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| 1 | MYB Transcription Factors as Regulators of Phenylpropanoid Metabolism in Plants显示文摘导出 Phenylpropanoid 的混合物代表从本氨基丙酸发源的第二等的代谢物的一个多样的家庭。这些混合物对关於生命、不能生活的应力在植物生长和开发,并且在防卫有角色。许多这些混合物对人的健康和福利也有益。V-myb myeloblastosis 病毒的 oncogene 相当或相同的事物(MYB ) 蛋白质属于抄写因素的一个大家庭并且是导出 phenylpropanoid 的混合物的合成的关键管理者。这评论在植物在 phenylpropanoid 新陈代谢的规定总结 MYB 蛋白质和他们的角色的当前的理解。 | Jingying Liu Anne Osbourm Pengda Ma | 2015 | Molecular Plant2015,8,5: | 79 |
| 2 | Generation of Targeted Point Mutations in Rice by a Modified CRISPR/Cas9 System显示文摘 | Jingying Li Yongwei Sun Jinlu Du Yunde Zhao Lanqin Xia | 2017 | Molecular Plant2017,10,3: | 72 |
| 3 | Precise Modifications of Both Exogenous and Endogenous Genes in Rice by Prime Editing显示文摘Dear Editor,Harnessing genetic diversity and the introduction of elite alleles from wild relatives or landraces into commercial cultivars has been a major goal in crop breeding programs.Precise modification of the plant genome through clustered regularly interspaced short palindromic repeat(CRISPR)/CRISPR-associated protein(Cas)(CRISPR/Cas)-mediated homology-directed repair(HDR)offers a great promise to introduce elite alleles from wild relatives or landraces into commercialized cultivars in the short term. | Huiyuan Li Jingying Li Jilin Chen Lei Yan Lanqin Xia | 2020 | Molecular Plant2020,13,5: | 30 |
| 4 | Root microbiota shift in rice correlates with resident time in the field and developmental stage显示文摘Land plants in natural soil form intimate relationships with the diverse root bacterial microbiota. A growing body of evidence shows that these microbes are important for plant growth and health. Root microbiota composition has been widely studied in several model plants and crops; however, little is known about how root microbiota vary throughout the plant's life cycle under field conditions. We performed longitudinal dense sampling in field trials to track the time-series shift of the root microbiota from two representative rice cultivars in two separate locations in China. We found that the rice root microbiota varied dramatically during the vegetative stages and stabilized from the beginning of the reproductive stage, after which the root microbiota underwent relatively minor changes until rice ripening. Notably, both rice genotype and geographical location influenced the patterns of root microbiota shift that occurred during plant growth. The relative abundance of Deltaproteobacteria in roots significantly increased overtime throughout the entire life cycle of rice, while that of Betaproteobacteria, Firmicutes, and Gammaproteobacteria decreased. By a machine learning approach, we identified biomarker taxa and established a model to correlate root microbiota with rice resident time in the field(e.g., Nitrospira accumulated from 5 weeks/tillering in field-grown rice). Our work provides insights into the process of rice root microbiota establishment. | Jingying Zhang Na Zhang Yong-Xin Liu Xiaoning Zhang Bin Hu Yuan Qin Haoran Xu Hui Wang Xiaoxuan Guo Jingmei Qian Wei Wang Pengfan Zhang Tao Jin Chengcai Chu Yang Bai | 2018 | Science China(Life Sciences)2018,61,6: | 24 |
| 5 | Screening for gastric cancer in China:Advances,challenges and visions显示文摘Gastric cancer(GC)is one of the major cancers in China and all over the world.Most GCs are diagnosed at an advanced stage with unfavorable prognosis.Along with some other countries,China has developed the government-funded national screening programs for GC and other major cancers.GC screening has been shown to effectively decrease the incidence of and mortality from GC in countries adopting nationwide screening programs(Japan and Korea)and in studies based on selected Chinese populations.The screening of GC relies mostly on gastroendoscopy,the accuracy,reliability and safety of which have been indicated by previous studies.However,considering its invasive screening approach,requirements on skilled endoscopists and pathologists,and a high cost,developing noninvasive methods to amend endoscopic screening would be highly needed.Numerous studies have examined biomarkers for GC screening and the combination of biomarkers involving pepsinogen,gastrin,and Helicobacter pylori antibodies has been proposed for risk