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101.
If puppy tissues are explanted onto the chick chorioallantoic membrane, those tissues which normally have a blood supply are rapidly invaded by vascularized mesenchyme of host origin. Hyaline cartilage, a tissue virtually devoid of blood vessels, is impenetrable by proliferating mesenchyme of the host, while calcified cartilage, which normally is vascularized, is penetrable. The stroma of the cornea, another normally avascular tissue, is readily penetrable, but Descemet's membrane forms a barrier to invasion by host tissues. The experimental system used permits the design of experiments in which the study of factors responsible for the resistance of tissues such as cartilage to invasion can be undertaken.  相似文献   
102.
The humoral immune response against human cytomegalovirus (HCMV) was evaluated in immunocompromised patients by Western blotting (WB) based on recombinant viral envelope (gB and gH) and tegument (pp150 and pp65) proteins. Three groups of patients were investigated: (a) 74 renal transplant recipients; (b) 24 hemodialysis patients, both groups without clinical evidence of viral infections; and (c) 19 renal transplant patients with manifest HCMV infections. The results obtained suggest that (i) the WB is considerably more sensitive, recognizing the HCMV-specific IgM response rather than the enzyme-linked immunosorbent assays. An IgM response was detected in one-third of all clinically asymptomatic renal patients. (ii) The virus-specific IgM response is primarily directed against the pp150 epitope. (iii) In patients with clinically manifest HCMV disease, additional IgM reactivities are most frequently directed against the glycoprotein B epitope. (iv) The severity of HCMV infections correlates with the extent of the IgM antibody response, i.e. with the number of specific epitopes involved. (v) After transplantation, IgM reactivity and its epitope-specific pattern persist for years.  相似文献   
103.
The extent of human T-cell lymphotropic retorvirus HTLV-I and HTLV-II infections in the general population in central Europe has not been investigated fully. Two hundred forty-eight thousand blood donors from southern Germany were examined serologically for antibodies to the human lymphotropic retroviruses HTLV-I and HTLV-II: 0.021% were confirmed postive and 0.056% were “indeterminate”. A limited number of seropositives and “indeterminate” samples were analyzed by polymerase chain reaction (PCR): the seropositives were confirmed as positive and 43% of the “indeterminate” samples were PCR-positive. The range of 0.021% HTLV-positives in 248,000 donors, i.e. about two in 10,000 individuals, mirrors closely the published data for the United States. © 1994 Wiley-Liss, Inc.  相似文献   
104.
Arthrogryposis or AMC, arthrogryposis multiplex congenita, is defined as multiple congenital joint contractures in more than two joints and in different body areas. The common cause of all AMC is lack of movement in utero, which in turn can have different causes, one of which is CNS involvement. Intellectual disability/CNS involvement is found in approximately 25% of all AMC. AMC with CNS involvement includes a large number of genetic syndromes. So far, more than 400 genes have been identified as linked to AMC, with and without CNS involvement. A number of neonatally lethal syndromes and syndromes resulting in severe disability due to CNS malfunction belong to this group of syndromes. There are several X‐linked disorders with AMC, which are primarily related to intellectual disability. A number of neuromuscular disorders may include AMC and CNS/brain involvement. Careful clinical evaluation by a geneticist and a pediatrician/pediatric neurologist is the first step in making a specific diagnosis. Further investigations may include MRI of the brain and spinal cord, electroencephalogram, blood chemistry for muscle enzymes, other organ investigations (ophtalmology, cardiology, gastrointestinal, and genitourinary systems). Nerve conduction studies, electromyogram, and muscle pathology may be of help when there is associated peripheral nervous system involvement. But most importantly, genetic investigations with targeted or rather whole exome or genome sequencing should be performed. A correct diagnosis is important in planning adequate treatment, in genetic counselling and also for future understanding of pathogenic mechanisms and possible new treatments. A multidiciplinary team is needed both in investigation and treatment.  相似文献   
105.
