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| 1 | Magnetic resonance imaging with three-dimensional fast imaging employing steady-state acquisition with phase-cycled and short T1 inversion recovery pulse sequence for evaluating brachial plexus injury显示文摘There is a large amount of fat in the postganglionic segment of the brachial plexus nerve.The use of short T1 inversion recovery pulse sequence may improve signal strength of the brachial plexus postganglionic segment.The present study revealed that the combination of three-dimensional fast imaging employing steady-state acquisition with phase-cycled and short T1 inversion recovery pulse sequence clearly displayed the anatomical morphology and structure of the brachial plexus nerve,together with maximum intensity projection,volume rendering and other three-dimensional reconstruction techniques.Our results suggested that this method is also suitable for providing accurate assessment and diagnosis of the site,severity and scope of brachial plexus injury. | Dianxiu Ning Meiyu Sun Bo Sun Li Zhao Weisheng Zhang Lijun Wang Shaowu Wang Ailian Liu Jianlin Wu Zhijin Lang Di Ning Guanfu Liu Xiaochen Ji Xiufeng Wang | 2011 | Neural Regeneration Research2011,6,14: | 7 |
| 2 | Efficacy of Lidan Tang on high-fat-diet induced gallstone in mice and possible mechanism显示文摘OBJECTIVE:To investigate efficacy of Lidan Tang(LDT)on gallstone induced by high fat diet in mice,and to study its underlying mechanism.METHODS:Mice were fed with high fat diet every day and treated with LDT(9.01 times of human clinic dosage).Mice were randomly divided into 6 groups as control group,gallstone model group(high-fat diet),positive control ursodeoxycholic acid(UDCA)group(80 mg·kg^-1·d^-1,i.g.),LDT low dose group(6 kg/d,i.g.),LDT middle dose group(12 kg/d,i.g.),and LDT high dose group(24 kg/d,i.g.).The whole experiment was lasted for 4 weeks.The levels of ALT,AST,LDH,CHO,HDL-C and LDL-C in serum were measured,the pathological sections were observed by hematoxylin-eosin staining,the activities of antioxidant enzymes were measured by kits,and the proteins related to oxidative stress and lipid transport were detected by Western blot analysis.RESULTS:LDT could significantly reduce the contents of ALT and AST in serum and improve the pathological tissue of liver.LDT could significantly reduce the content of MDA and LPO,and increase the level of GSH and GSH-PX in liver tissue.The data of Western blot showed that LDT had antioxidant effect promoting Keap1/Nrf2 pathway and regulated the process of lipid transport,which was statistically significant.In addition,LDT treatment inhibited the expression of ATP-binding cassette transports ABCG5/8 in liver,and reduced cholesterol transport from the hepatocytes to the gallbladder.CONCLUSION:LDT has protective effect on gallstones induced by high fat diet in mice,which might be based on the protective effect on liver,including enhancing the antioxidant capacity of liver and reducing the production of lipid peroxides. | Gao Yan Liu Caipin Li Juntong Zhai Yingying Lin Meiyu Wu Qinglin Chu Shifeng Zhang Zhao Li Jianping Zhou Xin Li Yueting Chen Naihong | 2020 | Journal of Traditional Chinese Medicine2020,40,4: | 4 |
| 3 | Antibody Cocktail Exhibits Broad Neutralization Activity Against SARS-CoV-2 and SARS-CoV-2 Variants显示文摘Severe acute respiratory syndrome coronavirus 2(SARS-Co V-2)has precipitated multiple variants resistant to therapeutic antibodies.In this study,12 high-affinity antibodies were generated from convalescent donors in early outbreaks using immune antibody phage display libraries.Of them,two RBD-binding antibodies(F61 and H121)showed high-affinity neutralization against SARS-Co V-2,whereas three S2-target antibodies failed to neutralize SARS-Co V-2.Following structure analysis,F61 identified a linear epitope located in residues G446–S494,which overlapped with angiotensinconverting enzyme 2(ACE2)binding sites,while H121 recognized a conformational epitope located on the side face of RBD,outside from ACE2 binding domain.Hence the cocktail of the two antibodies achieved better performance of neutralization to SARS-Co V-2.Importantly,these two antibodies also showed efficient neutralizing activities to the variants