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120篇 您的检索式:作者名="Fangfang ZHOU"
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1The Sunway TaihuLight supercomputer: system and applications显示文摘The Sunway Taihu Light supercomputer is the world's first system with a peak performance greater than 100 PFlops. In this paper, we provide a detailed introduction to the Taihu Light system. In contrast with other existing heterogeneous supercomputers, which include both CPU processors and PCIe-connected many-core accelerators(NVIDIA GPU or Intel Xeon Phi), the computing power of Taihu Light is provided by a homegrown many-core SW26010 CPU that includes both the management processing elements(MPEs)and computing processing elements(CPEs) in one chip. With 260 processing elements in one CPU, a single SW26010 provides a peak performance of over three TFlops. To alleviate the memory bandwidth bottleneck in most applications, each CPE comes with a scratch pad memory, which serves as a user-controlled cache. To support the parallelization of programs on the new many-core architecture, in addition to the basic C/C++and Fortran compilers, the system provides a customized Sunway Open ACC tool that supports the Open ACC2.0 syntax. This paper also reports our preliminary efforts on developing and optimizing applications on the Taihu Light system, focusing on key application domains, such as earth system modeling, ocean surface wave modeling, atomistic simulation, and phase-field simulation.Haohuan FU Junfeng LIAO Jinzhe YANG Lanning WANG Zhenya SONG Xiaomeng HUANG Chao YANG Wei XUE Fangfang LIU Fangli QIAO Wei ZHAO Xunqiang YIN Chaofeng HOU Chenglong ZHANG Wei GE Jian ZHANG Yangang WANG Chunbo ZHOU Guangwen YANG 2016Science China(Information Sciences)2016,59,7:45
2TGF-β signaling in cancer metastasis显示文摘转变生长因素(TGF )- 发信号的事件是众所周知的控制多样的进程和众多的回答例如房间增长,区别, apoptosis,和移植。在癌症的 TGF- 发信号戏上下文依赖者角色:在 pre 恶意的房间, TGF- 首先作为肿瘤 suppressor 工作,当在癌症的以后的阶段发信号的 TGF- 支持侵略和转移时。最近的研究也建议了在 TGF- 发信号和另外的发信号的小径之间的串音例如河马, Wnt, EGFR/RAS,和 PI3K/AKT 小径,可以实质地贡献我们 TGF- 发信号和癌症的当前的理解。由于 TGF- 的广阔效果, TGF- 和它的下游的发信号部件的封锁提供多重治疗学的机会。因此,为为众多的疾病表明治疗的 anti-TGF- 的眼界显得明亮并且将提供珍贵信息并且想在这药上分子的设计。在这评论,我们集中于最近的卓见进在可以贡献新奇指向癌症的治疗的发展的癌症转移发信号的 TGF- 的规定。Feng Xie Li Ling Hans van Dam Fangfang Zhou Long Zhang 2018Acta Biochimica et Biophysica Sinica2018,50,1:36
3;he regulation of TGF-β/SMAD signaling by protein deubiquitination显示文摘Juan Zhang Xiaofei Zhang Feng Xie Zhengkui Zhang Hans van Dam Long Zhang Fangfang Zhou 2014Protein & Cell2014,5,7:27
4Role of pyroptosis in inflammation and cancer显示文摘Pyroptosis is a form of programmed cell death mediated by gasdermin and is a product of continuous cell expansion until the cytomembrane ruptures,resulting in the release of cellular contents that can activate strong inflammatory and immune responses.Pyroptosis,an innate immune response,can be triggered by the activation of inflammasomes by various influencing factors.Activation of these inflammasomes can induce the maturation of caspase-1 or caspase-4/5/11,both of which cleave gasdermin D to release its N-terminal domain,which can bind membrane lipids and perforate the cell membrane.Here,we review the latest advancements in research on the mechanisms of pyroptosis,newly discovered influencing factors,antitumoral properties,and applications in various diseases.Moreover,this review also provides updates on potential targeted therapies for inflammation and cancers,methods for clinical prevention,and finally challenges and future directions in the field.Xiang Wei Feng Xie Xiaoxue Zhou Yuchen Wu Haiyan Yan Ting Liu Jun Huang Fangwei Wang Fangfang Zhou Long Zhang 2022Cellular & Molecular Immunology2022,19,9:11
