2024-04-20 2024, Volume 14 Issue 4

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  • RESEARCH ARTICLE
    Felix Neuhaus , Sonja Lieber , Veronika Shinkevich , Anna Mary Steitz , Hartmann Raifer , Kathrin Roth , Florian Finkernagel , Thomas Worzfeld , Andreas Burchert , Corinna Keber , Andrea Nist , Thorsten Stiewe , Silke Reinartz , Vanessa M. Beutgen , Johannes Graumann , Kim Pauck , Holger Garn , Matthias Gaida , Rolf Müller , Magdalena Huber
    2024, 14(4): e1604. https://doi.org/10.1002/ctm2.1604

    Background: IL-17A and TNF synergistically promote inflammation and tumorigenesis. Their interplay and impact on ovarian carcinoma (OC) progression are, however, poorly understood. We addressed this question focusing on mesothelial cells, whose interaction with tumor cells is known to play a pivotal role in transcoelomic metastasis formation.

    Methods: Flow-cytometry and immunohistochemistry experiments were employed to identify cellular sources of IL-17A and TNF. Changes in transcriptomes and secretomes were determined by bulk and single cell RNA sequencing as well as affinity proteomics. Functional consequences were investigated by microscopic analyses and tumor cell adhesion assays. Potential clinical implications were assessed by immunohistochemistry and survival analyses.

    Results: We identified Th17 cells as the main population of IL-17A- and TNF producers in ascites and detected their accumulation in early omental metastases. Both IL-17A and its receptor subunit IL-17RC were associated with short survival of OC patients, pointing to a role in clinical progression. IL-17A and TNF synergistically induced the reprogramming of mesothelial cells towards a pro-inflammatory mesenchymal phenotype, concomitantly with a loss of tight junctions and an impairment of mesothelial monolayer integrity, thereby promoting cancer cell adhesion. IL-17A and TNF synergistically induced the Th17-promoting cytokines IL-6 and IL-1β as well as the Th17-attracting chemokine CCL20 in mesothelial cells, indicating a reciprocal crosstalk that potentiates the tumor-promoting role of Th17 cells in OC.

    Conclusions: Our findings reveal a novel function for Th17 cells in the OC microenvironment, which entails the IL-17A/TNF-mediated induction of mesothelial-mesenchymal transition, disruption of mesothelial layer integrity and consequently promotion of OC cell adhesion. These effects are potentiated by a positive feedback loop between mesothelial and Th17 cells. Together with the observed clinical associations and accumulation of Th17 cells in omental micrometastases, our observations point to a potential role in early metastases formation and thus to new therapeutic options.

  • LETTER TO THE JOURNAL
    Chiara Massa , Thomas Karn , Karsten Weber , Andreas Schneeweiss , Claus Hanusch , Jens Uwe Blohmer , Dirk-Michael Zahm , Christian Jackisch , Marion van Mackelenbergh , Jörg Thomalla , Frederik Marmé , Jens Huober , Volkmar Müller , Christian Schem , Anja Müller , Elmar Stickeler , Katharina Biehl , Peter A. Fasching , Michael Untch , Sibylle Loibl , Carsten Denkert , Barbara Seliger
    2024, 14(4): e1617. https://doi.org/10.1002/ctm2.1617
  • RESEARCH ARTICLE
    Yanchun Zhao , Yutong Zhou , Yu Qian , Wenwen Wei , Xiangjie Lin , Shihui Mao , Jie Sun , Jie Jin
    2024, 14(4): e1628. https://doi.org/10.1002/ctm2.1628

    Background: Acute myeloid leukaemia (AML) is a haematological malignancy with unfavourable prognosis. Despite the effectiveness of chemotherapy and targeted therapy, relapse or drug resistance remains a major threat to AML patients. N6-methyladenosine (m6A) RNA methylation and super-enhancers (SEs) are extensively involved in the leukaemogenesis of AML. However, the potential relationship between m6A and SEs in AML has not been elaborated.