including B.1.1.7 and B.1.351,and reacted with mutations of N501 Y,E484 K,and L452 R,indicated that it may also neutralize the recent India endemic strain B.1.617.The unchanged binding activity of F61 and H121 to RBD with multiple mutations revealed a broad neutralizing activity against variants,which mitigated the risk of viral escape.Our findings revealed the therapeutic basis of cocktail antibodies against constantly emerging SARS-Co V-2 variants and provided promising candidate antibodies to clinical treatment of COVID-19 patients infected with broad SARS-Co V-2 variants. | Yuanyuan Qu Xueyan Zhang Meiyu Wang Lina Sun Yongzhong Jiang Cheng Li Wei Wu Zhen Chen Qiangling Yin Xiaolin Jiang Yang Liu Chuan Li Jiandong Li Tianlei Ying Dexin Li Faxian Zhan Youchun Wang Wuxiang Guan Shiwen Wang Mifang Liang | 2021 | Virologica Sinica2021,36,5: | 3 |
| 4 | HSP70 alleviates sepsis-induced cardiomyopathy by attenuating mitochondrial dysfunction-initiated NLRP3 inflammasome-mediated pyroptosis in cardiomyocytes显示文摘Background:Sepsis-induced cardiomyopathy(SIC)is an identified serious complication of sepsis that is associated with adverse outcomes and high mortality.Heat shock proteins(HSPs)have been implicated in suppressing septic inflammation.The aim of this study was to investigate whether HSP70 can attenuate cellular mitochondrial dysfunction,exuberated inflammation and inflammasome-mediated pyroptosis for SIC intervention.Methods:Mice with cecal ligation plus perforation(CLP)and lipopolysaccharide(LPS)-treated H9C2 cardiomyocytes were used as models of SIC.The mouse survival rate,gross profile,cardiac function,pathological changes and mitochondrial function were observed by photography,echocardiography,hematoxylin-eosin staining and transmission electron microscopy.In addition,cell proliferation and the levels of cardiac troponin I(cTnI),interleukin-1β(IL-1β)and tumor necrosis factor-α(TNF-α)were determined by Cell Counting Kit-8,crystal violet staining and enzyme-linked immunosorbent assay.Moreover,mitochondrial membrane potential was assessed by immunofluorescence staining,and dynamin-related protein 1 and pyroptosis-related molecules[nucleotide-binding domain,leucine-rich-repeat containing family pyrin domain-containing 3(NLRP3),caspase-1,gasdermin-D(GSDMD),gasdermin-D N-terminal(GSDMD-N)]were measured by western blotting,immunoprecipitation and immunoblotting.Finally,hsp70.1 knockout mice with CLP were used to verify the effects of HSP70 on SIC and the underlying mechanism.Results:Models of SIC were successfully established,as reduced consciousness and activity with liparotrichia in CLP mice were observed,and the survival rate and cardiac ejection fraction(EF)were decreased;conversely,the levels of cTnI,TNF-αand IL-1βand myocardial tissue damage were increased in CLP mice.In addition,LPS stimulation resulted in a reduction in cell viability,mitochondrial destabilization and activation of NLRP3-mediated pyroptosis molecules in vitro.HSP70 treatment improved myocardial tissue damage,survival rate and cardiac dysfunction caused by CLP.Additionally,HSP70 intervention reversed LPS-induced mitochondrial destabiliza-tion,inhibited activation of the NLRP3 inflammasome,caspase-1,GSDMD and GSDMD-N,and decreased pyroptosis.Finally,knockout of hsp70.1 mice with CLP aggravated cardiac dysfunction and upregulated NLRP3 inflammasome activity,and exogenous HSP70 significantly rescued these changes.It was further confirmed that HSP70 plays a protective role in SIC by attenuating mitochondrial dysfunction and inactivating pyroptotic molecules.Conclusions:Our study demonstrated that mitochondrial destabilization and NLRP3 inflammasome activation-mediated pyroptosis are attributed to SIC.Interestingly,HSP70 ameliorates sepsis-induced myocardial dysfunction by improving mitochondrial dysfunction and inhibiting the acti-vation of NLRP3 inflammasome-mediated pyroptosis,and such a result may provide approaches for novel therapies for SIC. | Chenlu Song Yiqiu Zhang Qing Pei Li Zheng Meiyu Wang Youzhen Shi Shan Wu Wei Ni Xiujun Fu Yinbo Peng Wen Zhang Min Yao | 2022 | Burns & Trauma2022,10,1: | 2 |
| 5 | Aligned electrospun cellulose fibers reinforced epoxy resin com- posite films with high visible light transmittance 显示文摘 | LIAO Huaqiang WU Yiqiong WU Meiyu | 2012 | Cellulose2012,19,1: | 1 |
