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| 1 | Chicken collagen hydrolysates differentially mediate anti-inflammatory activity and type I collagen synthesis on human dermal fibroblasts显示文摘Collagen is a major extracellular matrix protein.Given the potential anti-inflammatory and antioxidant profiles of these bioactive compounds,there has been increasing interest in using collagen derived peptides and peptide-rich collagen hydrolysates for skin health,due to their immunomodulatory,antioxidant and proliferative effects on dermal fibroblasts.However,all hydrolysates are not equally effective in exerting the beneficial effects;hence,further research is needed to determine the factors that improve the therapeutic applicability of such preparations.We used different enzymatic conditions to generate a number of different collagen hydrolysates with distinct peptide profiles.We found that the use of two rather than one enzyme for hydrolysis generates a greater abundance of low molecular weight peptides with consequent improvement in bioactive properties.Testing these hydrolysates on human dermal fibroblasts showed distinct actions on inflammatory changes,oxidative stress,type I collagen synthesis and cellular proliferation.Our findings suggest that different enzymatic conditions affect the peptide profile of hydrolysates and differentially regulate their biological activities and potential protective responses on dermal fibroblasts. | Marina Offengenden Subhadeep Chakrabarti Jianping Wu | 2018 | Food Science and Human Wellness2018,7,2: | 5 |
| 2 | Friction characteristics of confined inflatable structures显示文摘The availability of high‐strength fabrics and progress in the development of large‐scale inflatable technology made possible the creation of temporary and quickly deployable structures for protection of underground infrastructure.Inflatable structures are relatively lightweight and portable,and can maintain the required rigidity while in operation.These benefits have prompted the development of inflatable structures for use in confined spaces,such as tunnels and large‐diameter pipes to act as barriers for containing flooding with minimal infrastructure modification.This work presents experimental results obtained from the evaluation of frictional characteristics of the fabric material that constitute the structural membrane of confined inflatable structures developed for protection of underground transportation tunnels and other large conduits.Friction tests at coupon level and slippage tests in a reduced‐scale inflatable structure were performed in order to evaluate the frictional characteristics of Vectran webbings.Tests at coupon level were performed to determine the friction coefficient for different surface types and conditions.Tests with the reduced‐scale inflatable structure contributed to the understanding of the friction characteristics at system level when subjected to different pressurization or depressurization sequences designed to induce slippage.Test results indicate that friction coefficient values at coupon level are about 29 percent higher than values derived from reduced‐scale tests. | Eduardo M.SOSA Gregory J.THOMPSON Ever J.BARBERO Subhadeep GHOSH Kevin L.PEIL | 2014 | Friction2014,2,4: | 5 |
| 3 | IL-15 temporally reorients IL-10 biased B-la cells toward I L- 12 expression显示文摘 | Amlan Kanti Ghosh Debolina Sinha Subhadeep Mukherjee Ratna Biswas Tapas Biswas | 2016 | Cellular & Molecular Immunology2016,13,2: | 3 |
| 4 | Actinobacteria-enhanced plant growth, nutrient acquisition, and crop protection:Advances in soil, plant, and microbial multifactorial interactions显示文摘Agricultural areas of land are deteriorating every day owing to population increase, rapid urbanization, and industrialization. To feed today’s huge populations, increased crop production is required from smaller areas, which warrants the continuous application of high doses of inorganic fertilizers to agricultural land. These cause damage to soil health and, therefore, nutrient imbalance conditions in arable soils. Under these conditions, the benefits of microbial inoculants (such as Actinobacteria) as replacements for harmful chemicals and promoting ecofriendly sustainable farming practices have been made clear through recent technological advances. There are multifunctional traits involved in the production of different types of bioactive compounds responsible for plant growth promotion, and the biocontrol of phytopathogens has reduced the use of chemical fertilizers and pesticides. There are some well-known groups of nitrogen-fixing Actinobacteria, such as Frankia, which undergo mutualism with plants and offer enhanced symbiotic trade-offs.In addition to nitrogen fixation, increasing availability of major plant nutrients in soil due to the solubilization of immobilized forms of phosphorus and potassium compounds, production of phytohormones, such as indole-3-acetic acid, indole-3-pyruvic acid, gibberellins, and