The effect of saline adaptation on the intracellular Na, K, Cl, P concentrations and dry weight content of the toad skin epithelium (Bufo viridis) was studied using the technique of electron microprobe analysis. The measurements were performed on isolated abdominal skins either directly after dissection or after additional incubation in Ussing-type chambers.Adaptations of the toads to increasing NaCl concentrations for 7 days resulted in increased blood plasma osmolarity and a parallel increase in the cellular electrolyte, P and dry weight concentrations of the epithelium, the K increase representing the most significant fraction of the intracellular osmolarity increase. No evidence was obtained to show that the nucleus and cytoplasm reacted differently from each other and all living epithelial cell types basically showed the same response.Incubation of the isolated skins under control conditions showed a drastic inhibition of the transepithelial Na transport after adaptation to high salinities. In spite of the large variations in the transport rate almost identical intracellular electrolyte concentrations were observed. In tap water adapted toads the average cellular concentrations were 8.8 mmole/kg wet weight for Na, 109.6 for K, 41.5 for Cl, and 135.3 for P, respectively. Incubation of the skin with Ringer's solution of different osmolarities demonstrated that the epithelial cells are in osmotic equilibrium with the inner bathing solution. The results are consistent with the view that the osmotic adaptation is mainly accomplished by the movement of water.This work was supported by grants from the Deutsche Forschungsgemeinschaft and the Stiftung Volkswagenwerk  相似文献   
106.
Zusammenfassung Die a-Symbionten von Euscelis plebejus treten während der Embryonalentwicklung ihres Wirts in zwei morphologischen Typen auf, die als Infektionsstadium und als vegetative Form beschrieben werden. Die Infektionsstadien teilen sich durch septenartiges Einwachsen der Symbiontenmembranen. Infektionsstadien von Zikadensymbionten waren bisher nur während der Ovarialinfektion aus den Mycetomen weiblicher Imagines bekannt. Die a-Infektionsformen sind gekennzeichnet durch ihr elektronendichtes Cytoplasma, eine ungleichmäßige Verteilung der Ribosomen mit einer ribosomenfreien Randzone und durch Membrankörper. Das Cytoplasma der vegetativen Symbionten erscheint elektronendurch lässiger. Die Ribosomen liegen homogen in der Cytoplasmagrundsubstanz verteilt.Die a-Symbionten liegen vom Zeitpunkt der Eiablage bis zum Eindringen in die a1-Mycetocyten als Infektionsstadien vor. Nach der Aufnahme in die a1-Mycetocyten nehmen sie das Aussehen vegetativer Formen an. Im transitorischen Mycetom erscheinen erneut Infektionsstadien während der Übersiedelung in die zweikernigen a2-Mycetocyten.Jeder Symbiont wird von zwei eigenen Membranen umgeben. Beim Eindringen von Ooplasma in den Symbiontenball wird jeder Symbiont von einer Wirtsmembran umhüllt, die er bis zur Infektion der Wirtszelle behält. In den Mycetocyten umgibt eine offensichtlich vom Wirtscytoplasma erneut gebildete Hüllmembran die vegetativen Symbionten. In den vegetativen a-Symbionten tritt häufig ein mikrofibrillärer kristallartiger Einschlußkörper auf. — Kernäquivalentstrukturen waren in keinem Symbiontenstadium cytologisch mit Sicherheit nachzuweisen.
