Browse Articles

Discover research articles across all indexed journals

Author Correction: Effect of phycocyanin and phycoerythrin on antioxidant and antimicrobial activity of refrigerated low-fat yogurt and cream cheese

Scientific Reports Azadeh Ahmadi, Seyed Amir Ali Anvar, Bahareh Nowruzi et al. Feb 05, 2025 DOI: 10.1038/s41598-025-87903-x

Epidemiological surveys, antibiotic resistance, and related risk factors of Helicobacter pylori in Quanzhou, China: a cross-sectional study

Scientific Reports Dandan Xie, Weixiong Xu, Zhenzhu Zhang et al. Feb 05, 2025 DOI: 10.1038/s41598-025-89073-2

A modified energy management strategy for PV/diesel hybrid system to reduce diesel consumption based on artificial protozoa optimizer

Scientific Reports Rania G. Mohamed, Amal A. Hassan, Shady H. E. Abdel Aleem Feb 05, 2025 DOI: 10.1038/s41598-025-87716-y

Abstract The photovoltaic (PV)/diesel hybrid system (PV/D-HS) combines solar PV panels with a diesel generator (DG) to meet energy demands, especially in industrial operations. This study introduces an improved energy management strategy designed to optimize the performance of PV/D-HS by reducing diesel consumption, increasing solar energy utilization, and minimizing environmental impact. The strategy dynamically manages power distribution between the PV panels and the DG, adapting to changing solar conditions and energy demands. Doing so reduces the system’s reliance on diesel, improves operational efficiency, and supports the integration of cleaner energy sources. Simulation results show significant improvements over traditional approaches: carbon emissions decreased from 62 kg/day with a standalone diesel generator to 38 kg/day, representing a 38% reduction. The solar energy fraction (SEF) increases from 12 to 35%, a 23% improvement in solar energy utilization. These results demonstrate the potential of the proposed strategy to enhance sustainability by lowering greenhouse gas emissions, reducing dependence on fossil fuels, and advancing global efforts to combat climate change. In addition to environmental benefits, the approach reduces operational costs and improves the system’s reliability, making it a practical solution for industrial energy needs.

Infrared dim tiny-sized target detection based on feature fusion

Scientific Reports Peng Zhang, Yaman Jing, Guodong Liu et al. Feb 05, 2025 DOI: 10.1038/s41598-025-88956-8

Differential Impacts of Strabismic and Anisometropic Amblyopia on the Mesoscale Functional Organization of the Human Visual Cortex

Journal of Neuroscience Shahin Nasr, Jan Skerswetat, Eric D. Gaier et al. Feb 05, 2025 DOI: 10.1523/jneurosci.0745-24.2024

We employed high-resolution fMRI to distinguish the impacts of anisometropia and strabismus amblyopia on the evoked ocular dominance (OD) response. Sixteen amblyopic participants (eight females) plus eight individuals with normal vision (one female), participated in this study for whom we measured the difference between the response to stimulation of the two eyes, across areas V1–V4. In controls, the evoked OD response formed the expected striped pattern within V1. Compared to controls, the OD response in amblyopic participants formed larger fused patches that extended into downstream visual areas. Moreover, both anisometropic and strabismic participants showed elevated OD responses across V1–V4. Beyond these common effects, and despite similar densities of amblyopia between the two groups, strabismus, and anisometropia had differential impacts on the OD bias, binocular response, and correlation between V1 depth levels. Specifically, we found a greater increase in the size of the V1 portion that responded preferentially to fellow eye stimulation in anisometropic compared with strabismic individuals. We also found a greater difference between the amplitudes of the response to binocular stimulation, in those regions that responded preferentially to the fellow versus amblyopic eye, in anisometropic compared with strabismic participants. In contrast, strabismic participants demonstrated an increased correlation between the OD responses evoked within V1 superficial and deep depths, whereas anisometropic individuals did not. These results provide the primary direct functional evidence for distinct impacts of strabismus and anisometropia on the mesoscale functional organization of the human visual system, thus extending what was inferred previously about amblyopia from animal models.