5Ferroptosis in cancer and cancer immunotherapy显示文摘The hallmark of tumorigenesis is the successful circumvention of cell death regulation for achieving unlimited replication and immortality.Ferroptosis is a newly identified type of cell death dependent on lipid peroxidation which differs from classical programmed cell death in terms of morphology,physiology and biochemistry.The broad spectrum of injury and tumor tolerance are the main reasons for radiotherapy and chemotherapy failure.The effective rate of tumor immunotherapy as a new treatment method is less than 30%.Ferroptosis can be seen in radiotherapy,chemotherapy,and tumor immunotherapy;therefore,fer-roptosis activation may be a potential strategy to overcome the drug resistance mechanism of traditional cancer treatments.In this review,the characteristics and causes of cell death by lipid peroxidation in ferroptosis are briefly described.In addition,the three metabolic regulations of ferroptosis and its crosstalk with classical signaling pathways are summarized.Collectively,these findings sug-gest the vital role of ferroptosis in immunotherapy based on the interaction of ferroptosis with tumor immunotherapy,chemotherapy and radiotherapy,thus,indicating the remarkable potential of ferroptosis in cancer treatment.Lei Zhao Xiaoxue Zhou Feng Xie Lei Zhang Haiyan Yan Jun Huang Chong Zhang Fangfang Zhou Jun Chen Long Zhang 2022Cancer Communications2022,42,2:10
6Preparation,characterization and photocatalytic performance of Mo-doped ZnO photocatalysts显示文摘A series of Mo-doped ZnO photocatalysts with different Mo-dopant concentrations have been prepared by a grinding-calcination method.The structure of these photocatalysts was characterized by a variety of methods,including N 2 physical adsorption,X-ray diffraction(XRD),scanning electron microscopy(SEM),Fourier transform infrared(FT-IR) spectroscopy,photoluminescence(PL) emission spectroscopy,and UV-vis diffuse reflectance spectroscopy(DRS).It was found that Mo 6+ could enter into the crystal lattice of ZnO due to the radius of Mo 6+(0.065 nm) being smaller than that of Zn 2+(0.083 nm).XRD results indicated that Mo 6+ suppressed the growth of ZnO crystals.The FT-IR spectroscopy results showed that the ZnO with 2 wt.% Mo-doping has a higher level of surface hydroxyl groups than pure ZnO.PL spectroscopy indicated that ZnO with 2 wt.% Mo-doping also exhibited the largest reduction in the intensity of the emission peak at 390 nm caused by the recombination of photogenerated hole-electron pairs.The activities of the Mo-doped ZnO photocatalysts were investigated in the photocatalytic degradation of acid orange II under UV light(λ = 365 nm) irradiation.It was found that ZnO with 2 wt.% Mo-doping showed much higher photocatalytic activity and stability than pure ZnO.The high photocatalytic performance of the Mo-doped ZnO can be attributed to a great improvement in the surface properties of ZnO,higher crystallinity and lower recombination rate of photogenerated hole-electron(e-/h+) pairs.Moreover,the undoped Mo species may exist in the form of MoO3 and form MoO3 /ZnO heterojunctions which further favors the separation of e-/h+ pairs.YU ChangLin YANG Kai SHU Qing YU Jimmy C CAO FangFang LI Xin ZHOU XiaoChun 2012Science China Chemistry2012,55,9:8
7APP and APLP1 are degraded through autophagy in response to proteasome inhibition in neuronal cells显示文摘Amyloid beta(Aβ)precursor protein(APP)is a key protein in the pathogenesis of Alzheimer’s disease(AD).Both APP and its paralogue APLP1(amyloid beta precursor-like protein 1)have multiple functions in cell adhesion and proliferation.Previously it was thought that autophagy is a novel beta-amyloid peptide(Aβ)-generating pathway activated in AD.However,the protein proteolysis of APLP1 is still largely unknown.The present study shows that APLP1 is rapidly degraded in neuronal cells in response to stresses,such as proteasome inhibition.Activation of the endoplasmic reticulum(ER)stress by proteasome inhibitors induces autophagy,causing reduction of mature APLP1/APP.Blocking autophagy or JNK stress kinase rescues the protein expression for both APP and APLP1.Therefore,our results suggest that APP/APLP1 is degraded through autophagy and the APLP1 proteolysis is mainly mediated by autophagy-lysosome pathway.Fangfang Zhou Theo van Laar Huizhe Huang Long Zhang 2011Protein & Cell2011,2,5:8
8Cuproptosis:a new v form of programmed cell death显示文摘A recent study by Tsvetkov et al.was published in Science and proposed a novel form of copper-induced cell death.Tsvetkov et al.revealed that excess intracellular copper induces the aggregation of lipoylated dihydrolipoamide S-acetyltransferase(DLAT),which is associated with the mitochondrial tricarboxylic acid(TCA)cycle,resulting in proteotoxic stress and leading to a novel form of cell death termed cuproptosis[1].Yongqiang Wang Long Zhang Fangfang Zhou 2022Cellular & Molecular Immunology2022,19,8:8