Electron microscopic studies on the embryonic mycetome of the leafhopper Euscelis plebejus fall. (Homoptera, cicadina)
Summary During the embryonic development of their host the a-symbiotes of the leafhopper Euscelis plebejus appear in two different morphological types: infective form and vegetative form. The infective forms are able to multiply by ingrowth of their membranes. Until now infective forms of leafhopper symbiotes were only known from the ovarial infection by adult female mycetomes. The infective form of the a-symbiote is characterized by its electron dense cytoplasm, an asymmetric distribution of the ribosomes, a ribosome-free border, and by membraneous bodies. The cytoplasm of the vegetative form is less electron dense and the ribosomes are scattered throughout the cytoplasm.From the time of oviposition until they enter the a1-mycetocytes, the a-symbiotes are found as the infective form. After entering the a1-mycetocytes they take on the appearance of the vegetative form. In the transitory mycetome the infective forms appear again during the transition into the binucleate a2-mycetocytes.Each symbiote is surrounded by two unit membranes of its own. As the ooplasm penetrates the symbiote mass, each symbiote is also surrounded by a host membrane, which remains until the infection of the host cells. In the mycetocytes the vegetative symbiotes have a new membrane around them, which is obviously developed from the cytoplasm of the host cell. In the vegetative a-symbiotes there is frequently a paracrystalline inclusion. — It was impossible to demonstrate nucleoid structure with certainty in any symbiote form.

Abkürzungen a a-Symbionten - ai a-Infektionsstadien - av vegetative a-Symbionten - a-Mc a-Mycetocyt - a-Z a-Zelle - eK elektronendichter Körper - ER endoplasmat. Retikulum - M1 innere Symbiontenmembran - M2 äußere Symbiontenmembran - M3 Hüllmembran - Mf Mikrofibrillen - Mi Mitochondrien - Mk Membrankörper - Mt Mikrotubuli - Nu Zellkern - Py Kernpyknosen - Ri Ribosomen - Sb Symbiontenball - Sm Symbiontenmembranen - t t-Symbionten - tv vegetative t-Symbionten - t-Mc t-Mycetocyt - t-Z t-Zelle - Zm Zellmembran Mit Unterstützung durch die Deutsche Forschungsgemeinschaft.Herrn Prof. Dr. K. Sander danke ich für stete Förderung meiner Arbeit und Frau A. Kaufmann für die Einführung in die elektronenmikroskopische Technik.  相似文献   
107.
108.
The definition of the temporal sequence of appearance of fetal markers during prenatal and early postnatal development in Sertoli and germ cells may be important for understanding the mechanisms underlying their reexpression in disorders of the adult testis. For this reason, we studied the expression of Sertoli and germ cell markers in 25 human testes spanning a period from 8 gestational weeks to 4 years. Well-characterized antibodies were employed to anti-Müllerian hormone (AMH), cytokeratin 18 (CK18), vimentin (VIM), M2A-antigen (M2A), germ cell alkaline phosphatase (GCAP), and somatic angiotensin-converting enzyme (sACE) on formalin-fixed and microwave-pretreated paraffin sections. In Sertoli cells, AMH and VIM were consistently present. While VIM and CK18 were coexpressed in embryonic testes, CK18 was progressively downregulated and completely absent from the 20th gestational week. M2A was absent or moderately expressed in fetal Sertoli cells but increased during further development. In germ cells, M2A was consistently found in primordial germ cells (PGCs) as well as in M- and T1-prespermatogonia. In contrast, sACE and GCAP were absent from PGCs but were a distinct feature of late M- and early T1-prespermatogonia and appeared predominantly between the 18th and the 22nd gestational weeks. Both T2-prespermatogonia and postnatal prespermatogonia were devoid of any marker. While CK18 represents a differentiation marker for fetal Sertoli cells, M2A, GCAP, and sACE can be used as differentiation markers for the discrimination of different germ cell types during human prespermatogenesis. Because various immunophenotypes reflect distinct differentiation stages, this knowledge may be important for understanding adult testicular pathology.  相似文献   
109.