Author Correction: The heterogeneity of NOTCH1 to tumor immune infiltration in pan-cancer

Scientific Reports XiaoJun Duan, Rihan Wu, Mingyang Zhang et al. Feb 05, 2025 DOI: 10.1038/s41598-025-87306-y

Author Correction: Exploratory study on the efficacy of topical pan-JAK inhibitor in ocular and skin GVHD in a sclerodermatous GVHD mouse model

Scientific Reports Shinri Sato, Yoko Ogawa, Kazuki Asai et al. Feb 05, 2025 DOI: 10.1038/s41598-025-88934-0

Histone Methyltransferase G9a in Primary Sensory Neurons Promotes Inflammatory Pain and Transcription of <i>Trpa1</i> and <i>Trpv1</i> via Bivalent Histone Modifications

Journal of Neuroscience Krishna Ghosh, Yuying Huang (黄玉莹), Daozhong Jin (金道忠) et al. Feb 05, 2025 DOI: 10.1523/jneurosci.1790-24.2024

Transient receptor potential ankyrin 1 (TRPA1) and vanilloid 1 (TRPV1) channels are crucial for detecting and transmitting nociceptive stimuli. Inflammatory pain is associated with sustained increases in TRPA1 and TRPV1 expression in primary sensory neurons. However, the epigenetic mechanisms driving this upregulation remain unknown. G9a (encoded by Ehmt2) catalyzes H3K9me2 and generally represses gene transcription. In this study, we found that intrathecal administration of UNC0638, a specific G9a inhibitor, or G9a-specific siRNA, substantially reduced complete Freund's adjuvant (CFA)-induced pain hypersensitivity. Remarkably, CFA treatment did not induce persistent pain hypersensitivity in male and female mice with conditional Ehmt2 knock-out in dorsal root ganglion (DRG) neurons. RNA sequencing and quantitative PCR analyses showed that CFA treatment caused a sustained increase in mRNA levels of Trpa1 and Trpv1 in the DRG. Ehmt2 knock-out in DRG neurons elevated baseline Trpa1 and Trpv1 mRNA levels but notably reversed CFA-induced increases in their expression. Chromatin immunoprecipitation revealed that CFA treatment reduced G9a and H3K9me2 levels while increasing H3K9ac and H3K4me3—activating histone marks—at Trpa1 and Trpv1 promoters in the DRG. Strikingly, conditional Ehmt2 knock-out in DRG neurons not only diminished H3K9me2 but also reversed CFA-induced increases in H3K9ac and H3K4me3 at Trpa1 and Trpv1 promoters. Our findings suggest that G9a in primary sensory neurons constitutively represses Trpa1 and Trpv1 transcription under normal conditions but paradoxically enhances their transcription during tissue inflammation. This latter action accounts for inflammation-induced TRPA1 and TRPV1 upregulation in the DRG. Thus, G9a could be targeted for alleviating persistent inflammatory pain.

Some complex probabilistic hesitant fuzzy aggregation operators and their applications to multi-attribute decision making

Scientific Reports Yanpo Yang, Baoquan Ning, Fengjuan Tian et al. Feb 05, 2025 DOI: 10.1038/s41598-024-84582-y

The <i>C. elegans</i> uv1 Neuroendocrine Cells Provide Mechanosensory Feedback of Vulval Opening

Journal of Neuroscience Lijie Yan, Alexander Claman, Addys Bode et al. Feb 05, 2025 DOI: 10.1523/jneurosci.0678-24.2024

