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At least 145 records · Page 8Linked to original sources

Human BDCA-1-positive blood dendritic cells differentiate into phenotypically distinct immature and mature populations in the absence of exogenous maturational stimuli: differentiation failure in HIV infection.

Current immunological opinion holds that myeloid dendritic cell (mDC) precursors migrate from the blood to the tissues, where they differentiate into immature dermal- and Langerhans-type dendritic cells (DC). Tissue DC require appropriate signals from pathogens or inflammatory cytokines to mature and migrate to secondary lymphoid tissue. We show that purified blood mDC cultured in vitro with GM-CSF and IL-4, but in the absence of added exogenous maturation stimuli, rapidly differentiate into two maturational and phenotypically distinct populations. The major population resembles immature dermal DC, being positive for CD11b, CD1a, and DC-specific ICAM-3-grabbing nonintegrin. They express moderate levels of MHC class II and low levels of costimulatory molecules. The second population is CD11b(-/low) and lacks CD1a and DC-specific ICAM-3-grabbing nonintegrin but expresses high levels of MHC class II and costimulatory molecules. Expression of CCR7 on the CD11b(-/low) population and absence on the CD11b(+) cells further supports the view that these cells are mature and immature, respectively. Differentiation into mature and immature populations was not blocked by polymyxin B, an inhibitor of LPS. Neither population labeled for Langerin, E-cadherin, or CCR6 molecules expressed by Langerhans cells. Stimulation of 48-h cultured DC with LPS, CD40L, or poly(I:C) caused little increase in MHC or costimulatory molecule expression in the CD11b(-/low) DC but caused up-regulated expression in the CD11b(+) cells. In HIV-infected individuals, there was a marked decrease in the viability of cultured blood mDC, a failure to differentiate into the two populations described for normal donors, and an impaired ability to stimulate T cell proliferation.

Adult↗

Correlation of cervical vertebra maturation with hand-wrist maturation in children.

The purpose of this study was to evaluate the reliability of cervical vertebra maturation as an indicator of skeletal age during the circumpubertal period. This was determined by correlating cervical vertebra maturation to hand-wrist maturation. The vertebral skeletal age was assessed using lateral cephalometric radiographs according to maturity indicators modified from Lamparski. The hand-wrist skeletal age was evaluated in radiographs with the system developed by Fishman. The sample consisted of 503 subjects (244 boys and 259 girls), aged 8 through 18 years. The Spearman rank correlation coefficients and Wilcoxon sign rank test showed that a statistically significant relationship existed between the two assessments. Both the intra- and inter-judge tests of reliability displayed no significant differences. The results of this study indicate that skeletal age assessment made from the maturational changes of cervical vertebrae were reliable, reproducible and valid.

Adolescent↗

B cell deficiency progresses with lineage maturation in nude.X-linked immunodeficient mice B cell deficiency progresses with lineage maturation.

Previously we showed that unlike normal, nude, or X-linked immune deficient (xid) mice, nude.xid mice are deficient in bone marrow pre-B cell targets for Abelson murine leukemia virus transformation. We show that nude.xid bone marrow is deficient in both CD45(B220)+ and CD45(B220)- surface (s)IgM- progenitors that give rise to B cell colonies in Whitlock-Witte cultures. CD45(B220)+ precursors had normal differentiation potential in vitro. CD45(B220)- precursors differentiated into CD45(B220)+ cells at the same rate as normal controls, but acquired sIgM at a much slower rate. These results correlated with the observation that in nude.xid mice the severity of B lineage defects correlates with maturity: a profound (ninefold) deficit of sIgM+, CD45(B220)+ mature B cells, a fivefold deficit in the sIgM-, CD45(B220)+ precursors of short term B cell colonies (colonies forming within 4-5 days in Whitlock-Witte cultures), and a moderate (twofold) decrease in the frequency of sIgM-, CD45(B220)- (less mature) precursors of long term B cell colonies (colonies forming after 14 days of Whitlock-Witte culture. Thus the combination of the nude and xid mutations produces a deficiency in early B cell progenitors and the deficiency becomes more profound with further maturation. Therefore the lack of mature B cells is the result of a cascade effect. Inasmuch as bone marrow progenitors are affected, and these are the source of the vast majority of B cells, most B cells are affected by the xid mutation and the xid defect cannot be attributed to a loss of a fetal lineage of B cells. These results suggest that xid affected cells lack the capacity to progress efficiently through differentiation in the absence of an exogenous factor(s) that is dependent on the product of a normal allele at the nude locus. This product might be supplied in vivo by a T cell or T cell-dependent source and/or epithelial elements such as bone marrow stromal cells all of which are known to be affected by the nude mutation.

