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Biomedical subjects

B Christ

Publications and source records attributed to B Christ.

At least 163 records · Page 9Linked to original sources

Vascular endothelial cells migrate centripetally within embryonic arteries.

Migration of vascular endothelial cells was traced in quail-chick chimeras. After heterospecific transplantations of quail limb bud pieces, or other tissues containing blood vessels, into the limbs or the coelomic cavity, the immunohistochemically stained endothelial cells of the quail were found to invade the chick host vessels, favouring the arteries. Within these vessels the endothelial cells regularly reach the host aorta, where they contribute to the endothelium on the ipsilateral side. It is concluded that the endothelial cells activity migrate, because microinjections of a synthetic peptide which contains the RGD-sequence and mimics fibronectin, stop the invasion of endothelial cells.

Animals↗

The extracellular matrix during neural crest formation and migration in rat embryos.

Changes in the distribution of extracellular matrix components have been investigated immunohistochemically during neural crest development in the rat. Inside the ectodermal epithelium basal lamina components are formed resulting in a separation of neurectoderm and epidermal ectoderm. Within the presumptive neural crest area fibronectin, hyaluronan and chondroitin sulphate become apparent. Upon subsequent neural crest migration the basal lamina becomes disrupted. As the neural crest cells take part in mesectoderm formation, fragments of the basal lamina remain attached to their surface, as is demonstrated with antibodies against laminin and collagen type IV. The extracellular matrix is therefore active both in the separation of neuroectoderm from epidermal ectoderm and in mesectoderm formation.

Animals↗

Mechanism of the inhibition by insulin of the glucagon-dependent activation of the phosphoenolpyruvate carboxykinase gene in rat hepatocyte cultures. Action on gene transcription, mRNA level and -stability as well as hysteresis effect.

The mechanism of the antagonistic action of insulin on the glucagon-dependent stimulation of the phosphoenolpyruvate carboxykinase (PEPCK) gene was studied in primary cultures of rat hepatocytes. Gene expression was monitored by the transcriptional activity of the PEPCK gene and the accumulation and degradation of PEPCK mRNA. 1) Insulin in concentrations from 0.1 to 100nM shifted the dose-response curve of the glucagon-dependent accumulation of PEPCK mRNA to the right, increasing the half-maximally effective glucagon concentration gradually from 0.1 to 0.7nM. At saturating 10nM glucagon concentrations insulin was not antagonistic. 2) Glucagon at 0.1nM concentrations increased PEPCK gene transcription and PEPCK mRNA to a transient maximum at 0.5 and 2 h, respectively. Insulin, added at 10nM concentrations simultaneously with glucagon, reduced the maximal increase in PEPCK gene transcription by 70% and in PEPCK mRNA by 45%, respectively. 3) Following the maximal glucagon-induced increase after 2 h PEPCK mRNA declined to half-maximal levels after another 2.3 h. Insulin, added at 2 h at the PEPCK mRNA maximum, accelerated the disappearance of PEPCK mRNA, which reached half-maximal values already after another 1.2 h. 4) The transcriptional inhibitor cordycepin, added at 2 h at the PEPCK mRNA maximum, clearly retarded the normal and the insulin-accelerated decay of PEPCK mRNA so that half-maximal levels were reached only after another 5 h and 3 h, respectively. However, cordycepin did not retard the decay of PEPCK mRNA, when insulin was present from the beginning of induction by glucagon.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

An experimental and ultrastructural study on the development of the avian choroid plexus.

The choroid plexus consists of the choroidal epithelium, a derivative of the neural tube, and the choroidal stroma, which originates from the embryonic head mesenchyme. This study deals with epithelio-mesenchymal interactions of these two components leading to the formation of the organ. Grafting experiments of the prospective components have been performed using the quail-chicken marker technique. Prospective choroidal epithelium of quail embryos, forced to interact with mesenchyme of the body wall of chicken embryos, gives rise to a choroid plexus showing normal morphogenesis and differentiation. The choroidal epithelium induces the differentiation of organ-typical fenestrated capillaries, which are highly permeable to intravenously injected horseradish peroxidase. The choroidal epithelium of the grafts constitutes a blood-cerebrospinal fluid barrier. On top of the choroidal epithelium, there are epiplexus cells displaying a typical ultrastructure. The experimental results show that these cells do not originate from the transplanted neural epithelium. Prospective choroidal stroma of chicken embryos does not exert a choroid plexus-inducing influence upon a quail embryo's neural epithelium isolated from parts of the brain that normally do not develop a choroid plexus. The experiments show that the choroidal epithelial cells are determined at least three days before the first organ anlage is detectable.

Animals↗

The control of directed myogenic cell migration in the avian limb bud.