| 6 | Effects of fiber surface chemistry and size on the structure and properties of poly ( vinyl alcohol ) composite films rein- forced with eleetrospun fibers 显示文摘 | TANG Chunyi WU Meiyu WU Yiqiong | 2011 | Composites Part A: Applied Science and Manufacturing2011,42,9: | 1 |
| 7 | Role-based Authori zations for Workflow Systems in Support of Task-based Sepa- ration of Duty显示文摘 | Duenten Liu Meiyu Wu Shuteng Lee | 2004 | The Journal of Systems and Software2004,,73: | 1 |
| 8 | Headspace Solid-Phase Micro-Extraction Gas Chromatography/Mass Spectrometry(HS-SPME-GC/MS)-Based Untargeted Metabolomics Analysis for Comparing the Volatile Components from 12 Panax Herbal Medicines显示文摘Quality control of ginseng currently is mainly based on ginsenoside analysis,but rarely focuses on the volatile organic components.In the current work,an untargeted metabolomics approach,by headspace solid-phase micro-extraction gas chromatography/mass spectrometry(HS-SPME-GC/MS),was elaborated and further employed to holistically compare the compositional difference of the volatile components simultaneously from 12 Panax herbal medicines,which included P.ginseng(PG),P.quinquefolius(PQ),P.notoginseng(PN),red ginseng(PGR),P.ginseng leaf(PGL),P.quinquefolius leaf(PQL),P.notoginseng leaf(PNL),P.ginseng flower(PGF),P.quinquefolius flower(PQF),P.notoginseng flower(PNF),P.japonicus(PJ),and P.japonicus var.major(PJvm).Chromatographic separation was performed on an HP-5MS elastic quartz capillary column using helium as the carrier gas,enabling good resolution within 1 h.We were able to characterize totally 259 volatile compounds,including 82 terpenes(T),46 alcohols(Alc),29 ketones(K),25 aldehydes(Ald),21 esters(E),and the others.By analyzing 90 batches of ginseng samples based on the untargeted metabolomics workflows,236 differential ions were unveiled,and accordingly 36 differential volatile components were discovered.It is the first report that simultaneously compares the compositional difference of volatile components among 12 Panax herbal medicines,and useful information is provided for the quality control of ginseng aside from the well-known ginsenosides. | Simiao Wang Xiaohang Li Meiting Jiang Xinlong Wu Yuying Zhao Meiyu Liu Xiaoyan Xu Huimin Wang Hongda Wang Heshui Yu Wenzhi Yang | 2022 | Phyton-International Journal of Experimental Botany2022,91,7: | 1 |
| 9 | Utility of Triti-Map for bulk-segregated mapping of causal genes and regulatory elements in Triticeae显示文摘Triticeae species,including wheat,barley,and rye,are critical for global food security.Mapping agronomically important genes is crucial for elucidating molecular mechanisms and improving crops.However,Triticeae includes many wild relatives with desirable agronomic traits,and frequent introgressions occurred during Triticeae evolution and domestication.Thus,Triticeae genomes are generally large and complex,making the localization of genes or functional elements that control agronomic traits challenging.Here,we developed Triti-Map,which contains a suite of user-friendly computational packages specifically designed and optimized to overcome the obstacles of gene mapping in Triticeae,as well as a web interface integrating multi-omics data from Triticeae for the efficient mining of genes or functional elements that control particular traits.The Triti-Map pipeline accepts bothDNA and RNAbulk-segregated sequencing data as well as traditional QTL data as inputs for locating genes and elucidating their functions.We illustrate the usage of Triti-Map with a combination of bulk-segregated ChIP-seq data to detect a wheat disease-resistance gene with its promoter sequence that is absent from the reference genome and clarify its evolutionary process.We hope that Triti-Map will facilitate gene isolation and accelerate Triticeae breeding. | Fei Zhao Shilong Tian Qiuhong Wu Zijuan Li Luhuan Ye Yili Zhuang Meiyue Wang Yilin Xie Shenghao Zou Wan Teng Yiping Tong Dingzhong Tang Ajay Kumar Mahato Moussa Benhamed Zhiyong Liu Yijing Zhang | 2022 | Plant Communications2022,3,4: | 1 |
| 10 | The structure of compact yarn显示文摘 | WU Hui CHEN Meiyu WANG Wei | 2009 | Textile Research Journal2009,79,9: | 1 |
