Publications by authors named "Biswas K"

Organisms have evolved protective strategies that are geared toward limiting cellular damage and enhancing organismal survival in the face of environmental stresses, but how these protective mechanisms are coordinated remains unclear. Here, we define a requirement for neural activity in mobilizing the antioxidant defenses of the nematode both during prolonged oxidative stress and prior to its onset. We show that acetylcholine-deficient mutants are particularly vulnerable to prolonged oxidative stress.

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BiTe, a member of the (Bi2)m(Bi2Te3)n homologous series, possesses natural van der Waals-like heterostructure with a Bi2 bilayer sandwiched between the two [Te-Bi-Te-Bi-Te] quintuple layers. BiTe exhibits both the quantum states of weak topological and topological crystalline insulators, making it a dual topological insulator and a suitable candidate for spintronics, quantum computing and thermoelectrics. Herein, we demonstrate that the chemical bonding in BiTe is to be metavalent, which plays a significant role in the pressure dependent change in the topology of the electronic structure Fermi surface.

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Hyaluronic acid (HA) is an important component of the skin's extracellular matrix, and its degradation leads to wrinkles. Hyaluronan-binding protein involved in hyaluronan depolymerization (HYBID) is the main factor responsible for HA degradation in dermis. This study aimed to identify natural plant materials that can effectively suppress HYBID expression and protect HA from degradation.

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Seeking new and efficient thermoelectric materials requires a detailed comprehension of chemical bonding and structure in solids at microscopic levels, which dictates their intriguing physical and chemical properties. Herein, we investigate the influence of local structural distortion on the thermoelectric properties of TlCuS, a layered metal sulfide featuring edge-shared Cu-S tetrahedra within CuS layers. While powder X-ray diffraction suggests average crystallographic symmetry with no distortion in CuS tetrahedra, the synchrotron X-ray pair distribution function experiment exposes concealed local symmetry breaking, with dynamic off-centering distortions of the CuS tetrahedra.

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There is significant interest in monitoring abiotic decomposition of chlorinated solvents at contaminated sites due to large uncertainties regarding the rates of abiotic attenuation of trichloroethylene (TCE) and perchloroethylene (PCE) under field conditions. In this study, an innovative passive sampling tool was developed to quantify acetylene, a characteristic product of abiotic reduction of TCE or PCE, in groundwater. The sampling mechanism is based on the highly specific and facile click reaction between acetylene and an azide compound to form a biologically and chemically stable triazole product.

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Cotton leaf curl disease (CLCuD) is a major constraint for production of cotton (Gossypium sp.) in Northwest India. CLCuD is caused by a monopartite, circular ssDNA virus belonging to the genus Begomovirus in association with betasatellites and alphasatellites, and ttransmitted by a whitefly vector (Bemisia tabaci).

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Article Synopsis
  • Biofilms, which are multicellular bacterial communities embedded in an extracellular matrix, enhance bacterial survival and contribute to severe infections due to their increased antibiotic resistance.
  • Quorum sensing plays a critical role in biofilm production, making it essential to develop new strategies to combat biofilm-related infections, particularly for conditions like post-surgery and wound infections.
  • Plant extracts and purified phytochemicals have shown significant potential in inhibiting biofilm formation and may serve as promising agents in treating infections caused by biofilms.
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Cancer manifests as uncontrolled cell proliferation. Tankyrase, a poly(ADP-ribose) polymerase member, is vital in Wnt signal transmission, making it a promising cancer therapy target. The Wnt/β-catenin pathway regulates critical biological processes like genomic stability, gene expression, energy utilization, and apoptosis.

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The efficient removal of TcO from alkaline nuclear waste is vital for optimizing nuclear waste management and safeguarding the environment. However, current state-of-the-art sorbent materials are constrained by their inability to simultaneously achieve high alkali resistance, rapid adsorption kinetics, large adsorption capacity, and selectivity. In this study, we synthesized a urea-rich cationic porous organic polymer, IPM-403, which demonstrates exceptional chemical stability, ultrafast kinetics (~92 % removal within 30 seconds), high adsorption capacity (664 mg/g), excellent selectivity, along with multiple-cycle recyclability (up to 7 cycles), making it highly promising for the removal of ReO (surrogate of TcO ) from nuclear wastewater.

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  • Blockchain technology boosts UAV network management by enhancing security, decentralized control, and operational efficiency.
  • The study examines private blockchain's performance metrics (throughput, latency, scalability, packet size) and evaluates its integration with UAV networks using extensive simulations.
  • Results indicate that while throughput in the blockchain network decreases with more UAVs and transactions, the UAV network experiences improved throughput but increased delay, showcasing both the potential and limitations of using private blockchains in UAV operations.
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Perfluoroalkyl substances (PFAS) are a major public health concern, in part because several PFAS have elimination half-lives on the order of years and are associated with adverse health outcomes. While PFAS can be transported into bile, their efficient reuptake by intestinal transporter proteins results in minimal fecal elimination. Here, we tested the hypothesis that consumption of oat β-glucan, a dietary supplement known to disrupt the enterohepatic recirculation of bile acids, will reduce PFAS body burdens.

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π-Electron magnetic compounds on surfaces have emerged as a powerful platform to interrogate spin interactions at the atomic scale, with great potential in spintronics and quantum technologies. A key challenge is organizing these compounds over large length scales, while elucidating their resulting magnetic properties. Herein, we offer a relevant contribution toward this objective, which consists of using on-surface synthesis coupled with coordination chemistry to promote the self-assembly of π-electron magnetic porphyrin species.