Animals↗

Analysis of the survival of mature human eosinophils: interleukin-5 prevents apoptosis in mature human eosinophils.

We and other groups have previously shown that interleukin-5 (IL-5) maintained the viability of mature eosinophils in an in vitro liquid culture system. Mature eosinophils did not proliferate but their survival was maintained in the presence of IL-5. Using this culture system, we investigated the mechanism of IL-5-mediated survival. In the absence of human IL-5 (hIL-5) mature eosinophils succumbed after 4 days, while in the presence of hIL-5 they survived up to 10 days. When DNA extracts of cultured eosinophils were analyzed on an agar gel electrophoresis, marked DNA fragmentation was observed in the absence of hIL-5, while no significant DNA fragmentation was observed in the culture with hIL-5 for 48 hours. The DNA fragmentation appeared as early as 6 to 12 hours after hIL-5 deprivation. Concomitantly, IL-5 stimulated total RNA and protein synthesis, but did not induce DNA synthesis in mature eosinophils. Because cycloheximide or actinomycin D impeded the protection of apoptosis by hIL-5, some new RNA and protein synthesis appeared to be required in this phenomena. These findings indicate that IL-5 maintains survival of mature eosinophils with induction of new RNA and protein synthesis, thus leading to the inhibition of apoptosis.

Cell Death↗

[Recent knowledge on follicle and oocyte maturation. 2. Oocyte development and maturation].

A review is given about the present knowledge in oocyte development and oocyte maturation. The four parts of the review contain: development of the oocyte in the fetal ovary, morphology and metabolism during meiotic arrest, oocyte maturation, and the relations between oocyte maturation and in vitro-fertilization in the human. The morphological and biochemical changes in the maturation process and present hypotheses about maturation regulation are described especially. The increasing knowledge in this field supports the progress of in vitro-fertilization in the human. On the other hand this technique contributes importantly to new directions in oocyte research.

Cell Differentiation↗

Both a precursor and a mature population of dendritic cells can bind HIV. However, only the mature population that expresses CD80 can pass infection to unstimulated CD4+ T cells.

Dendritic cells (DC) are the principle APC involved in primary immune responses; their major function is to obtain Ag in tissues, migrate to lymphoid organs, and activate T cells. DC are also the first immune cells to arrive at sites of inflammation on mucous membranes, the major site of sexual transmission of HIV. We have demonstrated previously that three populations of cells that can develop a dendritic morphology are present in peripheral blood. Two of these populations can express CD83, a marker of DC, and appear to be at different stages of maturation: 1) a precursor population and 2) a mature immunostimulatory DC. Precursor-derived DC express high levels of CD86 (B7-2) and HLA-DR but no CD80 (B7-1), whereas mature DC have high levels of expression of all three markers. Mature DC in peripheral blood bind HIV to their surface and induce infection when added to autologous CD4+ T cells in the absence of added stimuli, such as mitogens. These mature DC, when isolated directly from peripheral blood, appear to be conjugated to T cells, and these conjugates are infected easily and productively with HIV. These findings suggest a role for DC in early HIV infection in which they bind virus and interact with T cells locally or after migrating to a lymphoid organ, thus establishing a productive infection. Furthermore, they likely play a role in the propagation of HIV infection by activating T cells in the presence of HIV, which leads to viral replication and immune cell destruction.