cytokinins, improving organic matter decomposition by releasing cellulases, xylanase, glucanases, lipases, and proteases, and suppression of soil-borne pathogens by the production of siderophores, ammonia, hydrogen cyanide, and chitinase are important features of Actinobacteria useful for combating biotic and abiotic stresses in plants.The positive influence of Actinobacteria on soil fertility and plant health has motivated us to compile this review of important findings associated with sustaining plant productivity in the long run. | Debasis MITRA Rittick MONDAL Bahman KHOSHRU Ansuman SENAPATI T.K.RADHA Bhaswatimayee MAHAKUR Navendra UNIYAL Ei Mon MYO Hanane BOUTAJ Beatriz Elena GUERRA SIERRA Periyasamy PANNEERSELVAM Arakalagud Nanjundaiah GANESHAMURTHY Snežana ANÐELKOVIĆ Tanja VASIĆ Anju RANI Subhadeep DUTTA Pradeep K.DAS MOHAPATRA | 2022 | Pedosphere2022,32,1: | 3 |
| 5 | Preparation andgamma scintigraphic evaluation of colon specific pellets ofketoprofen prepared by powder layering technology 显示文摘 | Subhabrota M Souvik R Subhadeep C | 2011 | Daru-Journal of Pharmaceutical Sciences ?2011,19,1: | 1 |
| 6 | An Intelligent Transportation System Application for Smartphones Based on Vehicle Position Advertising and Route Sharing in Vehicular Ad-Hoc Networks显示文摘关于到来的紧急情况车辆和他们的线路警告司机能极大地在拥挤的城市里改进他们的旅行时间,当由于分心减少事故的风险时。这份报纸由建议耶稣,能够关于象救护车一样的到来的紧急情况车辆通知常规车辆的机器人应用,警察汽车和消防队贡献这个目标。这被创造能够直接在他们之间交流的车辆的一个网络使可能。因此,用户能由考虑到来的警戒以一种及时方式作开车决定。用我们的 GRCBox 硬件的支持,申请能在 5 GHz 乐队依靠车辆的特定的网络通讯, V2V (vehicle-to-vehicle ) 通讯通过基于机器人的 smartphone 和我们的 GRCBox 设备的联合正在被提供。申请与阻塞的不同层次在三种不同情形被测试,证明提供有能力第二在不到一个以内提醒起来注意 300 米,和通知车辆。 | Seilendria A. Hadiwardoyo Subhadeep Patra Carlos T. Calafate Juan-Carlos Cano Pietro Manzoni | 2018 | Journal of Computer Science & Technology2018,33,2: | 1 |
| 7 | Matrix metalloproteinase-2(MMP-2) and MMP-9 in pulmonary pathology显示文摘 | Subhadeep C 'Kamala D | 2005 | Exp Lung Res2005,31,: | 1 |
| 8 | Food-Derived Bioactive Peptides on Inflammation and Oxidative Stress显示文摘 | Subhadeep Chakrabarti Forough Jahandideh Jianping Wu Blanca Hernández-Ledesma | 2014 | BioMed Research International2014,,: | 1 |
| 9 | Preparationand gamma scintigraphic evaluation of colon specific pellets of ke-toprofen prepared by powder layering technology 显示文摘 | SUBHABROTA M SOUVIK H SUBHADEEP C | 2011 | Dam2011,19,1: | 1 |
| 10 | p38 MAP kinase regulates rapid matrix metalloproteinase-9 release from eosinophils显示文摘 | Shahina W Susan L Subhadeep C | 2004 | Bioehem Biophys Rescommun2004,315,2: | 1 |
| 11 | MATRIX METALLOPROTEINASE-2 (MMP-2) AND MMP-9 IN PULMONARY PATHOLOGY显示文摘 | Subhadeep Chakrabarti Kamala D. Patel | 2005 | Experimental Lung Research2005,,6: | 1 |
| 12 | A neural network based estimation of tumor parameters from a breast thcrmogram 显示文摘 | Subhadeep Mitra Balaji C | 2010 | International Jour-nal of Heat and Mass Transfer2010,53,2122: | 1 |
| 13 | Laser-driven Sisyphus cooling in an optical dipole trap显示文摘 | Ivanov Vladyslav Gupta Subhadeep | 2011 | Physical Review A2011,84,6: | 1 |
| 14 | Matrix metalloproteinase-2 (MMP-2) and MMP-9 in pulmonary pathology 显示文摘 | Subhadeep C Kamala DP | 2005 | Experi- mental Lung Research2005,31,3: | 1 |
| 15 | Anomalous scaling of flexural phonon damping in nanoresonators with confined fluid显示文摘Various one and two-dimensional(1D and 2D)nanomaterials and their combinations are emerging as next-generation sensors because of their unique opto-electro-mechanical properties accompanied by large surface-to-volume ratio and high quality factor.Though numerous studies have demonstrated an unparalleled sensitivity of these materials as resonant nanomechanical sensors under vacuum isolation,an assessment of their performance in the presence of an interacting medium like fluid environment is scarce.Here,we report the mechanical damping behavior of a 1D singlewalled carbon nanotube(SWCNT)resonator operating in the fundamental flexural mode and interacting with a fluid environment,where the fluid is placed either inside or outside of the SWCNT.A scaling study of dissipation shows an anomalous behavior in case of interior fluid where the dissipation is found to be extremely low and scaling inversely with the fluid density.Analyzing the sources of dissipation reveals that(i)the phonon dissipation remains unaltered with fluid density and(ii)the anomalous dissipation scaling in the fluid interior case is solely a characteristic of the fluid response under confinement.Using linear response theory,we construct a fluid damping kernel which characterizes the hydrodynamic force response due to the resonant motion.The damping kernel-based analysis shows that the unexpected behavior stems from time dependence of the hydrodynamic response under nanoconfinement.Our systematic dissipation analysis helps us to infer the origin of the intrinsic dissipation.We also emphasize on the difference in dissipative response of the fluid under nanoconfinement when compared to a fluid exterior case.Our finding highlights a unique feature of confined fluid–structure interaction and evaluates its effect on the performance of high-frequency nanoresonators. | Subhadeep De Narayana R.Aluru | 2019 | Microsystems & Nanoengineering2019,5,1: | 1 |
