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20篇 您的检索式:作者名="Nitai"
    题名 作者 年代 出处 被引量
1Sphingosine-1-Phosphate Links Persistent STAT3 Activation, Chronic Intestinal Inflammation, and Development of Colitis-Associated Cancer显示文摘Jie Liang Masayuki Nagahashi Eugene Y. Kim Kuzhuvelil B. Harikumar Akimitsu Yamada Wei-Ching Huang Nitai C. Hait Jeremy C. Allegood Megan M. Price Dorit Avni Kazuaki Takabe Tomasz Kordula Sheldon Milstien Sarah Spiegel 2013Cancer Cell2013,,:3
2MicroRNA-144 is a circulating effector of remote ischemic preconditioning显示文摘Jing Li Sagar Rohailla Nitai Gelber James Rutka Nesrin Sabah Rachel A. Gladstone Can Wei Pingzhao Hu Rajesh K. Kharbanda Andrew N. Redington 2014Basic Research in Cardiology2014,,5:2
3Astrocyte elevated gene-1 regulates hepatocellular carcinoma development and progression显示文摘Yoo Byoung Kwon Emdad Luni Su Zao-zhong Villanueva Augusto Chiang Derek Y Mukhopadhyay Nitai D Mills Alan Scott Waxman Samuel Fisher Robert A Llovet Josep M Fisher Paul B Sarkar Devanand 2009Journal of Clinical Investigation2009,,3:2
4Effect of scratching speed on deformation of soda–lime–silica glass显示文摘Payel Bandyopadhyay Arjun Dey Ashoke Mandal Nitai Dey Sudakshina Roy Anoop Mukhopadhyay 2012Applied Physics A2012,,3:1
5Wound healing activity of human placental extracts in rats显示文摘Biswas T K Auddy Biswajit Bhattacharya Nitai P 2001Acta Phaarmacol Sin2001,22,12:1
6The Prospect of Purple Non- Sulfur(PNS) Photosynthetic Bacteria for Hydrogen Production:ThePresent State of the Art显示文摘Nitai Basak Debabrata Das 2006World Journal of Microbiology and Bio-technology2006,23,1:1
7The Prospect of Purple Non-Sulfur (PNS) Photosynthetic Bacteria for Hydrogen Production: The Present State of the Art显示文摘Nitai Basak Debabrata Das 2007World Journal of Microbiology and Biotechnology2007,,1:1
8The prospect of purple non-sulfur (PNS) photosynthetic bacteria for hydrogen production: the present state of the art显示文摘Nitai Basak Debabrata Das 2007World J Microbiol Biotechnol2007,23,:1
9The Prospect of Purple Non-Sulfur (PNS) Photosynthetic Bacteria for Hydrogen Production: The Present State of the Art显示文摘Nitai Basak Debabrata Das 2007World Journal of Microbiology and Biotechnology2007,,1:1
10The role of intrinsically unstructured proteins n neurodegenerative diseases 显示文摘Raychaudauri Swasti Dey Sucharita Bhattacharyya Nitai P ctal PLoS One0,4,5:1
11The Prospect of Purple Non-Sulfur (PNS) Photosynthetic Bacteria for Hydrogen Production: The Present State of the Art显示文摘Nitai Basak Debabrata Das 2007World Journal of Microbiology and Biotechnology2007,,1:1
12人胎盘提取物对大鼠伤口愈合的作用(英文)显示文摘AIM: To study wound healing activity of the humanplacental extract(HPE) in rats. METIHODS: Fullthickness wounds were inflicted on depilated dorsum ofCharles foster rats with 8 mm Acu-punch biopsy. TheHPE was applied both at topical and im routes (2.5 mL/kg). Effects were compared on the basis of physicalcriteria, biochemical criteria, and histopathological studywith respect to untreated control, vehicle control (1. 5%benzyl alcohol), and framycetin topical treated groups.RESULTS: Significant lowering of wound size(P<0.05), wound index(P<0.05), and number of daysrequired for complete healing (P<0.01); significantgain in tensile strength(P<0.01); appreciable increaseof tissue DNA, total protein, and collagenesis wereobserved in HPE treated group. CONCLUSION:Human placental extract systematically helps collagenesisleading to potent healing of wounds.BISWAS Tuhin Kanti AUDDY Biswajit BHATTACHARYA Nitai P BHATTACHARYA Subahshree MUKHERJEE Biswapati 2001Acta Pharmacologica Sinica2001,22,12:1
13Sphingosine kinases, sphingosine 1-phosphate, apoptosis and diseases显示文摘Nitai C. Hait Carole A. Oskeritzian Steven W. Paugh Sheldon Milstien Sarah Spiegel 2006BBA - Biomembranes2006,,12:1
14The prospect of purple non-sulfur(PNS) photosynthetic bacteria for hydrogen production:the present state of the art显示文摘Nitai B Debabrata D 2007World Journal of Microbiological and Biotechnology2007,23,1:1
15Sphingosine-1-phosphate in chronic intestinal inflammation and cancer显示文摘Masayuki Nagahashi Nitai C. Hait Michael Maceyka Dorit Avni Kazuaki Takabe Sheldon Milstien Sarah Spiegel 2013Advances in Biological Regulation2013,,:1
16The prospect of purple non- sulfur (PNS) photosynthetic bacteria for hydrogen production: the present state of the art 显示文摘Nitai Basak Debabrata Das 2007World Journal of Microbiology and Biotechnology2007,23,:1
17Novel applications of solid and liquid formulations of nanoparticles against insect pests and pathogens显示文摘Arunava Goswami Indrani Roy Sutanuka Sengupta Nitai Debnath 2010Thin Solid Films2010,,3:1