    Methods: Chromatin immunoprecipitation (ChIP) sequencing data from Gene Expression Omnibus (GEO) cohort were analysed to search SE-related genes. The mechanisms of m6 A-binding proteins IGF2BP2 and IGF2BP3 on DDX21 were explored via methylated RNA immunoprecipitation (MeRIP) assays, RNA immunoprecipitation (RIP) assays and luciferase reporter assays. Then we elucidated the roles of DDX21 in AML through functional assays in vitro and in vivo. Finally, co-immunoprecipitation (Co-IP) assays, RNA sequencing and ChIP assays were performed to investigate the downstream mechanisms of DDX21.

    Results: We identified two SE-associated transcripts IGF2BP2 and IGF2BP3 in AML. High enrichment of H3K27ac, H3K4me1 and BRD4 was observed in IGF2BP2 and IGF2BP3, whose expression were driven by SE machinery. Then IGF2BP2 and IGF2BP3 enhanced the stability of DDX21 mRNA in an m6A-dependent manner. DDX21 was highly expressed in AML patients, which indicated a poor survival. Functionally, knockdown of DDX21 inhibited cell proliferation, promoted cell apoptosis and led to cell cycle arrest. Mechanistically, DDX21 recruited transcription factor YBX1 to cooperatively trigger ULK1 expression. Moreover, silencing of ULK1 could reverse the promoting effects of DDX21 overexpression in AML cells.

    Conclusions: Dysregulation of SE-IGF2BP2/IGF2BP3-DDX21 axis facilitated the progression of AML. Our findings provide new insights into the link between SEs and m6A modification, elucidate the regulatory mechanisms of IGF2BP2 and IGF2BP3 on DDX21, and reveal the underlying roles of DDX21 in AML.

  • LETTER TO THE JOURNAL
    Emmanuel M. Gabriel , Kulkaew Sukniam , Kyle Popp , Gabrielle Kowkabany , Harsheen K. Manaise , Kristopher Attwood , Anthony George , Qihui Zhai , Sanjay P. Bagaria , Keith L. Knutson , Joseph J. Skitzki , Matthew W. Robertson , Tri A. Dinh
    2024, 14(4): e1633. https://doi.org/10.1002/ctm2.1633
  • LETTER TO THE JOURNAL
    Pan Gao , Sijia Li , Zhanying Dong , Yonglun Luo , Xiuqing Zhang , Linbo Han , Songlin Peng , Jianliang Shen , Fengping Xu , Zaian Deng
    2024, 14(4): e1637. https://doi.org/10.1002/ctm2.1637
  • LETTER TO THE JOURNAL
    Shijie Wang , Zhiwei Zhou , Song Wang , Rongyun Guo , Zeming Ma , Dachuan Zhao , Liang Wang , Yinan Liu , Yuanyuan Ma , Jianzhi Zhang , Sha Wang , Yedan Chen , Qiuxiang Ou , Jinfeng Chen
    2024, 14(4): e1638. https://doi.org/10.1002/ctm2.1638
  • COMMENTARY
    Nan Liu , Liang Si , Wen-Li Yang
    2024, 14(4): e1641. https://doi.org/10.1002/ctm2.1641
  • EDITORIAL
    Wuhyun Koh , C. Justin Lee
    2024, 14(4): e1642. https://doi.org/10.1002/ctm2.1642
  • LETTER TO THE JOURNAL
    Federica Di Maggio , Gianluca Damaggio , Marcella Nunziato , Silvia Buonaiuto , Felice Crocetto , Alessandra Calabrese , Achille Aveta , Gioacchino Vino , Giacinto Donvito , Savio Domenico Pandolfo , Ciro Imbimbo , Vincenza Colonna , Francesco Salvatore
    2024, 14(4): e1643. https://doi.org/10.1002/ctm2.1643
  • REVIEW
    Huanxiang Chen , Hongyang Liu , Chenxing Zhang , Nan Xiao , Yang Li , Xiangzhuan Zhao , Ruike Zhang , Huihui Gu , Qiaozhen Kang , Junhu Wan
    2024, 14(4): e1644. https://doi.org/10.1002/ctm2.1644

    • In this paper, several important types of RNA modifications and their related regulatory factors are systematically summarised.