9Circulating tumor cells:biology and clinical significance显示文摘Circulating tumor cells(CTCs)are tumor cells that have sloughed off the primary tumor and extravasate into and circulate in the blood.Understanding of the metastatic cascade of CTCs has tremendous potential for the identification of targets against cancer metastasis.Detecting these very rare CTCs among the massive blood cells is challenging.However,emerging technologies for CTCs detection have profoundly contributed to deepening investigation into the biology of CTCs and have facilitated their clinical application.Current technologies for the detection of CTCs are summarized herein,together with their advantages and disadvantages.The detection of CTCs is usually dependent on molecular markers,with the epithelial cell adhesion molecule being the most widely used,although molecular markers vary between different types of cancer.Properties associated with epithelial-tomesenchymal transition and stemness have been identified in CTCs,indicating their increased metastatic capacity.Only a small proportion of CTCs can survive and eventually initiate metastases,suggesting that an interaction and modulation between CTCs and the hostile blood microenvironment is essential for CTC metastasis.Single-cell sequencing of CTCs has been extensively investigated,and has enabled researchers to reveal the genome and transcriptome of CTCs.Herein,we also review the clinical applications of CTCs,especially for monitoring response to cancer treatment and in evaluating prognosis.Hence,CTCs have and will continue to contribute to providing significant insights into metastatic processes and will open new avenues for useful clinical applications.Danfeng Lin Lesang Shen Meng Luo Kun Zhang Jinfan Li Qi Yang Fangfang Zhu Dan Zhou Shu Zheng Yiding Chen Jiaojiao Zhou 2021Signal Transduction and Targeted Therapy2021,6,12:8
10Genome-wide identification of OSCA gene family and their potential function in the regulation of dehydration and salt stress in Gossypium hirsutum显示文摘Background:Cotton(Gossypium hirsutum) provides the largest natural fiber for the textile manufacturing industries,but its production is on the decline due to the effects of salinity.Soil salt-alkalization leads to damage in cotton growth and a decrease in yields.Hyperosmolality-gated calcium-permeable channels(OSCA) have been found to be involved in the detection of extracellular changes which trigger an increase in cytosolic free calcium concentration.Hyperosmolality-induced calcium ion increases have been widely speculated to be playing a role in osmosensing in plants.However,the molecular nature of the corresponding calcium ion channels remains unclearly.In this research work,we describe the OSCA genes and their putative function in osmosensing in plants by carrying out genomewide identification,characterization and functional analysis of the significantly up-regulated OSCA gene,GhOSCA1.1 through reverse genetics.Result:A total of 35,21 and 22 OSCA genes were identified in G.hirsutum,G.arboreum,and G.raimondii genomes,respectively,and were classified into four different clades according to their gene structure and phylogenetic relationship.Gene and protein structure analysis indicated that 35 GhOSCA genes contained a conserved RSN17 TM(PF02714) domain.Moreover,the cis-regulatory element analysis indicated that the OSCA genes were involved in response to abiotic stress.Furthermore,the knockdown of one of the highly up-regulated genes,GhOSCA1.1 showed that the virus-induced gene silenced(VIGS) plants were highly sensitive to dehydration and salinity stresses compared with the none VIGS plants as evident with higher concentration levels of oxidant enzymes compared with the antioxidant enzymes on the leaves of the stressed plants.Conclusion:This study provides the first systematic analysis of the OSCA gene family and will be important for understanding the putative functions of the proteins encoded by the OSCA genes in cotton.These results provide a new insight of defense responses in general and lay the foundation for further investigation of the molecular role played by the OSCA genes,thereby providing suitable approaches to improve crop performance under salinity and drought stress conditions.YANG Xiu XU Yanchao YANG Fangfang MAGWANGA Richard Odongo CAI Xiaoyan WANG Xingxing WANG Yuhong HOU Yuqing WANG Kunbo LIU Fang ZHOU Zhongli 2019Journal of Cotton Research2019,2,2:7