Neuroendocrine cells react to physical, chemical, and synaptic signals originating from tissues and the nervous system, releasing hormones that regulate various body functions beyond the synapse. Neuroendocrine cells are often embedded in complex tissues making direct tests of their activation mechanisms and signaling effects difficult to study. In the nematode worm Caenorhabditis elegans , four uterine-vulval (uv1) neuroendocrine cells sit above the vulval canal next to the egg-laying circuit, releasing tyramine and neuropeptides that feedback to inhibit egg laying. We have previously shown uv1 cells are mechanically deformed during egg laying, driving uv1 Ca 2+ transients. However, whether egg-laying circuit activity, vulval opening, and/or egg release triggered uv1 Ca 2+ activity was unclear. Here, we show uv1 responds directly to mechanical activation. Optogenetic vulval muscle stimulation triggers uv1 Ca 2+ activity following muscle contraction even in sterile animals. Direct mechanical prodding with a glass probe placed against the worm cuticle triggers robust uv1 Ca 2+ activity similar to that seen during egg laying. Direct mechanical activation of uv1 cells does not require other cells in the egg-laying circuit, synaptic or peptidergic neurotransmission, or transient receptor potential vanilloid and Piezo channels. EGL-19 L-type Ca 2+ channels, but not P/Q/N-type or ryanodine receptor Ca 2+ channels, promote uv1 Ca 2+ activity following mechanical activation. L-type channels also facilitate the coordinated activation of uv1 cells across the vulva, suggesting mechanical stimulation of one uv1 cell cross-activates the other. Our findings show how neuroendocrine cells like uv1 report on the mechanics of tissue deformation and muscle contraction, facilitating feedback to local circuits to coordinate behavior.

Precuneus Activity during Retrieval Is Positively Associated with Amyloid Burden in Cognitively Normal Older <i>APOE</i> 4 Carriers

Journal of Neuroscience Larissa Fischer, Eóin N. Molloy, Alexa Pichet Binette et al. Feb 05, 2025 DOI: 10.1523/jneurosci.1408-24.2024

The precuneus is a site of early amyloid-beta (Aβ) accumulation. Previous cross-sectional studies reported increased precuneus fMRI activity in older adults with mild cognitive deficits or elevated Aβ. However, longitudinal studies in early Alzheimer's disease (AD) are lacking and the relationship to the Apolipoprotein-E ( APOE ) genotype is unclear. Investigating the PREVENT-AD dataset, we assessed how baseline and longitudinal precuneus activity during successful memory retrieval relates to future Aβ and tau burden and change in memory performance. We further studied the moderation by APOE 4 genotype. We included 165 older adults (age, 62.8 ± 4.4 years; 113 female; 66 APOE 4 carriers) who were cognitively normal at baseline with a family history of AD. All participants performed task-fMRI at baseline and underwent 18 F-flortaucipir-PET and 18 F-NAV4694-Aβ-PET on average 5 years later. We found that higher baseline activity and greater longitudinal increase in precuneus activity were associated with higher Aβ burden in APOE 4 carriers but not noncarriers. We observed no effects of precuneus activity on tau burden. Finally, APOE 4 noncarriers with low baseline precuneus activity exhibited better longitudinal performance in an independent memory test compared with (1) noncarriers with higher baseline activity and (2) APOE 4 carriers. Our findings suggest that higher task-related precuneus activity during memory retrieval at baseline and over time are associated with greater Aβ burden in cognitively normal APOE 4 carriers. Our results further indicate that the absence of “hyperactivation” and the absence of the APOE 4 allele is related with better future cognitive outcomes in cognitively normal older adults at risk for AD.

Capsule neural network and adapted golden search optimizer based forest fire and smoke detection

Scientific Reports Luling Liu, Li Chen, Mehdi Asadi Feb 04, 2025 DOI: 10.1038/s41598-024-81742-y

Bacterial sensor evolved by decreasing complexity

Proceedings of the National Academy of Sciences Elizabet Monteagudo-Cascales, José A. Gavira, Jiawei Xing et al. Feb 04, 2025 DOI: 10.1073/pnas.2409881122

