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Transition metals in legume root nodules: iron-dependent free radical production increases during nodule senescence.

The cytosol from root nodules of soybean, bean, and cowpea contained Fe and Cu capable of catalyzing the formation of highly reactive free radicals. Specific and sensitive assays based on free radical-mediated DNA degradation revealed that most catalytic Fe and Cu were present as small chelates (300-600 Da). The involvement of catalytic Fe in free radical production during nodule senescence, which was induced by exposure of plants to continuous darkness for 2-4 days, was investigated. (i) Free heme remained at a constant and low concentration (1-4% of total nodule heme) during senescence, indicating that it is not an important constituent of the catalytic Fe pool of nodules. (ii) Catalytic Fe of nodule cytosol promoted deoxyribose degradation and linolenic acid peroxidation in reaction mixtures containing physiological concentrations of ascorbate and H2O2. Deoxyribose degradation but not lipid peroxidation required hydroxyl radicals to proceed. (iii) The cytosol from senescent nodules, particularly of bean and cowpea, sustained in vitro higher rates of deoxyribose degradation and lipid peroxidation than the cytosol from unstressed nodules. Both degradative processes were inhibited by the Fe chelator desferrioxamine and were correlated with the content of catalytic Fe in the nodule cytosol. (iv) Although other transition metals (Cu, Mn, Mo, and Ni) were present in significant amounts in the low molecular mass fraction (<3 kDa) of the nodule cytosol, Fe is most likely the only metal involved in free radical generation in vivo. (v) By using dimethyl sulfoxide as a molecular probe, formation of significant amounts of hydroxyl radical was observed in vivo during senescence of bean and cowpea nodules.

Journal Article↗

Whole-Nodule Carbon Metabolites Are Not Involved in the Regulation of the Oxygen Permeability and Nitrogenase Activity in White Clover Nodules.

To test the hypothesis of an indirect or direct involvement of carbon metabolites in the short-term regulation of nitrogenase activity, nodule O2 permeability was manipulated either by defoliation or by varying rhizosphere O2 partial pressure. In contrast to defoliation, a 50% reduction of the nodule O2 permeability, due to adapting nodules to 40 kPa O2, had no effect on nodule sucrose concentration. Likewise, total concentrations of other carbon metabolites such as fructose, starch, L-malate, and succinate tended to be differentially affected by the two treatments. Upon defoliation, carbon metabolites in roots responded in a manner similar to those in nodules. Sucrose concentration in nodules decreased significantly after the removal of 40% of the leaf area, which is known to have no effect on nitrogenase activity and O2 permeability. During regrowth after a 100% defoliation, nitrogenase activity could be increased at any time by elevating rhizospheric O2 partial pressure. Thus, during the entire growing cycle nitrogenase activity seems primarily oxygen limited. Changes in whole nodule sucrose pools after defoliation have to be viewed as secondary effects not necessarily linked to nodule activity. Whole-nodule carbon metabolites appear not to be determinants of nodule activity, either through direct metabolic involvement or through indirect effects such as triggering O2 permeability.

Journal Article↗

Epithelial cell nodules developing in the cecum of irradiated mice. Some comparisons with jejunal nodules.

A method for producing macroscopic epithelial nodules was developed in order to investigate the properties of epithelial stem cells in the large intestine of mice. The cecum was exteriorized and exposed to various doses of X-ray radiation. Numbers of nodules subsequently developing were counted and plotted against radiation dose. From the logarithmic regression line, the susceptibility to irradiation of nodule-forming stem cells (NFSC) was determined. The susceptibility of cecal NFSC was comparable to the value reported for jejunal NFSC. Mice of (C57BL/6 x DS) F1-Pgk-1b/Pgk-1a that carried X-chromosome inactivation mosaicism for the phosphoglycerate kinase gene were used for examination of nodule clonality. Most cecal nodules contained only 1 type of phosphoglycerate kinase, suggesting a monoclonal origin of the nodules. Histochemical studies showed the presence of absorptive epithelial, goblet and entero-endocrine cells in 17-day-old nodules, implying multipotentiality of the NFSC. In spite of these similarities between cecal and jejunal NFSC, the macroscopic appearance of cecal nodules was quite different from that of jejunal nodules. Only crypt-like structures were observed in the former, whereas both crypt-like and villus-like structures were present in the latter. A comparison between cecal and jejunal nodules may be useful for understanding the morphogenesis of the intestinal mucosa.

