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Biomedical subjects

J Han

Publications and source records attributed to J Han.

At least 397 records · Page 22Linked to original sources

[Effect of electroacupuncture tolerance by different frequencies on the cardiovascular inhibition of spinal opioid peptides of the rats].

Continuous 6 hour's electroacupuncture (EA) of 2-15Hz or 2Hz applying to both legs of the rats resulted in the electroacupuncture tolerance (ET). Then, we observed: (1) The effect of 2-15Hz ET on the recovery of mean arterial blood pressure (MAP) and heart rate (HR) of rats after hemorrhagic shock; (2) The change in MAP and HR of rats subjected to 2Hz ET after intrathecally (i. t.) administration of DADLE 25 micrograms, a delta opioid agonist. The results showed that, firstly, there was no difference between 2-15Hz ET group and control group in the recovery of MAp and HR after hemorrhagic shock. Secondly, DADLE (25 micrograms) caused almost the same suppression effect both in 2Hz TE group and in control group. These results suggest that unlike the spinal dorsal horn cells (regulating algesia, the spinal lateral horn cells (regulating blood pressure) are insensitive during EA analgesia and can not be made tolerance to continuous EA.

Acupuncture Analgesia↗

[The value of fingernail creatinine measurement in the identification of acute and chronic renal failure].

It is difficult to distinguish acute renal failure (ARF) clinically from chronic renal failure (CRF), especially in the patients who do not have medical history records. Since fingernail creatinine (Ncr) reflects serum creatinine (Scr) at the time of nail formation, it has been suggested that Ncr level might represent that of Scr around 4 months previously. In this study, clipped fingernail specimens from 60 normal individuals (Scr 85.75 +/- 3.54 mumol/L), 35 patients with CRF (Scr 568.41 +/- 47.74 mumol/L) and 15 patients with ARF (Scr 123.60 +/- 17.29 mumol/L) were analyzed for creatinine by a standard alkaline picrate method. The results showed that Ncr level was significantly lower in the normal group (61.89 +/- 10.25 mumol/100g fingernail) than in the CRF group (130.04 +/- 34.55 mumol/100g fingernail) P less than 0.001. In the ARF group Ncr level (65.59 +/- 2.5 mumol/100g fingernail) was more or less the same as that in normal controls. It is concluded that Ncr measurement is of clinical value in identification of ARF.

Acute Kidney Injury↗

Expression of the human neutrophil elastase gene: positive and negative transcriptional elements in the 5' flanking region.

The structure and position of cis-acting DNA sequences which regulate tissue specific expression of the human neutrophil elastase (HNE) gene have been investigated. We have identified a positive and a negative regulatory element upstream from the promoter region. The ability of these sequences to regulate transcription in myeloid and non-myeloid cells was studied by inserting varying lengths of HNE 5'-flanking sequence into a reporter plasmid containing the bacterial chloramphenicol acetyltransferase (CAT) gene. CAT activity in U937 was minimal in the absence of promoter and in the presence of HNE sequence to -102 bp. Inclusion of sequence up to -153 bp resulted in a 5.6-fold increase in CAT activity that was not observed in non-myeloid transfectants. Extension of the insert to include additional HNE sequence to -196 bp resulted in a decrease in CAT activity to control levels.

Base Sequence↗

Resonance Raman spectra of plastocyanin and pseudoazurin: evidence for conserved cysteine ligand conformations in cupredoxins (blue copper proteins).

