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Strategy for Simultaneous Multiomic Survey of N-Glycomic and Extracellular Matrix Proteome by Mass Spectrometry Imaging.

Recent advances in spatially resolved molecular profiling have positioned matrix-assisted laser desorption/ionization mass spectrometry imaging (MALDI-MSI) as a powerful platform for multiomic tissue analyses. However, conventional workflows that sequentially target distinct molecular classes are time- and resource-intensive, requiring repeated sequential sample preparation, imaging, and data integration. Here, we evaluate streamlined strategies for simultaneous or combined acquisition of N-glycan and collagen-derived peptide information using PNGase F and collagenase. In-solution studies demonstrate that simultaneous enzymatic digestion yields comparable peptide identifications and glycan profiles relative to traditional sequential workflows, with minimal impact on enzymatic specificity. On the basis of these findings, we developed and optimized MALDI-MSI protocols enabling either simultaneous enzyme application or sequential enzyme treatment with unified matrix deposition and single-pass imaging. While direct coapplication reduced image uniformity, a hybrid approach that used sequential enzyme deposition with combined imaging preserved spatial fidelity and spectral quality while significantly reducing processing and computational demands. Application to human tissues, including vertebral bone and ocular samples, highlights the utility of this workflow for fragile specimens and exploratory multiomic surveys. Collectively, these results establish a framework for integrated glycomic and proteomic imaging targeting the extracellular microenvironment, expanding multiomic MALDI-MSI analyses.

Spectrometry, Mass, Matrix-Assisted Laser Desorpti↗

Assessment of in vitro and in vivo activities in the National Cancer Institute's anticancer screen with respect to chemical structure, target specificity, and mechanism of action.

This paper examines two biological models of anticancer activity, cytotoxicity and hollow fiber (HF) activity, for chemotherapeutic agents evaluated as part of the National Cancer Institute's (NCI's) drug screening effort. Our analysis proposes strategies to globally assess compounds tested in the NCI's 60-cell (NCI60) in vitro anticancer screen in terms of structural features, biological activity, target specificity, and mechanism of action by data integration via our self-organizing maps of structural and biological response patterns. We have built statistical models to predict compound potency and HF activity based on physicochemical properties. Our results find that it is the combination of different structural properties that determines a compound's biological activity. A direct correlation is also found between compound potency and specificity, indicating that specific targeting, rather than promiscuous poisoning, gives rise to potency. Finally, we offer a strategy to exploit this relationship for future mining of novel anticancer candidates.

Antineoplastic Agents↗

Amelioration of renal lesions associated with diabetes by dietary curcumin in streptozotocin diabetic rats.

Curcumin, the coloring principle of the commonly used spice turmeric (Curcuma longa) was fed at 0.5% in the diet to streptozotocin-induced diabetic Wistar rats for 8 weeks. Renal damage was assessed by the amount of proteins excreted in the urine and the extent of leaching of renal tubular enzymes: NAG, LDH, AsAT, AlAT, alkaline and acid phosphatases. The integrity of kidney was assessed by measuring the activities of several key enzymes of the renal tissue: glucose-6-phosphate dehydrogenase, glucose-6-phosphatase, and LDH (Carbohydrate metabolism), aldose reductase and sorbitol dehydrogenase (polyol pathway), transaminases, ATPases and membrane PUFA/SFA ratio (membrane integrity). Data on enzymuria, albuminuria, activity of kidney ATPases and fatty acid composition of renal membranes in diabetic condition suggested that dietary curcumin brought about significant beneficial modulation of the progression of renal lesions in diabetes. These findings were also corroborated by histological examination of kidney sections. It is inferred that this beneficial ameliorating influence of dietary curcumin on diabetic nephropathy is possibly mediated through its ability to lower blood cholesterol levels.

Animals↗

Techniques of remote sensing applied to the environmental analysis of part of an aquifer located in the São José dos Campos Region sp, Brazil.

