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1.
V. G. Borkhvardt 《Russian Journal of Developmental Biology》2000,31(3):154-161
The development of the fin and limb buds involves a balance of centrifugal (active) and centripetal (passive) mechanical forces,
the first of which acts to move the walls of these structures away from each other and the second of which holds them together.
When the volume of the mesodermal core increases, the generated force meets with the resistance of the basal membrane, and
as a result, the limb bud has a tendency to acquire a cylindrical shape. Collagen fibers, individual mesenchymal cells, and
their groups hold together the dorsal and the ventral wall of the limb bud, prevent the movement of these walls away from
each other, and in this way direct bud growth along the proximodistal and the anteroposterior axes. The balance of the forces
which stretch the ectodermal layer and those which constrain it has also been observed in the development of other body parts. 相似文献
2.
Up regulation of the transforming growth factor-beta 1 (TGF-β1) axis has been recognized as a pathogenic event for progression of glomerulosclerosis in diabetic nephropathy. We demonstrate that glomeruli isolated from diabetic rats accumulate up to sixfold more extracellular adenosine than normal rats. Both decreased nucleoside uptake activity by the equilibrative nucleoside transporter 1 and increased AMP hydrolysis contribute to raise extracellular adenosine. Ex vivo assays indicate that activation of the low affinity adenosine A2B receptor subtype (A2BAR) mediates TGF-β1 release from glomeruli of diabetic rats, a pathogenic event that could support progression of glomerulopathy when the bioavailability of adenosine is increased. 相似文献
3.
《Free radical research》2013,47(2):82-88
AbstractEndothelial dysfunction characterized by decreased nitric oxide (NO) bioavailability is the first stage of coronary artery disease. It is known that one of the factors associated with an increased risk of coronary artery disease is a high plasma level of uric acid. However, causative associations between hyperuricaemia and cardiovascular risk have not been definitely proved. In this work, we tested the effect of uric acid on endothelial NO bioavailability. Electrochemical measurement of NO production in acetylcholine-stimulated human umbilical endothelial cells (HUVECs) revealed that uric acid markedly decreases NO release. This finding was confirmed by organ bath experiments on mouse aortic segments. Uric acid dose-dependently reduced endothelium-dependent vasorelaxation. To reveal the mechanism of decreasing NO bioavailability we tested the effect of uric acid on reactive oxygen species production by HUVECs, on arginase activity, and on acetylcholine-induced endothelial NO synthase phosphorylation. It was found that uric acid increases arginase activity and reduces endothelial NO synthase phosphorylation. Interestingly, uric acid significantly increased intracellular superoxide formation. In conclusion, uric acid decreases NO bioavailability by means of multiple mechanisms. This finding supports the idea of a causal association between hyperuricaemia and cardiovascular risk. 相似文献
4.
Mária Zsófia Koltai Peter Rösen Pál Hadházy Zoltán Aranyi György Ballagi-Pordány Gábor Pogátsa 《Molecular and cellular biochemistry》1992,109(2):189-196
The aim of this study was to clarify whether or not arachidonic acid metabolic disorders are caused by a substrate inavailability and whether such disorders might contribute to circulatory disturbances in the diabetic myocardium. Norepinephrine induced a decrease in the conductivity of both coronary arterial bed and myocardial microcirculation in alloxan-diabetic dogs. It was markedly (p < 0.05) attenuated both by indomethacin and acetylsalicylic acid pretreatments indicating an imbalance among the vasoactive prostanoids in diabetes. TXA2 release from the diabetic coronary rings was found to be elevated and could be normalized after the blockade of vascular adrenoceptors by phentolamine (p < 0.05). PGIZ synthesis was also enhanced by adrenergic blockade in the diabetic arterial rings. After pretreatment with l4C arachidonic acid, in order to measure substrate availability, the arachidonic acid metabolic rate was less in the diabetic coronary arteries than in healthy vessels (p < 0.05). Ten µmol/1 norepinephrine decreased arachidonic acid metabolism in the presence of prelabelled substrate in the diabetic animals, compared to an increase observed in metabolically healthy dogs. Therefore diabetes appears to diminish arachidonic acid metabolism and uptake independent of adrenoceptors and to induce an imbalance between vasoconstrictor and vasodilator cyclooxygenase products, resulting in elevated TXA2 release controlled by adrenergic mechanisms which may contribute to an impairment in myocardial microcirculation.Abbreviations 6-oxo-PGF1
6-oxo prostaglandin F1
- HPLC
High Pressure Liquid Chromatograph
- LAD
Left Anterior Descending (coronary artery)
- PGI2
Prostacyclin
- TXA2
Thromboxane 相似文献
5.
The distribution of the pulmonary artery and vein of the orangutan lung was examined. The right pulmonary artery runs obliquely
across the ventral side of the right bronchus at the caudally to the right upper lobe bronchiole. It then runs across the
dorsal side of the right middle lobe bronchiole. Thereafter it runs obliquely across the dorsal side of the right bronchus,
and then along the dorso-medial side of the right bronchus. This course is different from that in other mammals. During its
course, it gives off branches which run mainly along the dorsal or lateral side of each bronchiole. The left pulmonary artery
runs across the dorsal side of the left middle lobe bronchiole, then along the dorso-lateral side of the left bronchus, giving
off branches which run along each bronchiole. The pulmonary veins run mainly the ventral or medial side of, along or between
the bronchioles. In the left lung, the left middle lobe vein has two trunks; one enters the left atrium, and the other enters
the left lower lobe pulmonary venous trunk. This is also different from that found in most mammals. Finally, the pulmonary
veins enter the left atrium with four large veins. 相似文献
6.
