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| 1 | Development of monoclonal antibodies and a competitive ELISA detection method for glycinin, an allergen in soybean显示文摘 | MA Xi SUN Peng HE Pingli | 2010 | Food Chemistry2010,121,2: | 1 |
| 2 | Engineering immune-responsive biomaterials for skin regeneration显示文摘The progress of biomaterials and tissue engineering has led to significant advances in wound healing,but the clinical therapy to regenerate perfect skin remains a great challenge.The implantation of biomaterial scaffolds to heal wounds inevitably leads to a host immune response.Many recent studies revealed that the immune system plays a significant role in both the healing process and the outcome.Immunomodulation or immuno-engineering has thus become a promising approach to develop pro-regenerative scaffolds for perfect skin regeneration.In this paper,we will review recent advancements in immunomodulating biomaterials in the field of skin repair and regeneration,and discuss strategies to modulate the immune response by tailoring the chemical,physical and biological properties of the biomaterials.Understanding the important role of immune responses and manipulating the inherent properties of biomaterials to regulate the immune reaction are approaches to overcome the current bottleneck of skin repair and regeneration. | Pingli Wu Yangyang Liang Guoming Sun | 2021 | Biomaterials Translational2021,2,1: | 1 |
| 3 | Development of monoclonal antibodies and a competitive ELISA detection method for glycinin,an allergen in soybean显示文摘 | MA Xi SUN Peng HE Pingli | 2010 | Food Chemistry2010,121,2: | 1 |
| 4 | Enhancing the short-circuit current and efficiency of organic solar cells using MoO 3 and CuPc as buffer layers显示文摘 | Fei Cheng Guojia Fang Xi Fan Nishuang Liu Nanhai Sun Pingli Qin Qiao Zheng Jiawei Wan Xingzhong Zhao | 2011 | Solar Energy Materials and Solar Cells2011,,10: | 1 |
| 5 | Microstructure and mechanical properties of as-cast AZ81-xGd magnesium alloy 显示文摘 | Guo Quanying Mao Pingli Sun Jing | 2008 | Rare Metals2008,27,8: | 1 |
| 6 | Development of monoclonal antibodies and a competitive ELISA detection method for glycinin,an allergen in soybean显示文摘 | MA Xi SUN Peng HE Pingli | 2010 | Food Chemistry2010,121,2: | 1 |
| 7 | Development of monoclonal antibodies and a competitive ELISA detection method for glycinin, an allergen in soybean 显示文摘 | MA Xi SUN Peng HE Pingli | 2010 | Food Chemistry2010,121,2: | 1 |
| 8 | Development of monoclonal antibodies and a competitive ELISA de- tection method for glycinin, an allergen in soybean 显示文摘 | Xi Ma Peng Sun Pingli He | 2010 | Food Chemistry2010,121,2: | 1 |
| 9 | Ultrathin two-dimensional bimetal NiCo-based MOF nanosheets as ultralight interlayer in lithium-sulfur batteries显示文摘Lithium-sulfur batteries as one of the most promising next-generation high-energy storage system, the shuttle effect, the expansion of cathode and the slow electrode redox kinetics limit its further development. Herein, we report a two-dimensional, ultrathin and ultra-light bimetal-Ni Co-organic framework as the interlayer for Li-S batteries. This kind of interlayer can effectively block polysulfides and accelerate the conversion with a thickness of only 1 μm and a load of 0.1 mg/cm^(2). Because the MOF nanosheets with a thickness of a few nanometers have a large specific surface and a large number of exposed accessible active sites. At the same time, the intrinsic activity of each site is enhanced and the catalytic performance is improved due to the synergistic effect of mixed metals and the unique coordination environment around the active sites. So, 2D NiCo MOF/CNT totally meets the requirements for the lightweight and effective interlayer. The initial discharge capacity of cell with 2D NiCo MOF/CNT interlayer can reach 1132.7 m Ah/g at 0.5 C. It remained 709.1 m Ah/g after 300 cycles, showing good cycling stability and rate performance. | Pingli Feng Wenshuo Hou Zhe Bai Yu Bai Kening Sun Zhenhua Wang | 2023 | Chinese Chemical Letters2023,34,4: | 1 |
| 10 | G-quadruplexes folding mediates downregulation of PBX1 expression in melanoma显示文摘Dear Editor,Pre-B-cell leukemia homeobox transcription factor 1(PBX1)is identified at t(1;19)chromosomal translocations in acute pre-B-cell leukemia and is involved in regulating multiple biological processes.1 Importantly,accumulating evidence have suggested that dysregulation of PBX1 have been shown to be involved in tumorigenesis,poor prognosis and drug resistance.1 It has been shown that the expression of PBX1 is increased in melanoma cells and overexpression of PBX1 significantly promotes the melanoma cell growth. | Yutong Sui Feilin Liu Song Zheng Xiaomei Liu Pingli Sun Chunli Yao Yingyao Zhang Hongwen Gao Xinghua Gao Jinyu Liu | 2023 | Signal Transduction and Targeted Therapy2023,8,2: | 0 |