Antigens, CD↗

[Effects of the maturity of human oocytes on fertilization and embryonic development: application of oocyte maturation in medium containing follicle-stimulating hormone].

A total of 2,145 oocytes from 355 IVF cycles were classified as overmature (O), mature (M), transitional (T), immature (I) and abnormal (A) according to the morphology of the corona radiata. The rates of fertilization (%F) and embryonic development (%D) per oocyte were the highest in the M group, and decreased significantly with the decreasing maturity of the oocytes (T and I) and were the lowest in the A group. Decreases in %F and %D were also observed in the O group. %F and %D were significantly higher in oocytes with a polar body (PB) than without a PB. Mature oocytes classified according to the morphology of the corona radiata had significantly higher %F and %D than those classified according to the morphology of the cumulus oophorus. %F and %D were increased when T-oocytes without a PB and I-oocytes were matured in vitro for 18-24 hours in medium supplemented with FSH. A normal female baby was delivered, following IVF-ET of two T-oocytes matured in vitro with FSH.

Adult↗

The Maturation Index of Colostrum and Milk (MICAM): a measurement of breast milk maturation.

A biological marker, the Maturation Index of Colostrum and Milk (MICAM), was developed using filter paper chromatography. The MICAM consists of five patterns used to measure the individual rate of breast milk maturation among mothers. This article documents the biological basis of MICAM patterns as a gradual breakdown of an emulsion of breast milk that is dependent on the ratio of sterols plus phospholipids to fat content of the milk. Frequencies of MICAM patterns by day, timing of the milk collection, and inter-rater reliability are addressed and the construct validity is explored. This was a partial replication of the original tool development reported by Humenick in 1987. In both studies, the variables of timing of breast-feeding initiation, frequency, and cumulative length of breast-feeding episodes were significantly correlated as predictors of early milk maturation as measured by the MICAM. Milk maturation rate was also significantly correlated as a predictor of infant weight gain, weeks of sustained breast-feeding, and maternal-infant breast-feeding satisfaction. The MICAM can be used as a clinical screening tool to assess the progress of milk maturation in cases where breast-feeding has had a difficult or delayed initiation, and to evaluate interventions designed to support lactation.

Adult↗

Experimental studies on in vitro maturation of porcine oocytes. I. Effects of medium, energy source and protein source on in vitro maturation rate.

Effects of culture medium, energy and protein source on in vitro maturation of cumulus-intact porcine oocytes were examined. The bicarbonate buffered Whittens medium was superior to the PB1 medium buffered with phosphate salts in supporting in vitro maturation. However, modification of energy source of the PB1 medium by reducing Na-pyruvate concentration and adding lactate salts gave also high maturation rate. The supplementation of Whittens medium with 1 g and 3 g BSA/l as a protein source significantly increased incidence of maturation and improved handling of oocytes. There was no significant difference in the ability of low concentration (1 g/l) and high concentration (3 g/l) of BSA in culture medium to support maturation.

Animals↗

Antigen receptors on immature, but not mature, B and T cells are coupled to cytosolic phospholipase A2 activation: expression and activation of cytosolic phospholipase A2 correlate with lymphocyte maturation.

