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Myelin-laden macrophages are anti-inflammatory, consistent with foam cells in multiple sclerosis.

Multiple sclerosis lesion activity concurs with the extent of inflammation, demyelination and axonal suffering. Pro-inflammatory myeloid cells contribute to lesion development, but the self-limiting nature of lesions implies as yet unidentified anti-inflammatory mechanisms. We addressed the hypothesis that myelin ingestion by myeloid cells induces a foamy appearance and confers anti-inflammatory function. First, we show that myelin-containing foam cells in multiple sclerosis lesions consistently express a series of anti-inflammatory molecules while lacking pro-inflammatory cytokines. Second, unique location-dependent cytokine and membrane receptor expression profiles imply functional specialization allowing for differential responses to micro-environmental cues. A novel human in vitro model of foamy macrophages functionally confirmed that myelin ingestion induces an anti-inflammatory programme. Foamy macrophages are unable to respond to prototypical inflammatory stimuli but do express molecules involved in suppression of inflammation. These findings provide novel insights into the mechanisms of lesion control and may open new roads to intervention.

Biomarkers↗

Velocity profiles and streamlines of a revolution post-stenotic flow.

Velocity fields have been measured in models simulating arterial stenoses for continuous and revolution flows. A pulsed Doppler velocimeter allows for velocity readings in the entire tube and in the wall area. Streamlines are determined by numerical solving of the system of equations defining the current function. Velocity profiles and streamlines are presented and discussed either for steady or for unsteady flows, with different Reynolds numbers and variable degrees of stenosis. There is, in the wall area, a recirculating zone made of a well-defined rouleau. Its length varies increasingly according to the increasing severity of the stenosis. The stability of axial flow depends on the input profile, the degree of stenosis and the Reynolds number. Plotting streamlines allows to describe accurately the flow; its quantitative aspect offers advantages with respect to conventional visualization mode.

Blood Flow Velocity↗

Evaluating the similarity of MMPI-2 and MMPI profiles: reply to Dahlstrom and Humphrey.

We review issues that have arisen in exchanges with Dahlstrom and Humphrey (Dahlstrom & Humphrey, 1996; Humphrey & Dahlstrom, 1995) about assessing the comparability of the Minnesota Multiphasic Personality Inventory-2 (MMPI-2) and the MMPI. We point out the limitations of Q correlations (without contending that D(2) is "the only legitimate function of profile comparability," as Dahlstrom and Humphrey, 1996, p. 350, claim we do), and explain why Dahlstrom and Humphrey's (1996) new Q-correlational results, correctly interpreted, are consistent with our own previous observations and conclusions. We stress again the importance of both overall profile elevation and profile "definition" in making code-type assignments. Nonrestrictive code types ignore these profile characteristics, and their use needlessly lowers MMPI-2/MMPI code-type congruences and raises the incidence of profile misinterpretations. Our recommendation of well-defined MMPI-2 code types stands.

Comment↗

Analysis of pig's coronary arterial blood flow with detailed anatomical data.

Blood flow to perfuse the muscle cells of the heart is distributed by the capillary blood vessels via the coronary arterial tree. Because the branching pattern and vascular geometry of the coronary vessels in the ventricles and atria are nonuniform, the flow in all of the coronary capillary blood vessels is not the same. This nonuniformity of perfusion has obvious physiological meaning, and must depend on the anatomy and branching pattern of the arterial tree. In this study, the statistical distribution of blood pressure, blood flow, and blood volume in all branches of the coronary arterial tree is determined based on the anatomical branching pattern of the coronary arterial tree and the statistical data on the lengths and diameters of the blood vessels. Spatial nonuniformity of the flow field is represented by dispersions of various quantities (SD/mean) that are determined as functions of the order numbers of the blood vessels. In the determination, we used a new, complete set of statistical data on the branching pattern and vascular geometry of the coronary arterial trees. We wrote hemodynamic equations for flow in every vessel and every node of a circuit, and solved them numerically. The results of two circuits are compared: one asymmetric model satisfies all anatomical data (including the mean connectivity matrix) and the other, a symmetric model, satisfies all mean anatomical data except the connectivity matrix. It was found that the mean longitudinal pressure drop profile as functions of the vessel order numbers are similar in both models, but the asymmetric model yields interesting dispersion profiles of blood pressure and blood flow. Mathematical modeling of the anatomy and hemodynamics is illustrated with discussions on its accuracy.

