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Biomedical subjects

H Han

Publications and source records attributed to H Han.

At least 73 records · Page 4Linked to original sources

In vivo assessment of cardiac remodeling after myocardial infarction in rats by cine-magnetic resonance imaging.

The rat infarct model offers important parallels to the process of remodeling after myocardial infarction (MI) in humans. The aim of this study was to test the feasibility of cine fast low-angle shot (FLASH) magnetic resonance imaging (MRI) for assessment of the infarcted and noninfarcted rat heart and to compare the results with established methods. In group A, MRI was done 8-16 weeks after MI on a 7-T scanner using an electrocardiogram-triggered cine-FLASH sequence. We determined left ventricular (LV) volumes and mass, wall thickness, MI size, cardiac output, and ejection fraction. Afterward, MI size was histologically determined. In group B, after MRI eight controls and eight rats 16 weeks after MI underwent conventional hemodynamic measurements for determination of cardiac output, LV volumes, and ejection fraction by electromagnetic flowmeter and pressure-volume curves. LV wet weight was determined. In group A, MRI-acquired MI size (18.5 +/- 2%) was smaller than histology (22.8 +/- 2.5%, p < 0.05) with close correlation (r = 0.97). In group B, agreement in LV mass was found between MRI and wet weight (controls, 537.6 +/- 19.6 vs. 540.3 +/- 18.4 mg; MI, 865.1 +/- 39.2 vs. 865.1 +/- 41.3 mg; for the difference p = ns, r = 0.97, p < 0.05) and in the MRI and flowmeter measurements (cardiac output, controls 73.1 +/- 2.9 vs. 75.2 +/- 2.6 ml/min; MI 82.4 +/- 5.2 vs. 81.9 +/- 3.7 ml/min; for the difference p = ns, r = 0.80, p < 0.05). End-diastolic volume by MRI differed from pressure-volume curves with good correlation (controls, 343.9 +/- 8.4 vs. 262.7 +/- 12.8 microl; MI, 737.0 +/- 70.5 vs. 671.1 +/- 64.1 microl; p < 0.05 each, r = 0.96, p < 0.05). Cine-FLASH-MRI is a valuable diagnostic tool applicable to the rat model of MI. Being noninvasive and exact, it offers new insights in the remodeling process after MI because serial measurements are possible.

Animals↗

Effect of high or low frequency electroacupuncture on the cellular activity of catecholaminergic neurons in the brain stem.

Although the opioid system plays a pivotal role in the analgesic effect of electroacupuncture (EA), it has been suggested that other peptidergic systems also may be involved in the therapeutic effect of EA. Among several peptides for EA-induced analgesia, catecholamine (CA) is associated with the descending pain inhibitory system. We evaluated whether the different frequencies of EA modified the cellular activity of central CA synthesizing neurons using double labeling immunohistochemistry between Fos-like immunoreactive (FLI) neurons and dopamine-beta-hydroxylase (DBH)/tyrosine hydroxylase (TH)-positive neurons. We observed that different frequencies of EA increased the number of FLI neurons in catecholaminergic neurons, such as the dorsal raphe (DR), hypothalamic arcuate nucleus (Arc), locus coeruleus (LC), A5 noradrenaline cells (A5), and A7 noradrenaline cells (A7). In addition, different frequencies of EA significantly increased the ratio of colocalization between FLI neurons and TH positive neurons in DR, LC and Arc. Only low frequency EA increased the neuronal activity in Arc. The ratio of double labeling between FLI and DBH positive neurons was also elevated at both LC and A5. These data demonstrate that different frequencies of EA increase the cellular activity of central CA synthesizing neurons, suggesting that the CA system plays an important role in EA-induced analgesia.

Animals↗

Structural and functional properties of apolipoprotein A-I mutants.

Apolipoprotein (apo) A-I is composed of 243 amino acid residues that fold into amphipathic helixes, and plays a central role in the high density lipoprotein (HDL) metabolism. Familial apoA-I deficiency is a rare metabolic disorder of which three cases have been characterized at a molecular level in western Japan. However, in subjects with apoA-I deficiency, coronary artery disease was not always present. One apo A-I deficiency was compound heterozygous apoA-I mutant for a TATA box mutation and a structural nonsense mutation. To date, screening analysis in our laboratory has identified nine genetically-determined structural mutations of apo A-I. We have also characterized these apo A-I mutations, including apoA-I (Glu235del) Nichinan. Few structural mutations were associated with altered HDL cholesterol levels.