Animals↗

Ultrastructural and immunological demonstration of the nodulation of the European Alnus glutinosa (L.) Gaertn. host plant by the North-American Alnus crispa var. mollis Fern. root nodule endophyte.

The inoculation of the European Alnus glutinosa (L.) Gaertn. host plant by a crushed-nodule inoculum, prepared with the North-American Alnus crispa var. mollis Fern. root nodule, was successful. Fluorescein- and ferritin-labelled antibodies, specific against the A. crispa var. mollis root nodule endophyte (Lalonde et al. 1975), demonstrated the idenity of this endophyte in the resulting nodules. The nodulation process of this abnormal host-endophyte system was studied by light and electron microscopy. An excretion of host blebs containing electron-dense polysaccharide material, resulting in the formation of exo-encapsulation threads containing presumptive endophytic bacterial cells, was associated with deformed root hairs. Originating from an exoencapsulation thread, the endophyte penetrates the root hair cell and then migrates as a hypha toward the cortical cells of the root. Its migration in the cortical cells of the primary nodule results in the induction of a lateral root which develops as the true nodule. The ultrastructure of the A. crispa var. mollis endophyte developing in the primary and true nodule of the abnormal A. glutinosa host was similar to the one induced inside its normal A. crispa var. mollis host. The actinomycetal intruder was a branched and septate hypha able to produce septate vesicles. The endophyte was always encapsulated in an electron-dense polysaccharide material surrounded by a host plasma membrane envelope. However, in this abnormal host-endophyte system, the number of primary nodules formed per root system was drastically reduced, and their appearance was delayed by 1 to 2 weeks. The delayed nodules were effective in fixing nitrogen and able to support satisfactory plant growth in a nitrogen-free medium.

Antigens, Bacterial↗

Hepatocellular carcinoma with nodule-in-nodule appearance: demonstration by contrast-enhanced coded phase inversion harmonic imaging.

OBJECTIVE: A nodule-in-nodule hemodynamic pattern, namely a vascular spot in a hypovascular nodule, is specific for the diagnosis of early-stage hepatocellular carcinoma (HCC). The purpose of this study was to assess whether this unique hemodynamic pattern can be detected by contrast-enhanced coded phase inversion harmonic imaging (PIHI). METHODS: 159 consecutive patients with HCC who underwent contrast-enhanced coded PIHI were retrospectively reviewed. Cases with nodule-in-nodule patterns were selected, and findings were compared with those on computed tomography (CT) angiography (CTA) and intraarterial contrast-enhanced ultrasonography (US angiography). RESULTS: Contrast-enhanced coded PIHI successfully displayed the nodule-in-nodule hemodynamic pattern in two cases of histologically proven HCC and the hemodynamic transition in one of the two cases, which corresponded well with findings on CTA and US angiography. CONCLUSIONS: Contrast-enhanced coded PIHI can demonstrate the special nodule-in-nodule hemodynamic pattern. It is useful in the diagnosis and follow-up of early-stage HCC or suspected nodules because of its noninvasiveness and easy performance.

Aged↗

Large needle aspiration biopsy results of palpable thyroid nodules diagnosed by fine-needle aspiration as a microfollicular nodule with atypical cells or suspected cancer.

Among 1875 patients with palpable thyroid nodules examined with FNA cytology and LNAB histology, 132 with a preoperative FNA diagnosis of microfollicular nodule with atypical cells (n = 50) or suspected cancer (n = 82) were operated on. The 50 nodules showed the following preoperative LNAB finding: inadequate (8), benign (15), microfollicular (20), microfollicular with atypical cells (5), suspected cancer (2). The postoperative cancer incidence in the nodules with the benign LNAB diagnosis was 0% while it was 10%, 60% (P = 0.008), 100% (P = 0.007) in the other three LNAB diagnostic categories. The 82 nodules showed the following preoperative LNAB finding: inadequate (21), benign (21), microfollicular (15), microfollicular with atypical cells (15), suspected cancer (10). The postoperative incidence of cancer in the 21 (14%) and 10 (80%) nodules diagnosed by LNAB as benign nodule or suspected cancer, respectively, was significantly different (P = 0.0007). These data suggest that LNAB can be used for the preoperative selection of the palpable thyroid nodules diagnosed by FNA as a microfollicular nodule with atypical cells or suspected cancer.

