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Dynamics of skeletal pattern formation in developing chick limb.

During development of the embryonic chick limb the skeletal pattern is laid out as cartilaginous primordia, which emerge in a proximodistal sequence over a period of 4 days. The differentiation of cartilage is preceded by changes in cellular contacts at specific locations in the precartilage mesenchyme. Under realistic assumptions, the biosynthesis and diffusion through the extracellular matrix of a cell surface protein, such as fibronectin, will lead to spatial patterns of this molecule that could be the basis of the emergent primordia. As cellular differentiation proceeds, the size of the mesenchymal diffusion chamber is reduced in descrete steps, leading to sequential reorganizations of the morphogen pattern. The successive patterns correspond to observed rows of skeletal elements, whose emergence, in theory and in practice, depends on the maintenance of a unique boundary condition at the limb bud apex.

Animals

[Functional and morphologic characteristics of limbic cortex maturation during early ontogenesis].

Development of the limbic cortical area in postnatal ontogenesis of the rabbit comprises three periods judging by the parameters of impulse activity of neurones and cytoarchitectonic differentiation. The period of stratification and beginning of cellular differentiation functionally corresponds to the manifestation of simple forms of spike activity (single, group) with long inactivation periods (the first week of life). The period of intensive cytoarchitectonic differentiation with separation of the agranular type of the anterior limbic area structure correlates with a more complex neuronal impulse activity (burst discharges), augmenting spectrum of dominating spike frequencies, predominance of phasic activation and specific responses together with a high total neuronal responsiveness to sensory (acoustic) stimuli (the second to third week of life). The period of complete cytoarchitectonic maturation corresponds to the stabilization of functional properties of neurones (the fourth to sixth week of life). The revealed ontogenetic dynamics of morpho-functional reorganizations in the limbic cortex point to its involvement at an early stage of postnatal life in the mechanisms of sensory analysis and of the formation of adequate adaptive reactions.

Age Factors

Modulation of the antigenic phenotype of human melanoma cells by differentiation-inducing and growth-suppressing agents.

Tumor cells often display alterations in their normal program of cellular differentiation. A promising approach for the treatment of cancer involves the induction of terminal differentiation and a loss of proliferative capacity in cancer cells. In human melanoma cells, the combination of mezerein (MEZ) and fibroblast interferon (IFN-beta), results in a rapid and irreversible suppression of cell growth with a concomitant increase in the synthesis of melanin. The induction of terminal differentiation is associated with alterations in the expression of several cellular genes, including fibronectin, ISG-15 and ISG-54, and changes in the expression of specific cell surface antigens, including intercellular adhesion molecule-1 (ICAM-1) and HLA Class I antigens. In the HO-1 human melanoma cell line, induction of terminal differentiation by MEZ plus IFN-beta results in an induction and/or increased expression of ICAM-1, HLA Class I antigens and HLA Class II antigens. IFN-beta and MEZ alone can modulate expression of these antigens to a lower extent than does the combination of compounds. Induction of terminal differentiation and the irreversible suppression of cell growth is not a prerequisite for antigenic modulation in HO-1 cells. This is indicated by the inability of immune interferon (IFN-gamma), a strong inducer of ICAM-1, HLA Class I antigens and HLA Class II antigens synthesis, or the combination of IFN-beta plus IFN-gamma which synergistically but reversibly suppresses HO-1 growth, to induce melanin synthesis or terminal differentiation in HO-1 cells.(ABSTRACT TRUNCATED AT 250 WORDS)

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine

Loss and recovery of activities of alpha+ and alpha isozymes of (Na(+) + K+)-ATPase in cortical focal ischemia: GM1 ganglioside protects plasma membrane structure and function.