New resonance Raman (RR) spectra at 15 K are reported for poplar (Populus nigra) and oleander (Oleander nerium) plastocyanins and for Alcaligenes faecalis pseudoazurin. The spectra are compared with those of other blue copper proteins (cupredoxins). In all cases, nine or more vibrational modes between 330 and 460 cm-1 can be assigned to a coupling of the Cu-S(Cys) stretch with Cys ligand deformations. The fact that these vibrations occur at a relatively constant set of frequencies is testimony to the highly conserved ground-state structure of the Cu-Cys moiety. Shifts of the vibrational modes by 1-3 cm-1 upon deuterium exchange can be correlated with N-H...S hydrogen bonds from the protein backbone to the sulfur of the Cys ligand. There is marked variability in the intensities of these Cys-related vibrations, such that each class of cupredoxin has its own pattern of RR intensities. For example, plastocyanins from poplar, oleander, French bean, and spinach have their most intense feature at approximately 425 cm-1; azurins show greatest intensity at approximately 410 cm-1, stellacyanin and ascorbate oxidase at approximately 385 cm-1, and nitrite reductase at approximately 360 cm-1. These variable intensity patterns are related to differences in the electronic excited-state structures. We propose that they have a basis in the protein environment of the copper-cysteinate chromophore. A further insight into the vibrational spectra is provided by the structures of the six cupredoxins for which crystallographic refinements at high resolution are available (plastocyanins from P. nigra, O. nerium, and Enteromorpha prolifera, pseudoazurin from A. faecalis, azurin from Alcaligenes denitrificans, and cucumber basic blue protein). The average of the Cu-S(Cys) bond lengths is 2.12 +/- 0.05 A. Since the observed range of bond lengths falls within the precision of the determinations, this variation is considered insignificant. The Cys ligand dihedral angles are also highly conserved. Cu-S gamma-C beta-C alpha is always near -170 degrees and S gamma-C beta-C alpha-N near 170 degrees. As a result, the Cu-S gamma bond is coplanar with the Cys side-chain atoms and part of the polypeptide backbone. The coplanarity accounts for the extensive coupling of Cu-S stretching and Cys deformation modes as seen in the RR spectrum. The conservation of this copper-cysteinate conformation in cupredoxins may indicate a favored pathway for electron transfer.

Azurin↗

Interactive effects of the tumor necrosis factor promoter and 3'-untranslated regions.

The tumor necrosis factor (TNF) promoter and 3'-untranslated region (3'-UTR) each contain sequence elements that mediate a response to bacterial endotoxin. Although the promoter contains sequences that permit augmented TNF gene transcription in response to LPS, the 3'-UTR contains sequences that normally confer translational repression, but which allow "derepression" to occur after cell contact with endotoxin. We now show that both genetic elements act in concert during activation of TNF gene expression in macrophages. In order to do so, we have made use of chloramphenicol acetyltransferase reporter constructs in which the TNF promoter and 3'-UTR are represented either independently or in combination with one another. Suppression of chloramphenicol acetyltransferase and TNF mRNA synthesis, observed after treatment of the macrophages with dexamethasone, 2-aminopurine, pentoxifylline, or dibutyryl cAMP, has also been studied in detail. Each class of inhibitor suppresses TNF biosynthesis through a separate mechanism. Interestingly, suppression by pentoxifylline is manifested partly (but not entirely) at the level of transcription, and depends upon the presence of both the TNF promoter and 3'-UTR. The data suggest that other sequences within the TNF gene could also be required for the full effect of pentoxifylline, which may act to prevent processing of the primary transcript. The suppressive effect of dexamethasone is manifested both at the level of transcription and at the level of translation, and is mediated both by sequences present in the TNF promoter and by sequences present in the 3'-UTR. Suppression by 2-aminopurine is solely dependent upon promoter sequences.

Base Sequence↗

Gastric effects of thyrotropin-releasing hormone microinjected into the dorsal vagal nucleus in cats.

We investigated the gastric acid secretory and motility responses to microinjection of thyrotropin-releasing hormone (TRH) into the dorsal motor nucleus of the vagus (DMV) in anesthetized cats. Gastric acid output was collected every 15 min through a gastric cannula after saline flush and titrated to pH 7.0. Antral and corpus contractions were continuously recorded by extraluminal force transducers. TRH dissolved in 200 nl of saline and microinjected unilaterally into the DMV induced a dose-dependent (50-200 ng) increase in gastric acid secretion. The acid secretory response began in the first 15 min collection and lasted 45 min. TRH frequently increased the force of contractions of the antrum and corpus within one minute of microinjection. The minimal effective dose for eliciting increased motility was lower than for inducing acid secretion. These results demonstrate that TRH acts in the DMV of cats to stimulate gastric acid secretion and contractions.

Animals↗

Localization of the expressed human p58 protein kinase chromosomal gene to chromosome 1p36 and a highly related sequence to chromosome 15.

The gene for the human p58 protein kinase, a cell division control-related gene, has been mapped by somatic cell hybrid analyses, in situ localization with the chromosomal gene, and nested polymerase chain reaction amplification of microdissected chromosomes. These studies indicate that the expressed p58 chromosomal gene maps to 1p36, while a highly related p58 sequence of unknown nature maps to chromosome 15. Assignment of a p34cdc2-related gene to 1p36 may have implications for numerous tumors that involve deletion of this region, including neuroblastoma, ductal carcinoma of the breast, malignant melanoma, Merkel cell carcinoma, and endocrine neoplasia.

Animals↗

Risk factors in hepatitis C virus-infected blood donors.