The anthropogenic activity on the surface can modify and introduce new mechanisms of recharging the groundwater system, modifying the tax, the frequency and the quality of recharge of underground waters. The understanding of these mechanisms and the correct evaluation of such modifications are fundamental in determining the vulnerability of groundwater contamination. The groundwater flow of the South Paraíba Compartment, in the region of São José dos Campos, São Paulo, is directly related to structural features of the Taubaté Basin and, therefore, the analysis of its behaviour enhances the understanding of tectonic structure. The methodology adopted for this work consists in pre-processing and processing of the satellite images, visual interpretation of HSI products, field work and data integration. The derivation of the main structural features was based on visual analysis of the texture elements of drainage, and the relief in sedimentary and crystalline rocks. Statistical analysis of the feature densities and the metric-geometric relations between the analysed elements have been conducted. The crystalline rocks, on which the sediments were laying, conditions and controls the structural arrangement of sedimentary formations. The formation of the South Paraíba Grabén is associated with Cenozoic distensive movement which reactivated old features of crust weakness and generated previous cycles with normal characteristics. The environmental analysis is based on the integration of the existing methodology to characterise vulnerability of an universal pollutant and density fracture zone. The digital integration was processed using GIS (Geographic Information System) to delineate five defined vulnerability classes. The hydrogeological settings were analysed in each thematic map and, using fuzzy logic, an index for each different vulnerability class was compiled. Evidence maps could be combined in a series of steps using map algebra.

Brazil↗

Gender differences in sexual interest.

A common gender stereotype is that males are more interested than females in sex for purely physical reasons. Sociobiologists claim that this difference is biologically determined. In contrast, many sociologists and anthropologists claim that the difference is cultural. The debate about nature versus nurture regarding sexual interest has been long-standing without resolution. We propose a biosocial model that integrates data about nature and nurture to show (i) how several biological factors tilt males and females in different directions related to sexual interest, and (ii) how numerous social factors influence the way the biological tilts can be redirected in countless different ways as individuals grow up in subsets of their culture and subculture. This interactionist approach does not down-play the importance of either biological or social factors: It avoids nature-nurture debates that pit nature against nurture by showing how biological and social factors act in concert, combining their influences. The resulting work contributes to both the theoretical and practical literature, not only showing how sexology can deal with issues of nature and nurture but also providing information useful to people who are troubled about common gender differences in sexual interest.

Culture↗

A local department of public health and the geospatial data infrastructure.

Local health departments (LHD) are the most widely distributed aspect of the United States public health infrastructure. The role of LHDs has changed since the terrorist attacks of September 11, 2001, and an increased concern about bioterrorism. This concern resulted in more emphasis on disease surveillance and the need for new institutional linkages of LHDs with other entities for effective response. These changes coincide with technological changes in spatial data integration and the growth of medical informatics in public health. The integration of GIS into the daily work of an LHD holds promise of improving not only bioterrorism response capabilities, but also the management of emerging infectious diseases, such as West Nile Virus or food borne illness, as well as longstanding programs focused on nutrition and safety. Still, the impediments to using GIS at an LHD remain strong as funding decisions and a complex technology continue to challenge implementation efforts.

Bioterrorism↗

[Evaluated treatment approaches in child and adolescent psychiatry I].

OBJECTIVES: The principle of evidence-based medicine is to integrate data concerning the efficacy of interventions into clinical practice. This article assesses the level of evaluation of psychosocial, psychopharmacological and combined interventions for mental disorders in childhood and adolescence (autistic disorders, hyperkinetic disorders, conduct disorders, tic disorders, enuresis, and encopresis). METHODS: Three different levels of evaluation were defined for both psychosocial and psychopharmacological interventions: A (> or = 2 randomized controlled studies), B (1 randomized controlled study), and C (open studies and case studies). The level of evaluation was judged on the basis of original papers found in a comprehensive literature search. RESULTS: For most disorders presented in this article there are several A-level treatments. The efficacy of both psychosocial and psychopharmacological interventions that target specific problem behaviors or symptoms, respectively, has been repeatedly demonstrated with regard to autistic disorders. Many studies have evaluated treatment approaches for hyperkinetic disorders and conduct disorders. With regard to the treatment of tic disorders in children and adolescents, far more studies evaluated the efficacy of pharmacotherapy than of psychotherapy. CONCLUSIONS: Further research should compare the efficacy of different treatment approaches, examine specific and differential treatment effects and investigate combined treatment approaches.