| 16 | A neural network based estimation of tumour parameters from a breast thermogram显示文摘 | Subhadeep Mitra C. Balaji | 2010 | International Journal of Heat and Mass Transfer2010,,21: | 1 |
| 17 | A Brief Review on Fundamentals of Conductive Polymer(CPs)显示文摘Polymers are huge compounds made up of numerous monomers(repeated subunits).They have similar macro and micro properties,as well as electrical transport qualities,semiconductive capabilities,and optical features.With the advent of conductive polyacetylene,conductive polymers have gotten a lot of interest.These conductors have a wide range of electrical conductivity,which may be produced by doping,while being mechanically flexible and having a high thermal stability.Polymers may be created using a variety of methods,including chemical and electrochemical polymerization.With advancement in material stability and greater property control,an increasing variety of new applications are now being investigated. | Subhadeep Chakraborty Rahul Chatterjee Abhijit Bandyopadhyay | 2022 | Organic Polymer Material Research2022,4,1: | 0 |
| 18 | Bioactive peptides on endothelial function显示文摘Cardiovascular diseases(CVD)such as myocardial infarction and stroke are a major cause of morbidity and mortality worldwide.Impairment of the normal vasorelaxant functions of the vascular endothelium,termed endothelial dysfunction;appear to underlie the pathogenesis of CVD.Endothelial dysfunction is often secondary to abnormal increases in oxidative stress,inflammation and overactivity of the renin–angiotensin system(RAS),which makes these pathways attractive targets for therapeutic interventions.Given the side-effects associated with synthetic pharmaceutical agents,there is growing interest in using natural products such as bioactive peptides for treating chronic diseases like CVD.In this review,we discuss the potential for bioactive peptides with antioxidant,anti-inflammatory and RAS modulating properties for treating endothelial dysfunction and preventing CVD. | Subhadeep Chakrabarti Jianping Wu | 2016 | Food Science and Human Wellness2016,5,1: | 0 |
| 19 | An HESS Based on a Modified MMCC-TSBC Converter Integrating Energy Storages显示文摘This paper presents a modified modular multilevel cascaded converter based on a triple star bridge cell(MMCCTSBC)for integrating different types of energy storage to form a hybrid energy storage system(HESS).The proposed HESS comprises battery energy storage,supercapacitor energy storage and a doubly-fed induction machine(DFIM)based variable speed pump storage(VSPS).Different low-rated energy storage units can be intermixed in this converter to form an HESS.This is possible due to the modular structure of the modified converter and provides an advantage in a high-power energy storage system.To validate the performance of HESS,real-time power variation data is accumulated from online sources and a weighted median filter(WMF)is employed for generating appropriate references for battery energy storage system(BESS)and supercapacitor storage to mitigate both low frequency and high-frequency power variations.Here,the control approach permits independent regulation of grid current and DFIM current through the modified MMCC-TSBC converter.The simulation and experimental results validate the effectiveness of the control scheme for the proposed HESS. | Prabir Ranjan Kasari Subhadeep Bhattacharjee | 2023 | CSEE Journal of Power and Energy Systems2023,9,5: | 0 |
| 20 | Tailoring in fungi for next generation cellulase production with special reference to CRISPR/CAS system显示文摘Cellulose is the utmost plenteous source of biopolymer in our earth,and fungi are the most efcient and ubiquitous organism in degrading the cellulosic biomass by synthesizing cellulases.Tailoring through genetic manipulation has played a substantial role in constructing novel fungal strains towards improved cellulase production of desired traits.However,the traditional methods of genetic manipulation of fungi are time-consuming and tedious.With the availability of the full-genome sequences of several industrially relevant flamentous fungi,CRISPR-CAS(clustered regularly interspaced short palindromic repeats/CRISPR-associated protein)technology has come into the focus for the profcient development of manipulated strains of flamentous fungi.This review summarizes the mode of action of cellulases,transcription level regulation for cellulase expression,various traditional strategies of genetic manipulation with CRISPR-CAS technology to develop modifed fungal strains for a preferred level of cellulase production,and the futuristic trend in this arena of research. | Subhadeep Mondal Suman Kumar Halder Keshab Chandra Mondal | 2022 | Systems Microbiology and Biomanufacturing2022,2,1: | 0 |