Shingo Kurabuchi 《Development genes and evolution》1992,201(6):376-382
Summary The relationship between the size and shape of regenerative outgrowth and the quantity of innervation was studied in adult Xenopus laevis. The forelimbs, of which the nerve supply was artificially altered, were amputated midway through the stylopodium and were kept for 1 year. The regenerative outgrowths that formed in normal limbs with an intact nerve supply were mainly spike-shaped and occasionally rod-shaped. However, when the nerve supply to the distal part of the forelimb was augmented by surgically diverting ipsilateral sciatic nerve bundles, the quantity of innervation was increased to about two and a half times that of the normal limb. These hyperinnervated outgrowths were somewhat larger than those of the normally innervated outgrowths and the majority of them were oar-shaped, a type hardly ever encountered in normal regeneration. In contrast, when partial denervation was performed concomitantly with limb amputation, by ablation of the N. radialis at the shoulder joint, the quantity of innervation decreased to about one half that of the normal limb. The outgrowths obtained were spike-shaped in all cases, with their size being about half that of the normally innervated outgrowths. Furthermore, when both the N. radialis and N. ulnaris were ablated in the same way, the amputated limbs were mostly non-regenerative, but some of them regenerated small conical outgrowths. Based on these results, a discussion is presented concerning the relationship between a regenerative outgrowth and the innervation of the forelimb in Xenopus. 相似文献
7.
Summary The present studies examined some of the properties of Cl– channels in renal outer medullary membrane vesicles incorporated into planar lipid bilayers. The predominant channel was anion selective having aP
Cl/P
K ratio of 10 and a unit conductance of 93 pS in symmetric 320mm KCl. In asymmetric KCl solutions, theI-V relations conformed to the Goldman-Hodgkin-Katz equation. Channel activity was voltage-dependent with a gating charge of unity. This voltage dependence of channel activity may account, at least in part, for the striking voltage dependence of the basolateral membrane Cl– conductance of isolated medullary thick ascending limb segments. The Cl– channels incorporated into the planar bilayers were asymmetrical: thetrans surface was sensitive to changes in ionized Ca2+ concentrations and insensitive to reducing KCl concentrations to 10mm, while thecis side was insensitive to changes in ionized Ca2+ concentrations, but was inactivated by reducing KCl concentrations to 50mm. 相似文献
8.
H. Preuschoft 《Human Evolution》1989,4(2-3):145-156
The variation of body shape among prosimians is reviewed. Special emphasis is placed on the selective advantages, that is
the mechanical reasons, to which variants of the locomotor apparatus can be traced back.
There are differences found in the cheiridia, but at present they cannot be explained in terms of mechanics; there is nearly
no knowledge about the mechanical meaning of their diversity. Myological characteristics of taxa can be explained mechanically,
but this has not yet been done.
Well known are variations of body proportions. These discriminate higher taxa, and are largely coincident with the often-used
locomotor categories. In spite of this, there are only few sound arguments about the real biomechanic value of characteristic
proportions for a given locomotor mode. What is known on this field, is reviewed. Progress can be made only, if the mechanical
conditions, set by postural behavior and locomotion, are understood completely.
The subtle distinctions between lower taxonomic units can normally be identified only on the basis of detailed and quantified
analyses of movements on one hand, and of biometrics on the other. In the few cases in which such studies have been made,
the differences of morphology fit to the mechanical requirements of locomotion which also differ only in quantitative details. 相似文献
9.
The lungs of three silvered lutongs (Presbytis cristata) were examined. The right and left lungs have the dorsal, lateral, ventral, and medial bronchiole systems, which arise from
the corresponding sides of both bronchi, respectively. Bronchioles in the dorsal and lateral bronchiole systems are well developed,
whereas those in the ventral and medial bronchiole systems are poorly developed and lack some portions. According to the fundamental
structure of bronchial ramifications of the mammalian lung (Nakakuki, 1975, 1980), the right lung consists of the upper, middle, lower, and accessory lobes, whereas the left lung consists of
a bilobed middle lobe and a lower lobe, in which the right upper lobe is extremely well developed. The right pulmonary artery
runs across the ventral side of the right upper lobe bronchiole, and then across the dorsal side of the right middle lobe
bronchiole. Initially it runs along the lateral side of the right bronchus and then gradually comes to run along the dorsal
side. During its course, it gives off branches which run mainly along the dorsal or lateral side of the bronchiole. The left
pulmonary artery runs across the dorsal side of the left middle lobe bronchiole, and then follows the same course as that
in the right lower lobe. The pulmonary veins run medially or ventrally to the bronchioles, and finally enter the left atrium
as four or five large veins. 相似文献
10.
Satoshi Muraki Masahiro Yamasaki Yoshito Ehara Kunio Kikuchi Kunihiro Seki 《European journal of applied physiology and occupational physiology》1996,74(5):481-483
The purpose of the present study was to examine the effect of maximal arm exercise on the skin blood circulation of the paralyzed
lower limbs in persons with spinal cord injury (PSCI). Eight male PSCI with complete lesions located between T3 and L1 performed
graded maximal arm-cranking exercise (MACE) to exhaustion. The skin blood flux at the thigh (SBFT) and that at the calf (SBFC)
were monitored using laser-Doppler flowmeter at rest and for 15 s immediately after the MACE. The subject's mean peak oxygen
uptake and peak heart rate was 1.41 ± 0.22 1·min−1 and 171.6 ± 19.2 beats·min−1, respectively. No PSCI showed any increase in either SBFT or SBFC after the MACE, when compared with the values at rest.
These results suggest that the blood circulation of the skin in the paralyzed lower limbs in PSCI is unaffected by the MACE. 相似文献