Alterations in cellular membrane structure and the subsequent failure of its function after CNS ischemia were monitored by analyzing changes in the plasma membrane marker enzyme (Na(+) + K(+)-ATPase. The levels of two isozymes of (Na(+) + K(+)-ATPase, alpha+ and alpha, which have distinct cellular and anatomical distributions, were studied to determine if differential cellular damage occurs in primary and peri-ischemic injury areas. The efficacy of monosialoganglioside (GM1) treatment was assessed, since this glycosphingolipid has been shown to reduce ischemic injury by protecting cell membrane structure/function. Using a rat model of cortical focal ischemia, levels of both ATPase isozyme activities were assayed in total membrane fractions from primary ischemic tissue (parietal cortex) and three peri-ischemic tissue areas (frontal, occipital, and temporal cortex) at 1, 3, 5, 7, and 14 days after ischemia. No significant loss of either isozyme's activity occurred in any tissue area at 1 day after ischemia. At 5 days, in the primary ischemic area, both isozyme activity levels decreased by 70-75%. The alpha+ enzyme activity loss persisted up to 14 days, while a 17% recovery in alpha activity occurred. In the three peri-ischemic tissue areas, enzyme activity losses ranged from 42%-59% at 3 days after ischemia. A complete restoration of both isozyme activities was seen at 14 days. After three days of GM1 ganglioside treatment there was no loss of total (Na*+) + K(+)-ATPase activity in the three peri-ischemic areas, and a significantly reduced loss in the primary infarct tissue. An autoradiographic analysis of brain coronal sections using 3H-ouabain supports the enzymatic data and GM1 effects. Reductions in 3H-ouabain binding in all cortical layers at 3 days after ischemia were visualized. GM1 treatment significantly reduced these 3H-ouabain binding losses. In summary, time-dependent quantitative changes in activity levels of ATPase isozymes (alpha+ and alpha) reflect the different degree of membrane damage that occurs in primary vs. peri-ischemic tissues (e.g., irreversible vs. reversible membrane damage), and that ischemia affects cell membranes of all neural elements in a largely similar fashion. GM1 ganglioside was found to reduce plasma membrane damage in all CNS cell types.

Animals

The development of the pattern of growth.

It is proposed that the varying patterns of growth in development can be viewed as an aspect of pattern formation, and that different growth programmes are specified at an early stage. This is illustrated largely with respect to the development and growth of the chick wing. The spatial pattern of cellular differentiation and programme for growth can be considered in terms of the concept of positional information. The lengths of the cartilaginous elements are determined by the initial length of the primordium and its later growth, involving cell multiplication enlagement and matrix secretion. It seems that tissues have a high degree of autonomy with respect to differentiation and growth after they have had their position specified. The cellular basis of programmed growth is discussed.

Animals

[Critical study of the morphogenesis of trunco-conal malformations].

Anatomical and angiocardiographic studies have made possible discussion of hypotheses of the development and differentiation of the conus and of the trunco-conal orientation of the septum. Three autopsy specimens and two angiocardiogrammes of intertwined great vessels with transposition and partial distortion of the great vessels were studied. The specimen of intertwined great vessels comprised a muscular sub-aortic infundibulum posterior to and greater than the pulmonary infundibulum. In the case of transposition the opposite situation was encountered with a muscular pulmonary infundibulum posterior to and greater than the sub-aortic infundibulum; the plane of the aortic valves was higher than that of the pulmonary valves. The specimen of partial distortion of the great vessels comprised a muscular sub-aortic infundibulum posterior to and greater than the pulmonary infundibulum with the aortic valve set higher and in fibrous continuity with the mitral valve. It is concluded that the relations of the great vessels between each other and with the ventricles depend on the orientation of the trunco-conal septum and on the process of incorporation of the cone. The presence or absence of a posterior muscular infundibulum is not related to the growth or differential reabsorption of the cone but to a process of cellular differentiation. There was no relation between the level of the valves and their spatial orientation and the length of the infundibulum. The continuity or discontinuity between the aortic and atrio-ventricular valves is not determined by the level of the aortic valves.

Female

The cytological differentiating potential of pineal parenchymal neoplasms (true pinealomas). A clinicopathological study of 28 tumours.