    • Several regulatory factors related to RNA modification types were associated with cancer progression, and their relationships with cancer cell migration, invasion, drug resistance and immune environment were summarised.

    • In this paper, the inhibitors targeting different regulators that have been proposed in recent studies are summarised in detail, which is of great significance for the development of RNA modification regulators and cancer treatment in the future.

  • REVIEW
    Jilong Cao , Gang Lv , Fang Wei
    2024, 14(4): e1645. https://doi.org/10.1002/ctm2.1645

    Surface modification of exosomes can improve the targeting specificity.

    The engineered exosome-loaded immunomodulatory cargo regulates the tumour immune microenvironment.

    Engineered exosomes are involved in the immune regulation of breast cancer.

  • REVIEW
    Jing Zhang , Moran Suo , Jinzuo Wang , Xin Liu , Huagui Huang , Kaizhong Wang , Xiangyan Liu , Tianze Sun , Zhonghai Li , Jing Liu
    2024, 14(4): e1646. https://doi.org/10.1002/ctm2.1646

    Background: Stem cell-based therapy (SCT) is an important component of regenerative therapy that brings hope to many patients. After decades of development, SCT has made significant progress in the research of various diseases, and the market size has also expanded significantly. The transition of SCT from small-scale, customized experiments to routine clinical practice requires the assistance of standards. Many countries and international organizations around the world have developed corresponding SCT standards, which have effectively promoted the further development of the SCT industry.

    Methods: We conducted a comprehensive literature review to introduce the clinical application progress of SCT and focus on the development status of SCT standardization.

    Results: We first briefly introduced the types and characteristics of stem cells, and summarized the current clinical application and market development of SCT. Subsequently, we focused on the development status of SCT-related standards as of now from three levels: the International Organization for Standardization (ISO), important international organizations, and national organizations. Finally, we provided perspectives and conclusions on the significance and challenges of SCT standardization.

    Conclusions: Standardization plays an important role in the sustained, rapid and healthy development of SCT.

  • RESEARCH ARTICLE
    Peicong Ge , Chuming Tao , Wenjing Wang , Qiheng He , Chenglong Liu , Zhiyao Zheng , Siqi Mou , Bojian Zhang , Xingju Liu , Qian Zhang , Rong Wang , Hao Li , Dong Zhang , Jizong Zhao
    2024, 14(4): e1647. https://doi.org/10.1002/ctm2.1647

    Background: Moyamoya disease (MMD) stands as a prominent cause of stroke among children and adolescents in East Asian populations. Although a growing body of evidence suggests that dysregulated inflammation and autoimmune responses might contribute to the development of MMD, a comprehensive and detailed understanding of the alterations in circulating immune cells associated with MMD remains elusive.

    Methods: In this study, we employed a combination of single-cell RNA sequencing (scRNA-seq), mass cytometry and RNA-sequencing techniques to compare immune cell profiles in peripheral blood samples obtained from patients with MMD and age-matched healthy controls.

    Results: Our investigation unveiled immune dysfunction in MMD patients, primarily characterized by perturbations in T-cell (TC) subpopulations, including a reduction in effector TCs and an increase in regulatory TCs (Tregs). Additionally, we observed diminished natural killer cells and dendritic cells alongside heightened B cells and monocytes in MMD patients. Notably, within the MMD group, there was an augmented proportion of fragile Tregs, whereas the stable Treg fraction decreased. MMD was also linked to heightened immune activation, as evidenced by elevated expression levels of HLA-DR and p-STAT3.

    Conclusions: Our findings offer a comprehensive view of the circulating immune cell landscape in MMD patients. Immune dysregulation in patients with MMD was characterized by alterations in T-cell populations, including a decrease in effector T-cells and an increase in regulatory T-cells (Tregs), suggest a potential role for disrupted circulating immunity in the aetiology of MMD.