Adenocarcinoma, Follicular↗

Usefulness and complications of computed tomography-guided lipiodol marking for fluoroscopy-assisted thoracoscopic resection of small pulmonary nodules: experience with 174 nodules.

OBJECTIVE: Several techniques have been reported for the localization of small pulmonary nodules in thoracoscopic resection. In the present study we examined the usefulness and complications of computed tomography-guided lipiodol marking for thoracoscopic resection in our experience of 174 nodules. METHODS: Computed tomography-guided lipiodol marking was performed on 174 nodules less than 30 mm in size. Of these nodules, 45 showed ground-glass opacity images and 129 showed solid images on computed tomography. The mean size of the nodules was 10 +/- 6 mm (range, 2-30 mm), and their mean depth from the pleural surface was 10 +/- 7 mm (range, 0-30 mm). One to 7 days before thoracoscopy, all of the nodules were marked with 0.4 to 0.5 mL of lipiodol by using computed tomography. The marked nodules were grasped with a ring-shaped forceps during fluoroscopy and resected by means of thoracoscopy. RESULTS: All the nodules could be marked and localized by means of fluoroscopy as a clear spot during thoracoscopic surgery. Complications of the marking were chest pain requiring analgesia in 16 (11%) patients, hemosputum in 11 (6%) patients, pneumothorax in 30 (17%) patients, and hemopneumothorax in 1 (0.6%) patient. Eleven (6%) patients with pneumothorax required drainage, and the patient with hemopneumothorax required an emergency operation. No other complications were observed. CONCLUSION: Lipiodol marking is a useful, safe, and inexpensive procedure for localizing ground-glass opacity lesions, small pulmonary nodules, or both for thoracoscopic resection.

Adult↗

Aspiration needle biopsy refines preoperative diagnosis of thyroid nodules defined at fine needle aspiration as microfollicular nodule.

The aim of this paper was to verify the hypothesis that large needle biopsy performed preoperatively can refine preoperative fine needle aspiration (FNA) cytological diagnoses of microfollicular nodules. Since 1980 we have been using FNA and aspiration needle biopsy (ANB) (18 or 16 gauge needles) to select for surgery all euthyroid patients with palpable thyroid nodules referred to our department. From 1980 to 1994, 6,124 patients (12% male, 88% female) with thyroid nodules (71% single, 29% multiple) were examined by FNA; 29% of these patients were also examined preoperatively by ANB histology. Of all the nodule patients examined, 371 received a preoperative FNA diagnosis of microfollicular nodule. Two hundred and fifty-four of these nodules (68%) were also examined preoperatively by ANB. Unsatisfactory ANB specimens constituted 17% of cases; pure microfollicular structure was confirmed by ANB in 36% of the nodules; ANB showed the remaining 47% to contain a macrofollicular component, thus suggesting a benign hyperplastic lesion. Twelve nodules which were found to be microfollicular at FNA cytology and micro-macrofollicular at ANB were excised and were subsequently determined as benign at definitive postoperative histology. These data indicate the utility of ANB in refining the preoperative FNA diagnosis of microfollicular nodule and in preoperatively identifying benign hyperplastic mixed micro-macrofollicular lesions which can be followed by observation.

Adult↗

Changes in thyroid nodule volume caused by fine-needle aspiration: a factor complicating the interpretation of the effect of thyrotropin suppression on nodule size.

The effectiveness of TSH suppression therapy for thyroid nodules remains controversial. Prior studies have assumed that the fine-needle aspiration biopsy (FNAB), used to confirm a benign condition before the establishment of control and treatment groups, has no effect on nodule volume. Seventeen untreated euthyroid patients with clinical solitary thyroid nodules that were solid (on high-resolution ultrasound) and a colloid goiter (on cytologic examination) had ultrasound measurements of nodule volume before a FNAB, immediately thereafter, and 1 month and 6 months later. Size differences and individual variability at each time period were analyzed. No significant difference in mean thyroid nodule volume was present at any point after the FNAB; however, the changes in nodule volume were quite marked and bidirectional among patients masking the cumulative effect. The variability of the change in individual nodule volume was statistically significant when comparisons were made across time (P = 0.0032). FNAB of thyroid nodules results in significant individual changes in volume after the procedure. Studies, such as the effect of TSH suppression on thyroid nodule volume, that incorporate the FNAB in both control and treatment arms of the experimental design, need to take these changes into account, less erroneous conclusions result.