| 11 | Role-based authorizations for workflow systems in support of task-based separation of duty显示文摘 | LIU Duenren WU Meiyu LEE Shuteng | 2004 | The Journal of Systems and Software2004,73,3: | 1 |
| 12 | Evaluation of three different methods to establish animal models of Acanthamoeba keratitis 显示文摘 | Ren Meiyu Wu Xinyi | 2010 | Yonsei Med J2010,51,1: | 1 |
| 13 | Eupalinolide B inhibits hepatic carcinoma by inducing ferroptosis and ROS-ER-JNK pathway显示文摘Primary hepatic carcinoma is a common malignant tumor.The classic molecular targeted drug sorafenib is costly and is only effective for some patients.Therefore,it is of great clinical significance to search for new molecular targeted drugs.Eupalinolide B(EB)from Eupatorium lindleyanum DC.is used to treat chronic tracheitis in clinical practice.However,the role of EB in hepatic carcinoma is unknown.In this study,we first measure the effect of EB on tumor growth in a xenograft model and PDX model.The cell proliferation and migration are also detected in human hepatocarcinoma cell lines(SMMC-7721 and HCCLM3).Then,we investigate cell cycle,cell apoptosis,cell necrosis,cell autophagy,and ferroptosis by flow cytometry,western blot analysis and electron microscopy.The results demonstrate that EB exerts anti-proliferative activity in hepatic carcinoma by blocking cell cycle arrest at S phase and inducing ferroptosis mediated by endoplasmic reticulum(ER)stress,as well as HO-1 activation.When HO-1 is inhibited,EB-induced cell death and ER protein expression are rescued.The migration-related mechanism consists of activation of the ROS-ER-JNK signaling pathway and is not connected to ferroptosis.In summary,we first discover that EB inhibits cell proliferation and migration in hepatic carcinoma,and thus EB is a promising anti-tumor compound that can be used for hepatic carcinoma. | Yonghui Zhang Haoyang Zhang Jinage Mu Meiyue Han Zhihao Cao Feng Dong Tingting Wang Lian Pan Wujing Luo Jiaxin Li Huan Liu Lishan Jin Wenxuan Ding Yong Wei Xuesong Deng Dan Liu Xiuzhen He Yi Pang Xiao Mu Zhongjun Wu Dilong Chen | 2022 | Acta Biochimica et Biophysica Sinica2022,54,7: | 1 |
| 14 | Biomimetic synthesis and characterization of carbon nanofiber/ hydroxyapatite composite scaffolds 显示文摘 | Meiyu Wu Qiaoying Wang Xinqing Liu | 2013 | Carbon2013,,51: | 1 |
| 15 | Light-modulated vertical heterojunction phototransistors with distinct logical photocurrents显示文摘The intriguing carrier dynamics in graphene heterojunctions have stimulated great interest in modulating the optoelectronic features to realize high-performance photodetectors.However,for most phototransistors,the photoresponse characteristics are modulated with an electrical gate or a static field.In this paper,we demonstrate a graphene/C_(60)/pentacene vertical phototransistor to tune both the photoresponse time and photocurrent based on light modulation.By exploiting the power-dependent multiple states of the photocurrent,remarkable logical photocurrent switching under infrared light modulation occurs in a thick C_(60) layer(11 nm)device,which implies competition of the photogenerated carriers between graphene/C_(60) and C_(60)/pentacene.Meanwhile,we observe a complete positive-negative alternating process under continuous 405 nm irradiation.Furthermore,infrared light modulation of a thin C_(60)(5 nm)device results in a photoresponsivity improvement from 3425 A/W up to 7673 A/W,and we clearly probe the primary reason for the distinct modulation results between the 5 and 11 nm C_(60) devices.In addition,the tuneable bandwidth of the infrared response from 10 to 3×10^(3) Hz under visible light modulation is explored.Such distinct types of optical modulation phenomena and logical photocurrent inversion characteristics pave the way for future tuneable logical photocurrent switching devices and high-performance phototransistors with vertical graphene heterojunction structures. | Jiayue Han Meiyu He Ming Yang Qi Han Fang Wang Fang Zhong Mengjian Xu Qing Li He Zhu Chongxin Shan Weida Hu Xiaoqing Chen Xinran Wang Jun Gou Zhiming Wu Jun Wang | 2020 | Light(Science & Applications)2020,9,1: | 1 |
