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排序方式: 共有2624条查询结果,搜索用时 15 毫秒
71.
J. Ventura‐Juarez MR. Campos‐Esparza J. Pacheco‐Yepez J. A López‐Blanco A. Adabache‐Ortíz M. Silva‐Briano R. Campos‐Rodríguez 《Parasite immunology》2016,38(8):503-509
Entamoeba histolytica invades the intestine and other organs during the pathogenesis of amoebiasis. In the early stages, the host organism responds with an inflammatory infiltrate composed mostly of neutrophils. It has been reported that these immune cells, activated by E. histolytica, exert a protective role by releasing proteolytic enzymes and generating reactive oxygen/nitrogen species (ROS/RNS) and antimicrobial peptides. It is now known that neutrophils also produce neutrophil extracellular traps (NETs), which are able to damage and kill pathogens. Studies have shown that intracellular protozoan pathogens, including Toxoplasma gondi, Plasmodium falciparum and Leishmania spp, induce neutrophils to release NETs and are damaged by them. However, the action of this mechanism has not been explored in relation to E. histolytica trophozoites. Through scanning electron, epifluorescence microscopy and viability assays, we show for first time that during in vitro interaction with E. histolytica trophozoites, human neutrophils released NETs that covered amoebas and reduced amoebic viability. These NETs presented histones, myeloperoxidase and decondensed chromatin. The results suggest that NETs participate in the elimination of the parasite. 相似文献
72.
DL?MagerEmail author AD?Haffajee PM?Devlin CM?Norris MR?Posner JM?Goodson 《Journal of translational medicine》2005,3(1):27
Background
The purpose of the present investigation was to determine if the salivary counts of 40 common oral bacteria in subjects with an oral squamous cell carcinoma (OSCC) lesion would differ from those found in cancer-free (OSCC-free) controls. 相似文献73.
Mooney E Mackle JN Blond DJ O'Cearbhaill E Shaw G Blau WJ Barry FP Barron V Murphy JM 《Biomaterials》2012,33(26):6132-6139
Once damaged, cardiac muscle has little intrinsic repair capability due to the poor regeneration potential of remaining cardiomyocytes. One method of overcoming this issue is to deliver functional cells to the injured myocardium to promote repair. To address this limitation we sought to test the hypothesis that electroactive carbon nanotubes (CNT) could be employed to direct mesenchymal stem cell (MSC) differentiation towards a cardiomyocyte lineage. Using a two-pronged approach, MSCs exposed to medium containing CNT and MSCs seeded on CNT based polylactic acid scaffolds were electrically stimulated in an electrophysiological bioreactor. After electrical stimulation the cells reoriented perpendicular to the direction of the current and adopted an elongated morphology. Using qPCR, an upregulation in a range of cardiac markers was detected, the greatest of which was observed for cardiac myosin heavy chain (CMHC), where a 40-fold increase was observed for the electrically stimulated cells after 14 days, and a 12-fold increase was observed for the electrically stimulated cells seeded on the PLA scaffolds after 10 days. Differentiation towards a cardioprogenitor cell was more evident from the western blot analysis, where upregulation of Nkx2.5, GATA-4, cardiac troponin t (CTT) and connexin43 (C43) was seen to occur. This was echoed in immunofluorescent staining, where increased levels of CTT, CMHC and C43 protein expression were observed after electrical stimulation for both cells and cell-seeded scaffolds. More interestingly, there was evidence of increased cross talk between the cells as shown by the pattern of C43 staining after electrical stimulation. These results establish a paradigm for nanoscale biomimetic cues that can be readily translated to other electroactive tissue repair applications. 相似文献
74.