stratification,seeking to narrow down the high-risk populations for further endoscopy.Despite all the achievements of endoscopic screening,evidence on appropriate screening age,intervals for repeated screening,novel biomarkers promoting precision prevention,and health economics need to be accumulated to inform policymakers on endoscopic screening in China.With the guide of Health China 2030 Planning Outline,we have golden opportunities to promote prevention and control of GC.In this review,we summarize the characteristics of screening programs in China and other East Asian countries and introduce the past and current approaches and strategies for GC screening,aiming for featuring the latest advances and key challenges,and illustrating future visions of GC screening. | Xiaohan Fan Xiangxiang Qin Yang Zhang Zhexuan Li Tong Zhou Jingying Zhang Weicheng You Wenqing Li Kaifeng Pan | 2021 | Chinese Journal of Cancer Research2021,33,2: | 21 |
| 6 | The preparation and characterization of folate-conjugated human serum albumin magnetic cisplatin nanoparticles显示文摘Objective:Nanoparticles are becoming an important method of targeted drug delivery.To evaluate the importance of folate-conjugated human serum albumin(HSA)magnetic nanoparticles(Folate-CDDP/HSA MNP),we prepared drug-loaded Folate-CDDP/HSA MNPs and characterized their features.Methods:First, folate was conjugated with HSA under the effect of a condensing agent,and the conjugating rate was evaluated by a colorimetric method using 2,4,6-trinitrobenzene sulfonic acid.Second,under N 2 gas,Fe 3 O 4 magnetic nanomaterials were prepared and characterized by using transmission electron microscopy(TEM),SEM-EDS and X-ray diffraction(XRD).Finally,Folate-CDDP/HSA MNP was prepared by using a solvent evaporation technique. TEM was used to observe particle morphology.The particle size and distribution of the prepared complexes were determined by a Laser particle size analyzer.Drug loading volume and drug release were investigated by a high performance liquid chromatography method(HPLC)in vitro.Results:We successfully prepared folate-conjugated HSA and its conjugating rate was 27.26μg/mg.Under TEM,Fe 3 O 4 magnetic nanoparticles were highly electron density and had an even size distribution in the range of 10-20 nm.It was confirmed by SEM-EDS and XRD that Fe 3 O 4 magnetic nanoparticles had been successfully prepared.Under TEM,drug-loaded magnetic nanoparticles were observed,which had a round shape,similar uniform size and smooth surface.Their average size was 79 nm which was determined by laser scattering,and they exhibited magnetic responsiveness.Encapsulation efficiency was 89.75%and effective drug loading was calculated to be 15.25%.The release results in vitro showed that the half release time(t1/ 2 )of cisplatin in cisplatin Solution and Folate-CDDP/HSA MNP was 65 min and 24 h respectively, which indicated that microspheres had an obvious effect of sustained-release.Conclusion:Folate-CDDP/HSA MNPs were prepared successfully.The preparation process and related characteristics data provided a foundation for further study,including the mechanism of the nanoparticles distribution in vivo and their intake by tumor cells. | Daozhen Chen Qiusha Tang Wenqun Xue Jingying Xiang Li Zhang Xinru Wang | 2010 | The Journal of Biomedical Research2010,24,1: | 13 |
| 7 | Toward Precision Genome Editing in Crop Plants显示文摘Precision genome editing through homology-directed repair(HDR)in plants remains very challenging due to the innately low occurrence of HDR and obstacles in the delivery of sufficient donor repair template(DRT)into plant cells.For single-base substitution,cytidine or adenine base editors have been used successfully in crop plants in recent years.However,base editing is constrained by the distance between the targeted base and PAM motif and cannot install predefined transversion mutations or insertions and deletions(indels).Here,we briefly summarize the strategies reported so far for precision genome editing in plants.Based on the recently developed prime editing strategy,which enables gene replacement without double-strand breaks(DSBs)or DRT in both human cells and plants,we provide our perspectives on exploiting diverse strategies to achieve precise targeted gene/allele replacement toward crop improvement and resilience for sustainable agricultural development. | Jingying Li Huiyuan Li Jilin Chen Lei Yan Lanqin Xia | 2020 | Molecular Plant2020,13,6: | 13 |