The Ag receptors on mature B and T cells are not coupled to the activation of cytosolic phospholipase A2 (cPLA2) and arachidonic acid release. Moreover, phorbol esters such as PMA, which can activate cPLA2 via mitogen-activated protein (MAP) kinase in most cell types, also failed to induce the release of arachidonate from mature cells, suggesting that the cPLA2 pathway may not be functional in mature lymphocytes. Interestingly, Western blot analysis revealed that cPLA2, which had previously been thought to be expressed ubiquitously, is not expressed in mature B or T cells and that cytosolic phospholipase A2 expression could not be up-regulated in lymphocytes following culture with a range of cytokines most likely to be involved in an immune response such as IL-1 alpha, IL-3, or TNF-alpha. In contrast, cPLA2 was shown to be expressed and activated in thymocytes and immature B cells under conditions in which ligation of the Ag receptors led to growth arrest and/or apoptosis. Taken together, these data suggest that cPLA2 does not play a role in Ag receptor-mediated lymphocyte activation, but may be involved in the molecular mechanisms underlying lymphocyte maturation and/or self tolerance by clonal deletion.

Animals↗

Development of sexual maturity in the ciliate Euplotes crassus: sources of variation in the timing of maturity.

The life styles of ciliated protists are particularly suitable for experimental analyses of certain aspects of developmental and genetic biology. The progression from sexual immaturity to maturity to senescence represents one of the most intriguing aspects of developmental programs. The extent to which progeny clones, their subclones, and testers used in the assay result in different lengths of immaturity has been investigated in Euplotes crassus. Six subclones from each of 12 progeny clones from a cross between stocks EC1 and EC2 were tested for maturity with stocks EC3, EC4, and EC5 on every transfer. Analysis of variance was used to partition the total variation in fissions to maturity into parts due to clones, subclones, and testers and the interactions between these levels. The error, interaction of subclones and testers, corresponds to a standard deviation of only 4.1 fissions, while the within clone within tester means range from 15.2 to 46.7 fissions; all levels except testers contribute significantly to the total variation. Most of the variability is attributable to clones (66%), the next most to error (16%), the next most to interaction of clones by testers (13%), and the least to subclones (5%). An a posteriori analysis examined whether the differences among clones were due to the cytoplasm of the clone ancestor (exconjugant), its mat (mating-type) locus genotype, or the mated pair it came from. None of these characteristics was able to interpret simply the large variability among clones. These results provide evidence that the transition from immaturity to maturity is quantitative and complex rather than a jump from one well-defined state to another.

Analysis of Variance↗

Relationship between the morphological changes of somatic compartment and the kinetics of nuclear and cytoplasmic maturation of oocytes during in vitro maturation of porcine follicular oocytes.

Based on the morphology and expansion of the cumulus cells, several different classes of porcine cumulus-oocyte complexes (COCs) can be distinguished, during their maturation in vitro. The goal of the present study was to find out the rate of each morphologic category in case of COCs and granulosa-cumulus-oocyte complexes (GCOCs), the characteristics of their nuclear progression, cytoplasmic maturation, and the frequency of monospermy after IVF. It was found that the frequency of cumulus expansion is higher in case of GCOCs than that of COCs. Nuclear progression of COCs was more accelerated than that of GCOCs. Oocytes attached to the bottom of culture dish with dark, compact cumulus underwent nuclear and acquired their ability to be activated earlier than that of oocytes showing normal cumulus expansion. The rate of monospermic fertilization after IVF of normal COCs showing normal cumulus expansion was higher than that of COCs attached to the dish. These results suggest that diverse behavior of cumulus cells during in vitro culture affects nuclear and cytoplasmic maturation of porcine oocytes, which also affects IVF results. It can be concluded that granulosa cells promote normal cumulus expansion thus decrease heterogeneity in nuclear and cytoplasmic maturation amongst oocytes.

Animals↗

Molecular mechanisms of the activation of maturation-promoting factor during goldfish oocyte maturation.