  • RESEARCH ARTICLE
    Anamarija Jurisic , Pei-Ju Sung , Mark Wappett , Julien Daubriac , Ian T. Lobb , Wei-Wei Kung , Nyree Crawford , Natalie Page , Eamon Cassidy , Stephanie Feutren-Burton , J. S. Shane Rountree , Matthew D. Helm , Colin R. O'Dowd , Richard D. Kennedy , Gerald Gavory , Aaron N. Cranston , Daniel B. Longley , Xavier Jacq , Timothy Harrison
    2024, 14(4): e1648. https://doi.org/10.1002/ctm2.1648

    Background: Understanding how to modulate the microenvironment of tumors that are resistant to immune checkpoint inhibitors represents a major challenge in oncology.Here we investigate the ability of USP7 inhibitors to reprogram the tumor microenvironment (TME) by inhibiting secretion of vascular endothelial growth factor (VEGF) from fibroblasts.

    Methods: To understand the role played by USP7 in the TME, we systematically evaluated the effects of potent, selective USP7 inhibitors on co-cultures comprising components of the TME, using human primary cells. We also evaluated the effects of USP7 inhibition on tumor growth inhibition in syngeneic models when dosed in combination with immune checkpoint inhibitors (ICIs).

    Results: Abrogation of VEGF secretion from fibroblasts in response to USP7 inhibition resulted in inhibition of tumor neoangiogenesis and increased tumor recruitment of CD8-positive T-lymphocytes, leading to significantly improved sensitivity to immune checkpoint inhibitors. In syngeneic models, treatment with USP7 inhibitors led to striking tumor responses resulting in significantly improved survival.

    Conclusions: USP7-mediated reprograming of the TME is not linked to its previously characterized role in modulating MDM2 but does require p53 and UHRF1 in addition to the well-characterized VEGF transcription factor, HIF-1α. This represents a function of USP7 that is unique to fibroblasts, and which is not observed in cancer cells or other components of the TME. Given the potential for USP7 inhibitors to transform “immune desert” tumors into “immune responsive” tumors, this paves the way for a novel therapeutic strategy combining USP7 inhibitors with immune checkpoint inhibitors (ICIs).

  • RESEARCH ARTICLE
    Xiaoshen Zhang , Xuanhe Wang , Yaokai Wen , Shen Chen , Caicun Zhou , Fengying Wu
    2024, 14(4): e1649. https://doi.org/10.1002/ctm2.1649

    Background: Recurrent malignant pleural effusion (MPE) resulting from non-small-cell lung cancer (NSCLC) is easily refractory to conventional therapeutics and lacks predictive markers. The cellular or genetic signatures of recurrent MPE still remain largely uncertain.

    Methods: 16 NSCLC patients with pleural effusions were recruited, followed by corresponding treatments based on primary tumours. Non-recurrent or recurrent MPE was determined after 3-6 weeks of treatments. The status of MPE was verified by computer tomography (CT) and cytopathology, and the baseline pleural fluids were collected for single-cell RNA sequencing (scRNA-seq). Samples were then integrated and profiled. Cellular communications and trajectories were inferred by bioinformatic algorithms. Comparative analysis was conducted and the results were further validated by quantitative polymerase chain reaction (qPCR) in a larger MPE cohort from the authors' centre (n = 64).

    Results: The scRNA-seq revealed that 33 590 cells were annotated as 7 major cell types and further characterized into 14 cell clusters precisely. The cell cluster C1, classified as Epithelial Cell Adhesion Molecule (EpCAM)+ metastatic cancer cell and correlated with activation of tight junction and adherence junction, was significantly enriched in the recurrent MPE group, in which Claudin-4 (CLDN4) was identified. The subset cell cluster C3 of C1, which was enriched in recurrent MPE and demonstrated a phenotype of ameboidal-type cell migration, also showed a markedly higher expression of CLDN4. Meanwhile, the expression of CLDN4 was positively correlated with E74 Like ETS Transcription Factor 3 (ELF3), EpCAM and Tumour Associated Calcium Signal Transducer 2 (TACSTD2), independent of driver-gene status. CLDN4 was also found to be associated with the expression of Hypoxia Inducible Factor 1 Subunit Alpha (HIF1A) and Vascular Endothelial Growth Factor A (VEGFA), and the cell cluster C1 was the major mediator in cellular communication of VEGFA signalling. In the extensive MPE cohort, a notably increased expression of CLDN4 in cells from pleural effusion among patients diagnosed with recurrent MPE was observed, compared with the non-recurrent group, which was also associated with a trend towards worse overall survival (OS).