Bacterial receptors feed into multiple signal transduction pathways that regulate a variety of cellular processes including gene expression, second messenger levels, and motility. Receptors are typically activated by signal binding to ligand-binding domains (LBDs). Cache domains are omnipresent LBDs found in bacteria, archaea, and eukaryotes, including humans. They form the predominant family of extracytosolic bacterial LBDs and were identified in all major receptor types. Cache domains are composed of either a single (sCache) or a double (dCache) structural module. The functional relevance of bimodular LBDs remains poorly understood. Here, we identify the PacF chemoreceptor in the phytopathogen Pectobacterium atrosepticum that recognizes formate at the membrane-distal module of its dCache domain, triggering chemoattraction. We further demonstrate that a family of formate-specific sCache domains has evolved from a dCache domain, exemplified by PacF, by losing the membrane-proximal module. By solving high-resolution structures of two family members in complex with formate, we show that the molecular basis for formate binding at sCache and dCache domains is highly similar, despite their low sequence identity. The apparent loss of the membrane-proximal module may be related to the observation that dCache domains bind ligands typically at the membrane-distal module, whereas studies have failed to find ligands bound in the membrane-proximal module. This work advances our understanding of signal sensing in bacterial receptors and suggests that evolution by reducing complexity may be a route for shaping diversity.

The Sarcoplasmic/Endoplasmic reticulum Ca2+-ATPase (SERCA) is present in pig sperm and modulates their physiology over liquid preservation

Scientific Reports Ferran Garriga, Jesús Martínez-Hernández, Ainhoa Parra-Balaguer et al. Feb 04, 2025 DOI: 10.1038/s41598-025-88012-5

Hsp90, DnaK, and ClpB collaborate in protein reactivation

Proceedings of the National Academy of Sciences Joel R. Hoskins, Anushka C. Wickramaratne, Connor P. Jewell et al. Feb 04, 2025 DOI: 10.1073/pnas.2422640122

Hsp70, Hsp90, and ClpB/Hsp100 are molecular chaperones that help regulate proteostasis. Bacterial and yeast Hsp70s and their cochaperones function synergistically with Hsp90s to reactivate inactive and aggregated proteins by a mechanism that requires a direct interaction between Hsp90 and Hsp70 both in vitro and in vivo. Escherichia coli and yeast Hsp70s also collaborate in bichaperone systems with ClpB and Hsp104, respectively, to disaggregate and reactivate aggregated proteins and amyloids such as prions. These collaborations are dependent on direct interactions between ClpB/Hsp104 and Hsp70. We explored the possibility that E. coli homologs of Hsp70, Hsp90, and ClpB, referred to as DnaK, Hsp90 Ec , and ClpB, respectively, in combination with two DnaK cochaperones, DnaJ and GrpE, could promote protein disaggregation and reactivation under conditions where bichaperone systems are ineffective. Our results show that Hsp90 Ec is able to overcome the inhibition of protein disaggregation and reactivation observed when the concentration of DnaK is approaching physiological concentrations. We found that ATP hydrolysis and substrate binding by all three chaperones are essential for the collaborative function. The work further shows that ClpB acts early in protein reactivation with DnaK and its cochaperones; E. coli Hsp90 acts at a later stage after ClpB. The results highlight the collaboration among chaperones to regulate and maintain proteostasis.

Systemic immune-inflammation index mediates the association between abdominal obesity and serum klotho levels

Scientific Reports Chenchun Chen, Peng Tang, Wei Zhu Feb 04, 2025 DOI: 10.1038/s41598-025-88015-2

How towns can adapt to fire as bigger burns loom

Proceedings of the National Academy of Sciences Amy McDermott Feb 04, 2025 DOI: 10.1073/pnas.2500926122

Ultrabroadband near-infrared emission profiling in multicore optical fibers doped with Er3+ and Yb3+/Tm3+/Ho3+ ions

Scientific Reports Jakub Markiewicz, Marcin Kochanowicz, Tomasz Ragiń et al. Feb 04, 2025 DOI: 10.1038/s41598-025-88411-8