| 8 | The root microbiome:Community assembly and its contributions to plant fitness显示文摘The root microbiome refers to the community of microbes living in association with a plant's roots,and includes mutualists,pathogens,and commensals.Here we focus on recent advances in the study of root commensal community which is the major research object of microbiomerelated researches.With the rapid development of new technologies,plant-commensal interactions can be explored with unprecedented breadth and depth.Both the soil environment and the host plant drive commensal community assembly.The bulk soil is the seed bank of potential commensals,and plants use root exudates and immune responses to build healthy microbial communities from the available microbes.The plant microbiome extends the functional system of plants by participating in a variety of processes,including nutrient absorption,growth promotion,and resistance to biotic and abiotic stresses.Plants and their microbiomes have evolved adaptation strategies over time.However,there is still a huge gap in our understanding of the regulatory mechanisms of plant-commensal interactions.In this review,we summarize recent research on the assembly of root microbial communities and the effects of these communities on plant growth and development,and look at the prospects for promoting sustainable agricultural development through the study of the root microbiome. | Bo Bai Weidong Liu Xingyu Qiu Jie Zhang Jingying Zhang Yang Bai | 2022 | Journal of Integrative Plant Biology2022,64,2: | 13 |
| 9 | Increasing yield potential through manipulating of an ARE1 ortholog related to nitrogen use efficiency in wheat by CRISPR/Cas9显示文摘Wheat(Triticum aestivum L.)is a staple food crop consumed by more than 30%of world population.Nitrogen(N)fertilizer has been applied broadly in agriculture practice to improve wheat yield to meet the growing demands for food production.However,undue N fertilizer application and the low N use efficiency(NUE)of modern wheat varieties are aggravating environmental pollution and ecological deterioration.Under nitrogen-limiting conditions,the rice(Oryza sativa)abnormal cytokinin response1 repressor1(are1)mutant exhibits increased NUE,delayed senescence and consequently,increased grain yield.However,the function of ARE1 ortholog in wheat remains unknown.Here,we isolated and characterized three TaARE1 homoeologs from the elite Chinese winter wheat cultivar ZhengMai 7698.We then used CRISPR/Cas9-mediated targeted mutagenesis to generate a series of transgene-free mutant lines either with partial or triple-null taare1 alleles.All transgene-free mutant lines showed enhanced tolerance to N starvation,and showed delayed senescence and increased grain yield in field conditions.In particular,the AABBdd and aabbDD mutant lines exhibited delayed senescence and significantly increased grain yield without growth defects compared to the wild-type control.Together,our results underscore the potential to manipulate ARE1 orthologs through gene editing for breeding of high-yield wheat as well as other cereal crops with improved NUE. | Jiahui Zhang Huating Zhang Shaoya Li Jingying Li Lei Yan Lanqin Xia | 2021 | Journal of Integrative Plant Biology2021,63,9: | 13 |
| 10 | Cooperative effects of hydrogen sulfide and nitric oxide on delaying softening and decay of strawberry显示文摘Hydrogen sulfide(H2S)and nitric oxide(NO)as two signal molecules play prominent roles in plant response to biotic stress.The combination effects of these two molecules on ripening and decay of postharvest strawberry were investigated.Strawberries were first dipped in distilled water,0.8 mmol/L NaHS solution,5μmmol/L sodium nitroprusside(SNP)solution,and combinative solutions of 0.8 mmol/L NaHS and 5μmmol/L SNP for 10 min,respectively,and then stored at 20°C.Results showed that the effects of the co-treatment of 0.8 mmol/L NaHS solution and 5μmmol/L SNP solution were superior to that of other treatments.The former could suppress the percentage of fruit decay,inhibit respiration rate,maintain the original crust color,and slow