Biopsy, Needle↗

Computerized tomographic densitometry of the solitary pulmonary nodule using a nodule phantom.

The successful application of computerized tomographic density analysis for evaluating the solitary pulmonary nodule has previously been described and the technique has since been simplified by using a calcium-equivalent nodule reference phantom. Because published experience with this technique remains limited, the current research reports the Cleveland Clinic experience with the CIRS model III pulmonary nodule reference phantom. Without knowledge of the final diagnosis, the nodule phantom was used as the standard for categorizing 31 nodules in 29 patients as either benign or indeterminate. Secure diagnoses were obtained in all cases. Eleven nodules were called benign and ten proved so, whereas 20 nodules were classified as indeterminate. One lesion, an adenocarcinoma, was falsely called benign using this technique. The excellent density discrimination achieved with CT makes this a superior tool for analysis of the solitary pulmonary nodule, and the nodule reference phantom has greatly simplified the technique of CT densitometry. As demonstrated by this and prior studies, calcification is not a unique feature of the benign lesion and successful clinical application of this technique requires cautious interpretation of results.

Adult↗

Ultrasound-guided fine-needle aspiration biopsy in nonpalpable thyroid nodules: is it useful in infracentimetric nodules?

The purpose of this study was to evaluate the usefulness of an ultrasound-guided fine-needle aspiration biopsy (US-FNAB) for the evaluation and treatment planning of nonpalpable thyroid lesions, including infracentimetric nodules. One hundred and twenty one patients underwent US-FNAB for 149 non-palpable solid nodules. Sixty-five patients underwent surgery, and 84 were followed up for at least 36 months. The results of the US-FNAB correlated with the pathological findings and clinical follow-up results. The nodules ranged from 0.3 to 2 cm in diameter, with a mean of 0.8 cm. Among the 149 nodules, 115 were infracentimetric and 34 were centimetric or supracentimetric in size. Of the 149 thyroid nodules, US-FNAB was true positive in 43, true negative in 90, false positive in 7 and false negative in 1. In 8 cases, the lesion was inadequately sampled. The sensitivity, specificity, positive predictive value, negative predictive value and accuracy of the US-FNAB for the infracentimetric nodules were 96.9, 93.4, 86.1, 98.6 and 94.4%, and for the centimetric or supracentimetric nodules, were 100, 90.5, 85.7, 100 and 93.9%, respectively. There were no significant differences in the results between the infracentimetric and centimetric or supracentimetric nodules. In conclusion, an US-FNAB is a useful tool for determining the treatment plan of non-palpable solid thyroid nodules, even when less than 1 cm in diameter, and shows high sensitivity, specificity and accuracy.

Adult↗

MR features of regenerative nodules and dysplastic nodules in the cirrhotic liver.

In order to study MR features of the regenerative nodule (RN) and dysplastic nodule (DN) of the cirrhotic liver, 26 cases of cirrhotic liver with RNs and DNs, of which 8 cases accompanied with hepatocellular carcinoma, were subjected to MRI. Eighteen of 26 cases underwent additional enhanced MRI with administration of Gd-DTPA on T1WI and 10 of the 18 cases did additional SPIO (Feridex) enhancement on T2WI. Clinical data showed normal level of alpha-fetoprotein in 18 cases except 8 cases accompanied with HCC. The results showed that 12 cases had RNs with nodules measuring < 1 cm. The MR appearance of those RNs showed isointensity on T1WI and hypointensity on T2WI. The intensity of those RNs was isointense to the surrounding hepatic parenchyma on enhanced MRI with administration of Gd-DTPA or SPIO. Among the 14 cases of DNs, 8 cases had nodules measuring 1-3 cm in size and 6 had macroregenerative nodule measuring > 3 cm. In 8 cases with DNs measuring 1-3 cm in size, 5 cases appeared hyperintense on T1WI and hypointense on T2WI as well as the enhancement as that of nodules with < 1 cm in size; and the remaining 3 cases appeared hypointense on T1WI and hyperintense on T2WI, and were not isointense to the surrounding hepatic parenchyma on enhanced MRI but hyperintense on SPIO enhanced MRI. In 6 cases of macroregenerative nodule measuring > 3 cm in size, 2 cases appeared hyperintense to the surrounding hepatic parenchyma on T1, T2WI and enhanced MRI; 4 cases showed hyperintense on T1WI, and hypointense on T2WI and enhanced MRI. Sometimes, normal vessels were seen to pass through the surface of macroregenerative nodules. It was suggested that RNs of cirrhosis had features on MRI that usually allow distinction from hepatocellular carcinoma but not always from dysplastic nodules (DNs). A helpful distinction between HCC and DNs is that the latter are almost never hyperintense on T2WI. Additionally, low grade DNs appear hypointense on SPIO enhanced MRI.