11The function and clinical application of extracellular vesicles in innate immune regulation显示文摘The innate immune system plays a crucial role in the host defense against viral and microbial infection.Exosomes constitute a subset of extracellular vesicles(EVs)that can be released by almost all cell types.Owing to their capacity to shield the payload from degradation and to evade recognition and subsequent removal by the immune system,exosomes efficiently transport functional components to recipient cells.Accumulating evidence has recently shown that exosomes derived from tumor cells,host cells and even bacteria and parasites mediate the communication between the invader and innate immune cells and thus play an irreplaceable function in the dissemination of pathogens and donor cell-derived molecules,modulating the innate immune responses of the host.In this review,we describe the current understanding of EVs(mainly focusing on exosomes)and summarize and discuss their crucial roles in determining innate immune responses.Additionally,we discuss the potential of using exosomes as biomarkers and cancer vaccines in diagnostic and therapeutic applications.Xiaoxue Zhou Feng Xie Lin Wang Long Zhang Suping Zhang Meiyu Fang Fangfang Zhou 2020Cellular & Molecular Immunology2020,17,4:6
12Epitaxial growth of large-area and highly crystalline anisotropic ReSe2 atomic layer显示文摘各向异性二维(2D ) 分层的材料金来二硫化物(因为它的不平常的性质和有希望的应用, ReSe 2) 吸引了可观的注意在电子并且 optoelectronic 设备。因为它的低格子对称和夹层去耦,各向异性的生长和 out-of-plane 生长不管多么容易发生,产出厚薄片,树枝状的结构,或象花的结构。在这研究,我们表明了一个自底向上的方法为控制并且由货车 der Waals 取向附生的 ReSe 2 的可伸缩的合成。完成可控制的生长,一与一个限制反应空格微反应堆被在化学蒸汽免职系统叠二云母底层构造。在限制反应空间以内, ReSe 2 的成核密度和生长率显著地被减少,赞成有一致单层厚度的 ReSe 2 的大区域的合成。有生长温度的 ReSe 2 的词法进化显示各向异性的生长在低生长温度被压制(< 600 吗?Fangfang Cui Xiaobo Li Qingliang Feng Jianbo Yin Lin Zhou Dongyan Liu Kaiqiang Liu Xuexia He Xing Liang Shengzhong Liu Zhibin Lei Zonghuai Liu Hailin Peng Jin Zhang Jing Kong Hua Xu 2017Nano Research2017,10,8:6
13Facile Synthesis of N-Doped Graphene-Like Carbon Nanoflakes as Efficient and Stable Electrocatalysts for the Oxygen Reduction Reaction显示文摘A series of N-doped carbon materials(NCs)were synthesized by using biomass citric acid and dicyandiamide as renewable raw materials via a facile onestep pyrolysis method. The characterization of microstructural features shows that the NCs samples are composed of few-layered graphene-like nanoflakes with controlled in situ N doping, which is attributed to the confined pyrolysis of citric acid within the interlayers of the dicyandiamide-derived g-C_3N_4 with high nitrogen contents. Evidently, the pore volumes of the NCs increased with the increasing content of dicyandiamide in the precursor. Among these samples, the NCs nanoflakes prepared with the citric acid/dicyandiamide mass ratio of 1:6, NC-6,show the highest N content of ~6.2 at%, in which pyridinic and graphitic N groups are predominant. Compared to the commercial Pt/C catalyst, the as-prepared NC-6 exhibits a small negative shift of ~66 mV at the half-wave potential, demonstrating excellent electrocatalytic activity in the oxygen reduction reaction. Moreover, NC-6 also shows better long-term stability and resistance to methanol crossover compared to Pt/C. The efficient and stable performance are attributed to the graphene-like microstructure and high content of pyridinic and graphitic doped nitrogen in the sample, which creates more active sites as well as facilitating charge transfer due to the close four-electron reaction pathway. The superior electrocatalytic activity coupled with the facile synthetic method presents a new pathway to cost-effective electrocatalysts for practical fuel cells or metal–air batteries.Daguo Gu Yao Zhou Ruguang Ma Fangfang Wang Qian Liu Jiacheng Wang 2018Nano-Micro Letters2018,10,2:6