Animals↗

Conversion to sirolimus in a population of kidney and kidney-pancreas transplant recipients.

INTRODUCTION: Calcineurin inhibitors (CI) are associated with nephrotoxicity that might reduce long-term graft survival. We report our experience with sirolimus (SRL) conversion among a population of kidney and kidney pancreas transplant recipients. METHODS: Thirty transplant recipients (6 women, 24 men; age 41 +/- 10.5 years old) were converted to SRL therapy at 25.97 +/- 32.5 months after transplantation. Indications for conversion were: intolerance to mycophenolate mofetil (n = 13), diabetes mellitus (n = 3), CI nephrotoxicity (n = 11), CI nephrotoxicity with chronic allograft rejection (n = 2), and side effects of azathioprine (n = 1). Follow-up after conversion is 3 to 45 months. RESULTS: No significant changes were observed in the 3 months postconversion in renal function, hematological profile, and mean arterial blood pressure. In contrast there was a significant increase in cholesterol values (pre: 198.7 +/- 49.4, versus post 221.2 +/- 60.8, P = .018). At a follow-up of 15.2 +/- 9.9 months after conversion two patients (6.7%) died with functioning allograft (one because of infection and one to myocardial infarct) three kidney allografts (10.7%) have been lost: two chronic rejection; one infection. In two patients SRL therapy was discontinued (one infection, one refractory edema). Neither significant change in renal function nor episodes of acute rejection were observed. CONCLUSIONS: Conversion to SRL was safe. There was no deterioration in renal function nor episodes of acute rejection. There was a significant increase in cholesterol values after conversion. The size of the sample and the time of follow-up may have determined our results.

Adult↗

Functional convergence of regulatory regions provides vital insights into mammalian gliding adaptation.

Uncovering the key genetic basis of complex phenotypic convergence in distantly related species has been a long-standing focus in evolutionary biology and genetics, and the convergent evolution of gliding in mammals offers a valuable opportunity to address this question. Here, we investigated the genomic basis of convergent evolution of gliding in mammals by analyzing both protein-coding genes and conserved non-coding elements (CNEs). We first de novo assembled and annotated two chromosome-level genomes of gliding mammals, the red and white giant flying squirrel (Petaurista alborufus) and sugar gliders (Petaurus breviceps), and conducted comprehensive comparative genomic analysis combined with another gliding mammal, the Sunda flying lemur (Galeopterus variegatus) and 14 background species. We found that the convergent evolution of protein-coding genes provided relatively limited but functionally relevant evidence linked to gliding phenotypes. By contrast, we found that gliding-accelerated CNEs (GACNEs) cluster near functionally equivalent genes and frequently aggregate into highly diverged yet functionally convergent hotspot regions. Across the three gliding lineages, both GACNEs and hotspot GACNEs show strong convergence in their functional enrichment profiles, suggesting a broad genetic basis underlying the convergent gliding phenotype. Furthermore, we identified 72 core transcription factors underpinning the genetic basis of gliding convergence, including EMX2 and ZFHX3, potentially involved in multiple aspects of gliding adaptation. Our study highlights the role of functional convergence in regulatory regions as a key mechanism in mammalian gliding convergence, offering valuable insights and strategies for uncovering the genetic basis of complex convergent traits, thereby advancing understanding of the molecular basis of convergent traits.

Petaurista alborufus↗

Functional and genetic analysis of two CD8 T cell subsets defined by the level of CD45RC expression in the rat.