Adolescent↗

[Evaluated treatment approaches in child and adolescent psychiatry II].

OBJECTIVES: The principle of evidence-based medicine is to integrate data concerning the efficacy of interventions into clinical practice. This article assesses the level of evaluation of psychosocial, psychopharmacological and combined interventions for mental disorders in childhood and adolescence (schizophrenic disorders, affective disorders, phobias and anxiety disorders, obsessive-compulsive disorder, posttraumatic stress disorder, anorexia nervosa, and bulimia nervosa). METHODS: Three different levels of evaluation were defined for both psychosocial and psychopharmacological interventions: A (> or = 2 randomized controlled studies), B (1 randomized controlled study), and C (open studies and case studies). The level of evaluation was judged on the basis of original papers found in a comprehensive literature search. RESULTS: The number of controlled studies examining these disorders in children and adolescents is small, especially with regard to pharmacotherapy. However, the efficacy of (cognitive) behavior therapy for depressive disorders, phobias and anxiety disorders, as well as posttraumatic stress disorder has been demonstrated. CONCLUSIONS: There is still a considerable need to evaluate pharmacological treatment approaches for schizophrenic and affective disorders. Looking at psychosocial interventions in schizophrenic disorders, obsessive-compulsive disorder and eating disorders, specific aspects of treatment for young patients should be examined. Overall, the psychotherapy approach evaluated best is (cognitive) behavioral therapy.

Adolescent↗

Pharmacogenomics: the future of drug therapy.

Pharmacogenomics aims to optimize patient management by customizing and synthesizing drugs based on genetic variations in drug response. Polymorphisms affecting metabolism, receptors, and absorption can influence drug sensitivity, toxicity, and dosing. The Human Genome Project, DNA chips, and bioinformatics advance the practice of this field by, respectively, identifying polymorphisms related to drug response, determining an individual's profile of polymorphisms, and integrating data to facilitate clinical decision making. Potential benefits of pharmacogenomics include increasing efficacy and preventing adverse drug reactions, thus improving patient care and decreasing costs. These factors imply that a thorough understanding of the principles and applications of pharmacogenomics will be an indispensable part of the future of drug therapy in clinical medicine.

Computational Biology↗

Development of a Scheimpflug slit lamp camera system for quantitative densitometric analysis.

We have developed a computerised video system for accurate quantification of lens opacities from Scheimpflug images. Using a modified Zeiss Scheimpflug camera and Macintosh computer, the system software can warn of improper exposure and can provide immediate results of cataract progression on individual patients. These results are obtained from a novel technique which automatically divides the lens into anatomical regions and computes regional densities in the standard optical density unit. Because of the system's speed, the operator can properly capture and analyse a cataract in seconds, compare results with past patient records and give feedback to the patient on the results of the analysis. The system provides the appropriate data integrity and formats for documenting and monitoring lens opacities. Such a system will be useful in longitudinal studies of cataracts (i.e. for natural history and anti-cataract drug trials).

Cataract↗

From Bright's disease to modern nephrology: Pierre Rayer's innovative method of clinical investigation.

Pierre Rayer, in a day of purely descriptive medicine, devised a method for the scientific study of diseases affecting the kidney and urinary tract. He first assembled vivid illustrations of a wide range of disorders of the kidney found in specimens obtained at autopsy. The resulting Atlas won him widespread praise and is still often cited. His Treatise (Traité des Maladies des Reins et des Altérations de la Sécrétion Urinaire), in which he integrated data from pathological anatomy with urinary biology and clinical manifestations, was ahead of its time. Hence it was poorly understood and, like the work of many other innovators, was largely ignored. Nevertheless, his 2100 page Traité which begins with a description of his innovative and highly disciplined method of study, most unusual at this time, is by no means lacking in interest for today's nephrologists. Rayer's was a landmark contribution, affording, as it did, a comprehensive approach to the clinical problems of nephrology a century before the diseases themselves could be understood. Could a contemporary of Rayer tell that he was an inventor of scientific methodology before the proof of his rigorous demonstrations was carried out? That has been the achievement of clinical nephrology in the past forty years...one century later.