| 11 | Rationally engineered Co and N co-doped WS_(2) as bifunctional catalysts for pH-universal hydrogen evolution and oxidative dehydrogenation reactions显示文摘In the field of electrolysis of water,the design and synthesis of catalysts over a wide pH range have attracted extensive attentions.In this paper,Co and N are co-introduced into the structural unit of tungsten disulfide(WS_(2)),and the hydrogen evolution reaction(HER)performances of different WS_(2)-based catalysts are theoretically predicted and systematically studied by density functional theory(DFT)calculations.With the guidance of DFT calculations,an evaporation-pyrolysis strategy is applied to prepare Co and N co-doped WS_(2)(Co,N-WS_(2))flower-like nanosheets,which exhibits excellent HER performance over a wide pH range.In addition,the DFT calculations show that the active sites in Co,N-WS_(2) have a good ability of hydrogen adsorption after the introduction of Co and N,suggesting that such a co-doping system will be an ideal catalyst for oxidative dehydrogenation(ODH).The following experiment results indeed evidence that the Co,N-WS_(2) catalyst displays a high activity in the ODH of 1,2,3,4-tetrahydroquinoline(4H-quinoline)and its derivatives.Therefore,this work provides a good example for the rational design and accurate preparation of functional catalysts,which enables it possible to develop other efficient catalysts with multiple functions. | Min Ling Na Li Binbin Jiang Renyong Tu Tao Wu Pingli Guan Yin Ye Weng-Chon(Max)Cheong Kaian Sun Shoujie Liu Konglin Wu Aijian Huang Xianwen Wei | 2022 | Nano Research2022,15,3: | 0 |
| 12 | Post-transcriptional regulation of grain weight and shape by the RBP-A-J-K complex in rice显示文摘RNA-binding proteins(RBPs)are components of the post-transcriptional regulatory system,but their regulatory effects on complex traits remain unknown.Using an integrated strategy involving map-based cloning,functional characterizations,and transcriptomic and population genomic analyses,we revealed that RBP-K(LOC_Os08g23120),RBP-A(LOC_Os11g41890),and RBP-J(LOC_Os10g33230)encode proteins that form an RBP-A-J-K complex that negatively regulates rice yield-related traits.Examinations of the RBP-A-J-K complex indicated RBP-K functions as a relatively non-specific RBP chaperone that enables RBP-A and RBP-J to function normally.Additionally,RBP-J most likely affects GA pathways,resulting in considerable increases in grain and panicle lengths,but decreases in grain width and thickness.In contrast,RBP-A negatively regulates the expression of genes most likely involved in auxin-regulated pathways controlling cell wall elongation and carbohydrate transport,with substantial effects on the rice grain filling process as well as grain length and weight.Evolutionarily,RBP-K is relatively ancient and highly conserved,whereas RBP-J and RBP-A are more diverse.Thus,the RBP-A-J-K complex may represent a typical functional model for many RBPs and protein complexes that function at transcriptional and post-transcriptional levels in plants and animals for increased functional consistency,efficiency,and versatility,as well as increased evolutionary potential.Our results clearly demonstrate the importance of RBP-mediated post-transcriptional regulation for the diversity of complex traits.Furthermore,rice grain yield and quality may be enhanced by introducing various complete or partial loss-of-function mutations to specific RBP genes using clustered regularly interspaced palindromic repeats(CRISPR)/CRISPR-associated protein 9 technology and by exploiting desirable natural tri-genic allelic combinations at the loci encoding the components of the RBP-A-J-K complex through marker-assisted selection. | Ding Ren Hui Liu Xuejun Sun Fan Zhang Ling Jiang Ying Wang Ning Jiang Peiwen Yan Jinhao Cui Jinshui Yang Zhikang Li Pingli Lu Xiaojin Luo | 2024 | Journal of Integrative Plant Biology2024,66,1: | 0 |