Apolipoprotein A-I↗

[Bridging artery defect with autogenous vein under required anastomosing tension--a theoretical analysis based on related biomechanical evidence].

This study was aimed to establish a rabbit model of bridging artery defect with autogenous vein under required tension by selecting and appropriate length of graft. The uniaxial loading test in longitudinal direction was performed using 14 femoral arteries and 14 femoral veins. The tension(F)-strain(lambda) curve was measured and the exponential form F = m1 * [em2(lambda-1)-1] was employed to fit the curve. The results showed that with the range of 35.0 mm actual isolated length (AIL), the exponential form Fa = 0.22[e5.75(lambda a-1)-1] and Fv = 6.15 * 10(-3) [e7.89(lambda v-1)-1] could well fit the experimental data of rabbit's femoral artery and vein respectively. Therefore to make sure the required anastomosing tension F, the length of vein graft(LVG) should qualify the equation: (LVG/1.64) x lambda v + [(AIL - ADL)/1.58] x lambda a = AIL while 1.65 and 1.58 are the physiological stretch ratio of artery and vein, lambda v and lambda a stand for that of vein and artery under tension F, respectively.

Anastomosis, Surgical↗

[Effects of modified SD therapy on Bell's palsy].

OBJECTIVE: To investigate the effects of a modified SD therapy (intravenous high dose hydrocortisone and low molecular dextran) on Bell's palsy(BP), and to avoid the severe side-effects such as hepatic and renal disorders during the treatment. METHOD: Seventy-one BP patients were treated with modified SD method (modified group), thirty-two BP patients took prednisone (control group), and the curative rates of two therapies were compared, in the meanwhile recorded the side effects in detail. RESULT: Curative rate in modified group was 95.8% (House-Brakmsnn I-II) and in control group was 81.2% (P < 0.05). In modified group, the curative rate (I grade) in the patients were treated within 24 hours following onset was 75.0%, and the curative rate in other three subgroups were treated within 24-48 hours, 2-3 day and 3-5 day following onset was 43.8%, 26.7%, 18.8% respectively. Modified group had not shown hepatic and renal disorders or gastric ulcer. CONCLUSION: Modified SD method may increase recoverable rate and can avoid significant side effects for BP, and emphasizes the importance of the administration of SD therapy in the early stage of the disease.

Adult↗

[Preliminary screen of anti-endotoxin activity of Chinese materia medica].

OBJECTIVE: To screen Chinese materia medica against E. coli. O111B4 endotoxin. METHOD: 70% alcohol extracts from 134 kinds of heat-clearing Chinese materia medica were demonstrated by using limulus test in vitro. The extracts which had anti-endotoxin effects were diluted to demonstrate their minimal anti-endotoxin concertnations. RESULTS: 75 kinds of Chinese materia medica possessed anti-endotoxin activity in various degrees in vitro. CONCLUSION: Most of heat-clearing Chinese materia medica possess anti-endotoxin effects in vitro.

Agglutination↗

Molecular cloning, characterization, and expression of a novel human neutral sphingomyelinase.

Neutral sphingomyelinase (N-SMase) has emerged as an important cell membrane-associated enzyme that participates in several signal transduction and cell regulatory phenomena. Using expression cloning, we have identified a 3.7-kilobase pair cDNA transcript for N-SMase whose open reading frame predicts a 397-amino acid polypeptide. Transfection of COS-7 cells with cDNA for N-SMase resulted in a marked increase in N-SMase activity. Recombinant N-SMase (r-N-SMase) had the following physical-chemical properties. Mg(2+) activated and Cu(2+) and glutathione inhibited the activity of r-N-SMase. In contrast, dithiothreitol did not alter the activity of the enzyme. Of several phospholipids examined, sphingomyelin was the preferred substrate for r-N-SMase. The apparent molecular mass of r-N-SMase derived from COS-7 cells was approximately 90 kDa, similar to the native neutral sphingomyelinase prepared from human urine. However, upon expression in Escherichia coli, the apparent molecular mass of the recombinant enzyme was approximately 45 kDa. We speculate that this apparent difference in recombinant enzymes derived from COS-7 and E. coli cells may be due to extensive post-transcriptional changes. r-N-SMase has numerous post-transcriptional modification sites such as phosphorylation sites via protein kinase C, casein kinase II, tyrosine kinase, and cAMP- and cGMP-dependent protein kinases as well as sites for glycosylation and myristoylation. Amino acid sequence alignment studies revealed that r-N-SMase has some similarity to acid sphingomyelinase and significant homology to the death domains of tumor necrosis factor-alpha receptor-1 and Fas/Apo-I. We believe that the molecular cloning and characterization of N-SMase cDNA will accelerate the process to define its role as a key regulator in apoptosis, lipid and lipoprotein metabolism, and other cell regulatory pathways.