Oocyte maturation is triggered by the activation in the oocyte cytoplasm of maturation-promoting factor (MPF), which consists of cdc2 (a catalytic subunit) and cyclin B (a regulatory subunit). Immature goldfish oocytes contain only inactive monomeric 35-kDa cdc2 and do not stockpile cyclin B. In maturing oocytes, activation of cdc2 is associated with its Thr161 phosphorylation and mobility shift on SDS-PAGE from 35 to 34 kDa after binding to cyclin B. Using mutant cdc2, we show that Thr161 phosphorylation is required for both the downward shift and the kinase activation. Since cdc2 Tyr15 is not phosphorylated after binding to cyclin B, it does not require dephosphorylation. This situation is obviously different from that in immature Xenopus oocytes, in which the cdc2-cyclin B complex preexists with cdc2 phosphorylated on both Tyr15 and Thr161, thereby requiring Tyr15 dephosphorylation catalyzed by cdc25 phosphatase for MPF activation. These results indicate that these species employ different mechanisms of MPF activation during oocyte maturation, although the final molecular structure of the active MPF (cdc2 bound to cyclin B and phosphorylated on Thr161) is identical.

Amino Acid Sequence↗

Lithium inhibits amplification or action of the maturation-promoting factor (MPF) in meiotic maturation of starfish oocytes.

Microinjection of LiCl reversibly inhibits hormone-induced meiotic maturation of starfish oocytes. Microinjection of NaCl (even in ouabain-treated oocytes) or KCl, or external application of LiCl have no such effect. Blockade of meiotic maturation by Li+ occurs even when microinjection is performed after the hormone dependent period has ended, that is the period during which the hormone must be present in the medium in order that meiosis can take place. Li+ microinjection prevents oocytes from meiosis reinitiation following transfer of cytoplasm taken from maturing oocytes, which contain a maturation-promoting factor (MPF). Cytoplasm taken from Li+-injected and hormone-treated oocytes does not trigger meiosis reinitiation when transferred in control immature oocytes. Intracellular pH does not change following LiCl microinjection. Simultaneous microinjection of either K+, Na+, or EGTA does not prevent Li+-dependent inhibition in oocytes.

Animals↗

Calmodulin is involved in the first step of oocyte maturation: effects of the antipsychotic drug fluphenazine and of anticalmodulin antibodies on the progesterone-induced maturation of xenopus laevis oocyte.

Specific anticalmodulin antibodies were microinjected into full-grown Xenopus laevis oocyte, and it is shown that in ovo blockade of the complex Ca2+-calmodulin accelerates the kinetics of progesterone-induced maturation, even though the molar ratio of antibody binding sites to total calmodulin was only 0.16. Addition of 200 microM fluphenazine to the oocyte incubation medium resulted in a similar acceleration of steroid-induced maturation. Neither protein kinase inhibitor (PKI) nor maturation promoting factor (MPF)-induced maturation are affected either by the antipsychotic drug or by anticalmodulin antibodies; this result suggests that the adenylate cyclase system may be the target for anticalmodulin antibodies and fluphenazine effects.

Animals↗

The pure inhibitor of cAMP-dependent protein kinase initiates Xenopus laevis meiotic maturation. A 4-step scheme for meiotic maturation.

The availability of the pure inhibitor of cAMP-dependent protein kinase prompted a re-examination of the inhibitor-induced meiotic maturation of Xenopus laevis oocytes. Injection of the inhibitor (1.5 microM) triggered 100% germinal vesicle breakdown faster than progesterone and slower than the maturation-promoting factor: at 0.15 microM, the inhibitor still triggered 100% meiosis, but with a much slower kinetics. In contrast, injection of 24 microM calmodulin resulted in less than 50% GVBD, and results were variable from female to female. Combined injection of inhibitor and calmodulin failed to show any synergism, which does not favour hypotheses according to which calmodulin acts by activation of cyclic nucleotide phosphodiesterase. The net effect of the inhibitor is to decrease the concentration of the free catalytic sub-unit of cAMP-dependent protein kinase, fully dissociated in the unstimulated oocyte, as shown by the absence of effect of pretreatment with cholera toxin on the inhibitor-induced maturation. After such decrease by about 1 microM, a maturation protein, Mp-P, is dephosphorylated by phosphoprotein phosphatases. Dephospho-Mp triggers the synthesis of MPF in cycloheximide-sensitive steps. Finally, MPF triggers GVBD in steps insensitive to cycloheximide. Evidence for such a 4-step scheme--fall in cAMP levels, then in C sub-unit levels, dephosphorylation of Mp leading to the synthesis of MPF and finally MPF-triggered GVBD--is presented and discussed.