14IDSRadar:a real-time visualization framework for IDS alerts显示文摘Intrusion Detection Systems(IDS) is an automated cyber security monitoring system to sense malicious activities.Unfortunately,IDS often generates both a considerable number of alerts and false positives in IDS logs.Information visualization allows users to discover and analyze large amounts of information through visual exploration and interaction efficiently.Even with the aid of visualization,identifying the attack patterns and recognizing the false positives from a great number of alerts are still challenges.In this paper,a novel visualization framework,IDSRadar,is proposed for IDS alerts,which can monitor the network and perceive the overall view of the security situation by using radial graph in real-time.IDSRadar utilizes five categories of entropy functions to quantitatively analyze the irregular behavioral patterns,and synthesizes interactions,filtering and drill-down to detect the potential intrusions.In conclusion,IDSRadar is used to analyze the mini-challenges of the VAST challenge 2011 and 2012.ZHAO Ying ZHOU FangFang FAN XiaoPing LIANG Xing LIU YongGang 2013Science China(Information Sciences)2013,56,8:5
15Analysis of structural components of decellularized scaffolds in renal fibrosis显示文摘Chronic kidney disease has been recognized as a major public health problem worldwide and renal fibrosis is a common pathological process occurring in chronic renal failure.It is very promising to find the strategies to slow or even prevent the progression of fibrosis.This study focused on whether renal fibrosis decellularized scaffolds has the potential to be a model of cellular mechanisms of tissue fibrosis or donors for tissue engineering.In order to evaluate the feasibility of decellularized scaffolds derived from pathological kidneys,histology,proteomics and ELISA will be used to analysis the changes in the structure and main components of fibrotic tissue.The fibrosis model in this paper was induced by adenine-fed and the results showed that the structure of fibrotic scaffold was changed and some protein were up-regulated or down-regulated,but the cytokines associated with renal regeneration after injury were remained.In cell experiments,endothelial progenitor cells proliferated well,which proved that the fibrotic scaffolds have non-cytotoxic.All these conclusions indicate that the renal fibrosis decellularized scaffolds model has the ability to study fibrosis mechanism and the potential to be engineering donors as well as normal scaffolds.Rui Zhang Junqun Jiang Yaling Yu Fangfang Wang Niuniu Gao Yingjie Zhou Xinlong Wan Zhibin Wang Peng Wei Jin Mei 2021Bioactive Materials2021,6,7:5
16Interval mapping for red/green skin color in Asian pears using a modified QTL-seq method显示文摘Pears with red skin are attractive to consumers and provide additional health benefits.Identification of the gene(s)responsible for skin coloration can benefit cultivar selection and breeding.The use of QTL-seq,a bulked segregant analysis method,can be problematic when heterozygous parents are involved.The present study modified the QTL-seq method by introducing a|Δ(SNP-index)|parameter to improve the accuracy of mapping the red skin trait in a group of highly heterozygous Asian pears.The analyses were based on mixed DNA pools composed of 28 red-skinned and 27 green-skinned pear lines derived from a cross between the‘Mantianhong’and‘Hongxiangsu’red-skinned cultivars.The‘Dangshansuli’cultivar genome was used as reference for sequence alignment.An average single-nucleotide polymorphism(SNP)index was calculated using a sliding window approach(200-kb windows,20-kb increments).Nine scaffolds within the candidate QTL interval were in the fifth linkage group from 111.9 to 177.1 cM.There was a significant linkage between the insertions/deletions and simple sequence repeat markers designed from the candidate intervals and the red/green skin(R/G)locus,which was in a 582.5-kb candidate interval that contained 81 predicted protein-coding gene models and was composed of two subintervals at the bottom of the fifth chromosome.The ZFRI 130-16,In2130-12 and In2130-16 markers located near the R/G locus could potentially be used to identify the red skin trait in Asian pear populations.This study provides new insights into the genetics controlling the red skin phenotype in this fruit.Huabai Xue Ting Shi Fangfang Wang Huangkai Zhou Jian Yang Long Wang Suke Wang Yanli Su Zhen Zhang Yushan Qiao Xiugen Li 2017Horticulture Research2017,4,1:5