Amino Acid Sequence↗

The late phase of ischemic preconditioning is abrogated by targeted disruption of the inducible NO synthase gene.

The goal of this study was to interrogate the role of inducible NO synthase (iNOS) in the late phase of ischemic preconditioning (PC) in vivo. A total of 321 mice were used. Wild-type mice preconditioned 24 h earlier with six cycles of 4-min coronary occlusion/4-min reperfusion exhibited a significant (P < 0.05) increase in myocardial iNOS protein content, iNOS activity (assessed as calcium-independent L-citrulline formation), and nitrite + nitrate tissue levels. In contrast, endothelial NOS protein content and calcium-dependent NOS activity remained unchanged. No immunoreactive neuronal NOS was detected. When wild-type mice were preconditioned 24 h earlier with six 4-min occlusion/4-min reperfusion cycles, the size of the infarcts produced by a 30-min coronary occlusion followed by 24 h of reperfusion was reduced markedly (by 67%; P < 0.05) compared with sham-preconditioned controls, indicating a late PC effect. In contrast, when mice homozygous for a null iNOS allele were preconditioned 24 h earlier with the same protocol, infarct size was not reduced. Disruption of the iNOS gene had no effect on early PC or on infarct size in the absence of PC. These results demonstrate that (i) the late phase of ischemic PC is associated with selective up-regulation of iNOS, and (ii) targeted disruption of the iNOS gene completely abrogates the infarct-sparing effect of late PC (but not of early PC), providing unequivocal molecular genetic evidence for an obligatory role of iNOS in the cardioprotection afforded by the late phase of ischemic PC. Thus, this study identifies a specific protein that mediates late PC in vivo.

Animals↗

Synthesis and amyloid binding properties of rhenium complexes: preliminary progress toward a reagent for SPECT imaging of Alzheimer's disease brain.

The definitive diagnosis of Alzheimer's disease (AD) requires the detection of amyloid plaques in postmortem brain. Although the amount of fibrillar amyloid roughly correlates with the severity of symptoms at the time of death, the temporal relationship between amyloid deposition, neuronal loss, and cognitive decline is unclear. To elucidate this relationship, a noninvasive, practical method for the quantitation of brain amyloid deposition is required. We describe herein the initial stages of a strategy to accomplish this goal by single photon computed tomographic imaging. The amyloid-binding dye Congo Red was modified to allow its conjugation to the monoamine-monoamide bis(thiol) ligand. This ligand complexes technetium(V) in its neutral oxo form. A biphenyl-containing building block was conjugated to the protected ligand, and the product was coupled to the relevant aromatic compounds. Rhenium oxo complexes, which are isosteric, but nonradioactive, analogues of the potential imaging agent technetium oxo complexes, were synthesized. These complexes bound to Abeta amyloid fibrils produced in vitro and stained amyloid plaques and vascular amyloid in AD brain sections.

Alzheimer Disease↗

Determinants of fasting plasma total homocysteine levels among chronic stable renal transplant recipients.

