Mitochondrial respiratory function and reperfusion injury during pulmonary preservation.
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Biomedical subjects
Publications and source records attributed to T Hirata.
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The chemical composition of essential oils obtained from the leaves of Pistacia vera, Pistacia terebinthus, Pistacia lentiscus and the resin of Pistacia lentiscus were analyzed by GC and GC-MS. alpha-Pinene, beta-pinene, limonene, terpinen-4-ol and alpha-terpineol were found to be the major components. The antifungal activities of the above oils and P. lentiscus resin (total, acidic and neutral fractions) against the growth of three agricultural pathogens, Pythium ultimum, Rhizoctonia solani and Fusarium sambucinum were evaluated. Some doses of P. terebinthus, P. vera and P. lentiscus leaf oils and total and neutral fraction of P. lentiscus resin significantly inhibited the growth of R. solani. However, all samples did not show antifungal activity against P. ultimum and F. sambucinum, but increased the growth of F. sambucinum.
We studied clinically upon 10 surgical cases of pulmonary aspergillosis. There were 7 male and 3 female cases, and the median age was 59 years. Seven cases had underlying bronchopulmonary diseases, and 9 cases had underlying diseases including systemic diseases, such as diabetes mellitus. There were 3 wedge resections, and 6 lobectomies, and 1 two-staged surgery (cavernostomy + muscle transposition). Eight cases whose lesion extended beyond neither chest wall nor mediastinal pleura were treated successfully by pulmonary resections almost within one lobectomy. One case, who had a cavitary lesion and multiple patchy infiltrates in the other lobes, cured by lobectomy including a main cavitary lesion and postoperative treatment with an antifungal agent. All cases returned home almost uneventfully, but 1 case of two-staged surgery died at home suddenly of massive hemoptysis. Surgical treatments of pulmonary aspergillosis are recommended when the lesions can be resected completely, that is, when patients are relatively well, lesions extend beyond neither chest wall nor hilar bronchus or vessels, and when the lungs other than the lesions are not extensively destroyed.
The risk of infection of Cryptosporidium via drinking water was assessed using Monte Carlo simulation with the field survey data of the Sagami River watershed. The levels of Cryptosporidium in this river were found to follow the lognormal distribution. From the counted data, the median level of the Miyayama sampling point was estimated to be 5.7 oocysts per 100L. To calculate the annual risk of infection due to Cryptosporidium in drinking water, the Cryptosporidium level of Miyayama sampling point was used as the water source of the waterworks. The 95% percentile of the annual risk of infection was found to be 10(-2.60). If the daily risk was eliminated when the level of Cryptosporidium in treated water exceeded 1 oocyst per 20L, the 95% percentile of the annual risk was reduced by about 1 log. To reduce the 95% value of the annual risk lower than 10(-4), the risk of days with levels of Cryptosporidium in treated water exceeding 1 oocyst per 80L should be eliminated.
We previously determined the complete DNA sequence of the rpoH gene encoding the heat-shock sigma factor (sigmaH) of Pseudomonas putida. In the present study, the transcriptional start sites of rpoH were determined to be 41 nucleotides (T1), 153 nucleotides (T2) and 157 nucleotides (T3) upstream from the translational start codon (AUG) of rpoH by rapid amplification of cDNA 5'-ends. Based on the locations of T2 and T3, a sigma70-type promoter (P2) was determined to be located in the open reading frame region of upstream ftsX in addition to the sigmaE-type promoter (P1; DNA Res. 6 (1999) 241). In the in vitro transcription assay with reconstituted RNA polymerases (Esigma70, EsigmaE, EsigmaH and EsigmaS) of Pseudomonas aeruginosa, EsigmaE transcribed rpoH from T1 and Esigma(70) transcribed it from T2 and T3. In both cases, the level of transcription was higher at 42 degrees C than at 30 degrees C. No transcript was detected when EsigmaH or EsigmaS was used. These results indicate that EsigmaE and Esigma70 recognize P1 promoter and P2 promoter, respectively, and also prove that the synthesis of rpoH mRNA is inducible upon heat shock.