Glomerulonephritis↗

Ultrafast precessional magnetization reversal by picosecond magnetic field pulse shaping.

Since the invention of the first magnetic memory disk in 1954, much effort has been put into enhancing the speed, bit density and reliability of magnetic memory devices. In the case of magnetic random access memory (MRAM) devices, fast coherent magnetization rotation by precession of the entire memory cell is desired, because reversal by domain-wall motion is much too slow. In principle, the fundamental limit of the switching speed via precession is given by half of the precession period. However, under-critically damped systems exhibit severe ringing and simulations show that, as a consequence, undesired back-switching of magnetic elements of an MRAM can easily be initiated by subsequent write pulses, threatening data integrity. We present a method to reverse the magnetization in under-critically damped systems by coherent rotation of the magnetization while avoiding any ringing. This is achieved by applying specifically shaped magnetic field pulses that match the intrinsic properties of the magnetic elements. We demonstrate, by probing all three magnetization components, that reliable precessional reversal in lithographically structured micrometre-sized elliptical permalloy elements is possible at switching times of about 200 ps, which is ten times faster than the natural damping time constant.

Journal Article↗

Multiplexed protein measurement: technologies and applications of protein and antibody arrays.

The ability to measure the abundance of many proteins precisely and simultaneously in experimental samples is an important, recent advance for static and dynamic, as well as descriptive and predictive, biological research. The value of multiplexed protein measurement is being established in applications such as comprehensive proteomic surveys, studies of protein networks and pathways, validation of genomic discoveries and clinical biomarker development. As standards do not yet exist that bridge all of these applications, the current recommended best practice for validation of results is to approach study design in an iterative process and to integrate data from several measurement technologies. This review describes current and emerging multiplexed protein measurement technologies and their applications, and discusses the remaining challenges in this field.

Animals↗

Single-cell multimodal profiling of pan-cancer cell lines uncovers gene regulatory principles underlying intrinsic cell states and environmental features.

Cancer arises from genetic and epigenetic alterations that reshape chromatin, transcriptional regulation, and malignant cell states. To chart cancer-intrinsic regulatory programs, we build a pan-cancer single-cell atlas of 60 cancer cell lines spanning 16 tissue origins and 20 cancer types, comprising 240,957 snRNA-seq and 223,347 snATAC-seq profiles. Integrative analyses reveal cell-state heterogeneity, core gene-regulatory networks, and a conserved EMT axis transcending tissue of origin; copy-number analysis identifies transcription factor amplification and hyperactivation as drivers of state reprogramming. Comparing cutaneous melanoma with acral melanoma, a rare subtype underrepresented in previous studies, uncovers a universal inflammation-suppressive program in acral and an inflamed landscape in cutaneous melanoma, with JAK-STAT activity as the central discriminator. Integrating data across models and patient cohorts links tumor-intrinsic regulation to microenvironmental composition and therapeutic response. By profiling rare alongside common subtypes, this atlas offers a resource for mapping pan-cancer and subtype-specific regulatory programs shaping cell-state plasticity.

Humans↗

Chromosome-level de novo assembly of the nuclear and mitochondrial genomes of Arcopilus aureus, a filamentous fungus with multifaceted ecological and economic roles.

The filamentous fungus Arcopilus aureus (Sordariale: Chaetomiaceae) is notable for its multi-domain significance across agriculture, medicine, and industry. In this study, we generated a chromosome-level nuclear genome and a complete circular mitogenome for A. aureus by integrating data from next-generation sequencing, PacBio HiFi, and Hi-C technologies. The final nuclear genome assembly spans 33.77 Mb (GC content: 57.67%), and was organized into seven chromosomal-sized scaffolds (only one gap) with an N50 size of 5.09 Mb and BUSCO completeness of 95.91%. A total of 10,282 protein-coding genes, 228 non-coding RNAs, and ~1.77 Mb of repetitive elements were predicted in the nuclear genome. By contrast, the mitogenome of A. aureus is 33,820 bp in length, with a GC content of 25.96%. It harbors 15 typical mitochondrial protein-coding genes, one unidentified ORF, two rRNAs (small subunit rns and large subunit rnl), and 28 tRNAs. This high-quality genome assembly provides a valuable resource for understanding the ecology, genetics, and evolution of A. aureus, which facilitates elucidating its mechanisms of biocontrol, infection, and metabolite synthesis.