A series of 28 pineal parenchymal tumours is described, with special reference to the potential of some of these neoplasms to differentiate along glial or ganglionic lines, or both. The more undifferentiated tumours (pineoblastomas, 11 cases) were the most frequent: they are histologically similar to medulloblastomas. One example showed focal differentiation to retinoblastoma at the primary site. The histological features of pineoblastomas merged with those of pineocytomas (7 cases), in which the lobular architecture is reminiscent of that of the mature pineal gland. In addition, 10 further examples in the group of pineocytomas showed more advanced differentiation as follows: towards astrocytes only (2 cases), towards ganglion cells only (1) case) and towards both astrocytes and ganglion cells (gangliogliomas) (7 cases). Confirmation of the pineal parenchymal nature of these neoplasms and of their differentiating potential was provided by a modification of the Achúcarro-Hortega's silver carbonate impregnation technique for pineal parenchymal cells, by specific silver impregnations for axonal processes, and by an immunoperoxidase stain for glial fibrillary acidic (GFA) protein. Electron microscopy of one new example of pineocytoma with neuronal and astrocytic differentiation demonstrated the presence of numerous microtubules, of clear-centred and dense-core vesicles, and of synaptic complexes. Seven illustrative clinical histories with pathological findings are presented. The identification of special features of cellular differentiation is of importance in evaluating the biological behaviour of these neoplasms since a definite correlation can be established between the patient's age, some of the cytological variants, and the malignant potential of the tumour. Pineoblastomas are highly malignant neoplasms of children and young adults which disseminate widely throughout the cerebrospinal fluid pathways. -ineocytomas without cellular evidence of further differentiation occur at any age and are also clinically malignant, but with a somewhat lesser tendency to metastasize than pineoblastomas. Pineobytomas with astrocytic differentiation occur in adults and may be either slowly growing or malignant. Pineocytomas with neuronal or with neuronal and astrocytic differentiation occur in later life, remain localized, and are relatively benign. Since the latter account for approximately one-third of pineal parenchymal tumours and are likely to be relatively radio-resistant, tissue diagnosis is imperative for a determination of the therapeutic approach. Radiation to the entire neuraxis should be administered to patients with pineoblastomas and malignant pineocytomas in view of their high frequency of cerebrospinal metastasis. An accurate histological classification of these tumours therefore carries important clinical and therapeutic implications...

Adolescent

[Correlations between the processes of cell differentiation and development of blood vessels in the (chick embryo) adenohypohhysis].

Utilizing semi-thin and, respectively, thick sections after indian ink injections, we have analyzed morphohistogenesis and vessel development in the adenohypophysis of chick embryos from the 4th to the 19th incubation day. Our preliminary results indicate that a close correlation exists between cellular differentiation and vasculogenesis. Vessels begin to enter the gland only at the 6th day when the first endocellular granules become detectable, and, from the 10th day, they markedly increase in number and size, gradually acquiring a peculiar sinusoidal arrangement around cellular groups, as cell differentiation further progresses.

Animals

Clinical and histopathologic evaluation of the expression of Ha-ras and fes oncogene products in lung cancer.

The expression of Ha-ras and fes oncogenes was investigated with the immunohistochemical method in formalin-fixed, paraffin-embedded tissue specimens of 147 lung carcinomas. Positive immunoperoxidase reactions for Ha-ras p21 were found in 80.5% of the adenocarcinomas, 39.5% of the squamous cell carcinomas, 21.4% of the large cell carcinomas, and 15.4% of the small cell carcinomas; those for fes P85 were found in 51.2% of the adenocarcinomas, 26.3% of the squamous cell carcinomas, 35.7% of the large cell carcinomas, and 15.4% of the small cell carcinomas. Both Ha-ras p21 and fes P85 were expressed most frequently and most strongly in adenocarcinoma. In addition, adenocarcinoma showed significantly higher incidence of concomitant expression of Ha-ras p21 and fes P85 as compared with other histologic types of lung cancer. Thus, the authors suggest that the cooperative effects of Ha-ras and fes oncogenes are especially important in the carcinogenesis of adenocarcinoma. In adenocarcinoma, the incidence and grade of Ha-ras p21 expression increased with the degree of histologic differentiation, suggesting that Ha-ras oncogene might be related to cellular differentiation. Papillary adenocarcinoma showed more frequent Ha-ras p21 expression in comparison with acinar adenocarcinoma. In well- or moderately differentiated adenocarcinoma, the incidence and grade of Ha-ras p21 immunoreactivity in the cases with poor prognosis were significantly higher than in those with good prognosis if other major prognostic factors were equivalent in the two groups. The authors propose that the expression of Ha-ras p21 may be one of the useful prognostic factors in such carcinomas.