| 16 | RhoA/Rock activation represents a new mechanism for inactivating Wnt/β-catenin signaling in the aging-associated bone loss显示文摘The Wnt/β-catenin signaling pathway appears to be particularly important for bone homeostasis,whereas nuclear accumulation ofβ-catenin requires the activation of Rac1,a member of the Rho small GTPase family.The aim of the present study was to investigate the role of RhoA/Rho kinase(Rock)-mediated Wnt/β-catenin signaling in the regulation of aging-associated bone loss.We find that Lrp5/6-dependent and Lrp5/6-independent RhoA/Rock activation by Wnt3a activates Jak1/2 to directly phosphorylate Gsk3βat Tyr216,resulting in Gsk3βactivation and subsequentβ-catenin destabilization.In line with these molecular events,RhoA loss-or gain-of-function in mouse embryonic limb bud ectoderms interacts genetically with Dkk1 gain-of-function to rescue the severe limb truncation phenotypes or to phenocopy the deletion ofβ-catenin,respectively.Likewise,RhoA loss-of-function in pre-osteoblasts robustly increases bone formation while gain-of-function decreases it.Importantly,high RhoA/Rock activity closely correlates with Jak and Gsk3βactivities but inversely correlates withβ-catenin signaling activity in bone marrow mesenchymal stromal cells from elderly male humans and mice,whereas systemic inhibition of Rock therefore activates theβ-catenin signaling to antagonize aging-associated bone loss.Taken together,these results identify RhoA/Rock-dependent Gsk3βactivation and subsequentβ-catenin destabilization as a hitherto uncharacterized mechanism controlling limb outgrowth and bone homeostasis. | Wei Shi Chengyun Xu Ying Gong Jirong Wang Qianlei Ren Ziyi Yan Liu Mei Chao Tang Xing Ji Xinhua Hu Meiyu Qv Musaddique Hussain Ling-Hui Zeng Ximei Wu | 2021 | Cell Regeneration2021,10,1: | 0 |
| 17 | SYK-mediated epithelial cell state is associated with response to c-Met inhibitors in c-Met-overexpressing lung cancer显示文摘Genomic MET amplification and exon 14 skipping are currently clinically recognized biomarkers for stratifying subsets of non-small cell lung cancer(NSCLC)patients according to the predicted response to c-Met inhibitors(c-Metis),yet the overall clinical benefit of this strategy is quite limited.Notably,c-Met protein overexpression,which occurs in approximately 20–25%of NSCLC patients,has not yet been clearly defined as a clinically useful biomarker.An optimized strategy for accurately classifying patients with c-Met overexpression for decision-making regarding c-Meti treatment is lacking.Herein,we found that SYK regulates the plasticity of cells in an epithelial state and is associated with their sensitivity to c-Metis both in vitro and in vivo in PDX models with c-Met overexpression regardless of MET gene status.Furthermore,TGF-β1 treatment resulted in SYK transcriptional downregulation,increased Sp1-mediated transcription of FRA1,and restored the mesenchymal state,which conferred resistance to c-Metis.Clinically,a subpopulation of NSCLC patients with c-Met overexpression coupled with SYK overexpression exhibited a high response rate of 73.3%and longer progression-free survival with c-Meti treatment than other patients.SYK negativity coupled with TGF-β1 positivity conferred de novo and acquired resistance.In summary,SYK regulates cell plasticity toward a therapy-sensitive epithelial cell state.Furthermore,our findings showed that SYK overexpression can aid in precisely stratifying NSCLC patients with c-Met overexpression regardless of MET alterations and expand the population predicted to benefit from c-Met-targeted therapy. | Ji Zhou Xu-Chao Zhang Shan Xue Mengdi Dai Yueliang Wang Xia Peng Jianjiao Chen Xinyi Wang Yanyan Shen Hui Qin Bi Chen Yu Zheng Xiwen Gao Zuoquan Xie Jian Ding Handong Jiang Yi-Long Wu Meiyu Geng Jing Ai | 2023 | Signal Transduction and Targeted Therapy2023,8,6: | 0 |