BACKGROUND: Although several studies have demonstrated an unadjusted association between folate status and fasting plasma total homocysteine (tHcy) levels among renal transplant recipients, no data confirming the strength or independence of this association have been reported. METHODS: We determined fasting plasma folate, B12, and pyridoxal 5'-phosphate (active vitamin B6) levels, along with other potential determinants of plasma tHcy levels (i.e., age, sex, creatinine levels, and Cockcroft-Gault estimated creatinine clearance, current immunosuppressive regimen, and history of clinical cardiovascular disease), among 86 renal transplant recipients. The recipients were > or =6 months after transplantation, lived in the Providence, Rhode Island metropolitan area, and were examined between February and June 1998. RESULTS: Stepwise general linear modeling with analysis of covariance revealed that only creatinine level, age, and vitamin status were independent regressors (i.e., P<0.100) of tHcy levels. Moreover, creatinine level alone determined most of the variability in tHcy levels (i.e., R2) accounted for by these independent variables (R2=0.416 for creatinine level alone; total R2=0.575). In contrast, the R2 for folate alone was only 0.046, and even for all three B vitamins combined, the R2 was just 0.088. CONCLUSIONS: We conclude that renal function is the overriding independent determinant of fasting tHcy levels among stable renal transplant recipients. In comparison to renal function, vitamin status has a relatively marginal influence on tHcy levels and cyclosporine use has essentially none at all.

Adult↗

Accelerated assembly of G-quadruplex structures by a small molecule.

In the presence of alkali cations, notably potassium and sodium, DNA oligomers that possess two G-rich repeats associate into either a tetrameric parallel G-quadruplex or a variety of dimeric antiparallel G-quadruplexes. The formation of such structures is normally a very slow process. Some proteins, such as the beta-subunit of the Oxytricha telomere-binding protein, promote the formation of G-quadruplex structures in a chaperone-like manner. In this report, we present data concerning the role of a perylene derivative, PIPER, in the assembly of G-quadruplex structures as the first example of a small ligand behaving as a driver in the assembly of polynucleotide secondary structures. Gel-shift experiments demonstrate that PIPER can dramatically accelerate the association of a DNA oligomer containing two tandem repeats of the human telomeric sequence (TTAGGG) into di- and tetrameric G-quadruplexes. In so doing, PIPER alters the oligomer dimerization kinetics from second to first order. The presence of 10 microM PIPER accelerates the assembly of varied dimeric G-quadruplexes an estimated 100-fold from 2 microM oligomer. These results imply that some biological effects elicited by G-quadruplex-interactive agents, such as the induction of anaphase bridges, may stem from the propensity such compounds have for assembling G-quadruplexes.

Anthracenes↗

Nuclear factor-kappaB plays an essential role in the late phase of ischemic preconditioning in conscious rabbits.

Although it is recognized that late preconditioning (PC) results from upregulation of cardioprotective genes, the specific transcription factor(s) that govern this genetic adaptation remains unknown. The aim of this study was to test the hypothesis that the development of late PC is mediated by nuclear factor-kappaB (NF-kappaB) and to elucidate the mechanisms that control the activation of NF-kappaB after an ischemic stimulus in vivo. A total of 152 chronically instrumented, conscious rabbits were used. A sequence of six 4-minute coronary occlusion/4-minute reperfusion cycles, which elicits late PC, induced rapid activation of NF-kappaB, as evidenced by a marked increase in p65 content (+164%; Western immunoblotting) and NF-kappaB DNA binding activity (+306%; electrophoretic mobility shift assay) in nuclear extracts isolated 30 minutes after the last reperfusion. These changes were attenuated 2 hours after ischemic PC and resolved by 4 hours. Competition and supershift assays confirmed the specificity of the NF-kappaB DNA complex signals. The mobility of the NF-kappaB DNA complex was shifted by anti-p65 and anti-p50 antibodies but not by anti-c-Rel antibodies, indicating that the subunits of NF-kappaB involved in gene activation after ischemic PC consist of p65-p50 heterodimers. Pretreatment with the NF-kappaB inhibitor diethyldithiocarbamate (DDTC; 150 mg/kg IP 15 minutes before ischemic PC) completely blocked the nuclear translocation and increased DNA binding activity of NF-kappaB. The same dose of DDTC completely blocked the cardioprotective effects of late PC against both myocardial stunning and myocardial infarction, indicating that NF-kappaB activation is essential for the development of this phenomenon in vivo. The ischemic PC-induced activation of NF-kappaB was also blocked by pretreatment with Nomega-nitro-L-arginine (L-NA), a nitric oxide synthase (NOS) inhibitor, N-2-mercaptopropionyl glycine (MPG), a reactive oxygen species (ROS) scavenger, chelerythrine, a protein kinase C (PKC) inhibitor, and lavendustin A, a tyrosine kinase inhibitor (all given at doses previously shown to block late PC), indicating that ischemic PC activates NF-kappaB via formation of NO and ROS and activation of PKC- and tyrosine kinase-dependent signaling pathways. A subcellular redistribution and increased DNA binding activity of NF-kappaB quantitatively similar to those induced by ischemic PC could be reproduced pharmacologically by giving the NO donor diethylenetriamine/NO (DETA/NO) (at a dose previously shown to elicit late PC), demonstrating that NO in itself can activate NF-kappaB in the heart. Taken together, these results provide direct evidence that activation of NF-kappaB is a critical step in the signal transduction pathway that underlies the development of the late phase of ischemic PC in conscious rabbits. The finding that four different pharmacological manipulations (L-NA, MPG, chelerythrine, and lavendustin A) produced similar inhibition of NF-kappaB suggests that this transcription factor is a common downstream pathway through which multiple signals elicited by ischemic stress (NO, ROS, PKC, tyrosine kinases) act to induce gene expression. To our knowledge, this is the first demonstration that NO can promote NF-kappaB activation in the heart, a finding that identifies a new biological function of NO and may have important implications for various pathophysiological conditions in which NO is involved and for nitrate therapy.