Differential cytokine production by T cells plays an important role in the outcome of the immune response. We show that the level of CD45RC expression differentiates rat CD8 T cells in two subpopulations, CD45RC(high) and CD45RC(low), that have different cytokine profiles and functions. Upon in vitro stimulation, in an Ag-presenting cell-independent system, CD45RC(high) CD8 T cells produce IL-2 and IFN-gamma while CD45RC(low) CD8 T cells produce IL-4, IL-10, and IL-13. In vitro, these subsets also exhibit different cytotoxic and suppressive functions. The CD45RC(high)/CD45RC(low) CD8 T cell ratio was determined in Lewis (LEW) and Brown-Norway (BN) rats. These two rat strains differ with respect to the Th1/Th2 polarization of their immune responses and to their susceptibility to develop distinct immune diseases. The CD45RC(high)/CD45RC(low) CD8 T cell ratio is higher in LEW than in BN rats, and this difference is dependent on hemopoietic cells. Linkage analysis in a F(2)(LEW x BN) intercross identified two quantitative trait loci on chromosomes 9 and 20 controlling the CD45RC(high)/CD45RC(low) CD8 T cell ratio. This genetic control was confirmed in congenic rats. The region on chromosome 9 was narrowed down to a 1.2-cM interval that was found to also control the IgE response in a model of Th2-mediated disorder. Identification of genes that control the CD45RC(high)/CD45RC(low) CD8 T cell subsets in these regions could be of great interest for the understanding of the pathophysiology of immune-mediated diseases.

Animals↗

The subtypes of muscarinic receptors for neurogenic bladder contraction in rats.

We evaluated in vivo functional selectivity profiles for muscarinic M(2) and M(3) subtypes of four muscarinic antagonists: Compound A (a novel muscarinic receptor antagonist with M(2)-sparing antagonistic activity), darifenacin, (a muscarinic M(3) receptor antagonist); methoctramine (a muscarinic M(2) receptor antagonist) and tolterodine (a nonselective muscarinic receptor antagonist), and compared the inhibition potency on distention-induced bladder contraction in rats. In an in vivo functional study, Compound A (0.03-10 mg/kg, i.v.) showed antimuscarinic activity with high selectivity for M(3) (salivation) over M(2) (bradycardia) (>100-fold). Darifenacin (0.01-0.3 mg/kg, i.v.) showed only slight selectivity for M(3) over M(2) (3.7-fold). Methoctramine (0.003-1 mg/kg, i.v.) showed the reverse selectivity profile (0.077-fold). Tolterodine (0.003-0.3 mg/kg, i.v.) showed less selectivity (1.2-fold). Compound A at M(3) inhibitory doses (0.1 and 0.3 mg/kg, i.v.) showed inhibition in a distention-induced neurogenic bladder contraction model, and its maximal inhibitory effects were about 60% at an even higher dose (3 mg/kg). Methoctramine at M(2) inhibitory doses (0.03 and 0.1 mg/kg, i.v.) did not significantly affect distention-induced bladder contraction. When tolterodine and darifenacin caused inhibition of distention-induced bladder contraction, its maximal inhibitory effects were similar to that of Compound A. Therefore, these findings suggest that Compound A would be an excellent pharmacological tool to give a better understanding of which subtypes of muscarinic receptors act in bladder function so far, and muscarinic M(3), but not M(2), receptors mainly mediate the cholinergic component of distention-induced bladder contraction.

Animals↗

Menstrual cycle-related changes in plasma oxytocin are relevant to normal sexual function in healthy women.