| 18 | Design, synthesis and biological evaluation of pyrazolo[3,4-d]pyridazinone derivatives as covalent FGFR inhibitors显示文摘Fibroblast growth factor receptors (FGFRs) have emerged as promising targets for anticancer therapy.In this study,we synthesized and evaluated the biological activity of 66 pyrazolo[3,4-d]pyridazinone derivatives.Kinase inhibition,cell proliferation,and whole blood stability assays were used to evaluate their activity on FGFR,allowing us to explore structureàactivity relationships and thus to gain understanding of the structural requirements to modulate covalent inhibitors’selectivity and reactivity.Among them,compound 10h exhibited potent enzymatic activity against FGFR and remarkably inhibited proliferation of various cancer cells associated with FGFR dysregulation,and suppressed FGFR signaling pathway in cancer cells by the immunoblot analysis.Moreover,10h displayed highly potent antitumor efficacy (TGI Z 91.6%,at a dose of 50 mg/kg) in the FGFR1-amplified NCI-H1581 xenograft model. | Xiaowei Wu Mengdi Dai Rongrong Cui Yulan Wang Chunpu Li Xia Peng Jihui Zhao Bao Wang Yang Dai Dan Feng Tianbiao Yang Hualiang Jiang Meiyu Geng Jing Ai Mingyue Zheng Hong Liu | 2021 | Acta Pharmaceutica Sinica B2021,11,3: | 0 |
| 19 | Antibody-dependent cellular cytotoxicity response to SARS-CoV-2 in COVID-19 patients显示文摘Antibody-dependent cellular cytotoxicity(ADCC)responses to viral infection are a form of antibody regulated immune responses mediated through the Fc fragment.Whether severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)triggered ADCC responses contributes to COVID-19 disease development is currently not well understood.To understand the potential correlation between ADCC responses and COVID-19 disease development,we analyzed the ADCC activity and neutralizing antibody response in 255 individuals ranging from asymptomatic to fatal infections over 1 year post disease.ADCC was elicited by 10 days post-infection,peaked by 11-20 days,and remained detectable until 400 days post-infection.In general,patients with severe disease had higher ADCC activities.Notably,patients who had severe disease and recovered had higher ADCC activities than patients who had severe disease and deceased.Importantly,ADCC activities were mediated by a diversity of epitopes in SARS-COV-2-infected mice and induced to comparable levels against SARS-CoV-2 variants of concern(VOCs)(B.1.1.7,B.1.351,and P.1)as that against the D614G mutant in human patients and vaccinated mice.Our study indicates anti-SARS-CoV-2 ADCC as a major trait of COVID-19 patients with various conditions,which can be applied to estimate the extra-neutralization level against COVID-19,especially lethal COVID-19. | Yuanling Yu Meiyu Wang Xiaoai Zhang Shufen Li Qingbin Lu Haolong Zeng Hongyan Hou Hao Li Mengyi Zhang Fei Jiang Jiajing Wu Ruxia Ding Zehua Zhou Min Liu Weixue Si Tao Zhu Hangwen Li Jie Ma Yuanyuan Gu Guangbiao She Xiaokun Li Yulan Zhang Ke Peng Weijin Huang Wei Liu Youchun Wang | 2021 | Signal Transduction and Targeted Therapy2021,6,10: | 0 |
| 20 | Sonic hedgehog signaling:Alternative splicing and pathogenic role in medulloblastoma显示文摘Alternative splicing(AS)produces the different mRNA splicing bodies,which are then translated into multiple protein isoforms and participate in various biological functions.With a deeper understanding of alternative splicing through the study of transcriptomes using high-throughput sequencing-based methods,the correlation between aberrant AS and diseases triggered a great concern,especially abnormal AS and cancer.Medulloblastoma(MB)is an intracranial tumor in children.Sonic hedgehog MB(SHH-MB)accounted for approximately 30%of MB,which is associated with the activation of SHH signaling.Growing evidence shows that aberrant AS is closely related to the tumorigenesis of MB.Here,we briefly introduced the AS and its mechanism.Next,we described canonical/noncanonical hedgehog signaling and its correlation with MB.The main description focused on AS of various regulators in canonical hedgehog signaling in MB.In addition,we also described AS of various regulators in noncanonical hedgehog signaling.Meanwhile,activated hedgehog signaling also induces AS in MB.Then,we pointed out that aberrant AS of hedgehog signaling is associated with different MB subgroups.Finally,we summarized the therapeutic applications of targeted AS in cancer treatment.In summary,further understanding of AS in SHH-MB could develop therapeutic targets for splicing factors which may be a novel therapeutic strategy. | Meiyu Qu Qiangqiang He Jiahao Luo Tingyu Shen Ruibo Gao Yana Xu Chengyun Xu Muhammad Qasim Barkat Ling-Hui Zeng Ximei Wu | 2023 | Genes & Diseases2023,10,5: | 0 |