Genome, Mitochondrial↗

A multi-omic analysis of MCF10A cells provides a resource for integrative assessment of ligand-mediated molecular and phenotypic responses.

The phenotype of a cell and its underlying molecular state is strongly influenced by extracellular signals, including growth factors, hormones, and extracellular matrix proteins. While these signals are normally tightly controlled, their dysregulation leads to phenotypic and molecular states associated with diverse diseases. To develop a detailed understanding of the linkage between molecular and phenotypic changes, we generated a comprehensive dataset that catalogs the transcriptional, proteomic, epigenomic and phenotypic responses of MCF10A mammary epithelial cells after exposure to the ligands EGF, HGF, OSM, IFNG, TGFB and BMP2. Systematic assessment of the molecular and cellular phenotypes induced by these ligands comprise the LINCS Microenvironment (ME) perturbation dataset, which has been curated and made publicly available for community-wide analysis and development of novel computational methods ( synapse.org/LINCS_MCF10A ). In illustrative analyses, we demonstrate how this dataset can be used to discover functionally related molecular features linked to specific cellular phenotypes. Beyond these analyses, this dataset will serve as a resource for the broader scientific community to mine for biological insights, to compare signals carried across distinct molecular modalities, and to develop new computational methods for integrative data analysis.

Epidermal Growth Factor↗

Transcription in four dimensions: nuclear receptor-directed initiation of gene expression.

Regulated gene expression, achieved through the coordinated assembly of transcription factors, co-regulators and the basal transcription machinery on promoters, is an initial step in accomplishing cell specificity and homeostasis. Traditional models of transcriptional regulation tend to be static, although gene expression profiles change with time to adapt to developmental and environmental cues. Furthermore, biochemical and structural studies have determined that initiation of transcription progresses through a series of ordered events. By integrating time into the analysis of transcription, chromatin immunoprecipitation assays and live-cell imaging techniques have revealed the dynamic, cooperative, functionally redundant and cyclical nature of gene expression. In this review, we present a dynamic model of gene transcription that integrates data obtained by these two techniques.

Animals↗

MIPDB: a relational database dedicated to MIP family proteins.

BACKGROUND INFORMATION: The MIPs (major intrinsic proteins) constitute a large family of membrane proteins that facilitate the passive transport of water and small neutral solutes across cell membranes. Since water is the most abundant molecule in all living organisms, the discovery of selective water-transporting channels called AQPs (aquaporins) has led to new knowledge on both the physiological and molecular mechanisms of membrane permeability. The MIPs are identified in Archaea, Bacteria and Eukaryota, and the rapid accumulation of new sequences in the database provides an opportunity for large-scale analysis, to identify functional and/or structural signatures or to infer evolutionary relationships. To help perform such an analysis, we have developed MIPDB (database for MIP proteins), a relational database dedicated to members of the MIP family. RESULTS: MIPDB is a motif-oriented database that integrates data on 785 MIP proteins from more than 200 organisms and contains 230 distinct sequence motifs. MIPDB proposes the classification of MIP proteins into three functional subgroups: AQPs, glycerol-uptake facilitators and aquaglyceroporins. Plant MIPs are classified into three specific subgroups according to their subcellular distribution in the plasma membrane, tonoplast or the symbiosome membrane. Some motifs of the database are highly selective and can be used to predict the transport function or subcellular localization of unknown MIP proteins. CONCLUSIONS: MIPDB offers a user-friendly and intuitive interface for a rapid and easy access to MIP resources and to sequence analysis tools. MIPDB is a web application, publicly accessible at http://idefix.univ-rennes1.fr:8080/Prot/index.html.

Amino Acid Motifs↗