Alkaloids↗

Development of viral vectors for gene therapy of beta-chain hemoglobinopathies: optimization of a gamma-globin gene expression cassette.

Progress toward gene therapy of beta-chain hemoglobinopathies has been limited in part by poor expression of globin genes in virus vectors. To derive an optimal expression cassette, we systematically analyzed the sequence requirements and relative strengths of the Agamma- and beta-globin promoters, the activities of various erythroid-specific enhancers, and the importance of flanking and intronic sequences. Expression was analyzed by RNase protection after stable plasmid transfection of the murine erythroleukemia cell line, MEL585. Promoter truncation studies showed that the Agamma-globin promoter could be deleted to -159 without affecting expression, while deleting the beta-globin promoter to -127 actually increased expression compared with longer fragments. Expression from the optimal beta-globin gene promoter was consistently higher than that from the optimal Agamma-globin promoter, regardless of the enhancer used. Enhancers tested included a 2.5-kb composite of the beta-globin locus control region (termed a muLCR), a combination of the HS2 and HS3 core elements of the LCR, and the HS-40 core element of the alpha-globin locus. All three enhancers increased expression from the beta-globin gene to roughly the same extent, while the HS-40 element was notably less effective with the Agamma-globin gene. However, the HS-40 element was able to efficiently enhance expression of a Agamma-globin gene linked to the beta-globin promoter. Inclusion of extended 3' sequences from either the beta-globin or the Agamma-globin genes had no significant effect on expression. A 714-bp internal deletion of Agamma-globin intron 2 unexpectedly increased expression more than twofold. With the combination of a -127 beta-globin promoter, an Agamma-globin gene with the internal deletion of intron 2, and a single copy of the HS-40 enhancer, gamma-globin expression averaged 166% of murine alpha-globin mRNA per copy in six pools and 105% in nine clones. When placed in a retrovirus vector, this cassette was also expressed at high levels in MEL585 cells (averaging 75% of murine alpha-globin mRNA per copy) without reducing virus titers. However, recombined provirus or aberrant splicing was observed in 5 of 12 clones, indicating a significant degree of genetic instability. Taken together, these data demonstrate the development of an optimal expression cassette for gamma-globin capable of efficient expression in a retrovirus vector and form the basis for further refinement of vectors containing this cassette.

Anemia, Sickle Cell↗

A DNA polymerase stop assay for G-quadruplex-interactive compounds.

We have developed and characterized an assay for G-quadruplex-interactive compounds that makes use of the fact that G-rich DNA templates present obstacles to DNA synthesis by DNA polymerases. Using Taq DNA polymerase and the G-quadruplex binding 2, 6-diamidoanthraquinone BSU-1051, we find that BSU-1051 leads to enhanced arrest of DNA synthesis in the presence of K+by stabilizing an intramolecular G-quadruplex structure formed by four repeats of either TTGGGG or TTAGGG in the template strand. The data provide additional evidence that BSU-1051 modulates telomerase activity by stabilization of telomeric G-quadruplex DNA and point to a polymerase arrest assay as a sensitive method for screening for G-quadruplex-interactive agents with potential clinical utility.