Circulating levels of the neuro-hypophysial nonapeptide oxytocin increase during sexual arousal and orgasm in both men and women. A few studies have evaluated the effect of the menstrual cycle on plasma oxytocin in normally cycling, sexually active, healthy fertile women using or not using contraceptive pills. In 20 ovulating women and 10 women taking an oral contraceptive (group 1 and group 2, respectively), sexual function, hormonal profile, and plasma oxytocin (OT) were evaluated throughout the menstrual cycle. In group 1, plasma OT was significantly lower during the luteal phase in comparison with both the follicular and ovulatory phases. Plasma oxytocin was significantly correlated with the lubrication domain of the Female Sexual Function Index (FSFI) during the luteal phase and showed a trend towards statistical significance during the follicular phase. In group 2, plasma OT did not show any significant fluctuation throughout the menstrual cycle, even though a significant correlation was evident with both the arousal and the lubrication domain of the FSFI during the assumption of the contraceptive pill. These findings suggest that plasma OT fluctuates throughout the menstrual cycle in normally cycling healthy fertile women with adequate sexual activity but not taking any oral contraceptive pill. Moreover, plasma OT levels significantly relates to the genital lubrication in both women taking and not taking oral contraceptive pill apparently confirming its role in peripheral activation of sexual function.

Adult↗

Functioning and well-being of middle-aged and older patients with schizophrenia: measurement with the 36-item short-form (SF-36) health survey.

OBJECTIVE: The authors compared the subjective functioning of 137 middle-aged and elderly outpatients with schizophrenia or schizoaffective disorder with that of 77 normal subjects, using the Medical Outcomes Study (MOS) 36-Item Short Form (SF-36) Health Survey. The SF-36 is a generic outcome measure that provides a profile of functioning in several different domains. METHODS: Measures included the MOS-SF-36, along with standardized instruments for assessing psychopathology, cognition, dyskinesia, quality of well-being, and everyday functioning. RESULTS: Schizophrenia patients reported greater disability than normal subjects in all areas (mental and physical) assessed by the SF-36 except for bodily pain. Logistic-regression analysis suggested that the best predictors for being in the schizophrenia group were 1) physical and emotional functioning and 2) pain. Among patients, age at onset of illness, depressive symptoms, and cognitive functioning predicted 39% of the variance in the SF-36 Mental Health Composite score. CONCLUSIONS: Subjective functioning of older people with schizophrenia is affected by perceived physical health, depressive symptoms, and cognitive impairment.

Aged↗

Mining functional relationships in feature subspaces from gene expression profiles and drug activity profiles.

In an effort to determine putative functional relationships between gene expression patterns and drug activity patterns of 60 human cancer cell lines, a novel method was developed to discover local associations within cell line subsets. The association of drug-gene pairs is an explorative way of discovering gene markers that predict clinical tumor sensitivity to therapy. Nine drug-gene networks were discovered, as well as dozens of gene-gene and drug-drug networks. Three drug-gene networks with well studied members were discussed and the literature shows that hypothetical functional relationships exist. Therefore, this method enables the gathering of new information beyond global associations.

Antineoplastic Agents↗

The 4F9 antigen is a member of the tetra spans transmembrane protein family and functions as an accessory molecule in T cell activation and adhesion.

In this report, we describe a 43- to 50-kDa protein, which may function as a costimulatory molecule for full activation of human T cells. This Ag, defined by a mouse monoclonal antibody (mAb) anti-4F9, is primarily distributed on "helper/inducer" or "memory" CD4+CD45RO+ subset. Like mAbs against many other accessory/costimulatory molecules, coimmobilization of anti-4F9 with anti-CD3 resulted in synergistic T cell proliferation. In addition, immobilized anti-4F9 on plastic plates induced T cell spreading characterized by the development of prominent dendritic processes. A cDNA encoding the 4F9 Ag was isolated from a cDNA library constructed from PHA/PMA-activated T cells using a COS cell expression system. The sequence of the cDNA and a homology search revealed that the 4F9 Ag was identical to R2, a molecule recently cloned by subtractive hybridization. The 4F9/R2 Ag belongs to a newly identified supergene family (tetra spans transmembrane protein family) characterized by four putative transmembrane domains which are highly conserved between the members of this family. Based upon the phenotypical and functional studies described here, we propose that the 4F9 Ag is an integral membrane protein which can transmit signals involved in T cell proliferation and adhesion. The preferential distribution of this molecule on the CD4+CD45RO+ subset of T cells may contribute to the distinct activation profile and functional repertoire of these cells.

Animals↗

Development and validation of a questionnaire to assess disabling foot pain.