Interspecific grafting experiments between chick and quail embryos were carried out in order to investigate the mechanism controlling myogenic cell migration in the avian limb bud. In six series, various experimental set-ups were prepared involving different age combinations of donor and host. The migration of the myogenic cells contained in the quail donor could be traced due to the prominent perinucleolar heterochromatin of the quail nucleus. Irrespectively of the presence or absence of the apical ectodermal ridge (AER), myogenic cells were found to migrate distally when implanted at a more distal site or into a younger host. They were even found to migrate in the reverse direction when younger host tissue was located proximal to the graft. From these findings, we conclude that the state of differentiation ("juvenility") of the limb bud mesenchyme controls the directed migration of myogenic cells.

Animals↗

The influence of cell-matrix interactions on the development of quail chorioallantoic vascular system.

The extracellular matrix-component fibronectin (FN) was detected in close localisation to the vascular system (VS) of the quail chorioallantoic membrane (CAM). We have examined the role of cell-fibronectin interactions within the developing CAM. In two series of experiments the CAM was directly exposed to (1) an antibody against the cell-binding fragment of FN, and to (2) RGD-containing synthetic peptides which are recognized by the FN receptor. For controls an antibody against tubulin and a SHLVE-pentapeptide that does not interfere with the FN-receptor were applied. In the presence of anti-FN antibodies and RGD-sequences the CAM could not establish a normal vascular system. We observed hypo- and partially avascular regions; the resulting vascular pattern was atypically lacunar. None of the control substances affected the regular development of the chorioallantoic vascular system. These results demonstrate the essential role of FN in CAM angiogenesis.

Allantois↗

A hierarchy of determining factors controls motoneuron innervation. Experimental studies on the development of the plantaris muscle (PL) in avian chimeras.

Quail leg buds were grafted in place of chick leg buds or chick wing buds and vice versa at stages 18 to 21 after colonization by muscle precursor cells had been completed. Motor endplate pattern in the plantaris muscle of the grafts was analyzed before hatching by means of esterase and acetylcholinesterase staining techniques. Muscle fibre types were made visual using the myosin ATPase reaction. Investigations are based on the species-specific endplate pattern of the plantaris muscle: multiply innervated fibres in the chick and focally innervated fibres in the quail. Muscle pieces isolated from the adjacent medial gastrocnemius muscle of the grafted legs were histologically examined to judge their species-specific composition. Horseradish peroxidase was injected into the plantaris muscles of both the grafted and the opposite leg as well as in the plantaris muscle of normal quail embryos, in order to be sure that the plantaris muscle of the grafts is innervated by appropriate motoneurons. This procedural design offers for the first time a possibility to test experimentally the influences of motoneurons on endplate pattern formation under conditions corresponding to those in normal ontogenesis. It is shown that such appropriate motoneurons of one species which project to the plantaris muscle of the other species dictate the endplate pattern. When the plantaris muscle is innervated by inappropriate motoneurons, the endplate pattern inherent in the muscle primordium itself becomes realized. A sequence of hierarchically acting factors is proposed to bring different results in line. According to this, the neuronally set programme has priority compared with that set in the muscle. This is true for the normal development and might generate the high neuro-muscular specificity. If under experimental conditions the neuronal programme and the peripheral programme differ, the axons and muscle fibres selectively interact with respect to their inherent characteristics and the muscle-specific programme becomes expressed. If there is a lack of a certain axon type, muscle fibres might become innervated by non-corresponding motoneurons which alter the muscle fibre type.

Animals↗

Regulation of the expression of the phosphoenolpyruvate carboxykinase gene in cultured rat hepatocytes by glucagon and insulin.

The induction of phosphoenolpyruvate carboxykinase (PEPCK) by glucagon was studied in primary rat hepatocyte cultures by determining the time course of the sequential events, increases in the enzyme's mRNA abundance, synthesis rate, amount and activity, and by investigating the antagonistic action of insulin on the induction by glucagon. 1. The mRNA of PEPCK was induced maximally 2-3 h after addition of 10 nM glucagon, as detected by Northern-blot analysis after hybridization with a biotinylated antisense RNA of PEPCK. 2. The synthesis rate of PEPCK increased maximally 2-3 h after application of glucagon as revealed by pansorbin-linked immunoprecipitation of [35S]methionine-labelled PEPCK. 3. The enzyme amount and activity was maximally induced 4 h after glucagon application. 4. The mRNA of PEPCK was half-maximally induced by 0.1 nM and maximally by 1 nM and 10 nM glucagon. The half-maximal induction by 0.1 nM glucagon was antagonized almost totally, and the maximal induction by 1 nM glucagon partially, while the maximal induction by 10 nM glucagon remained unaffected by 10 nM insulin. The results show that in cultured rat hepatocytes physiological concentrations of glucagon stimulated the induction of PEPCK by an increase in mRNA, that the glucagon-dependent increase in mRNA and enzyme-synthesis rate occurred in parallel and preceded the increase of enzyme amount and activity by 1-1.5 h, and that physiological levels of insulin antagonized the induction by glucagon in the physiological concentration range, with glucagon being the dominant hormone.