Risk factors of parenteral and nonparenteral exposure to hepatitis C virus (HCV) infection were studied in 125 blood donors in The Netherlands who were positive for anti-HCV on enzyme-linked immunosorbent assay (ELISA). Risk factors were related to confirmatory test results of four-antigen recombinant immunoblot assay (4-RIBA) and polymerase chain reaction (PCR) of the HCV 5' untranslated region. Twelve (10%) of the 125 anti-HCV C100 ELISA-positive blood donors were 4-RIBA positive. Eleven (92%) of 12 4-RIBA-positive blood donors were PCR positive, and all 113 remaining 4-RIBA-negative or -indeterminate donors were PCR negative. Eleven (92%) of 12 4-RIBA-positive blood donors had a risk factor of parenteral exposure, as compared to 17 (15%) of 113 4-RIBA-negative or -indeterminate donors. The prevalence of confirmed HCV infection among Amsterdam blood donors is calculated at 0.04 percent; parenteral exposure appears to be the major risk factor for HCV infection.

Blood Donors↗

[Studies on the chemical constituents of Melia azedarach L].

Melianoninol (I), melianol (II), melianone (III), meliandiol (IV), vanillin (V) and vanillic acid (VI) were isolated from the fruits of Melia azedarach L.. The structure of melianoninol, a new compound, was elucidated by IR, MS, 1H NMR, 13CNMR and other spectral evidences. The new compound possesses some anti-feeding properties against the imported cabbage worm (Pieris rarae L.).

Acrolein↗

[C fiber is not necessary in electroacupuncture analgesia, but necessary in diffuse noxious inhibitory controls (DNIC)].

Experiments were carried on rats. We applied capsaicin topically on sciatic nerve and used the techniques of extracellular recording and nerve trunk recording, Our results showed that the size of C compound action potentials in nerve trunk and C fiber response of spinal cord WDR neurons were decreased by at least 70% (mean) after topical application of capsaicin (250 micrograms) on the nerve, but A compound action potentials and A fiber response did not change significantly. It indicated that capsaicin blocked C fiber conduction selectively. Electroacupuncture (EA: 100 Hz, 0.1 ms, 3V) applied on left Zusanli (S36) and Sanyinjiao (Sp6) points inhibited C fiber response of spinal WDR neurons in the right side. The effect was similar to animal behavior analgesia elicited by EA. After applying capsaicin (250 micrograms) topically on left sciatic nerve, the inhibitory effect of EA on WDR neurons remained essentially intact (from 61.3 +/- 12.0% to 59.0 +/- 11.6%, n = 6, P greater than 0.05). It indicated that C fiber was not important in EA analgesia. Noxious heat (NH) applied on left hind paw by immersing the hind paw into 52 degrees C water inhibited C fiber response of spinal WDR neurons in the right side. It was called diffuse noxious inhibitory controls (DNIC). After applying capsaicin (250 micrograms) topically on left sciatic nerve, the inhibitory effect of NH on WDR neurons was dramatically decreased (from 77.7 +/- 8.5% to 8.1 +/- 8.9%, n = 6, P less than 0.001). It indicated that C fiber was important in DNIC. Both inhibitory effects of NH and EA were not changed by vehicle treatment.(ABSTRACT TRUNCATED AT 250 WORDS)

Action Potentials↗

Dexamethasone and pentoxifylline inhibit endotoxin-induced cachectin/tumor necrosis factor synthesis at separate points in the signaling pathway.

The induction of cachectin/tumor necrosis factor (TNF) synthesis by bacterial endotoxins is a process that entails activation at several levels. Cachectin/TNF gene transcription is accelerated, leading to rapid accumulation of mRNA within the macrophage cytosol. In addition, translational derepression occurs, leading to far more efficient message utilization. Through the use of posttranscriptional reporter constructs, we now demonstrate that certain agents capable of inhibiting cachectin/TNF biosynthesis operate through different mechanisms. In RAW 264.7 macrophages, pentoxifylline blocks cachectin/TNF mRNA accumulation but has no effect upon the efficiency of reporter mRNA translation. Dexamethasone, on the other hand, has only a modest effect on cachectin/TNF mRNA accumulation, but strongly impedes translational derepression. Combined application of dexamethasone and pentoxifylline to macrophages causes a greater suppression of cachectin/TNF biosynthesis that can be achieved by either agent alone. These findings suggest that the signaling pathway activated by endotoxin is branched, and that selective inhibition of different parts of the pathway may be achieved through the use of distinct agents.

Animals↗

Analgesic electrical stimulation of the hypothalamic arcuate nucleus: tolerance and its cross-tolerance to 2 Hz or 100 Hz electroacupuncture.