This study outlines the design and validation of a new self-administered instrument for assessing foot pain and disability. The 19-item questionnaire was tested on 45 rheumatology patients, 33 patients who had attended their general practitioner with a foot-related problem and 1000 responders to a population survey of foot disorders. Levels of reported disability were found to be greatest for rheumatology patients and least for community subjects. In addition, the instrument was able to detect differences in disability levels reported by community subjects who did and did not consult with a health care professional and those who did and did not have a history of past and current foot pain. A good level of agreement was found when items on the questionnaire were compared with similar items on the ambulation sub-scale of the Functional Limitation Profile questionnaire. A Cronbach's alpha value of 0.99 and item-total correlation values between 0.25 and 0.62 confirmed the internal consistency of the instrument. Finally the results of a principal components analysis identified three constructs that reflected disabilities that are associated with foot pain: functional limitation, pain intensity and personal appearance. The design of the foot disability questionnaire makes it a suitable instrument for assessing the impact of painful foot conditions in both community and clinical populations.

Adult↗

How do eating disorders affect thyroid function?

Abnormal thyroid function in patients with eating disorders can result from malnutrition. A low serum triiodothyronine (T3) level is commonly noted in starvation states and is caused by reduced peripheral conversion of thyroxine (T4) to T3. Diminished T4 concentrations are also observed. Adequate nutrition normalizes this type of aberrant laboratory profile. Thyroid function tests that give results below the normal range are best repeated initially for verification of results and again after adequate nutrition is reestablished. If no primary endocrinopathy is present, spontaneous correction of these laboratory values can be expected with conventional dietary habits.

Adult↗

Qualitative profiles of disability.

This study identified profiles of functional disability (FD) paralleled by increasing levels of disability. We assessed 96 subjects using the World Health Organization Disability Assessment Schedule II (WHODAS II). Clustering Based on Rules (ClBR) (a hybrid technique of Statistics and Artificial Intelligence) was used in the analysis. Four groups of subjects with different profiles of FD were ordered according to an increasing degree of disability: "Low," self-dependent subjects with no physical or emotional problems; "Intermediate I," subjects with low or moderate physical and emotional disability, with high perception of disability; "Intermediate II," subjects with moderate or severe disability concerning only physical problems related to self-dependency, without emotional problems; and "High," subjects with the highest degree of disability, both physical and emotional. The order of the four classes is paralleled by a significant difference (<0.001) in the WHODAS II standardized global score. In this paper, a new ontology for the knowledge of FD, based on the use of ClBR, is proposed. The definition of four classes, qualitatively different and with an increasing degree of FD, helps to appropriately place each patient in a group of individuals with a similar profile of disability and to propose standardized treatments for these groups.

Disability Evaluation↗

The complexity of immune and alloimmune response.