18Machine Learning-based Electric Load Forecasting for Peak Demand Control in Smart Grid显示文摘Increasing energy demands due to factors such as population,globalization,and industrialization has led to increased challenges for existing energy infrastructure.Efficient ways of energy generation and energy consumption like smart grids and smart homes are implemented to face these challenges with reliable,cheap,and easily available sources of energy.Grid integration of renewable energy and other clean distributed generation is increasing continuously to reduce carbon and other air pollutants emissions.But the integration of distributed energy sources and increase in electric demand enhance instability in the grid.Short-term electrical load forecasting reduces the grid fluctuation and enhances the robustness and power quality of the grid.Electrical load forecasting in advance on the basic historical data modelling plays a crucial role in peak electrical demand control,reinforcement of the grid demand,and generation balancing with cost reduction.But accurate forecasting of electrical data is a very challenging task due to the nonstationary and nonlinearly nature of the data.Machine learning and artificial intelligence have recognized more accurate and reliable load forecastingmethods based on historical load data.The purpose of this study is to model the electrical load of Jajpur,Orissa Grid for forecasting of load using regression type machine learning algorithms Gaussian process regression(GPR).The historical electrical data and whether data of Jajpur is taken for modelling and simulation and the data is decided in such a way that the model will be considered to learn the connection among past,current,and future dependent variables,factors,and the relationship among data.Based on this modelling of data the network will be able to forecast the peak load of the electric grid one day ahead.The study is very helpful in grid stability and peak load control management.Manish Kumar Nitai Pal 2023Computers, Materials & Continua2023,,3:0
19Microbial biodegradation of plastics: Challenges, opportunities, and a critical perspective显示文摘The abundance of synthetic polymers has increased due to their uncontrolled utilization and disposal in the environment.The recalcitrant nature of plastics leads to accumulation and saturation in the environment,which is a matter of great concern.An exponential rise has been reported in plastic pollution during the corona pandemic because of PPE kits,gloves,and face masks made up of single-use plastics.The physicochemical methods have been employed to degrade synthetic polymers,but these methods have limited efficiency and cause the release of hazardous metabolites or by-products in the environment.Microbial species,isolated from landfills and dumpsites,have utilized plastics as the sole source of carbon,energy,and biomass production.The involvement of microbial strains in plastic degradation is evident as a substantial amount of mineralization has been observed.However,the complete removal of plastic could not be achieved,but it is still effective compared to the preexisting traditional methods.Therefore,microbial species and the enzymes involved in plastic waste degradation could be utilized as eco-friendly alternatives.Thus,microbial biodegradation approaches have a profound scope to cope with the plastic waste problem in a cost-effective and environmental-friendly manner.Further,microbial degradation can be optimized and combined with physicochemical methods to achieve substantial results.This review summarizes the different microbial species,their genes,biochemical pathways,and enzymes involved in plastic biodegradation.Shilpa Nitai Basak Sumer Singh Meena 2022Frontiers of Environmental Science & Engineering2022,16,12:0
20Synthesis of Mg(OH)_(2) micro/nano flowers at room temperature显示文摘The inexpensive and green method of synthesis for self-assembled micro/nano structures is an important area of emerging research.Such structures can be chemically tuned with predesigned functional properties.Therefore,they hold very good promise for future applications,e.g.,biomedicine,electronic device,solar energy,gas sensing.Here we report for the first time an inexpensive and green method for chemical deposition of magnesium hydroxide(Mg(OH)_(2))micro/nano flowers in thin films on commercial soda lime silica glass substrates at room temperature.Under identical conditions,chemically synthesized Mg(OH)_(2) powders are also prepared in absence of the soda lime silica glass substrates.The condition that favors the growth of micro/nano flowers in thin films is identified from X-ray diffraction(XRD),scanning electron microscopy(SEM),field emission scanning electron microscopy(FE-SEM),transmission electron microscopy(TEM),and energy dispersive X-ray spectroscopy(EDX)data.Finally,the possible growth mechanism of micro/nano flowers in thin films is discussed.Pradip Sekhar DAS Arjun DEY Ashok Kumar MANDAL Nitai DEY Anoop K.MUKHOPADHYAY 2013Journal of Advanced Ceramics2013,2,2:0
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