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6篇 您的检索式:作者名="Ratan PAL"
    题名 作者 年代 出处 被引量
1Synergism of co-delivered nanosized antioxidants displayed enhanced anticancer efficacy in human colon cancer cell lines显示文摘Combination of chemopreventive and/or therapeutic agents is the imminent smart approach to cope upwith cancer because it may act on multiple targets through different pathways. In the present study, wehave synthesized multiple chemopreventive and/or therapeutic agents (Curcumin, Quercetin andAspirin) loaded nanoparticles by simple cation-anion interaction among the amine groups of chitosan(CS) and phosphate groups of sodium hexametaphosphate (SHMP). These nanosized bioactive materials(CS-SHMP-CQA-NPs) were well characterized and found most effective in colon cancer cell line (HCT-116)compared to other cancer cell lines. Triplex chemopreventive and/or therapeutic agents-loaded NPs weresynergistically inducing apoptosis in HCT-116 cells compared to two-chemopreventive agents-loadedNPs as evident by an increase in sub-G1 cells (percent), and chromatin condensation along with thedecrease in mitochondrial membrane potential (MMP). Interestingly, ChoueTalalay analysis revealedthat CS-SHMP-CQA-NPs showed strong synergistic effect in its all doses. Thus, our study demonstratesthat nanoparticles based bioactive materials significantly inhibit the growth of HCT-116 cells and thuscould be a promising approach for colon cancer chemoprevention.Lipika Ray Manish Kumar Pal Ratan Singh Ray 2017Bioactive Materials2017,2,2:2
2Influence of sea buckthorn (Hippophae rhamnoides L) flavone on dermal wound healing in rats显示文摘Asheesh Gupta Ratan Kumar Karan Pal 2006Molecular and Cellular Biochemistry2006,290,:1
3Integrative assessment of biomarker responses in teleostean fishes exposed to glyphosate-based herbicide(Excel Mera 71)显示文摘Present study deals with the effects of glyphosate-based herbicide,Excel Mera 71 on Anabas testudineus,Heteropnestes fossilis and Oreochromis niloticus in field conditions(1.85 kg/ha)based on anti-oxidative,metabolic and digestive responses.For this study following biomarkers viz.,acetylcholinesterase(AChE),lipid peroxidation(LPO),catalase(CAT),glutathione-S-transferase(GST),alkaline phosphatase(ALP),aspartate aminotransferase(AST),alanine aminotransferase(ALT),amylase,lipase and protease were investigated in gill,stomach,intestine,liver,kidney,brain,muscle and spinal cord of the concerned fish species.Enzyme activities were significantly altered by glyphosate exposure after 30 days,these activities were tissue as well as species specific.The results suggested that these biomarkers could be used to assess the ecological risks of glyphosate on fish.Bioaccumulation factor(BAF)studied in different aquatic natural macrophytes showed order of Alternanthera philoxeroides>Azolla pinnata>Lemna sp.(Minor)>Lemna sp.(Major)>Pistia stratiotes,while transfer factor(TF)showed the order of Pistia stratiotes>Alternanthera philoxeroides>Lemna sp.Bioconcentration factor(BCF)study showed maximum accumulation of glyphosate in liver,kidney or intestine,and minimum either in bone or stomach irrespective of fish species.An integrated biomarker response(IBR),which uses a battery of biomarkers to calculate the standardized scores for each biomarker responses ranging from physiological to biochemical/molecular responses,was evaluated by combining the multiple biomarkers into a single value to evaluate quantitatively the toxicological effects of glyphosate.In general,the multiple indices exhibited variations and A.testudineus was more affected than other fish species;maximum IBR value was observed for LPO and minimum in case of ALT.The order of integrated biomarkers caused by glyphosate treatment was recorded as follows:LPO>Amylase>CAT>AST>Protease>Lipase>ALP>GST>AChE>ALT for A.testudineus,LPO>AChE>AST>Protease>CAT>Amylase>Lipase>GST>ALP>ALT for H.fossilis and AChE>CAT>LPO>AST>Amylase>GST>Protease>ALP>Lipase>ALT for O.niloticus.Finally,IBR analysis is able to distinguish the variations between different parameters and might be a useful tool for the quantification of integrated responses induced by glyphosate toward fish.Sukhendu Dey Palas Samanta Sandipan Pal Aloke Kumar Mukherjee Debraj Kole Apurba Ratan Ghosh 2016Emerging Contaminants2016,2,4:0