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Extraction of gold from secondary resources such as electronic waste (e-waste) has become crucial in recent times to compensate for the gradual scarcity of the noble metal in natural mines. However, designing and synthesizing a suitable material for highly efficient gold recovery is still a great challenge. Herein, we have strategically designed rapid fabrication of an ionic crystalline hybrid aerogel by covalent threading of an amino-functionalized metal-organic polyhedra with an imine-linked chemically stable covalent organic framework at ambient condition.

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Objectives: Vitamin D and B12 deficiency in older adults is associated with osteoporosis and dementia, respectively. The objective of this study is to estimate the prevalence of vitamin D and B12 deficiency among older patients, assess gender-specific differences and analyse seasonal variations in serum levels.

Materials And Methods: This is a retrospective hospital record-based study.

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  • Decoys are important in gene expression as they interact with transcription factors (TFs) and help control the timing of gene expression events through a concept called first passage time (FPT).
  • Understanding the impact of decoys on FPT is complex due to mathematical challenges, but approximations show that stable decoy-bound TFs enhance timing accuracy while reducing expression costs.
  • The research suggests that decoy dynamics are crucial for precise timing in various biological processes, such as biomolecular clocks, development, cell-cycle regulation, and maintaining cell size.
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  • - Rickets is a condition leading to bony deformities and short stature, which can be caused by a deficiency in calcium (calciopenic) or phosphorus (phosphopenic), making early diagnosis and treatment very important.
  • - A consensus from the Endocrine Society of Bengal aims to simplify the diagnostic approach for rickets, particularly in low-resource settings, and involved extensive discussions, literature review, and agreement by a committee of 29 members.
  • - Key diagnostic steps include examining skeletal deformities, conducting specific blood tests, and utilizing radiographic imaging to confirm rickets, with additional tests recommended for unusual cases or metabolic complications.
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Effective sequestration of bromine holds great promise for the chemical industry's safe expansion, environmental preservation, and public health. However, attaining this goal is still challenging due to the serious drawbacks of existing adsorbents such as limited capacity, low retention efficiency, and sluggish uptake kinetics. Herein, we report a strategy-driven systematic study aimed at significantly enhancing multiple host-guest interactions to obtain functionalized covalent-organic frameworks for the efficient sequestration of bromine.

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Zintl phases represent a class of compounds, mainly intermetallics, which are characterized by ionic and covalent bonds in the same crystal. Since its discovery in the late 1800s, Zintl phases have found their importance as an academic interest due to their fascinating structure as well as in industry due to their vast applicability. In recent years, the Zintl phase of metal chalcogenides has further demonstrated its ability as a promising thermoelectric material, primarily due to its intrinsically ultralow lattice thermal conductivity (κ).

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  • Metal chalcohalides, known for their stability and tunability, show promise in thermoelectric applications due to their unique combination of low thermal conductivity and high electrical conductivity.
  • The study highlights the thermoelectric properties of -type BiSBr, achieving a notable thermoelectric figure of merit (zT) of around 1.0 at 748 K, which is the highest reported value for pure metal chalcohalides.
  • Key findings include the verification of a subunit in BiSBr via advanced X-ray analysis and the discovery of a unique dual vibration behavior (twin-rattler) that significantly reduces lattice thermal conductivity, enhancing thermoelectric performance.
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  • Tomato is the second most important vegetable crop worldwide and is being threatened by a new viral disease causing notable shoestring symptoms on leaves and poor fruit quality.
  • A study confirmed that the tomato mottle mosaic virus (ToMMV) is responsible for this disease, as it produced the same symptoms when tested on tomato plants.
  • The virus can infect various related plants but does not affect cucurbits, and it can be transmitted through seeds, highlighting the need for better diagnostic tools and management strategies to protect tomato cultivation in India.
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Glycosphingolipids (GSLs) are a type of amphipathic lipid molecules consisting of hydrophobic ceramide backbone bound to carbohydrate moiety clustered in the cell surface microdomains named 'lipid rafts' and are known to participate in cell-cell communication as well as intra-cellular signaling, thereby facilitating critical normal cellular processes and functions. Over the past several decades, various GSLs have been reported to be aberrantly expressed in different cancers, many of which have been associated with their prognosis. The wide implication of MAPK signaling in controlling tumor growth, progression, and metastasis through activation of an upstream signaling cascade, often originating in the cell membrane, justifies the rationale for its plausible influence on MAPK signaling.

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Accurate and unbiased classification of breast lesions is pivotal for early diagnosis and treatment, and a deep learning approach can effectively represent and utilize the digital content of images for more precise medical image analysis. Breast ultrasound imaging is useful for detecting and distinguishing benign masses from malignant masses. Based on the different ways in which benign and malignant tumors affect neighboring tissues, i.

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Pulp revascularization is an emerging treatment modality in endodontics aimed at preserving the vitality and function of immature permanent teeth with necrotic pulp and apical periodontitis. This review provides a comprehensive examination of the current state of pulp revascularization, encompassing its rationale, clinical procedures, indications, contraindications, advantages, limitations, and potential future prospects. By critically analyzing the existing literature and clinical experiences, this review aims to offer insights into the efficacy, challenges, and potential advancements in the field of pulp revascularization.

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Background: Increased hemolysis and repeated blood transfusion trigger oxidative stress resulting in numerous adverse effects in beta-thalassemia patients. Extreme elevation of triglyceride level is a rare clinical entity seen in these patients. It is presumed to be caused due to an increase in oxidative stress and is termed Hypertriglyceridemia Thalassemia Syndrome.

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