    Conclusions: CLDN4 could be considered as a predictive marker of recurrent MPE among patients with advanced NSCLC. Further validation for its clinical value in cohorts with larger sample size and in-depth mechanism studies on its biological function are warranted.

    Trial registration: Not applicable.

  • RESEARCH ARTICLE
    Jonathan Z. Pan , Zhanqiang Wang , Wei Sun , Peipei Pan , Wei Li , Yongtao Sun , Shoulin Chen , Amity Lin , Wulin Tan , Liangliang He , Jacob Greene , Virginia Yao , Lijun An , Rich Liang , Qifeng Li , Jessica Yu , Lingyi Zhang , Nikolaos Kyritsis , Xuan Duong Fernandez , Sara Moncivais , Esmeralda Mendoza , Pamela Fung , Gongming Wang , Xinhuan Niu , Qihang Du , Zhaoyang Xiao , Yuwen Chang , Peiyuan Lv , J. Russell Huie , Abel Torres-Espin , Adam R. Ferguson , Debra D. Hemmerle , Jason F. Talbott , Philip R. Weinstein , Lisa U. Pascual , Vineeta Singh , Anthony M. DiGiorgio , Rajiv Saigal , William D. Whetstone , Geoffrey T. Manley , Sanjay S. Dhall , Jacqueline C. Bresnahan , Mervyn Maze , Xiangning Jiang , Neel S. Singhal , Michael S. Beattie , Hua Su , Zhonghui Guan
    2024, 14(4): e1650. https://doi.org/10.1002/ctm2.1650

    ATF3 was induced specifically in neurons of the spinal cord or cortex within 1 day after SCI or ischemic stroke, respectively.

    Serum ATF3 protein levels are elevated in clinical patients within 24 hours after SCI or ischemic stroke.

    ATF3 exhibits neuroprotective properties, as evidenced by the worse neurological outcomes and larger damage regions observed in Atf3 knockout mice compared to wildtype mice following SCI or ischemic stroke.

  • LETTER TO THE JOURNAL
    Qing Ye , Hanyan Meng , Fang Ye , Haidong Fu , Jingjing Wang , Fei Liu , Huijun Shen , Yu Bao , Chunyue Feng , Xiaojing Zhang , Guoping Huang , Yi Xie , Xiujuan Zhu , Manli Zhao , Guoji Guo , Jianhua Mao
    2024, 14(4): e1651. https://doi.org/10.1002/ctm2.1651
  • RESEARCH ARTICLE
    Yuelin Xiao , Xianzhi Liu , Kaiduan Xie , Jiajie Luo , Yiwang Zhang , Xiaoli Huang , Jinni Luo , Siwei Tan
    2024, 14(4): e1653. https://doi.org/10.1002/ctm2.1653

    Introduction: Hypoxia is an important characteristic of gastric mucosal diseases, and hypoxia-inducible factor-1α (HIF-1α) contributes to microenvironment disturbance and metabolic spectrum abnormalities. However, the underlying mechanism of HIF-1α and its association with mitochondrial dysfunction in gastric mucosal lesions under hypoxia have not been fully clarified.

    Objectives: To evaluate the effects of hypoxia-induced HIF-1α on the development of gastric mucosal lesions.