BACKGROUND: Ischemia of the lung is different from that of solid organs because the lung contains gas in the alveoli. However, the optimal gas composition in the alveoli during cold storage remains uncertain. We investigated the relationship between the alveolar oxygen concentration and reperfusion injury. METHODS: The lungs inflated with 0% O2, 5% O2, room air, 50% O2, or 100% O2 were reperfused after 8 hR storage at 4 degrees C and pulmonary functions were measured for 120 min using an ex vivo rat lung model. The levels of high-energy phosphate and lipid peroxidation of the lung were analyzed after a PA flush, preservation, and reperfusion. Additionally, respiration of the mitochondria in the lungs was measured after preservation. RESULTS: The pulmonary functions were significantly superior in the 5% O2 group than those in the 0% O2, 50% O2, and 100% O2 groups. Pulmonary edema developed in the 0% O2, 50% O2, and 100% O2 groups, but not in the 5% O2 group. After preservation, the energy level in the lungs decreased only in the 0% O2 group. Although lipid peroxidation of the lungs did not increase in any group after preservation, significant increases were observed in the room air, 50% O2 and 100% O2 groups after reperfusion. State 3 and 4 ratios of the mitochondrial respiration significantly decreased in the lungs of the room air, 50% O2 and 100% O2 groups. CONCLUSIONS: Although the cold-preserved lungs require oxygen, hyperoxygenation induced mitochondrial dysfunction and increased lipid peroxidation and led to deleterious lung function after reperfusion. Therefore, hypoxic conditions that can maintain the energy level of the lung during cold storage would be optimal.
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During development, mitral cells, the major output neurons of the olfactory bulb, project their axons caudolaterally into the telencephalon and form the lateral olfactory tract (LOT). Two types of guidance cues have been suggested for this projection. First, a long-range factor Slit, which is secreted from the septum, repels mitral cell axons into a caudolateral direction. Second, the pathway of mitral cell axons contains a subset of neurons designated as lot cells, which guide the axons through short-range interactions. It is not clear how these two guidance cues relate to each other and how they share the physiological roles. Here we examined the behavior of mitral cell axons in organotypic culture on ectopic application of Slit and inhibition of endogenous Slit signaling. The results suggested that the short-range guidance cue in the LOT pathway functions independently from Slit. Furthermore, our results showed that removal of the septum and inhibition of Slit signaling did not affect the projection of mitral cell axons. Although the septum and exogenous Slit can repel olfactory bulb axons, our results cast doubts on the physiological relevance of the septum and endogenous Slit in guiding the projection of mitral cell axons.
The zebrafish homeobox gene dharma/bozozok (boz) is required for the formation and/or function of the Nieuwkoop center and the subsequent induction of the Spemann organizer. dharma is expressed soon after the midblastula transition in the dorsal blastomeres and the dorsal yolk syncytial layer (YSL). We found that the expression of dharma was upregulated or ectopically induced by misexpression of a Wnt protein and cytoplasmic components of the Wnt signaling pathway and downregulated by the expression of dominant-negative Tcf3. A 1.4-kbp fragment of the dharma promoter region contains consensus sequences for Tcf/Lef binding sites. This promoter region recapitulated the Wnt-dependent and dorsal dharma expression pattern when it was fused to luciferase or GFP. Deletion and point mutant analyses revealed that the Tcf/Lef binding sites were required to drive this expression pattern. These data established that dharma/boz functions between the dorsal determinants-mediated Wnt signals and the formation of the Nieuwkoop center.