Adenocarcinoma

Plasma membrane phospholipid, cholesterol and fatty acyl composition of differentiated and undifferentiated L6 myoblasts.

The lipid composition of plasma membranes isolated from differentialted and undifferentiated L6 myoblasts have been compared. In general, the plasma membranes of differentiated L6 myoblasts have a higher cholesterol to phospholipid molar ratio than plasma membranes of undifferentiated cells. Differentiated L6 myoblasts have increased relative amounts of phosphatidylethanolamine and phosphatidylcholine ine in their plasma membrane and a decreased relative amount of sphingomyelin when compared with the plasma membranes of undifferentiated myoblasts. In addition, preliminary results show that differentiated L6 myoblasts plasma membrane phospholipid shows differences in the fatty acyl composition, specifically there appears to be relatively more 17:0 and 24:1 and less 16:1 and 18:1 than in plasma membrane phospholipids of undifferentiated L6 myoblasts. These observations indicate that significant changes in plasma membrane lipid composition occur during myoblast differentiation. The role that changes in lipid composition play in control of cellular differentiation, however, remains to be elucidated.

Cell Differentiation

Carbohydrate antigens of embryonal carcinoma cells: changes upon differentiation.

Embryonal carcinoma (EC) cells, the malignant stem cells of teratocarcinomas, resemble early embryonic cells morphologically, developmentally, and with respect to several cell surface characteristics. EC cells often differentiate into a variety of cell types when treated with chemical agents such as retinoic acid, or when placed in a normal embryonic environment. Developmentally regulated surface antigens of EC cells and their differentiated derivatives have been defined using monoclonal antibodies. Many of these "differentiation antigens" have proved to be oligosaccharide chains carried on membrane glycolipids and/or glycoproteins. Our analyses of glycolipid composition in a pluripotent human EC cell line, NTERA-2, have revealed a complex set of glycoslylation changes that occur during cellular differentiation. Like early embryos, undifferentiated NTERA-2 EC cells express predominantly globo-series glycolipids. However, once differentiation is initiated by addition of retinoic acid there is a marked shift of cellular glycolipids from globo-series to lacto- and ganglio-series. Distinct subsets of differentiated cells are characterized by their expression of different patterns of glycolipid antigens. These changes in cell surface phenotype may serve to mark cellular identity and facilitate morphogenetic cell interactions during embryonic development.

Animals

Differentiation of Neuro-2a neuroblastoma cells by an antibody to GM3 ganglioside.