Animals↗

Melatonin accelerates maturation inducing hormone (MIH): induced oocyte maturation in carps.

The present communication is an attempt to demonstrate the influence of melatonin on the action of maturation inducing hormone (MIH) on the maturation of oocytes in carps. The oocytes from gravid female major carp Labeo rohita were isolated and incubated separately in Medium 199 containing (a) only MIH (1 microg/ml), (b) only melatonin (at concentrations of 50, 100 or 500 pg/ml), and (c) both melatonin and MIH, but at different time intervals. In the latter group, melatonin was added to the incubating medium either (i) 4 h before addition of MIH, (ii) 2 h before addition of MIH, (iii) co-administered with MIH (0 h interval) or (iv) 2 h after addition of MIH. In each case, oocytes were further incubated for 4, 8, 12 or 16 h post- administration of MIH, and the effects of treatment on oocyte maturation were evaluated by considering the rate (%) of germinal vesicle breakdown (GVBD). Incubation of oocytes in a medium containing only melatonin did not result in GVBD of any oocyte. Nearly all the oocytes underwent GVBD when incubated with MIH for 16 h. Administration of melatonin along with MIH (at 0 h interval) or 2 h after addition of MIH did not result in any significant change in the rate of GVBD compared to that in a medium containing only MIH. However, it was quite interesting to observe that incubation of oocytes with melatonin especially 4 h prior to addition of MIH in the medium, led to an accelerated rate of GVBD in the oocytes. Experiments with the oocytes of another major carp Cyprinus carpio following an identical schedule depicted similar results except a difference in the optimum melatonin dose. In L. rohita, 50 pg/ml melatonin had maximum acceleratory effect on MIH-induced GVBD of oocytes, while it was 100 pg/ml in C. carpio. Further study revealed that pre-incubation with melatonin accelerates the action of MIH on the formation of a complex of two proteins (MPF), a regulatory component called cyclin B and the catalytic component protein kinase known as cyclin-dependent kinase, Cdk1. Densitometric analysis of the immunoblot data collected from the melatonin pre-treated MIH incubated oocytes showed that cyclin B level continued to increase even after 4 h of incubation, and reached the peak after 12 h. Moreover, determination of H1 kinase activity as an indicator of MPF activity in oocytes revealed that melatonin pre-incubation considerably increased MIH stimulation of histone H1 phosphorylation as compared to MIH alone. Thus, the present study demonstrates for the first time that prior incubation with melatonin accelerates the action of MIH on carp oocyte maturation.

Animals↗

Study of the in vitro maturation of mouse oocytes induced by microinjection of maturation promoting factor (MPF).

PURPOSE: Maturation promoting factor (MPF) acts at the resumption of meiosis and nonspecifically throughout the animal species. There exists a considerable body of literature on MPF, but little work has been done to study the induction of maturation of mammalian oocytes by microinjection of extracted MPF. METHODS: Immature (GV-stage) mouse oocytes were microinjected MPF extracted from matured Xenopus eggs in the presence of dbcAMP. RESULTS: The rate of germinal vesicle, breakdown (GVBD) induced at 24 hr after MPF injection was significantly higher (90.5%) than that of the control (2.2%), which was injected with HTF medium containing dbcAMP (P < 0.0001). The rate of extrusion of the first polar body at 24 hr after MPF injection was significantly higher (84.1%) than that of the same control (1.1%) (P < 0.0001). CONCLUSIONS: From these results, it is concluded that the maturation of mammalian oocytes can be induced by the microinjection of MPF extracted from other species.

Animals↗