BACKGROUND: Chemical preconditioning was defined as the induction of resistance to massive disruption of energy metabolism through prior chemical suppression of oxidative phosphorylation, by which phenomena similar to those resulting from increased ischemic tolerance as a result of ischemic preconditioning can be induced. It could be induced by the inhibitor of either mitochondrial complex I or II. We investigated whether or not chemical preconditioning by 3-nitropropionate (an inhibitor of the mitochondrial complex II) can suppress ischemia-reperfusion injury in cardiac-arrested lungs, which will be the major problem in lung transplants donated from non-heart-beating cadavers. METHODS AND RESULTS: In an isolated rat lung perfusion model with fresh rat blood as perfusate, administration of 3-nitropropionate (20 mg/kg) immediately before the induction of cardiac arrest attenuated pulmonary dysfunction during reperfusion after 1 hr postmortem warm ischemia and 1 hr cold preservation. 3-Nitropropionate administration reduced the mitochondrial respiratory functions (state 3 and state 4 respiration, and the respiratory control ratio) before cardiac arrest and kept them at a lower level of activity than when decreased by ischemia alone. 3-Nitropropionate administration also reduced the ATP levels immediately after drug administration. However, 3-nitropropionate did not significantly reduce lipid peroxidation in the lung tissue and mitochondria. CONCLUSIONS: These results demonstrated that chemical preconditioning by 3-nitropropionate administration immediately before cardiac arrest suppressed succinate-related oxidation during postmortem warm ischemia and reduced ischemia-reperfusion injury in cardiac arrested rat lungs.
BACKGROUND: To evaluate the possibility of using pulmonary mitochondrial respiratory functions as early markers of ischemic lung viability in non-heart-beating donors, we investigated the roles of the mitochondria in ischemia-reperfusion injury of cardiac-arrested rat lungs. MATERIALS AND METHODS: Male Lewis rats were exposed to various periods of postmortem warm ischemia (0, 1, and 2 h at 21 degrees C). After a pulmonary artery flush and cold preservation (1 h at 4 degrees C), the rat lungs were reperfused using an isolated rat lung model. Each experimental group consisted of three subgroups (n = 7 in each subgroup) to examine pulmonary functions and biochemical measurements. RESULTS: The pulmonary functions after reperfusion were exacerbated after a 1-h postmortem warm ischemia and worsened after a 2-h warm ischemia following cardiac arrest. The mitochondrial respiratory control ratios already significantly decreased after a 1-h warm ischemia compared with nonischemic rat lungs, at which time the value was almost equivalent to that after a 2-h ischemia. There were no significant changes in the state 3 and 4 respiration of the mitochondria, the pulmonary lactate levels, or the lipid peroxide levels in the lung tissues and mitochondria during the first 1-h period of warm ischemia. The adenine nucleotide levels significantly decreased with the prolongation of the period of warm ischemia, but did not seem to be practical, because their determination required a much longer time than that of the mitochondrial respiratory control ratio. CONCLUSION: These results suggested that the mitochondrial respiratory control ratio may be a useful early marker for lung viability after cardiac arrest.
We describe herein the successful surgical removal of an intrapulmonary aberrant needle. An asymptomatic 47-year-old woman underwent a routine chest X-ray which revealed a needle located in the right S8 area. We first tried to extract the needle; however, fluoroscopic examination confirmed that it had broken into two pieces and therefore, partial resection of the right S8 was performed. To avoid rethoracotomy, the operation was done under fluoroscopic guidance. An intrathoracic aberrant needle should always be removed surgically as soon as possible, even if the patient is asymptomatic, due to the possibility of its migration into the vessels and the development of lung abscess or pyothorax.
Re-examination of the chemical constituents of the leaves of Ferula sinaica afforded a new eudesmanolide and a new carotane. The structures were elucidated by spectroscopic methods.
Two monoterpene coumarins, designated ferulagol A and B, as well as three known monoterpene coumarins and three sesquiterpene lactones were isolated from the chloroform extract of the roots of Ferula ferulago. The structures of ferulagol A and B were determined to be 7-[(E)-3'-hydroxy-3',7'-dimethyl-4',6'-octadienyloxy]coumarin and 7-[(3'Z,5'E)-7'-hydroxy-3',7'-dimethyl-3',5'-octadienyloxy]coumarin, respectively.