Anthraquinones↗

The effect of new technologies on plastic surgery.

Plastic surgery has always been a technique- and technology-driven surgical discipline, given that there is no regional anatomic focus. There has been a remarkable evolution in technique over the last 25 years with an increased understanding of anatomy leading to a whole host of new and more reliable flaps, which has transformed reconstructive surgery, breast reconstruction being one notable example. The development and maturation of microsurgery has led to the full fruition of anatomic principles. With better understanding of blood supply to the skin, fascia, muscle, and bone, many traditional reconstructive procedures are constantly being superseded by the new, ingenious use of various tissue flaps. Advances in technology will accomplish another transformation of the specialty, notably the recent advances in tissue engineering, the potential of gene therapy, new alloplastic materials, and computer-assisted imaging technology. It would be impossible to address all of the recent advances in this rapidly expanding field of surgery in a short article. We have selected a few topics that we thought would be the most interesting to all surgeons to give a wide view of a variety of challenges addressed by the modern plastic surgeon. Major advances in surgery often come from cross-fertilization between specialties, and plastic surgeons have frequently been involved in this process.

Growth Substances↗

Affinity capillary electrophoresis coupled with on-line microdialysis by attachable electrode.

This paper developed a new affinity capillary electrophoresis method coupled with on-line microdialysis using attachable electrodes in order to study the interaction of biomacromolecules with their small molecule ligands in the desired physiological conditions. The sampling mechanism was discussed and the experimental conditions were optimized. The affinity constant of sulfamethoxazole (SMZ) with bovine serum albumin (BSA) was determined with homemade equipment. The method is simple and practical.

Calibration↗

Genetic risk and protective factors for idiopathic inflammatory myopathy in Koreans and American whites: a tale of two loci.

OBJECTIVE: To better understand genetic contributions to autoimmunity, immunogenetic markers were studied in two racially discrete and geographically isolated populations of patients with idiopathic inflammatory myopathy (IIM). METHODS: Clinical characteristics, as well as clinical and autoantibody subsets, were defined in 151 American white patients and 50 Korean patients with IIM. HLA-DRB1 and DQA1 genotyping was performed on patients and racially matched controls by standard molecular techniques. Gm allotypes and phenotypes were determined by the hemagglutination-inhibition method. RESULTS: HLA-DRB1*0301, the linked allele DQA1*0501, and DRB1 alleles sharing the first hypervariable region motif 9EYSTS13 were major genetic risk factors for the development of myositis in whites (corrected P [Pcorr] < 0.0004, odds ratio [OR] 11.2, 4.5, and 3.1, respectively, for each factor versus controls). Although both the white and Korean patients had a similar distribution of clinical characteristics, autoantibody profiles, and clinical groups, no HLA-DRB1 nor DQA1 allele or motif was found to be a risk factor for IIM in the Korean patients. However, DRB1*14 was a protective factor in Korean patients without myositis-specific autoantibodies (Pcorr = 0.004, OR 0.046). In addition, although no Gm phenotype or allotype was identified as a risk factor in whites, Gm 21 was a protective factor for the development of IIM in Koreans (Pcorr = 0.024, OR 0.3). CONCLUSION: Although myositis patients in the US and Korea share similar clinical and serologic features, the immune response genes predisposing to and protecting from myositis in each of these ethnic groups differ at two chromosomal loci. These data suggest that multiple genetic loci should be studied to identify risk and protective factors for some autoimmune diseases in various ethnic populations.

Adult↗

Chromosomal mapping of two RBP-J-related genes: Kyo-T and RBP-L.

We have recently isolated two genes encoding proteins which have either homology or affinity to RBP-J, a transcription factor involved in Notch signaling. Kyo-T interacts with RBP-J and possibly regulates the function of RBP-J. RBP-L has a highly homologous region with RBP-J but the function of RBP-L is unknown. Fluorescence in situ hybridization analysis of human metaphase chromosomes localized Kyo-T and RBP-L to Xq26 and 20q12-13.1, respectively.

Base Sequence↗