation is well characterized in the immune system and in response to tissue injury. More recently, HMGB1 was also shown to initiate an “inflammatory signa...

    Authors: Zeynep Kaya, Nevin Belder, Melike Sever-Bahcekapili, Buket Donmez-Demir, Şefik Evren Erdener, Naz Bozbeyoglu, Canan Bagci, Emine Eren-Kocak, Muge Yemisci, Hulya Karatas, Esra Erdemli, Ihsan Gursel and Turgay Dalkara
    Citation: Journal of Neuroinflammation 2023 20:295
  45. Neuroinflammation and mitochondrial dysfunction play crucial roles in retinal ischemia and reperfusion (IR) injury. Recent studies have identified mitochondrial function as a promising target for immunomodulat...

    Authors: Zhenlan Yang, Yidan Liu, Xuhao Chen, Shaofen Huang, Yangyang Li, Guitong Ye, Xu Cao, Wenru Su and Yehong Zhuo
    Citation: Journal of Neuroinflammation 2023 20:296
  46. Extracellular vesicles (EVs) released by human induced pluripotent stem cell-derived neural stem cells (hiPSC-NSCs) are enriched with miRNAs and proteins capable of mediating robust antiinflammatory activity. ...

    Authors: Gunel Ayyubova, Maheedhar Kodali, Raghavendra Upadhya, Leelavathi N. Madhu, Sahithi Attaluri, Yogish Somayaji, Bing Shuai, Shama Rao, Goutham Shankar and Ashok K. Shetty
    Citation: Journal of Neuroinflammation 2023 20:297
  47. Brain innate immune activation is associated with Alzheimer’s disease (AD), but degrees of activation may vary between disease stages. Thus, brain innate immune activation must be assessed in longitudinal clin...

    Authors: Kaja Nordengen, Bjørn-Eivind Kirsebom, Grit Richter, Lene Pålhaugen, Berglind Gísladóttir, Nikias Siafarikas, Arne Nakling, Arvid Rongve, Geir Bråthen, Gøril Rolfseng Grøntvedt, Fernando Gonzalez, Knut Waterloo, Kulbhushan Sharma, Thomas Karikari, Eleonora M. Vromen, Betty M. Tijms…
    Citation: Journal of Neuroinflammation 2023 20:298

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