Carcinoma, Hepatocellular↗

Competition among Bradyrhizobium strains for nodulation of green gram (Vigna radiata): use of dark-nodule strain.

The competitiveness of dual-strain inoculum of Bradyrhizobium strains S24 and GR4 was demonstrated for nodulation of green gram (Vigna radiata). Strain S24 formed pink nodules, GR4 produced visually distinguishable dark-brown nodules. When a mixture of these Bradyrhizobium strains was applied as inoculum, nodules of both pink and dark-brown types were formed on the same root. The strain GR4, which was less competitive than strain S24, was mutagenized with N-methyl-N'-nitro-N-nitrosoguanidine to obtain pigment-diverse mutants and six selected mutants were screened for symbiotic parameters. One mutant produced pink nodules and appreciably increased plant dry mass. The competitive ability of this mutant lacking brown pigment was compared with that of strain S24 by using antibiotic resistance markers; it showed increased nodulation competitiveness than its parent strain GR4. The dark-brown nodule-phenotype could be useful in evaluating nodulation competitiveness of "cowpea miscellany" bradyrhizobia in soil where dark-brown nodule-forming strains are not indigenous.

Bradyrhizobium↗

Detection of nodules in liver cirrhosis: spiral computed tomography or magnetic resonance imaging? A prospective study of 88 nodules in 34 patients.

Detection and characterization of all focal lesions in the liver are critical for screening patients with chronic liver disease. The aim of this prospective study was to investigate the accuracy of magnetic resonance imaging (MRI) and spiral computed tomography for the diagnosis of hepatic nodules in cirrhotic patients when compared with pathological findings of the explanted liver. From February 1997 to July 1999, 34 cirrhotic patients waiting for orthotopic liver transplantation (OLT) (mean age, 53.5 +/- 9.3 years; 24 males) were included. All patients had MRI and spiral computed tomography examinations, and findings were matched with the histological findings. Data analyses were made using the McNemar chi-square test. Mean time between radiological examination (MRI or spiral computed tomography) and OLT was 43.8 +/- 39 days. A total of 88 nodules were found in the 34 patients: 54 hepatocellular carcinoma (HCC) (mean size, 18 +/- 10 mm) in 21 patients, 22 dysplastic nodules (mean size, 10.7 +/- 4.3 mm) in 11 patients, and 12 macroregenerative nodules in 13 patients. Lesion-by-lesion analyses showed that sensitivity of MRI and spiral computed tomography for nodule, HCC or dysplastic nodule diagnosis was 44.3 and 31.8% (P = 0.02), 61.1 and 51.9% (P = 0.2), and 27.3 and 0% (P = 0.04), respectively. Patient-by-patient analyses showed no statistical difference between spiral computed tomography and MRI for nodule diagnosis. In conclusion, in patients with liver cirrhosis, MRI is more accurate than spiral computed tomography for the detection of liver nodules and dysplastic nodules. However, tumour size is always a restricting factor for these two techniques, which are unable to detect small HCC in more than 60% of cases.

Carcinoma, Hepatocellular↗

Five Nodulation Mutants of White Sweetclover (Melilotus alba Desr.) Exhibit Distinct Phenotypes Blocked at Root Hair Curling, Infection Thread Development, and Nodule Organogenesis.

