Publications by authors named "Mukherjee G"

Subcapsular liver haematoma in pregnancy, a rare and life-threatening condition, is more commonly associated with severe preeclampsia and haemolysis, elevated liver enzymes, and low platelet count (HELLP) syndrome. The common presenting symptom of subcapsular haematoma is acute-onset upper abdominal pain in patients suffering from preeclampsia; shock is the presenting feature in severe cases of rupture. Here we have discussed a case of subcapsular haematoma associated with HELLP syndrome in a patient who responded to conservative management.

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  • - The article discusses the growing interest in circular bioeconomy, which focuses on turning waste materials into useful resources, particularly through sustainable practices.
  • - It emphasizes the potential of using fungal processes to break down lignocellulosic waste from agriculture and forestry, showcasing how fungi can efficiently turn these tough materials into bio-based products.
  • - By highlighting key fungal species and their biochemical pathways, the article aims to enhance the effectiveness of waste conversion processes and promote more environmentally friendly waste management and product manufacturing.
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  • The enzyme carbonic anhydrase has been a key focus in understanding how zinc facilitates the hydration of CO, while its immobilization on varied platforms has led to new hybrid catalysts.
  • The performance of both natural and immobilized carbonic anhydrases declines under industrial conditions such as high temperature and flow rates, prompting the development of model systems like metal-coordination complexes and nanomaterials to better mimic the enzyme's active site.
  • The research explores the effects of substituting zinc with other transition metals in these systems, revealing that they can replicate the enzyme's activity and discussing the potential for engineered carbonic anhydrases in non-traditional reactions.
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Background: Rapid utilization of natural resources and other anthropogenic activities intruded heavy metals into the food chain and raised alarming concern for all life forms. The available methods proved insufficient in handling waste and pollutants due to the high cost and generation of toxic residues. Bioremediation strategies have offered sustainable solutions for toxic pollutants.

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Inflammation is an early immune response against invading pathogens and damaged tissue. Although beneficial, uncontrolled inflammation leads to various diseases including cancer in a chronic setting. Peroxynitrite (PN) is a major reactive nitrogen species generated during inflammation.

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Rapid industrialization, mining, and other anthropogenic activities have poisoned our environment with heavy metals, negatively impacting all forms of life. Heavy metal pollution causes physiological and neurological disorders, as heavy metals are endocrine disrupters, carcinogenic, and teratogenic. Therefore, it becomes mandatory to address the challenge of heavy metal contamination on a global scale.

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Cytochrome P450 2B4 (CYP 2B4) is one of the best-characterized CYPs and serves as a key model system for understanding the mechanisms of microsomal class II CYPs, which metabolize most known drugs. The highly flexible nature of CYP 2B4 is apparent from crystal structures that show the active site with either a wide open or a closed heme binding cavity. Here, we investigated the conformational ensemble of the full-length CYP 2B4 in a phospholipid bilayer, using multiresolution molecular dynamics (MD) simulations.

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Objectives The objective of this study was to introduce a new system of handover in the gynaecology department and ensure its effectiveness with dynamic improvement measures. This was launched as a quality improvement project in a district general hospital in the United Kingdom. The primary aim was to start and consolidate a new system of a separate gynaecology handover in the presence of consultants, registrars (incoming and outgoing), senior house officers (incoming and outgoing) and gynaecology nurses.

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We have conducted a detailed high-pressure (HP) investigation on Eu-doped BaTiO3 using angle-resolved x-ray diffraction, Raman spectroscopy, and dielectric permittivity measurements. The x-ray diffraction data analysis shows a pressure-induced structural phase transition from the ambient tetragonal to the mixed cubic and tetragonal phases above 1.4 GPa.

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Background: Oral cancer poses a significant health challenge due to limited treatment protocols and therapeutic targets. We aimed to investigate the invasive margins of gingivo-buccal oral squamous cell carcinoma (GB-OSCC) tumors in terms of the localization of genes and cell types within the margins at various distances that could lead to nodal metastasis.

Methods: We collected tumor tissues from 23 resected GB-OSCC samples for gene expression profiling using digital spatial transcriptomics.

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LncRNAs and miRNAs, being the master regulators of gene expression, are crucial functional mediators in cancer. Our study unveils the critical regulatory role of the metastatic long non-coding RNA LINC00273 as the master regulator of oncogenes involved in cancer metastasis, stemness, and chemoresistance via its miRNA sponging mechanism. M2 (a salt of bis-Schiff base) mediated G quadruplex (G4) stabilization at the LINC00273 gene promoter remarkably inhibits LINC00273 transcription.

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No biomarker has yet been identified that allows accurate diagnosis and prognosis of oral cancers. In this study, we investigated the presence of key metabolites in oral cancer using proton nuclear magnetic resonance (NMR) spectroscopy to identify metabolic biomarkers of gingivobuccal oral squamous cell carcinoma (GB-OSCC). NMR spectroscopy revealed that uracil was expressed in 83.

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Chronic wounds suffer from impaired healing due to microbial attack and poor vascular growth. Thermoresponsive hydrogels gained attention in wound dressing owing to their gelation at physiological temperature enabling them to take the shape of asymmetric wounds. The present study delineates the development of thermoresponsive hydrogel (MCK), from hair-derived keratin (K) and methylcellulose (MC) in the presence of sodium sulfate.