Animals↗

On the origin of cells determined to form skeletal muscle in avian embryos.

Pieces of quail embryos from various developmental stages ranging from unincubated blastoderms (before the appearance of a primitive streak) to embryos having formed somites were grafted to the wing buds or into the coelomic cavity of chicken embryos. The grafts, which can be identified on a cellular level by virtue of the prominent nucleolus-associated chromatin, present in the quail and absent in the chicken, were screened after suitable periods of reincubation for the presence or absence of skeletal myotubes containing quail nuclei. Grafts having contributed to such skeletal myotubes were considered as having contained determined myogenic cells at the time of the grafting procedure. Determined myogenic cells appeared first in the primitive streak and in the mesodermal cells formed by the invagination (gastrulation) of epiblastic cells through the primitive streak. This is true for both the head process and the paraxial mesoderm. Epiblastic cells never gave rise to skeletal myotubes. Therefore it can be said, that the onset of myogenic determination coincides with gastrulation. It remains, however, to be established, whether these two events are causally related to one another.

Animals↗

The onset of myotome formation in the chick.

The onset of myotome formation in somites of chick embryos was studied by use of a polyclonal antidesmin antibody and by histochemical demonstration of acetylcholine esterase activity. The myotome cells originate from the dermatome only; sclerotome cells do not contribute to the myotome. The formation of the myotome starts in the craniomedial corner of the dermatome. From there the myotome formation continues simultaneously along the medial and the cranial edge of the dermatome. It was found that only the already longitudinally oriented cells of the cranial dermatome edge give rise to the myotome; the cells of the dorsomedial dermatome edge do not contribute to the myotome. Myotome cells do not originate directly from the surface of the overlying dermatome by delamination.

Acetylcholinesterase↗

[Chimeras in biologic embryology].

Chimeras produced from amphibian, mammalian, and especially avian embryos have provided important insights into vertebrate development. Important contributions have led to new concepts in understanding the development of, for example, the nervous system, the vascular system, and the skeletal muscles. The migration of cells is particularly accessible in chimeras. More important results are to be expected from chimeras in the future, especially by combining this approach with other state-of-the-art techniques.

Amphibians↗

Efficacy of urapidil in the management of essential hypertension. A comparison with captopril.

In a multicentre study by general practitioners, the antihypertensive efficacy of urapidil, a postsynaptic alpha-blocker with central action, was compared with that of the angiotensin-converting enzyme inhibitor captopril. The study was of a double-blind, randomised parallel-group design. Following a 2-week washout and placebo phase, 295 essential hypertensives (WHO I/II) were treated for 12 weeks with either urapidil or captopril, initially with urapidil 60 mg twice daily or captopril 25mg twice daily, with the possibility of adjusting the dose according to blood pressure response after 2 weeks of treatment [diastolic blood pressure (DBP) 90 mm Hg or less: reduction of urapidil to 30 mg twice daily or captopril to 12.5mg twice daily; DBP 91 to 99 mm Hg: dose unchanged; DBP 100 mm Hg or more: dose increased to urapidil 90 mg twice daily or captopril 50 mg twice daily]. Blood pressure values at the end of the 12-week treatment period dropped significantly in the urapidil group (n = 142; all dosages) from 175/103 mm Hg to 154/89 mm Hg (p less than 0.001) and in the captopril group (n = 153; all dosages) blood pressure decreased from 175/103 mm Hg to 154/90 mm Hg (p less than 0.001), corresponding to 62% and 58% urapidil and captopril responder rates (DBP less than or equal to 90 mm Hg), respectively. The responder rate at 12 weeks under urapidil therapy was 30% for the initial, 17% for the lower and 15% for the higher dose; the respective values for captopril were 28, 16 and 14%.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Sub-compartmentation of the 'cytosolic' glucose 6-phosphate pool in cultured rat hepatocytes.

[14C]Glucose release either from endogenous 14C-prelabelled glycogen or from added 14C-labelled glucose 6-phosphate was measured in filipin-treated, permeabilized hepatocytes in 48 h culture. [14C]Glucose output from prelabelled glycogen was not altered by the addition of 5 mM glucose 6-phosphate to the incubation medium. Conversely, [14C]glucose release from 5 mM labelled glucose 6-phosphate was not influenced by different glycogen concentrations in the cells. Moreover, in the permeabilized cells the anion transport inhibitor DIDS (4,4'-diisothiocyanatostilbene-2,2'-disulfonic acid) inhibited only the liberation of [14C]glucose from labelled glucose 6-phosphate but not from glycogen. It is therefore concluded that there exist at least 2 separate, mutually non-accessible glucose 6-phosphate pools in cultured rat hepatocytes, one linked to glycogenolysis and the other to gluconeogenesis.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Modulation of the glucagon-dependent induction of phosphoenolpyruvate carboxykinase by adenosine, but not ketone bodies or ammonia in rat hepatocyte cultures. Possible significance for the zonal heterogeneity of liver parenchyma.