| 13 | Enhancing electrochemical conversion of lithium polysulfide by 1T-rich MoSe_(2) nanosheets for high performance lithium-sulfur batteries显示文摘The sluggish conversion kinetics and shuttle effect of lithium polysulfides(LiPSs)severely hamper the commercialization of lithium-sulfur batteries.Numerous electrocatalysts have been used to address these issues,amongst which,transition metal dichalcogenides have shown excellent catalytic performance in the study of lithium-sulfur batteries.Note that dichalcogenides in different phases have different catalytic properties,and such catalytic materials in different phases have a prominent impact on the performance of lithium-sulfur batteries.Herein,1T-phase rich MoSe_(2)(T-MoSe_(2))nanosheets are synthesized and used to catalyze the conversion of LiPSs.Compared with the 2H-phase rich MoSe_(2)(H-MoSe_(2))nanosheets,the T-MoSe_(2) nanosheets significantly accelerate the liquid phase transformation of LiPSs and the nucleation process of Li2S.In-situ Raman and X-ray photoelectron spectroscopy(XPS)find that T-MoSe_(2) effectively captures LiPSs through the formation of Mo-S and Li-Se bonds,and simultaneously achieves fast catalytic conversion of LiPSs.The lithium-sulfur batteries with T-MoSe_(2) functionalized separators display a fantastic rate performance of 770.1 mAh/g at 3 C and wonderful cycling stability,with a capacity decay rate as low as 0.065%during 400 cycles at 1 C.This work offers a novel perspective for the rational design of selenide electrocatalysts in lithium-sulfur chemistry. | Ruilong Li Zhe Bai Wensuo Hou Zeyu Wu Pingli Feng Yu Bai Kening Sun Zhenhua Wang | 2023 | Chinese Chemical Letters2023,34,11: | 0 |
| 14 | Watermelon domestication was shaped by stepwise selection and regulation of the metabolome显示文摘Although crop domestication has greatly aided human civilization,the sequential domestication and regulation of most quality traits remain poorly understood.Here,we report the stepwise selection and regulation of major fruit quality traits that occurred during watermelon evolution.The levels of fruit cucurbitacins and flavonoids were negatively selected during speciation,whereas sugar and carotenoid contents were positively selected during domestication.Interestingly,fruit malic acid and citric acid showed the opposite selection trends during the improvement.We identified a novel gene cluster(CGC1,cucurbitacin gene cluster on chromosome 1)containing both regulatory and structural genes involved in cucurbitacin biosynthesis,which revealed a cascade of transcriptional regulation operating mechanisms.In the CGC1,an allele caused a single nucleotide change in Cl ERF1 binding sites(GCC-box)in the promoter of Cl Bh1,which resulted in reduced expression of Cl Bh1 and inhibition of cucurbitacin synthesis in cultivated watermelon.Functional analysis revealed that a rare insertion of 244 amino acids,which arose in C.amarus and became fixed in sweet watermelon,in Cl OSC(oxidosqualene cyclase)was critical for the negative selection of cucurbitacins during watermelon evolution.This research provides an important resource for metabolomics-assisted breeding in watermelon and for exploring metabolic pathway regulation mechanisms. | Pingli Yuan Congping Xu Nan He Xuqiang Lu Xingping Zhang Jianli Shang Hongju Zhu Chengsheng Gong Hanhui Kuang Tang Tang Yong Xu Shuangwu Ma Dexi Sun Weiqin Zhang Muhammad J.Umer Jian Shi Alisdair R.Fernie Wenge Liu Jie Luo | 2023 | Science China(Life Sciences)2023,66,3: | 0 |
| 15 | TIPS behavior for IPP/nano-SiO_2 blend membrane formation and its contribution to membrane morphology and performance显示文摘In the present work, the TIPS behavior of isotactic polypropylene(iP P)/di-n-butyl phthalate(DBP)/dioctyl phthalate(DOP)/nano-SiO_2 system and the competition relation between liquid–liquid phase separation and polymer crystallization are successfully adjusted by adding nano-SiO_2. The liquid–liquid phase separation temperature of the system increases with increasing nano-SiO_2 content. Besides, iP P crystallization temperature is also changed after adding nano-SiO_2. IPP/nano-SiO_2 blend hollow fiber microporous membrane is prepared via TIPS method. SEM photos show that the membrane exhibits mixed morphology combining cellular structure relating to liquid–liquid phase separation and branch structure originating from polymer crystallization. The relative weight of cellular structure first decreases and then increases with the increase of nano-SiO_2 content. Furthermore, porosity, connectivity among pores and pure water flux of the membrane first increase and then decrease with increasing nano-SiO_2 content. However, mechanical performance of the membrane is improved at all times with increasing nano-SiO_2 content. | Zhensheng Yang Zheng Sun Dongsheng Cui Pingli Li Zhiying Wang | 2019 | Chinese Journal of Chemical Engineering2019,27,2: | 0 |