17The βC1 Protein of Gem,n,v,rus--Betasatellite Complexes:A Target and Repressor of Host Defenses显示文摘Geminiviruses are a family of plant viruses that cause devastating diseases in many economically important crops worldwide. These pathogens encapsidate circular,single-stranded DNAs (ssDNAs)of 2.5-3.0 kb that replicate through double-stranded DNA (dsDNA)intermediates.Members of the genus Begomovirus,which comprises by far the largest number of species in the family,are transmitted by whiteflies and have genomes consisting of one or two DNAs.Fangfang Li Xiuling Yang David M.Bisaro Xueping Zhou 2018Molecular Plant2018,11,12:5
18SARS-CoV-2 Omicron variant:recent progress and future perspectives显示文摘Since the outbreak of the coronavirus disease 2019(COVID-19)pandemic,there have been a few variants of the severe acute respiratory syndrome coronavirus 2(SARS-CoV-2),one of which is the Omicron variant(B.1.1.529).The Omicron variant is the most mutated SARS-CoV-2 variant,and its high transmissibility and immune evasion ability have raised global concerns.Owing to its enhanced transmissibility,Omicron has rapidly replaced Delta as the dominant variant in several regions.However,recent studies have shown that the Omicron variant exhibits reduced pathogenicity due to altered cell tropism.In addition.Yao Fan Xiang Li Lei Zhang Shu Wan Long Zhang Fangfang Zhou 2022Signal Transduction and Targeted Therapy2022,7,5:4
19Synthesis and optical characterization of Eu^(2+),Tb^(3+)-codoped Sr_3Y(PO_4)_3 green phosphors显示文摘A series of Eu^(2+),Tb^(3+)-codoped Sr_3 Y(PO_4)_3(SYP) green phosphors were synthesized by hightemperature solid-state reaction. Several techniques, such as X-ray diffraction, UV-vis spectrum,and photoluminescence spectrum, were used to investigate the obtained phosphors. The present study investigates in detail photoluminescence excitation and emission properties, energy transfer between the two dopants, and effects of doping ions on optical band gap. SYP:0.05 Eu2+ phosphor shows an intense and broad excitation band ranging from 220 to 400 nm and exhibits a bright green emission band with CIE chromaticity coordinates(0.189, 0.359) under 350 nm excitation. Green emission of SYP:0.03 Tb3+ is intensified by codoping with Eu^(2+), and energy transfer mechanism between them is demonstrated to be a dipole-dipole interaction. Upon 350 nm excitation, SYP:Eu^(2+),Tb^(3+) phosphors exhibits two dominating bands peaking at 466 and 545 nm, which are assigned to 4 f^65 d^1→4 f^7 transition of Eu^(2+) ions and ~5 D_4→~7 F_5 transition of Tb^(3+) ions, respectively. Optimal doping concentrations of Eu^(2+) and Tb^(3+) in the SYP host are 5 mol% and 15 mol%, respectively. Results indicate that SYP:Eu^(2+),Tb^(3+) phosphors are potentially used as green-emitting phosphors for white light-emitting diodes.Anxiang Guan Zuizhi Lu Fangfang Gao Xiaoshan Zhang Huan Wang Tianjiao Huang Liya Zhou 2018Journal of Rare Earths2018,36,3:4
20Liquid-liquid phase separation in human health and diseases显示文摘Emerging evidence suggests that liquid-liquid phase separation(LLPS)represents a vital and ubiquitous phenomenon underlying the formation of membraneless organelles in eukaryotic cells(also known as biomolecular condensates or droplets).Recent studies have revealed evidences that indicate that LLPS plays a vital role in human health and diseases.In this review,we describe our current understanding of LLPS and summarize its physiological functions.We further describe the role of LLPS in the development of human diseases.Additionally,we review the recently developed methods for studying LLPS.Although LLPS research is in its infancy-but is fast-growing-it is clear that LLPS plays an essential role in the development of pathophysiological conditions.This highlights the need for an overview of the recent advances in the field to translate our current knowledge regarding LLPS into therapeutic discoveries.Bin Wang Lei Zhang Tong Dai Ziran Qin Huasong Lu Long Zhang Fangfang Zhou 2021Signal Transduction and Targeted Therapy2021,6,9:4
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