A monoclonal antibody against GM3 ganglioside (GM3Ab) was found to trigger differentiation of Neuro-2a cells in culture. The differentiation of Neuro-2a cells by GM3Ab was accompanied by increased levels of intracellular serotonin and amino acid neurotransmitters viz. aspartate, glutamate, glutamine, glycine and taurine. Further study indicated that the increase in the serotonin level was not due to a higher rate of serotonin synthesis but rather to a higher rate of active transport of serotonin from the medium. Studies on the cell surface gangliosides revealed that unlike the proliferating cells, the GM3Ab-mediated differentiated cells contained higher gangliosides in addition to GM3 and GM2 gangliosides. Analysis of total cellular proteins indicated the appearance of a 25 kDa protein, pI 5.4, in the GM3Ab-treated cells--a small amount of this protein was observed in dibutyryl cAMP (Bt2cAMP)-treated cells, however, the protein was totally absent in the 5-bromo-2'-deoxyuridine (BrdU)-treated cells. Investigation of the mode of action of GM3Ab indicated that the cellular differentiation was due to increased cAMP accumulation resulting from an increase in the adenylate cyclase activity. Further studies with different agents affecting protein kinase C (PKC) activity and direct assay of PKC ruled out the possibility that GM3Ab mediated its effect via PKC. This GM3Ab-induced differentiation could be inhibited by protein kinase A (PKA) inhibitor, H8, but could not be inhibited by sphingosine, an inhibitor of PKC. Pertussis toxin could mimic the effect of GM3Ab, suggesting that GM3Ab caused the elevation in the adenylate cyclase activity by reducing the Gi-protein inhibition of the adenylate cyclase. The data suggests that GM3Ab, after interaction with cell surface GM3, elevated intracellular cAMP level by withdrawing the inhibitory effect of some undefined factor(s) present in culture medium which normally keeps adenylate cyclase activity low through activation of Gi-protein.

Amino Acids

Autoregulation of neuroblastoma growth by vasoactive intestinal peptide.

Elevated serum levels of vasoactive intestinal peptide (VIP) are associated with some cases of neuroblastoma and correlate with a favorable prognosis. VIP has previously been shown in our laboratory to cause the in vitro growth inhibition and morphological differentiation of the human neuroblastoma cell line, LA-N-5. It is now shown that LA-N-5 cells express immunoreactive VIP and bear specific VIP receptors. Antagonism of endogenous VIP, either by competitive inhibition or receptor blockade, increased cell proliferation, suggesting that VIP is operative in normal growth regulation. Intracellular and extracellular levels of VIP were also shown to increase significantly during the retinoic acid-induced differentiation of these cells. Furthermore, a concomitant marked increase in VIP receptor expression was demonstrated with cellular differentiation. These receptors remain functional as evidenced by a matching increase in the level of detectable cAMP generated in response to exogenous VIP. It is concluded that VIP is a normal autoregulator of neuroblastoma cell growth and differentiation, and that retinoic acid-mediated differentiation may be, in part, due to endogenous VIP.

Cell Transformation, Neoplastic

Dibutyryl cAMP-induced protein changes in differentiating mouse neuroblastoma cells.

Proteins from mouse neuroblastoma cells treated with dibutyryl adenosine-3',5'-monophosphate (B2cAMP) were analyzed by high resolution, two-dimensional gel electrophoresis. Quantitative changes in proteins and charge modifications of proteins apparently induced B2cAMP were detected by isoelectric focusing. Some proteins appeared to be modified and one protein was increased 7- to 8-fold in cells treated with B2cAMP. Since neuroblastoma cells differentiate when treated with B2cAMP, understanding the protein changes induced by B2cAMP may help to understand cellular differentiation in neural tissue.

Animals

A single-nucleus and spatial transcriptomic atlas of poplar leaves reveals the regulation of leaf polarity and cuticle deposition.

Leaf adaxial-abaxial polarity is fundamental for plant morphogenesis and environmental adaptation through asymmetric cell differentiation. Emerging evidence reveals dorsoventral metabolic gradients act downstream of transcriptional networks to fine-tune cellular specialization. While conserved transcription factors (e.g., HD-ZIP III and KANADI) establish initial polarity, the molecular networks driving position-specific cellular differentiation and their integration with metabolic adaptation remain unclear. Leveraging single-nucleus and spatial transcriptomics, we resolve major cell classes (mesophyll, epidermal, and vascular-associated) and their adaxial-abaxial subtypes, revealing dorsoventral polarity in transcriptional profiles and metabolic pathways. Adaxial cells are enriched in phenylpropanoid/flavonoid biosynthesis, while abaxial cells show preferential activation of stress and hormone signaling. Notably, we identify MYC2 as a key regulator of adaxial cuticle biosynthesis, binding to promoters of lipid biosynthetic and transport genes (e.g., CER10 and LTPG1) and promoting cuticle thickening. Our study uncovers how positional identity shapes transcriptional and metabolic polarity in leaves, with MYC2 emerging as a central regulator coordinating organ-specific adaptations. These findings provide insights into the spatial regulation of plant development and stress resilience, offering potential strategies for engineering stress-tolerant woody crops.