    Methods: Portal hypertensive gastropathy (PHG) and gastric cancer (GC) were selected as representative diseases of benign and malignant gastric lesions, respectively. Gastric tissues from patients diagnosed with the above diseases were collected. Portal hypertension (PHT)-induced mouse models in METTL3 mutant or NLRP3-deficient littermates were established, and nude mouse gastric graft tumour models with relevant inhibitors were generated. The mechanisms underlying hypoxic condition, mitochondrial dysfunction and metabolic alterations in gastric mucosal lesions were further analysed.

    Results: HIF-1α, which can mediate mitochondrial dysfunction via upregulation of METTL3/IGF2BP3-dependent dynamin-related protein 1 (Drp1) N6-methyladenosine modification to increase mitochondrial reactive oxygen species (mtROS) production, was elevated under hypoxic conditions in human and mouse portal hypertensive gastric mucosa and GC tissues. While blocking HIF-1α with PX-478, inhibiting Drp1-dependent mitochondrial fission via mitochondrial division inhibitor 1 (Mdivi-1) treatment or METTL3 mutation alleviated this process. Furthermore, HIF-1α influenced energy metabolism by enhancing glycolysis via lactate dehydrogenase A. In addition, HIF-1α-induced Drp1-dependent mitochondrial fission also enhanced glycolysis. Drp1-dependent mitochondrial fission and enhanced glycolysis were associated with alterations in antioxidant enzyme activity and dysfunction of the mitochondrial electron transport chain, resulting in massive mtROS production, which was needed for activation of NLRP3 inflammasome to aggravate the development of the PHG and GC.

    Conclusions: Under hypoxic conditions, HIF-1α enhances mitochondrial dysfunction via Drp1-dependent mitochondrial fission and influences the metabolic profile by altering glycolysis to increase mtROS production, which can trigger NLRP3 inflammasome activation and mucosal microenvironment alterations to contribute to the development of benign and malignant gastric mucosal lesions.

  • LETTER TO THE JOURNAL
    Sunny Malhotra , Nicolas Fissolo , Carmen Rodríguez-Rivera , Enric Monreal , Marta Montpeyo , Elena Urcelay , Juan Carlos Triviño , María José Pérez-García , Miguel F. Segura , Agustín Pappolla , Jordi Río , Andreu Vilaseca , José Ignacio Fernández Velasco , Andrés Miguez , Carlos Goicoechea , Marta Martinez-Vicente , Luisa M Villar , Xavier Montalban , Manuel Comabella
    2024, 14(4): e1654. https://doi.org/10.1002/ctm2.1654
  • REVIEW
    Jie Mei , Xingjian Liu , Hui-Xiang Tian , Yixuan Chen , Yang Cao , Jun Zeng , Yung-Chiang Liu , Yaping Chen , Yang Gao , Ji-Ye Yin , Peng-Yuan Wang
    2024, 14(4): e1656. https://doi.org/10.1002/ctm2.1656

    • The current PDTO models have not yet constructed key cellular and noncellular components.

    • PDTOs should be expandable and editable.

    • PDTOs are promising preclinical models for immunotherapy unless mature PDTOs can be established.

    • PDTO biobanks with consensual standards are urgently

  • RESEARCH ARTICLE
    Imogen R. Walpole , Farzana Y Zaman , Peinan Zhao , Vikki M. Marshall , Frank P. Lin , David M. Thomas , Mark Shackleton , Albert A. Antolin , Malaka Ameratunga
    2024, 14(4): e1657. https://doi.org/10.1002/ctm2.1657

    Purpose: Systematic repurposing of approved medicines for another indication may accelerate drug development in oncology. We present a strategy combining biomarker testing with drug repurposing to identify new treatments for patients with advanced cancer.

    Methods: Tumours were sequenced with the Illumina TruSight Oncology 500 (TSO-500) platform or the FoundationOne CDx panel. Mutations were screened by two medical oncologists and pathogenic mutations were categorised referencing literature. Variants of unknown significance were classified as potentially pathogenic using plausible mechanisms and computational prediction of pathogenicity. Gain of function (GOF) mutations were evaluated through repurposing databases Probe Miner (PM), Broad Institute Drug Repurposing Hub (Broad Institute DRH) and TOPOGRAPH. GOF mutations were repurposing events if identified in PM, not indexed in TOPOGRAPH and excluding mutations with a known Food and Drug Administration (FDA)-approved biomarker. The computational repurposing approach was validated by evaluating its ability to identify FDA-approved biomarkers. The total repurposable genome was identified by evaluating all possible gene-FDA drug-approved combinations in the PM dataset.