Although the probiotic Escherichia coli strain Nissle 1917 has been proven to be efficacious for the treatment of inflammatory bowel diseases, the underlying mechanisms of action still remain elusive. The aim of the present study was to analyze the effects of E. coli Nissle 1917 on cell cycling and apoptosis of peripheral blood and lamina propria T cells (PBT and LPT, respectively). Anti-CD3-stimulated PBT and LPT were treated with E. coli Nissle 1917-conditioned medium (E. coli Nissle 1917-CM) or heat-inactivated E. coli Nissle 1917. Cyclin B1, DNA content, and caspase 3 expression were measured by flow cytometry to assess cell cycle kinetics and apoptosis. Protein levels of several cell cycle and apoptosis modulators were determined by immunoblotting, and cytokine profiles were determined by cytometric bead array. E. coli Nissle 1917-CM inhibits cell cycling and expansion of peripheral blood but not mucosal T cells. Bacterial lipoproteins mimicked the effect of E. coli Nissle 1917-CM; in contrast, heat-inactivated E. coli Nissle 1917, lipopolysaccharide, or CpG DNA did not alter PBT cell cycling. E. coli Nissle 1917-CM decreased cyclin D2, B1, and retinoblastoma protein expression, contributing to the reduction of T-cell proliferation. E. coli Nissle 1917 significantly inhibited the expression of interleukin-2 (IL-2), tumor necrosis factor alpha, and gamma interferon but increased IL-10 production in PBT. Using Toll-like receptor 2 (TLR-2) knockout mice, we further demonstrate that the inhibition of PBT proliferation by E. coli Nissle 1917-CM is TLR-2 dependent. The differential reaction of circulating and tissue-bound T cells towards E. coli Nissle 1917 may explain the beneficial effect of E. coli Nissle 1917 in intestinal inflammation. E. coli Nissle 1917 may downregulate the expansion of newly recruited T cells into the mucosa and limit intestinal inflammation, while already activated tissue-bound T cells may eliminate deleterious antigens in order to maintain immunological homeostasis.  相似文献   
110.
Cai K  Rechtenbach A  Hao J  Bossert J  Jandt KD 《Biomaterials》2005,26(30):5960-5971
To improve the surface biocompatibility of titanium films, a layer-by-layer (LBL) self-assembly technique, based on the polyelectrolyte-mediated electrostatic adsorption of chitosan (Chi) and gelatin (Gel), was used leading to the formation of multilayers on the titanium thin film surfaces. The film growth was initialized by deposition of one layer of positively charged poly(ethylene imine) (PEI). Then the thin film was formed by the alternate deposition of negatively charged Gel and positively charged Chi utilizing electrostatic interactions. The LBL film growth was monitored by several techniques. The chemical composition, surface topography as well as wettability were investigated by using X-ray photoelectron spectroscopy (XPS), atomic force microscopy (AFM), confocal laser scanning microscopy (CLSM) and water contact angle measurement, respectively. Quantitative XPS analysis showed the alternative change of C/N ratio after four sequential cycles coating of Ti/PEI/Gel/Chi/Gel, which indicated the discrete layer structure of coatings. Uncoated titanium (control sample) displayed a smooth surface morphology (root mean square (RMS) roughness was around 2.5 nm). A full coverage of coating with Gel/Chi layers was achieved on the titanium surface only after the deposition layers of PEI/(Gel/Chi)2. The PEI/Gel/(Chi/Gel)3 layer displayed a rough surface morphology with a tree-like structure (RMS roughness is around 82 nm). These results showed that titanium films could be modified with Chi/Gel which may affect the biocompatibility of the modified titanium films. To confirm this hypothesis, cell proliferation and cell viability of osteoblasts on LBL-modified titanium films as well as control samples were investigated in vitro. The proliferation of osteoblasts on modified titanium films was found to be greater than that on control (p<0.05) after 1 and 7 days culture, respectively. Cell viability measurement showed that the Chi/Gel-modified films have higher cell viability (p<0.05) than the control. These data suggest that Chi/Gel were successfully employed to surface engineer titanium via LBL technique, and enhanced its cell biocompatibility. The approach presented here may be exploited for fabrication of titanium-based implant surfaces.  相似文献   
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