In an effort to obtain a developmental sequence of mutations in the Rhizobium-legume interaction within a single legume species, we have characterized the early events of nodule development in 10 nodulation mutants of sweetclover, Melilotus alba Desr. cv U389, representing five genetic loci. Both seed and root exudates from all of the sweetclover mutants induced expression of the nod genes of Rhizobium meliloti. Mutants in three loci were blocked in the early stages of root hair curling. Of these, a mutant in the sym-3 locus exhibited root hair deformations in response to inoculation with R. meliloti but produced no nodules or emerging nodule primordia, suggesting a blockage in the signal transduction events leading to nodule organogenesis. In contrast, mutants in both the sym-1 and sym-5 loci formed ineffective nodules in response to inoculation but differed slightly in the type of root hair response observed. None of these three early mutants formed infection threads. Infection threads were observed in mutant sym-2 as well as in ineffective nodules. Mutant sym-4 also formed infection threads but lacked nodules. The phenotypes observed for mutants from these five loci suggest that a secondary receptor or signal produced by the plant is required for nodule development.

Journal Article↗

Phytohormones, Rhizobium mutants, and nodulation in legumes : v. Cytokinin metabolism in effective and ineffective pea root nodules.

[(3)H]Zeatin riboside was supplied to intact pea (Pisum sativum) plants either onto the leaves or onto the root nodules. When applied directly to nodules, approximately 70% of recovered radioactivity remained in the nodules, approximately 15% was detected in the root system, and 15% was in the shoot. However, when supplied to the leaves, little (3)H was transported, with approximately 0.05% of recovered radioactivity being found in the root system and nodules. On a fresh weight basis, nodules accumulated more (3)H than the parent root. In both types of studies, metabolites with an intact zeatin moiety were detected in root nodules.In all experiments, two-dimensional thin layer chromatography revealed that little (3)H remained as zeatin riboside in root or nodule tissue at the end of the labeling period. Nodules metabolized [(3)H]zeatin riboside to the following cytokinins/cytokinin metabolites: zeatin, adenosine, adenine, the O-glucosides of zeatin and zeatin riboside, lupinic acid, nucleotides of adenine and zeatin, and the dihydro derivatives of many of these compounds.Although a few small differences were observed, there were no major differences between root and nodule tissue in their metabolism of [(3)H] zeatin riboside. Furthermore, any differences between effective and ineffective nodules were generally minor.

Journal Article↗

Increase of natural N enrichment of soybean nodules with mean nodule mass.

The (15)N abundance of soybean (Glycine max L. Merrill var Harosoy) nodules is usually greater than it is for other tissues or for atmospheric N(2). Results of experiments in which nodules were separated by size show that the magnitude of the (15)N enrichment is correlated with nodule mass. The results support the hypothesis that (15)N enrichment of nodules results from differential N isotopic fractionation for synthesis of nodule tissue versus synthesis of compounds for export from the nodule. The physiological significance of this hypothesis is that it requires that a substantial fraction of the N for nodule tissue synthesis in (15)N-enriched nodules be N recently fixed within the same nodule.

Journal Article↗

Intercellular nodule localization and nodule specificity of xanthine dehydrogenase in soybean.

The distribution of xanthine dehydrogenase throughout the soybean plant as well as the intercellular localization of xanthine dehydrogenase within soybean nodules was determined. Polyclonal antibodies against purified xanthine dehydrogenase were prepared and used in an enzymelinked immunosorbent assay to determine whether xanthine dehydrogenase is a nodule-specific protein. This immunological assay showed that xanthine dehydrogenase is present in far greater concentration in the nodule than in any other plant organ. Immunodiffusion tests showed that anti-soybean nodule xanthine dehydrogenase would cross-react with nodule crude extracts from the ureide producers, soybean, cowpea, and lima bean, but would not cross-react with those of the amide producers, alfalfa and lupine. A crude extract from pea nodules cross-reacted slightly with anti-soybean xanthine dehydrogenase. Anti-soybean xanthine dehydrogenase did not cross-react with buttermilk xanthine oxidase either by enzyme-linked immunosorbent assay or by immunodiffusion test.Fresh nodule sections from the ureide-producers, soybean, cowpea, and lima bean, all stained positively for xanthine dehydrogenase. The substrate-dependent stain was inhibited by allopurinol and was observed only in the infected nodule cells of these species. Nodules from the amideproducers, alfalfa and white lupine, did not stain for xanthine dehydrogenase.

Journal Article↗