Abstract This paper presents novel multicore fibers with broadband emission in the 1.4–2.1 μm range. Based on our previous work with barium gallo-germanate glasses and fibers, the 4 and 11-core fiber structures, each containing core glasses doped with Er3+ and Yb3+/Tm3+/Ho3+, were developed. Our efforts have resulted in flat emission in 3 dB and 10 dB bands, achievable under excitation at 796 nm, 808 nm, 940 nm, and 980 nm. The measured emission spectra of these fibers are described as a superposition of emission bands from each individual core, corresponding to the transitions of Er3+, Tm3+, and Ho3+ ions. Our method demonstrates the potential of emission profiling in multicore optical fibers as a new way to construct eye-safe broadband fiber sources.

Strong precursor softening in cubic CaSiO <sub>3</sub> perovskite

Proceedings of the National Academy of Sciences Chi Zhang, Jin-Yuan Yang, Tao Sun et al. Feb 04, 2025 DOI: 10.1073/pnas.2410910122

CaSiO 3 perovskite (CaPv) is the last major mineral in the Earth’s lower mantle whose elasticity remains largely unresolved. Here, we investigate the elasticity of CaPv using ab initio machine-learning force fields (MLFF). At room temperature, the elasticity of tetragonal CaPv determined by MLFF molecular dynamics (MD) agrees well with experimental measurements after considering temperature induced variations in the hydrostatic structure, proving the effectiveness of the method. We use the MLFF MD in the NPT ensemble to establish the tetragonal–cubic phase boundary and confirm that in the lower mantle CaPv is in the cubic phase. The elasticity of cubic CaPv shows distinct temperature dependence at different ranges: it is linear at high temperatures, whereas it exhibits anomalous precursor softening near the tetragonal–cubic phase boundary. The temperature interval of precursor softening widens as the pressure increases and overlaps with the temperature profile of subducted cold slabs near the core–mantle boundary. While cubic CaPv is seismically invisible along the average mantle geotherm, it may induce low-velocity zones with negative temperature anomaly, leading to the view that the large low shear velocity provinces (LLSVPs) may be caused by subducted oceanic crust rich in CaPv with temperature lower than ambient mantle. A cool, rigid LLSVP may help explain the preferential formation of mantle plumes at its margins, as well as its weaker seismic anisotropy.

Microclimates growing and watering volumes influences the physiological traits of chili pepper cultivars in combating abiotic stress

Scientific Reports Farhan Ahmad, Kusumiyati Kusumiyati, Mochamad Arief Soleh et al. Feb 04, 2025 DOI: 10.1038/s41598-025-87262-7

Abstract Chili peppers are a staple food for countries worldwide and are loaded with vitamins and antioxidants. One of the world’s largest chili consumers, Indonesia faces climate adversities and cash-crop pest infestations that affect its horticulture market. The present research explores microclimatic and watering for physiological performances in different chili cultivars, useful in suggesting the strategies of cultivation with a climate-resilient perception. The research was done in the Bale Tatanen, Padjadjaran University, using a Factorial Randomized Complete Block Design to analyze chili plant physiology. According to statistical analyses, cultivars did not significantly affect absolute growth rate (AGR), but growing microclimates and watering volumes did significantly affect AGR and water use efficiency (WUE). The rain shelter and screen house had the highest WUE and AGR values. Growing microclimates and cultivars significantly affected transpiration rate, stomatal conductance to water vapor and total conductance to CO 2 , with the screen house exhibiting the highest values. All three factors significantly affected the photosynthetic rate, with the greenhouse showing the highest rate. The photosynthetic photon flux density (PPFD) was likewise highest in the greenhouse. This study aimed to systematically assess these factors and it tried suggesting practices that might assist in combating the effects of abiotic stress on chili production, for its sustainability. The findings of this research would help in conceptualizing the most efficient microclimate and watering volume for chili cultivation particularly, when considering climate change challenges as well; these results could also be applied to develop guidelines which might serve helpful at resource-poor farming.