down the decrease of firmness and the change of relative conductivity,which preserved the fruit quality.Further investigation showed that co-treatment of hydrogen sulfide and nitric oxide maintained higher activities of chitinase(CHI)and beta-1,3-glucanase(GNS),and lowered activities of pectin methylesterase(PME),polygalacturonase(PG)and endo-β-1,4-glucanase(EGase).The study indicated that the synergistic function of H2S and NO could effectively prolong the shelf life and reduce the decay rate of harvested strawberry. | Zhang Chang Shi Jingying Zhu Liqin Li Changle Wang Qingguo | 2014 | International Journal of Agricultural and Biological Engineering2014,7,6: | 12 |
| 11 | A new contact material—Ag/SnO_2-La_2O_3-Bi_2O_3显示文摘A super-fine compound powder,Ag/SnO2+La2O3+Bi2O3,has been obtained using the chemical coprecipitation method.And a new contact material,Ag/SnO2+La2O3+Bi2O3,was produced by the powder metallurgy method.Its properties are as follows:the density is 9.75-9.93g/cm^3,the resistivity is 2.31-2.55μΩ.cm.the hardness is 880-985 MPa.Its microstructure shows that the fine oxides have a uniform distribution in the silver matrix.The results of make-break capacity and temperature rise testing show that the new material has better ability of anti-arc erosion and lower temperature rise than that of commonly used Ag/CdO. | LU Jianguo, WANG Jingqin, ZHAO Jingying, WEN Ming, WANG Baozhu, and WANG XiaohongInstitute of Electrical Apparatus, Hebei University of Technology, Tianjin, 300130, China | 2002 | Rare Metals2002,21,4: | 12 |
| 12 | HOST PLANT PREFERENCES OF BEMISIA TABACI GENNADIUS显示文摘The preferences of Bemisia tabaci Gennadius for five host plants:poinsettia, tomato, cabbage,sweet potato and flowering Chinese cabbage, was tested using a Y-tube olfactometer and a desiccator in the labo-ratory. The results show that B. tabaci adults were attracted by the odors of the five plants. The order of prefer-ence was poinsettia > flowering Chinese cabbage > sweet potato > cabbage > tomato. Preference was extremely sig-nificant between poinsettia and the other four plants, and between flowering Chinese cabbage, cabbage and toma-to. There was no significant difference in preference for flowering Chinese cabbage and sweet potato, sweet pota-to, cabbage and tomato or between cabbage and tomato. | JINGYing HUANGJian MARui-yan HANJu-cai | 2003 | Entomologia Sinica2003,10,2: | 11 |
| 13 | Efficient allelic replacement in rice by gene editing: A case study of the NRT1.1B gene显示文摘Precise replacement of an existing allele in commercial cultivars with an elite allele is a major goal in crop breeding. A single nucleotide polymorphism in the NRT1.1 B gene between japonica and indica rice is responsible for the improved nitrogen use efficiency in indica rice. Herein, we precisely replaced the japonica NRT1.1 B allele with the indica allele, in just one generation, using CRISPR/Cas9 gene-editing technology.No additional selective pressure was needed to enrich the precise replacement events. This work demonstrates the feasibility of replacing any genes with elite alleles within one generation, greatly expanding our ability to improve agriculturally important traits. | Jingying Li Xin Zhang Yongwei Sun Jiahui Zhang Wenming Du Xiuping Guo Shaoya Li Yunde Zhao Lanqin Xia | 2018 | Journal of Integrative Plant Biology2018,60,7: | 11 |
| 14 | Graphitic Carbon Quantum Dots Modified Nickel Cobalt Sulfide as Cathode Materials for Alkaline Aqueous Batteries显示文摘Carbon quantum dots(CQDs)as a new class of emerging materials have gradually drawn researchers’concern in recent years.In this work,the graphitic CQDs are prepared through a scalable approach,achieving a high yield with more than 50%.The obtained CQDs are further used as structure-directing and conductive agents to synthesize novel N,S-CQDs/NiCo2S4 composite cathode materials,manifesting the enhanced electrochemical properties resulted from the synergistic effect of highly conductive N,S-codoped CQDs offering fast electronic transport and unique micro-/nanostructured NiCo2S4 microspheres with Faradaic redox characteristic contributing large capacity.Moreover,the nitrogen-doped reduced graphene oxide(N-rGO)/Fe2O3 composite anode materials exhibit ultrahigh specific capacity as well as