From the chloroform extract of the roots of Ferula assa-foetida, two sesquiterpene coumarins designated assafoetidnol A and assafoetidnol B were isolated, in addition to six known compounds, gummosin, polyanthin, badrakemin, neveskone, samarcandin and galbanic acid. The structures of the sesquiterpenes new compounds were established by spectroscopic methods.
Surgery is usually not indicated for malignant pleural effusion (PE) due to its poor prognosis. However, PE is first detected at thoracotomy, and it is difficult to judge an appropriate mode of resection. Forty-nine patients with lung cancer were first diagnosed as PE and/or pleural dissemination (PD) at thoracotomy. The histological types were 36 adenocarcinoma, ten squamous cell carcinoma and three large cell carcinoma. Sixteen patients had only PE, 17 had only PD, and 16 had both PE and PD. Ten patients underwent only exploratory thoracotomy, seven partial resection, 27 lobectomy and five panpleuropneumonectomy. The overall survival rate was 26.7% at 3 years. The patients with PE and/or PD seemed to have a poorer survival compared to our previous study. The patients with only PE showed a significantly better prognosis than the patients with only PD (P=0.0001) or with PD+PE (P=0.019). The patients who underwent exploratory thoracotomy showed poor survival. There were significant differences in the survival in relation to the extent of the primary tumor. In conclusion, the patients with T1-2 of primary tumor and only a small amount of PE without PD can be expected to show long-term survival after tumor resection.
A safe and reliable analytical technique for the determination of Os abundances in ten iron meteorites of various chemical groups was developed using isotope dilution inductively coupled plasma-mass spectrometry coupled with a sample decomposition technique. A major advantage of the sample decomposition technique developed here is that the pressure inside the reaction flask is not increased through the decomposition reaction because the flask is a fully opened system, obviating the risk of explosion of the glass apparatus. Another advantage is that there is no restriction in the sample size being decomposed. In this study, about 2 g of metallic sample were decomposed safely, and this sample size, > 10 times larger than that typically used for the Carius tube technique, allows one to obtain more reliable Os data for heterogeneous samples. The metallic samples were decomposed in a glass flask purged with Ar. Since the O2 was purged from the reaction flask, Os was not oxidised to volatile OsO4, thereby preventing significant evaporation loss of Os. The typical recovery of Os throughout the sample decomposition and separation processes was > 80%, and the total Os blank through the decomposition of a 1 g amount of sample was less than 20 pg. Os abundances were determined by means of stable isotope dilution mass spectrometry using a 190Os-enriched isotopic tracer. Except for Sikhote-Alin, the measured Os abundances in almost all the iron meteorites exhibited a good agreement with the previously published Os abundance data, within the analytical uncertainty achieved in this study (2-5%). For the Sikhote-Alin meteorite, on the basis of a better correlation between Os and Ir abundances, we believe that our Os abundance data should be more reliable. The Os abundance data obtained in this work clearly demonstrated the suitability of the newly developed sample decomposition procedure for low level Os determinations.
A rapid method for measuring the delta15N of nitrate ion in water samples using an isotope ratio mass spectrometer coupled to an elemental analyzer system (EA-MS) was investigated. The water should be removed from the analytical sample before measurement with this system. We investigated the application of a super-absorbent polymer resin powder to various water samples. Each 1 mg of polymer resin powder can absorb about 50-100 mg of solution depending on the concentrations of major ions. Only samples which contain more than 100 mg l(-1) of nitrate-nitrogen are suitable to be absorbed by the polymer resin for the determination of delta15N of nitrate. Preconcentration by rotary evaporation was necessary for dilute samples but the temperature should be kept below 60 degrees C. The polymer resin (about 8 mg) containing the nitrate was directly analyzed using an EA-MS after being oven-dried at 80 degrees C. Good accuracy (precision +/- 0.3%) for delta15N measurements of nitrate-nitrogen in a sample without any isotope fractionation effects during pre-treatment was observed. Results for delta15N of nitrate in contaminated groundwater samples collected in the spring at a tea plantation area in Shizuoka, Japan, were from 9.8 to 10.6%, which were close to the delta15N abundance in organic fertilizers.