In primary cultures of rat hepatocytes the glucagon-dependent induction of phosphoenolpyruvate carboxykinase was studied in the presence of putative local hormone and substrate modulators which form clear concentration gradients during liver passage such as adenosine, ketone bodies and ammonia. 1) Adenosine inhibited the induction of phosphoenolpyruvate carboxykinase in a concentration-dependent manner between 50 and 200 microM up to 4 h after glucagon application; AMP had similar, adenine, inosine and guanosine had no effect. Adenosine was almost totally metabolized by the liver cells during the first 4 h of the induction period. The inhibitory action of adenosine was also observed using dibutyryl-cAMP or 8-bromo-cAMP as inducer; it could not be prevented by the adenosine receptor antagonist caffeine nor could it be mimicked by the selective adenosine receptor agonist N6-(phenylisopropyl)adenosine. 2) Acetoacetate suppressed the induction of phosphoenolpyruvate carboxykinase in a concentration-dependent manner between 5 and 20mM during the first 4 h after glucagon addition. beta-Hydroxybutyrate showed no effect. Neither starting with acetoacetate nor with beta-hydroxybutyrate did the cell cultures establish the thermodynamic equilibrium between the two compounds. 3) Ammonia did not affect induction of phosphoenolpyruvate carboxykinase at concentrations up to 2mM. Ammonia was converted to urea within the first 4 h; yet it remained at clearly hyperphysiological concentrations in the medium during that period. It is concluded that the glucagon-dependent induction of phosphoenolpyruvate carboxykinase was modulated by the local hormone adenosine via a mechanism not involving adenylate cyclase and by acetoacetate via an unknown mechanism. The inhibitory action of adenosine may, that of acetoacetate can hardly be physiologically relevant.

Acetoacetates↗

Antagonistic regulation of the glucose/glucose 6-phosphate cycle by insulin and glucagon in cultured hepatocytes.

Flux through the glucose/glucose 6-phosphate cycle in cultured hepatocytes was measured with radiochemical techniques. Utilization of [2-3H]glucose was taken as a measure of glucokinase flux. Liberation of [14C]glucose from [U-14C]glycogen and from [U-14C]lactate, as well as the difference between the utilization of [2-3H]glucose and of [U-14C]glucose, were taken as measures of glucose-6-phosphatase flux. At constant 5 mM-glucose and 2 mM-lactate concentrations insulin increased glucokinase flux by 35%; it decreased glucose-6-phosphatase flux from glycogen by 50%, from lactate by 15% and reverse flux from external glucose by 65%, i.e. overall by 40%. Glucagon had essentially no effect on glucokinase flux; it enhanced glucose-6-phosphatase flux from glycogen by 700%, from lactate by 45% and reverse flux from external glucose by 20%, i.e. overall by 110%. At constant glucose concentrations cellular glucose 6-phosphate concentrations were essentially not altered by insulin, but were increased by glucagon by 230%. In conclusion, under basic conditions without added hormones the glucose/glucose 6-phosphate cycle showed only a minor net glucose uptake, of 0.03 mumol/min per g of hepatocytes; this flux was increased by insulin to a net glucose uptake of 0.21 mumol/min per g and reversed by glucagon to a net glucose release of 0.22 mumol/min per g. Since the glucose 6-phosphate concentrations after hormone treatment did not correlate with the glucose-6-phosphatase flux, it is suggested that the hormones influenced the enzyme activity directly.

Animals↗

Determination, differentiation and migration of non-neuronal neural crest derived cells.

After heterotopically grafting premigratory neural crest cells from quail embryos to the wing buds of chicken embryos, Schwann cells, non-epidermal melanocytes and epidermal melanocytes develop in the wings of the host embryos. This indicates that these neural crest derived cell populations are determined before the onset of emigration of neural crest cells from the crest. Epidermal melanocytes of donor origin are found essentially distally from the grafts, whereas non-epidermal melanocytes and Schwann cells are found proximally and distally therefrom. If the apical ectodermal ridge is removed from wing buds that have received a graft of neural crest cells, the directionality of the migration of epidermal melanocytes is lost. This indicates that the apical ectodermal ridge might account for the directional movement of epidermal melanoblasts. This situation is compared to myoblasts that behave in a similar way within the avian embryonic wing bud.

Animals↗