    Results: The computational repurposing approach was accurate at identifying FDA therapies with known biomarkers (94%). Using next-generation sequencing molecular reports (n = 94), a meaningful percentage of patients (14%) could have an off-label therapeutic identified. The frequency of theoretical drug repurposing events in The Cancer Genome Atlas pan-cancer dataset was 73% of the samples in the cohort.

    Conclusion: A computational drug repurposing approach may assist in identifying novel repurposing events in cancer patients with no access to standard therapies. Further validation is needed to confirm a precision oncology approach using drug repurposing.

  • RESEARCH ARTICLE
    Hanwen Li , Yingchuang Tang , Xingbang Ruan , Junxin Zhang , Hao Liu , Shiyu Yu , Hao Chen , Huilin Yang , Kai Zhang , Kangwu Chen
    2024, 14(4): e1658. https://doi.org/10.1002/ctm2.1658

    Background: Chordoma, a rare bone tumour with aggressive local invasion and high recurrence rate with limited understanding of its molecular mechanisms. Circular RNAs (circRNAs) have been extensively implicated in tumorigenesis, yet their involvement in chordoma remains largely unexplored. N6-methyladenosine (m6A) modification holds a crucial function in regulating protein translation, RNA degradation and transcription.

    Methods: Initially, screening and validation of circTEAD1 in chordoma were conducted by high-throughput sequencing. Subsequently, sh-circTEAD1 and an overexpression plasmid were constructed. Colony formation assays, cell counting kit-8, Transwell and wound healing assays were utilized to validate the function of circTEAD1 in vitro. RNA pull-down assays identified the binding proteins of circTEAD1, which underwent verification through RNA immunoprecipitation (RIP). Methylated RIP assays were conducted to detect the m6A binding sites. Following this, luciferase assay, RT-qPCR, RIP and Western blotting analyses were conducted, revealing that Yap1 was the direct target of circTEAD1. Afterwards, the same methods were utilized for the validation of the function of Yap1 in chordoma in vitro. Finally, the regulatory relationship between circTEAD1 and Yap1 in chordoma was verified by an in vivo tumour formation assay.

    Results: CircTEAD1 was identified as an upregulated circRNA in chordoma specimens, with heightened circTEAD1 expression emerging as a prognostic indicator. In vitro experiments convincingly demonstrated that circTEAD1 significantly promoted chordoma cell invasion, migration and aggressiveness. Furthermore, the analysis revealed that methyltransferase-like 3-mediated m6A modification facilitated the cytoplasmic export of circTEAD1. The circTEAD1/IGF2BP3/Yap1 mRNA RNA-protein ternary complex not only bolstered the stability of Yap1 mRNA but also exerted a pivotal role in driving chordoma tumorigenesis.

    Conclusions: In this study, the role of m6A-modified circTEAD1 in chordoma was identified. The findings offer novel insights into the potential molecular targets for chordoma therapy, shedding light on the intricate interplay between circRNAs, m6A modification and Yap1 mRNA in chordoma pathogenesis.

  • LETTER TO THE JOURNAL
    Xu Guan , Xiaoman Bi , Ran Wei , Zhixun Zhao , Zhao Lu , Zheng Jiang , Xishan Wang , Deng Wu
    2024, 14(4): e1659. https://doi.org/10.1002/ctm2.1659
  • RESEARCH ARTICLE
    Zhanyang Qian , Mingjie Xia , Tianyu Zhao , You Li , Guangshen Li , Yanan Zhang , Haijun Li , Lei Yang
    2024, 14(4): e1661. https://doi.org/10.1002/ctm2.1661

    • ACOD1 attenuated neuroinflammation and oxidative stress after spinal cord injury.