Alloimmune response induced by foreign histoincompatible alloantigens is a complex phenomenon possessing mechanisms, characteristics to innate and adoptive immune response. It is also modified by various immunregulating exocrine and autocrine factors. Starting the new time period of functional genomics the knowledge of human genes' structure needs a more clear insight not only about the function and contribution of genes but their historical background, origin and importance in the phylogenesis. Comparative immunology comes into focus of interest helping to understand the complexity of immune and alloimmune response. It is almost unbelievable that immune functions as phagocytosis and cytokine production like IL-1 and TNF have already emerged 700 million years ago in starfishes and sponges. Functions--including recruitment of coelomocytes, killing of micro-organisms by lysosome-like enzyme activity, opsonization by complement analogous proteins and oxidative burst function--remained unchanged during phylogenesis and could be found not only in insects but in mammals as well as representatives of innate immunity. The importance of these molecules is reflected in homology of conservative regions. One of the biggest evolutionary steps happened 500 million years ago when fish developed a jaw in the Placoderms species. This fact led to the development of gut associated immune system. The system was the basis to create the genetic material for recombination and mutation to establish variability and diversity of proteins, as immunoglobulins. It is interesting to lean how diversity of immunglobulins in sharks is insured by joining of blocks of V, D, J and C genes, in contrast to humans, where those genes are located on different chromosome regions. These differences are associated with an immediate production of specific immunglobulin or a slower one combined with immunologic memory. Similar development could be found in T cell antigen specific receptors, too. Concerning the establishment of adoptive immunity by emergence of genetic recombination, which allowed the production of a huge diversity of specific antigen binding proteins, another structure developed parallel from the histoglobin molecule. This protein was created to catch peptide particles which split from the proteins originating from microorganisms, viruses or foreign cell compartments. The cave-like groove capturing the different peptides represented a huge variability. These histocompatibility molecules emerged from this ancient structure for more than 300 million years ago. The genetic family responsible for their synthesis became the most complex gene family including many other genes involved in the immune response. The polymorphic character of the histocompatibility protein is responsible for the capture of the relevant peptides fitting best to the allotype-determined groove. In certain species the same function could be filled by different ancient molecules with the same success. Dendritic cells and their importance in differentiation and antigen presentation became in the focus of interest in the last decade. They have lymphoid and myeloid origin, mature and less differentiated subtypes with characteristic CD markers and cytokine profile. Their function and origin from the stem cell subpopulation is an important example how nature influences the development of immunity to the accommodation and survival to the always changing environment. The new molecular techniques will help to get closer to understand the function of genes regulating immune response and modify them.

Animals↗

Unraveling the pathogenesis of type 1 diabetes with proteomics: present and future directions.

Type 1 diabetes (T1D) is the result of selective destruction of the insulin-producing beta-cells in the pancreatic islets of Langerhans. T1D is due to a complex interplay between the beta-cell, the immune system, and the environment in genetically susceptible individuals. The initiating mechanism(s) behind the development of T1D are largely unknown, and no genes or proteins are specific for most T1D cases. Different pro-apoptotic cytokines, IL-1 beta in particular, are present in the islets during beta-cell destruction and are able to modulate beta-cell function and induce beta-cell death. In beta-cells exposed to IL-1 beta, a race between destructive and protective events are initiated and in susceptible individuals the deleterious events prevail. Proteins are involved in most cellular processes, and it is thus expected that their cumulative expression profile reflects the specific activity of cells. Proteomics may be useful in describing the protein expression profile and thus the diabetic phenotype. Relatively few studies using proteomics technologies to investigate the T1D pathogenesis have been published to date despite the defined target organ, the beta-cell. Proteomics has been applied in studies of differentiating beta-cells, cytokine exposed islets, dietary manipulated islets, and in transplanted islets. Although that the studies have revealed a complex and detailed picture of the protein expression profiles many functional implications remain to be answered. In conclusion, a rather detailed picture of protein expression in beta-cell lines, islets, and transplanted islets both in vitro and in vivo have been described. The data indicate that the beta-cell is an active participant in its own destruction during diabetes development. No single protein alone seems to be responsible for the development of diabetes. Rather the cumulative pattern of changes seems to be what favors a transition from dynamic stability in the unperturbed beta-cell to dynamic instability and eventually to beta-cell destruction.

Animals↗

Patient classification, a key to evaluate pain treatment: a psychological study in chronic low back pain patients.

It has been proposed that pain treatment evaluation is hindered by heterogeneous properties of patient samples. Therefore, to facilitate pain treatment evaluation in this psychological study, a heterogeneous group of chronic low back pain patients was classified into more homogeneous subgroups. Two designs were used to compare the outcome by the "functioning activation" and the "spa resort" type of rehabilitation. In the first design, the outcome was compared in groups, clinically homogenized by sociodemographic variables and in respect to contraindications for heavy physical training. In the second design, the pain patient subgroups, homogenized by cluster analysis technique in accordance with the psychological profiles of functioning, were compared in their response to treatments. The results indicated that the outcome evaluation was facilitated by the latter design releasing more specific information about the effects of the program quality, the patient characteristics, and their interaction on the improvement by rehabilitation. It was concluded that in treatment outcome analysis, the subgroup's homogeneity must be considered.

Adult↗