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Butyrophilin-like 2 (BTNL2) is a T cell inhibitory molecule that interacts with unknown binding partners to modulate the immune response in a number of inflammatory and autoimmune diseases. In this study, we found that the inhibitory effects of BTNL2 on T cell activation and effector functions can be executed by its N-terminal IgV domain (BTNL2 IgV1) alone. Structure-guided mutation of key residues on BTNL2 IgV1 based on known receptor-ligand interfaces involving immunoglobulin superfamily members revealed that BTNL2 uses a non-canonical binding interface with its putative receptor.

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P38γ (MAPK12) is predominantly expressed in triple negative breast cancer cells (TNBC) and induces stem cell (CSC) expansion resulting in decreased survival of the patients due to metastasis. Abundance of G-rich sequences at MAPK12 promoter implied the functional probability to reverse tumorigenesis, though the formation of G-Quadruplex (G4) structures at MAPK12 promoter is elusive. Here, we identified two evolutionary consensus adjacent G4 motifs upstream of the MAPK12 promoter, forming parallel G4 structures.

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Double differential neutron fluence distributions were measured in the Li(p,n)Be reaction for proton beam energies 7, 9 and 12 MeV. Seven liquid scintillator based detectors were employed to measure neutron fluence distributions using the Time of Flight technique. Neutron ambient dose equivalents were determined from the measured fluence distribution using ICRP (International Commission on Radiological Protection) recommended fluence to dose equivalent conversion coefficients.

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Neodymium nickelate, NdNiO, attracts attention due to the simultaneous occurrence of several phase transitions around the same temperature. The electronic properties of NdNiO are extremely complex as structural distortion, electron correlation, charge ordering, and orbital overlapping play significant roles in the transitions. We report the effects of electron and hole injection doping a single 3d metal, V, in the NdNiO nanostructure to understand the variations in the electronic properties without any structural distortion.

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  • Scientists have been puzzled by Fe-alkylperoxido complexes because they are unstable and don’t react well with other substances.
  • New research shows that a special Fe-alkylperoxido complex is actually pretty stable and can react in useful ways.
  • This study also discovered a new reaction process that involves breaking a different bond (O-C) instead of the usual (O-O), which helps make the complex more reactive.
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The COVID-19 pandemic continues to pose a substantial threat to human lives and is likely to do so for years to come. Despite the availability of vaccines, searching for efficient small-molecule drugs that are widely available, including in low- and middle-income countries, is an ongoing challenge. In this work, we report the results of an open science community effort, the "Billion molecules against COVID-19 challenge", to identify small-molecule inhibitors against SARS-CoV-2 or relevant human receptors.

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A soluble isoform of cytotoxic T-lymphocyte-associated antigen 4 (CTLA-4) has been found in the serum of healthy individuals and alterations in its expression level have been linked with the development and progression of various cancers. Conventionally, soluble CTLA-4 (sCTLA-4) has been quantified by techniques such as ELISA, western blot, and flow cytometry, which however are time-consuming, highly expensive and require large sample volumes. Therefore, rapid, cost-effective and real-time monitoring of soluble CTLA-4 levels is much needed to facilitate timely diagnosis of a worsening disease and help patient selection for immunotherapeutic interventions in cancer.

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  • The study examines the causes and antibiotic treatment of orbital cellulitis in hospitalized children, analyzing data from a children's health system between 2012 and 2019.
  • Out of 298 patients, 86 cultures identified pathogens, with the most common being Streptococcus, Staphylococcus, and various other bacteria.
  • The typical treatment involved a median of 4 days of intravenous antibiotics, with ceftriaxone and clindamycin being the most frequently prescribed, although two antibiotics were often used to cover for methicillin-resistant bacteria.
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The propensity of poorly water-soluble drugs to aggregate at supersaturation impedes their bioavailability. Supersaturated amorphous drug-salt-polymer systems provide an emergent approach to this problem. However, the effects of polymers on drug-drug interactions in aqueous phase are largely unexplored and it is unclear how to choose an optimal salt-polymer combination for a particular drug.

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Immunotherapeutic modulation of antigen-specific T-cell responses instead of the whole repertoire helps avoid immune-related adverse events. We have developed an artificial antigen-presenting system (aAPS) where multiple copies of a multimeric peptide-MHC class I complex presenting a murine class I MHC restricted ovalbumin-derived peptide (signal 1), along with a costimulatory ligand (signal 2) are chemically conjugated to a dextran backbone. Cognate naive CD8 T cells, when treated with this aAPS underwent significant expansion and showed an activated phenotype.

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The Big Grain1 (BG1) gene of rice (Oryza sativa L.) is reported to increase the yield of rice crops; however, its molecular mechanism is largely concealed. To explore its functional prospects, we have taken a structure-function-based approach.

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  • - The Mouse Phenome Database is a curated repository that provides detailed information and tools for analyzing attributes of various mouse populations, including 657 mouse strains and community standard ontologies.
  • - It has evolved from focusing on inbred strains to encompassing diverse populations like the Diversity Outbred and Collaborative Cross, and recently includes data from the International Mouse Phenotyping Consortium.
  • - The database offers an interactive tool suite for users to perform analyses such as correlation and trait pattern matching, supporting research on phenotypic variation related to health and disease across different lifespans.
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