significantly improved rate property and cycle performance originating from the high-capacity prism-like Fe2O3 hexahedrons tightly wrapped by highly conductive N-rGO.A novel alkaline aqueous battery assembled by these materials displays a specific energy(50.2 Wh kg^−1),ultrahigh specific power(9.7 kW kg^−1)and excellent cycling performance with 91.5%of capacity retention at 3 A g^−1 for 5000 cycles.The present research offers a valuable guidance for the exploitation of advanced energy storage devices by the rational design and selection of battery/capacitive composite materials. | Yirong Zhu Jingying Li Xiaoru Yun Ganggang Zhao Peng Ge Guoqiang Zou Yong Liu Hongshuai Hou Xiaobo Ji | 2020 | Nano-Micro Letters2020,12,2: | 10 |
| 15 | Base editing in plants: Current status and challenges显示文摘Genome editing technologies have revolutionized the field of plant science by enabling targeted modification of plant genomes and are emerging as powerful tools for both plant gene functional analyses and crop improvement. Although homology-directed repair(HDR)is a feasible approach to achieve precise gene replacement and base substitution in some plant species, the dominance of the non-homologous end joining pathway and low efficiency of HDR in plant cells have limited its application. Base editing has emerged as an alternative tool to HDR-mediated replacement, facilitating precise editing of plant genome by converting one single base to another in a programmable manner without a doublestranded break and a donor repair template. In this review, we summarize the latest developments in base-editing technologies as well as their underlying mechanisms. We review current applications of these technologies in plant species. Finally, we address the challenges and future perspectives of this emerging technology in plants. | Sutar Suhas Bharat Shaoya Li Jingying Li Lei Yan Lanqin Xia | 2020 | The Crop Journal2020,8,3: | 8 |
| 16 | hSSB1 regulates both the stability and the transcriptional activity of p53显示文摘肿瘤 suppressor p53 为涉及对多样的 genotoxic 应力的反应的几个细胞的过程是必要的,包括房间周期拘捕, DNA 修理, apoptosis 和老朽。p53 的规定的研究主要集中了于它的稳定性和 transactivation;然而,为 p53 的新规章的分子经常也被识别了。这里,我们报导那人的 ssDNA 绑定蛋白质 SSB1 (hSSB1 ) ,新奇 DNA 联系损坏的蛋白质,能与 p53 交往并且保护 p53 免受调停 ubiquitin 的降级的伤害。而且, hSSB1 也与 acetyltransferase p300 联系并且被在 lysine382 影响 p53 的 acetylation 为 p53 目标基因 p21 的有效 transcriptional 激活要求。机能上地, G2/M 检查点的 hSSB1 击倒导致废除部分依赖于 p53 或 p300。一起,我们的结果显示那 hSSB1 可以调整 DNA 损坏检查点由断然 modulating p53 和它的下游的目标 p21。 | Shuangbing Xu Yuanzhong Wu Qiong Chen Jingying Cao Kaishun Hu Jianjun Tang Yi Sang Fenju Lai Li Wang Ruhua Zhang Sheng-Ping Li Yi-Xin Zeng Yuxin Yina Tiebang Kang | 2013 | Cell Research2013,23,3: | 7 |
| 17 | Human ACE2-Functionalized Gold“Virus-Trap”Nanostructures for Accurate Capture of SARS-CoV-2 and Single-Virus SERS Detection显示文摘The current COVID-19 pandemic urges the extremely sensitive and prompt detection of SARS-CoV-2 virus.Here,we present a Human Angiotensin-converting-enzyme 2(ACE2)-functionalized gold“virus traps”nanostructure as an extremely sensitive SERS biosensor,to selectively capture and rapidly detect S-protein expressed coronavirus,such as the current SARS-CoV-2 in the contaminated water,down to the single-virus level.Such a SERS sensor features extraordinary 106-fold virus enrichment originating from high-affinity of ACE2 with S protein as well as“virus-traps”composed of oblique gold nanoneedles,and 109-fold enhancement of Raman signals originating from multi-component SERS effects.Furthermore,the identification standard of virus signals is established by machine-learning and identification techniques,resulting in an especially low detection limit of 80 copies mL^(−1) for the simulated contaminated water by SARS-CoV-2 virus with complex circumstance as short as 5 min,which is of great significance for achieving real-time monitoring and early warning of coronavirus.Moreover,here-developed method can be used to establish the identification standard for future unknown coronavirus,and immediately enable extremely sensitive and rapid detection of novel virus. | Yong Yang Yusi Peng Chenglong Lin Li Long Jingying Hu Jun He Hui Zeng Zhengren Huang Zhi-Yuan Li Masaki Tanemura Jianlin Shi John R.Lombardi Xiaoying Luo | 2021 | Nano-Micro Letters2021,13,7: | 6 |