McClintock SD Barron AG Olle EW Deogracias MP Warner RL Opp MR Johnson KJ 《Experimental and molecular pathology》2007,82(2):203-209
The role of interleukin-6 (IL-6) in granulomatous vasculitis is not well understood. To investigate its involvement in this type of vasculitis a model of glucan-induced pulmonary vasculitis employed interleukin-6 deficient (IL-6-/-) mice. Briefly, IL-6-/- mice and C57B/J6 wild type (IL-6+/+) mice were injected intravenously with a suspension of glucan isolated from the cell wall of bakers yeast which results in a granulomatous vasculitis primarily in the pulmonary vasculature. Histological examination demonstrated no significant difference in the number of infiltrating leukocytes between the IL-6+/+ and IL-6-/- glucan-injured mice. Similar numbers of granulomas were noted in both the IL-6+/+ and IL-6-/- injured animals, while no granulomas were seen in saline injected control mice. Cells recovered from the bronchoalveolar lavage (BAL) fluid were differentially stained and counted. While there was a significant increase in infiltrating leukocytes recovered from the BAL following glucan-induced injury, there was no significant difference between the IL-6+/+ and IL-6-/- mice. In addition, no difference was demonstrated in total protein content in the BAL fluid between IL-6+/+ and IL-6-/- mice. However, myeloperoxidase (MPO) activity in the lungs of the IL-6-/- mice was less than in their IL-6+/+ counterparts suggesting that these animals have a partial defect in their ability to recruit neutrophils in this model. Studies done to look for levels of other cytokines/chemokines in these animals to compensate for the loss of IL-6 revealed that only IL-10 in the sera (p<0.016) and BAL fluid (p<0.05) of IL-6-/- mice was significantly higher then their IL-6+/+-injured counterparts. These studies suggest that IL-6, while possibly involved in early neutrophil accumulation in this model does not appear critical to the development of the TH-2 mediated granulomatous vasculitis. 相似文献
75.
Fabrication, mechanical and in vivo performance of polycaprolactone/tricalcium phosphate composite scaffolds 总被引:2,自引:0,他引:2
Lohfeld S Cahill S Barron V McHugh P Dürselen L Kreja L Bausewein C Ignatius A 《Acta biomaterialia》2012,8(9):3446-3456
This paper explores the use of selective laser sintering (SLS) for the generation of bone tissue engineering scaffolds from polycaprolactone (PCL) and PCL/tricalcium phosphate (TCP). Different scaffold designs are generated, and assessed from the point of view of manufacturability, porosity and mechanical performance. Large scaffold specimens are produced, with a preferred design, and are assessed through an in vivo study of the critical size bone defect in sheep tibia with subsequent microscopic, histological and mechanical evaluation. Further explorations are performed to generate scaffolds with increasing TCP content. Scaffold fabrication from PCL and PCL/TCP mixtures with up to 50 mass% TCP is shown to be possible. With increasing macroporosity the stiffness of the scaffolds is seen to drop; however, the stiffness can be increased by minor geometrical changes, such as the addition of a cage around the scaffold. In the animal study the selected scaffold for implantation did not perform as well as the TCP control in terms of new bone formation and the resulting mechanical performance of the defect area. A possible cause for this is presented. 相似文献
76.
In vitro evidence for both the nucleus and cytoplasm as subcellular sites of pathogenesis in Huntington's disease 总被引:6,自引:1,他引:6
A unifying feature of the CAG expansion diseases is the formation of
intracellular aggregates composed of the mutant polyglutamine-expanded
protein. Despite the presence of aggregates in affected patients, the
precise relationship between aggregates and disease pathogenesis is
unresolved. Results from in vivo and in vitro studies of mutant huntingtin
have lead to the hypothesis that nuclear localization of aggregates is
critical for the pathology of Huntington's disease (HD). We tested this
hypothesis using a 293T cell culture model system that compared the
frequency and toxicity of cytoplasmic and nuclear huntingtin aggregates. We
first assessed the mode of nuclear transport of N-terminal fragments of
huntingtin, and show that the predicted endogenous NLS is not functional,
providing data in support of passive nuclear transport. This result
suggests that proteolysis is a necessary step for nuclear entry of
huntingtin. Additionally, insertion of nuclear import or export sequences
into huntingtin fragments containing 548 or 151 amino acids was used to
reverse the normal localization of these proteins. Changing the subcellular
localization of the fragments did not influence their total aggregate
frequency. There were also no significant differences in toxicity
associated with the presence of nuclear compared with cytoplasmic
aggregates. The findings of nuclear and cytoplasmic aggregates in affected
brains, together with these in vitro data, support the nucleus and cytosol
as subcellular sites for pathogenesis in HD.
相似文献
77.
78.