Plant Leaves

Differentiation of mouse neuroblastoma cells in vitro and in vivo induced by cyclic adenosine monophosphate (cAMP).

The murine neuroblastoma appears to be a useful model for elucidating the mechanism of cellular differentiation. In tissue culture, MNB cells were induced to "irreversibly" differentiate into neuronal-like cells by DBcAMP alone or in combination with cAMP phosphodiesterase inhibitors: papaverine (Pap) and theophylline (Theo). Cells differentiated by DBcAMP, Pap, and Theo were no longer tumorgenic when reinoculated into animals of the host strain. In vivo, DBcAMP, Pap, and Theo caused a reduced tumor volume growth rate in animals with established tumors. Morphologically, this effect appears to be secondary to an arrest of cellular mitoses. Cells insensitive to these agents emerged after 3 to 4 days, and tumor growth accelerated to parallel the rate of the untreated tumors.

Adenosine Monophosphate

Cell population kinetics of 1,2-dimethylhydrazine-induced colonic neoplasms and their adjacent colonic mucosa in the mouse.

The parameters of cell population kinetics of symmetrical 1,2-dimethylhydrazine-induced colonic neoplasms and their adjacent colonic mucosa in the mouse were analyzed using the fraction labeled-mitoses curve method and compared with those of three groups of epithelial cells in the crypt of the descending colon of normal mouse. The analysis of three groups of epithelial cells in the crypt of normal mouse indicates that differentiation of epithelial cells was associated not only with a smaller proliferative pool of cells but also with a shortening of the duration of G2 phase and a prolongation of mitotic time. Other parameters of cell cycle did not change significantly. The mean cell cycle time of neoplastic cells in chemically induced colonic neoplasms was similar to that of epithelial cells in normal colon, but the variance was much greater in neoplastic cells. In neoplastic cells, the proliferative pool was greater, the G1 phase prlonged, and the S phase and the mitotic time became shorter as compared to epithelial cells in normal colon. The duration of G2 phase of neoplastic cells fell between the values of presumptive stem cells and differentiating cells in normal colon, compatible with the hypothesis that neoplastic cells are transformed stem cells defective in cellular differentiation. In the colonic mucosa immediately adjacent to neoplasms, the fraction-labeled-mitoses curve showed a flat second wave, indicating that the group of cells initially labeled by the pulse became a mixture of cells, some continuing the proliferative cycle normally, some going out of cycle, some slowing down in their passage from S through G2 to M, and some being arrested in mitotic phase. Such heterogeneous behavior of cells may be closely related to expansion of neoplasms. With some assumptions, however, cell cycle parameters of those normally cycling cells were estimated: the cell cycle time and the duration of G1 phase and mitotic phase were prolonged as compared to neoplastic cells and epithelial cells of normal colon.

Adenocarcinoma

Regulation of muscle cell growth and differentiation by the MyoD family of helix-loop-helix proteins.

The skeletal muscle cell system provides a powerful model for exploring the mechanistic basis for the antagonism between cell growth and differentiation. The recent identification of the MyoD family of muscle-specific transcription factors now offers opportunities to dissect at the molecular level of the mechanisms through which defined cell type-specific transcription factors can activate an entire differentiation program as well as to unravel the mechanisms through which growth factor and oncogenic signals can disrupt cellular differentiation. Because the mechanisms for growth factor signaling and induction of cell proliferation are conserved in diverse cell types, it is tempting to speculate that the molecular mechanisms responsible for the antagonism between cell proliferation and differentiation in muscle cells are also operative in other cell types. Resolution of this question, however, must await identification of the regulatory factors that specify cell fate in other lineages.

Amino Acid Sequence