| 18 | Continuous desulfurization and bacterial community structure of an integrated bioreactor developed to treat SO_2 from a gas stream显示文摘Sulfide dioxide(SO2) is often released during the combustion processes of fossil fuels. An integrated bioreactor with two sections, namely, a suspended zone(SZ) and immobilized zone(IZ), was applied to treat SO2 for 6 months. Sampling ports were set in both sections to investigate the performance and microbial characteristics of the integrated bioreactor. SO2 was effectively removed by the synergistic effect of the SZ and IZ, and more than 85%removal efficiency was achieved at steady state. The average elimination capacity of SO2 in the bioreactor was 2.80 g/(m3·hr) for the SZ and 1.50 g/(m3· hr) for the IZ. Most SO2 was eliminated in the SZ. The liquid level of the SZ and the water content ratio of the packing material in the IZ affected SO2 removal efficiency. The SZ served a key function not only in SO2 elimination, but also in moisture maintenance for the IZ. The desired water content in IZ could be feasibly maintained without any additional pre-humidification facilities. Clone libraries of 16 S r DNA directly amplified from the DNA of each sample were constructed and sequenced to analyze the community composition and diversity in the individual zones.The desulfurization bacteria dominated both zones. Paenibacillus sp. was present in both zones, whereas Ralstonia sp. existed only in the SZ. The transfer of SO2 to the SZ involved dissolution in the nutrient solution and biodegradation by the sulfur-oxidizing bacteria.This work presents a potential biological treatment method for waste gases containing hydrophilic compounds. | Jian Lin Lin Li Wenjie Ding Jingying Zhang Junxin Liu | 2015 | Journal of Environmental Sciences2015,27,11: | 6 |
| 19 | Vocal cord mucosal flap for the treatment of acquired anterior laryngeal web显示文摘 | Xiao Yang Wang Jun Han Demin Ma Lijing Ye Jingying Xu Wen | 2014 | Chinese Medical Journal2014,,7: | 6 |
| 20 | Cell cycle-related kinase reprograms the liver immune microenvironment to promote cancer metastasis显示文摘The liver is an immunologically tolerant organ and a common metastatic site of multiple cancer types.Although a role for cancer cell invasion programs has been well characterized,whether and how liver-intrinsic factors drive metastatic spread is incompletely understood.Here,we show that aberrantly activated hepatocyte-intrinsic cell cycle-related kinase(CCRK)signaling in chronic liver diseases is critical for cancer metastasis by reprogramming an immunosuppressive microenvironment.Using an inducible liverspecific transgenic model,we found that CCRK overexpression dramatically increased both B16F10 melanoma and MC38 colorectal cancer(CRC)metastasis to the liver,which was highly infiltrated by polymorphonuclear-myeloid-derived suppressor cells(PMNMDSCs)and lacking natural killer T(NKT)cells.Depletion of PMN-MDSCs in CCRK transgenic mice restored NKT cell levels and their interferon gamma production and reduced liver metastasis to 2.7% and 0.7%(metastatic tumor weights)in the melanoma and CRC models,respectively.Mechanistically,CCRK activated nuclear factor-kappa B(NF-κB)signaling to increase the PMN-MDSC trafficking chemokine C-X-C motif ligand 1(CXCL1),which was positively correlated with liver-infiltrating PMN-MDSC levels in CCRK transgenic mice.Accordingly,CRC liver metastasis patients exhibited hyperaaivation of hepatic CCRK/NF-κB/CXCL1 signaling,which was associated with accumulation of PMN-MDSCs and paucity of NKT cells compared to healthy liver transplantation donors.In summary,this study demonstrates that immunosuppressive reprogramming by hepatic CCRK signaling undermines antimetastatic immunosurveillance.Our findings offer new mechanistic insights and therapeutic targets for liver metastasis intervention. | Xuezhen Zeng Jingying Zhou Zhewen Xiong Hanyong Sun Weiqin Yang Myth T.S.Mok Jing Wang Jingqing Li Man Liu Wenshu Tang Yu Feng Hector Kwong-Sang W ang Shun-Wa Tsang King-Lau Chow Philip Chun Yeung John Wong Paul Bo-San Lai Anthony Wing-Hung Chan Ka Fai To Stephen Lam Chan Qiang Xia Jing Xue Xiao Chen Jun Yu Sui Peng Joseph Jao-Yiu Sung Ming Kuang Alfred Sze-Lok Cheng | 2021 | Cellular & Molecular Immunology2021,18,4: | 5 |