    • ACOD1, not itaconate, interacted with p-p62 to facilitate Nrf2 expression and nuclear translocation.

    • Nrf2 was capable of promoting ACOD1 transcription in microglia.

  • LETTER TO THE JOURNAL
    Steffan T. Nawrocki , Claudia M. Espitia , Maria Janina Carrera Espinoza , Trace M. Jones , Madison E. Gamble , Sruthi Sureshkumar , Mengyang Chang , Wei Wang , Jennifer S. Carew
    2024, 14(4): e1662. https://doi.org/10.1002/ctm2.1662
  • RESEARCH ARTICLE
    Zhao Li , Shenghui Yu , Lin Li , Chao Zhou , Lin Wang , Shuang Tang , Nina Gu , Zhaosi Zhang , Zhijian Huang , Hong Chen , Wei Tang , Yingwen Wang , Xiaomin Yang , Xiaochuan Sun , Jin Yan
    2024, 14(4): e1665. https://doi.org/10.1002/ctm2.1665

    Background: White matter injury (WMI) is an important pathological process after traumatic brain injury (TBI). The correlation between white matter functions and the myeloid cells expressing triggering receptor-2 (TREM2) has been convincingly demonstrated. Moreover, a recent study revealed that microglial sterol metabolism is crucial for early remyelination after demyelinating diseases. However, the potential roles of TREM2 expression and microglial sterol metabolism in WMI after TBI have not yet been explored.

    Methods: Controlled cortical injury was induced in both wild-type (WT) and TREM2 depletion (TREM2 KO) mice to simulate clinical TBI. COG1410 was used to upregulate TREM2, while PLX5622 and GSK2033 were used to deplete microglia and inhibit the liver X receptor (LXR), respectively. Immunofluorescence, Luxol fast blue staining, magnetic resonance imaging, transmission electron microscopy, and oil red O staining were employed to assess WMI after TBI. Neurological behaviour tests and electrophysiological recordings were utilized to evaluate cognitive functions following TBI. Microglial cell sorting and transcriptomic sequencing were utilized to identify alterations in microglial sterol metabolism-related genes, while western blot was conducted to validate the findings.

    Results: TREM2 expressed highest at 3 days post-TBI and was predominantly localized to microglial cells within the white matter. Depletion of TREM2 worsened aberrant neurological behaviours, and this phenomenon was mediated by the exacerbation of WMI, reduced renewal of oligodendrocytes, and impaired phagocytosis ability of microglia after TBI. Subsequently, the upregulation of TREM2 alleviated WMI, promoted oligodendrocyte regeneration, and ultimately facilitated the recovery of neurological behaviours after TBI. Finally, the expression of DHCR24 increased in TREM2 KO mice after TBI. Interestingly, TREM2 inhibited DHCR24 and upregulated members of the LXR pathway. Moreover, LXR inhibition could partially reverse the effects of TREM2 upregulation on electrophysiological activities.

    Conclusions: We demonstrate that TREM2 has the potential to alleviate WMI following TBI, possibly through the DHCR24/LXR pathway in microglia.

  • LETTER TO THE JOURNAL
    Junfeng Chen , Yunfeng Song , Jian Huang , Xiaoping Wan , Yiran Li
    2024, 14(4): e1668. https://doi.org/10.1002/ctm2.1668
  • LETTER TO THE JOURNAL
    Dekang Ren , Jiaming Jin , Shizheng Xiong , Daoliang Xia , Xinmiao Zhao , Haochuan Guo , Xueni Yang , Jiafeng Yu , Tingming Liang , Li Guo
    2024, 14(4): e1669. https://doi.org/10.1002/ctm2.1669
  • LETTER TO THE JOURNAL
    Sadia Afrin , Gregory W. Kirschen , Mariko Miyashita-Ishiwata , Malak El Sabeh , Mostafa A. Borahay
    2024, 14(4): e1672. https://doi.org/10.1002/ctm2.1672