Chad E. Eckert Rong Fan Brandon Mikulis Mathew Barron Christopher A. Carruthers Vincent M. Friebe Naren R. Vyavahare Michael S. Sacks 《Acta biomaterialia》2013,9(1):4653-4660
While the role of collagen and elastin fibrous components in heart valve valvular biomechanics has been extensively investigated, the biomechanical role of the glycosaminoglycan (GAG) gelatinous-like material phase remains unclear. In the present study, we investigated the biomechanical role of GAGs in porcine aortic valve (AV) leaflets under tension utilizing enzymatic removal. Tissue specimens were removed from the belly region of porcine AVs and subsequently treated with either an enzyme solution for GAG removal or a control (buffer with no enzyme) solution. A dual stress level test methodology was used to determine the effects at low and high (physiological) stress levels. In addition, planar biaxial tests were conducted both on-axis (i.e. aligned to the circumferential and radial axes) and at 45° off-axis to induce maximum shear, to explore the effects of augmented fiber rotations on the fiber–fiber interactions. Changes in hysteresis were used as the primary metric of GAG functional assessment. A simulation of the low-force experimental setup was also conducted to clarify the internal stress system and provide viscoelastic model parameters for this loading range. Results indicated that under planar tension the removal of GAGs had no measureable affect extensional mechanical properties (either on- or 45° off-axis), including peak stretch, hysteresis and creep. Interestingly, in the low-force range, hysteresis was markedly reduced, from 35.96 ± 2.65% in control group to 25.00 ± 1.64% (p < 0.001) as a result of GAG removal. Collectively, these results suggest that GAGs do not play a direct role in modulating the time-dependent tensile properties of valvular tissues. Rather, they appear to be strongly connected with fiber–fiber and fiber–matrix interactions at low force levels. Thus, we speculate that GAGs may be important in providing a damping mechanism to reduce leaflet flutter when the leaflet is not under high tensile stress. 相似文献
79.
Fifty women with polycystic ovaries took part in a prospective randomized
study. All women required treatment by in-vitro fertilization (IVF) for
reasons other than anovulation. They had all previously undergone ovarian
stimulation with gonadotrophin therapy which had failed to result in
pregnancy or had been abandoned due to high risk of developing ovarian
hyperstimulation syndrome (OHSS). Twenty-five women were treated by
long-term pituitary desensitization followed by gonadotrophin therapy,
oocyte retrieval and embryo transfer (group 1). Twenty-five women underwent
laparoscopic ovarian electrocautery after pituitary desensitization
followed by gonadotrophin therapy, oocyte retrieval and embryo transfer
(group 2). A significantly higher number of women in group 1 had to have
the treatment cycle abandoned due to impending or actual OHSS, determined
by endocrine and clinical findings. In addition, the development of
moderate or severe OHSS in completed cycles was higher in group 1. The
pregnancy rate and miscarriage rates in the two treatment groups were
similar. The authors propose that laparoscopic ovarian electrocautery is a
potentially useful treatment for women who have previously had an IVF
treatment cycle cancelled due to risk of OHSS or who have suffered OHSS in
a previous treatment cycle.
相似文献
80.
The bias favoring deletion over inversion in DH-JH rearrangement has been
known for years, but the underlying mechanism has yet to be fully defined.
It has been suggested that the ratio of deletion/inversion is determined by
the combined effect of two factors: (i) the relative strengths of 5' and 3'
recombination signal sequences (RSS) of a DH segment, and (ii) the
efficiency with which the deletional product (one joint) forms relative to
the inversional product (two joints). In this study, we analyzed for the
first time the effect of factor 1 alone on the biased 3' RSS utilization in
DH-JH joining by using deletional plasmids in an extrachromosomal substrate
V(D)J recombination assay. It was found that the 3' RSS and associated
coding end (12 bp) mediate recombination more efficiently than the 5'
RSS/coding end DH-JH plasmids. These results demonstrate that the effect of
the RSS/coding end alone can account, at least partially, for the
predominant deletion in DH-JH recombination. The potential effect of the
relative strength of RSS and associated coding end on the ordered
rearrangement of DH-JH followed by VH to DH-JH was also assessed. When
recombination frequencies of D-->J (3' DH to J3) were compared with
frequencies of V-- >D (VHPJ14 to 3' DH or VHOX2 to 3' DH), it was found
that V-->D joining was, if anything, more efficient than D-->J
joining. Therefore, if all three segments were accessible, RSS/coding end
effects would not contribute to the ordered rearrangement of the IgH locus.
相似文献