4Effect of E × B electron drift and plasma discharge in dc magnetron sputtering plasma显示文摘Study of electron drift velocity caused by E × B motion is done with the help of a Mach probe in a dc cylindrical magnetron sputtering system at different plasma discharge parameters like discharge voltage,gas pressure and applied magnetic field strength.The interplay of the electron drift with the different discharge parameters has been investigated.Strong radial variation of the electron drift velocity is observed and is found to be maximum near the cathode and it decreases slowly with the increase of radial distance from the cathode.The sheath electric field,E measured experimentally from potential profile curve using an emissive probe is contributed to the observed radial variation of the electron drift velocity.The measured values of the drift velocities are also compared with the values from the conventional theory using the experimental values of electric and magnetic fields.This study of the drift velocity variation is helpful in providing a useful insight for determining the discharge conditions and parameters for sputter deposition of thin film.Sankar Moni Borah Arup Ratan Pal Heremba Bailung Joyanti Chutia 2011Chinese Physics B2011,20,1:0
5A perspective on molecular and cellular biology-based developmental toxicology biomarkers显示文摘The process of development is intricate and couple-dependent phenomenon.Accordingly,the study of molecular and cellular biology-based developmental toxicology biomarkers increasingly is becoming an important part of risk assessment and management of chemicals for detection of health outcomes and/or biological endpoint like cytotoxicity,cell death,etc.Since,the evolution of developmental toxicology field a number of tools/markers have been developed or addressed to deal with developmental outcomes,which can ultimately be used for the development of adverse outcome pathways(AOPs)of developmental toxicants.As a result,this paper provides an overview of the current state of developmental toxicology biomarkers and describes the strategies used in the selection and evaluation of such biomarkers in the context of developmental toxicity studies.Here,we discuss about the biological markers that are directly linked to developmental toxicity with respect to future revolutionary perspectives.Additionally,this chapter will address different associated outcomes of developmental exposure by intriguing advance techniques.The discussion focuses on the challenges associated with the development of biomarkers for developmental toxicity and highlights some of the recent advances in this area.Finally,the chapter concludes with a brief discussion of the future prospects for the use of molecular and cellular biology-based developmental toxicity biomarkers.Hope the present state of the art will provide a succinct summary of recent developments of biomarkers of developmental toxicology.SUKHENDU DEY SANDIPAN PAL APURBA RATAN GHOSH PALAS SAMANTA 2023BIOCELL2023,47,12:0
6Assessment of soil erosion in the Irga watershed on the eastern edge of the Chota Nagpur Plateau,India显示文摘Human activities to improve the quality of life have accelerated the natural rate of soil erosion.In turn,these natural disasters have taken a great impact on humans.Human activities,particularly the conversion of vegetated land into agricultural land and built-up area,stand out as primary contributors to soil erosion.The present study investigated the risk of soil erosion in the Irga watershed located on the eastern fringe of the Chota Nagpur Plateau in Jharkhand,India,which is dominated by sandy loam and sandy clay loam soil with low soil organic carbon(SOC)content.The study used the Revised Universal Soil Loss Equation(RUSLE)and Geographical Information System(GIS)technique to determine the rate of soil erosion.The five parameters(rainfall-runoff erosivity(R)factor,soil erodibility(K)factor,slope length and steepness(LS)factor,cover-management(C)factor,and support practice(P)factor)of the RUSLE were applied to present a more accurate distribution characteristic of soil erosion in the Irga watershed.The result shows that the R factor is positively correlated with rainfall and follows the same distribution pattern as the rainfall.The K factor values in the northern part of the study area are relatively low,while they are relatively high in the southern part.The mean value of the LS factor is 2.74,which is low due to the flat terrain of the Irga watershed.There is a negative linear correlation between Normalized Difference Vegetation Index(NDVI)and the C factor,and the high values of the C factor are observed in places with low NDVI.The mean value of the P factor is 0.210,with a range from 0.000 to 1.000.After calculating all parameters,we obtained the average soil erosion rate of 1.43 t/(hm^(2)•a),with the highest rate reaching as high as 32.71 t/(hm^(2)•a).Therefore,the study area faces a low risk of soil erosion.However,preventative measures are essential to avoid future damage to productive and constructive activities caused by soil erosion.This study also identifies the spatial distribution of soil erosion rate,which will help policy-makers to implement targeted soil erosion control measures.Ratan PAL Buddhadev HEMBRAM Narayan Chandra JANA 2024Regional Sustainability2024,5,1:0
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