Focal electrical stimulation of the arcuate nucleus of the hypothalamus (ARH) for 5 min (1 session) produced a marked elevation of tail flick latency (TFL) to noxious heat in the pentobarbital-anesthetized rat. Repeated stimulation for a total of 11 sessions at 30 min intervals resulted in a gradual decline in the hypoalgesic action, and this tolerance may last for 7 days. Tolerance to the ARH analgesic stimulation reduced the analgesia produced by low (2 Hz) but not high (100 Hz) frequency electroacupuncture (EA); and tolerance to low frequency EA analgesia attenuated the ARH stimulation-produced analgesia without affecting high frequency EA analgesia. Alternatively, rats tolerant to high-frequency EA analgesia were still sensitive to either the ARH or low-frequency EA stimulation. These results suggest that the ARH stimulation and low-frequency EA administration produced analgesia via a common neural mechanism, supporting our hypothesis put forward previously that the ARH plays an important role in mediating low- but not high-frequency EA analgesia.

Acupuncture Therapy↗

The arcuate nucleus of hypothalamus mediates low but not high frequency electroacupuncture analgesia in rats.

Electrolytic, kainic acid or sham lesions were made in the arcuate nucleus of the hypothalamus (ARH) in female Wistar rats to investigate the putative role of the ARH in the organization of low (2 Hz) or high (100 Hz) frequency electroacupuncture (EA) analgesia. Both electrolytic and chemical lesions lead to an almost total suppression of the low frequency EA analgesia as measured 4 and 6 days following the surgical intervention, leaving high frequency EA analgesia unaffected. In sham-operated animals, the antinociceptive effect induced by low or high frequency EA was essentially intact. These data indicate that neurones of the ARH most likely play an important role in mediating low, but not high frequency EA analgesia.

Analgesia↗

Endotoxin-responsive sequences control cachectin/tumor necrosis factor biosynthesis at the translational level.

The biosynthesis of cachectin/TNF is largely regulated at a post-transcriptional level. Bacterial endotoxin, which strongly induces cachectin/TNF production, thus seems to elicit at least some of its effects by altering the macrophage cytoplasmic milieu. It has previously been shown that the 3'-untranslated TTATTTAT element present in numerous cytokines and proto-oncogenes is capable of repressing the translation of mRNA molecules in which it is represented. Using constructs in which the CAT coding sequence is followed by varying segments of the cachectin/TNF 3'-untranslated region, we now demonstrate that downstream sequences present in the cachectin/TNF mRNA are sufficient to mediate greater than 200-fold induction of CAT synthesis in response to activation by endotoxin. Induction of CAT activity is not attributable to a change in cytoplasmic mRNA concentration, but to a marked enhancement of translational efficiency. The response to endotoxin represents "derepression," and is conferred chiefly by the translationally repressive TTATTTAT element, acting in concert with essential flanking sequences.

Base Sequence↗

Gastric effects of TRH analogue and bicuculline injected into dorsal motor vagal nucleus in cats.

We investigated the gastric acid secretory and motility responses to microinjection into the dorsal motor nucleus of the vagus (DMV) of RX 77368, a stable thyrotropin-releasing hormone (TRH) analogue, and bicuculline, a gamma-aminobutyric acid (GABAA) receptor antagonist in ketamine-chloralose-anesthetized cats. Gastric acid output was collected every 15 min through a gastric cannula after saline flush and titrated to pH 7.0. Antral contractions were continuously recorded by an extraluminal strain gauge force transducer. The chemicals were dissolved in saline and unilaterally microinjected in volumes of 200 nl. RX 77368 or bicuculline microinjected into the DMV induced significant dose-dependent (50-500 ng) increases in gastric acid secretion and significant dose-dependent (50-200 ng) increases in the force of antral contractions. In response to both chemicals the gastric acid output increased in the first 15 min and peaked in the second and third collections. RX 77368 (500 ng) had a second greater peak 90 min after microinjection. The motility responses were rapid in onset and lasted 60 min for RX 77368 and 30 min for bicuculline. The minimal effective dose for eliciting increased motility was consistently lower than inducing acid secretion. Electrical stimulation of the DMV with 100 microA, 50-Hz, and 0.2-ms pulse duration increased the force of antral contractions but had no effect on gastric acid secretion. Our results demonstrate that the DMV exerts important control over both gastric acid secretion and motility in cats. TRH exerts a stimulatory influence, while GABAA receptors mediate an inhibitory influence on this vagal control.

Animals↗