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Biomedical subjects

Z Lu

Publications and source records attributed to Z Lu.

At least 127 records · Page 7Linked to original sources

[Clinicopathologic analysis of rhinoscleroma].

OBJECTIVE: To investigate the clinicopathologic characteristics and reason of tissue injury caused by klebsiella rhinoscleromatis(KR) infection. METHODS: Twenty-four cases of rhinoscleromas in the nasal and pharyngeal region in this hospital from March 1983 to March 1998 were studied retrospectively. Warthin-Starry (W-S) stain was used in all cases and CD43, CD20, CD68, Lysozyme mark were observed in eleven specimens by ABC immunochemical method. Two cases were studied further with transmission electron microscopy. RESULTS: A great number of KR were found in Mikulicz cells and were confirmed further in the phagosomes in cytoplasm of Mikulicz cells, where a small number of endoplasmic reticulums and lysozymes was squeezed to the side of cells. A few of T-lymphocytes was found within the granuloma. CONCLUSION: Cellular immunity function of the patient with rhinoscleroma was depressed and the response to immunization of host which regards to KR was the major cause of tissue injury.

Adolescent↗

[Diagnosis and treatment of primary intracranial lymphoma].

OBJECTIVE: To discuss the clinical characteristics, diagnosis, and treatment of primary intracranial lymphoma. METHODS: A total of 148 cases of primary intracranial lymphoma from January 1984 to January 2000 were reviewed in our study. RESULTS: Among the 148 cases, total and subtotal removal was achieved in 117 cases, partial removal in 31 cases. All the cases were treated by the radiotherapy after surgery. 44 cases combined with chemotherapy. The symptoms of patients in 112 cases (76%) were relieved and 36 cases (24%) progressed with 8 cases dead after surgery. CONCLUSION: Primary intracranial lymphoma is a malignant neoplasm. The main treatment is surgical removal combining with postoperative radiotherapy. Prognosis is poor.

Adolescent↗

[Two-photon fluorescence from recombinant green fluorescent protein].

The photoconversion process of recombinant green fluorescent protein (rGFP) was investigated by two-photon excitation. The results indicated that the rGFP had very strong two-photon excitation fluorescence. The changes of two-photon-induced fluorescence polarization suggest that there is a proton transfer process between two different proton states of rGFP chromophores. The conformation of rGFP chromophores could be changed upon illumination, which partly block the energy transfer processes from amino acid residues to chromophores in rGFP, and result in the decrease of two-photon-induced fluorescence intensity. The fluorescence from amino acid residues in rGFP was also observed by three-photon excitation, which resulted from the blocked amino acid residues in rGFP. These results suggested that it is necessary to optimize rGFP excitation and detection for quantitative fluorescence microscopy.

Energy Transfer↗

Functionally discrete mimics of light-activated rhodopsin identified through expression of soluble cytoplasmic domains.

Numerous studies on the seven-helix receptor rhodopsin have implicated the cytoplasmic loops and carboxyl-terminal region in the binding and activation of proteins involved in visual transduction and desensitization. In our continuing studies on rhodopsin folding, assembly, and structure, we have attempted to reconstruct the interacting surface(s) for these proteins by inserting fragments corresponding to the cytoplasmic loops and/or the carboxyl-terminal tail of bovine opsin either singly, or in combination, onto a surface loop in thioredoxin. The purpose of the thioredoxin fusion is to provide a soluble scaffold for the cytoplasmic fragments thereby allowing them sufficient conformational freedom to fold to a structure that mimics the protein-binding sites on light-activated rhodopsin. All of the fusion proteins are expressed to relatively high levels in Escherichia coli and can be purified using a two- or three-step chromatography procedure. Biochemical studies show that some of the fusion proteins effectively mimic the activated conformation(s) of rhodopsin in stimulating G-protein or competing with the light-activated rhodopsin/G-protein interaction, in supporting phosphorylation of the carboxyl-terminal opsin fragment by rhodopsin kinase, and/or phosphopeptide-stimulated arrestin binding. These results suggest that specific segments of the cytoplasmic surface of rhodopsin can adopt functionally discrete conformations in the absence of the connecting transmembrane helices and retinal chromophore.

Amino Acid Sequence↗

Increasing the thermostability of staphylococcal nuclease: implications for the origin of protein thermostability.

Seven hyper-stable multiple mutants have been constructed in staphylococcal nuclease by various combinations of eight different stabilizing single mutants. The stabilities of these multiple mutants determined by guanidine hydrochloride denaturation were 3.4 to 5.6 kcal/mol higher than that of the wild-type. Their thermal denaturation midpoint temperatures were 12.6 to 22.9 deg. C higher than that of the wild-type. These are among the greatest increases in protein stability and thermal denaturation midpoint temperature relative to the wild-type yet attained. There has been great interest in understanding how proteins found in thermophilic organisms are stabilized. One frequently cited theory is that the packing of hydrophobic side-chains is improved in the cores of proteins isolated from thermophiles when compared to proteins from mesophiles. The crystal structures of four single and five multiple stabilizing mutants of staphylococcal nuclease were solved to high resolution. No large overall structural change was found, with most changes localized around the sites of mutation. Rearrangements were observed in the packing of side-chains in the major hydrophobic core, although none of the mutations was in the core. It is surprising that detailed structural analysis showed that packing had improved, with the volume of the mutant protein's hydrophobic cores decreasing as protein stability increased. Further, the number of van der Waals interactions in the entire protein showed an experimentally significant increase correlated with increasing stability. These results indicate that optimization of packing follows as a natural consequence of increased protein thermostability and that good packing is not necessarily the proximate cause of high stability. Another popular theory is that thermostable proteins have more electrostatic and hydrogen bonding interactions and these are responsible for the high stabilities. The mutants here show that increased numbers of electrostatic and hydrogen bonding interactions are not obligatory for large increases in protein stability.

Crystallography, X-Ray↗

Prototype systems for rechargeable magnesium batteries.

The thermodynamic properties of magnesium make it a natural choice for use as an anode material in rechargeable batteries, because it may provide a considerably higher energy density than the commonly used lead-acid and nickel-cadmium systems. Moreover, in contrast to lead and cadmium, magnesium is inexpensive, environmentally friendly and safe to handle. But the development of Mg batteries has been hindered by two problems. First, owing to the chemical activity of Mg, only solutions that neither donate nor accept protons are suitable as electrolytes; but most of these solutions allow the growth of passivating surface films, which inhibit any electrochemical reaction. Second, the choice of cathode materials has been limited by the difficulty of intercalating Mg ions in many hosts. Following previous studies of the electrochemistry of Mg electrodes in various non-aqueous solutions, and of a variety of intercalation electrodes, we have now developed rechargeable Mg battery systems that show promise for applications. The systems comprise electrolyte solutions based on Mg organohaloaluminate salts, and Mg(x)Mo3S4 cathodes, into which Mg ions can be intercalated reversibly, and with relatively fast kinetics. We expect that further improvements in the energy density will make these batteries a viable alternative to existing systems.

Journal Article↗

Electroactive Films of Alternately Layered Polycations and Iron-Sulfur Protein Putidaredoxin on Gold.

Layered, electrochemically active films of bacterial iron-sulfur protein putidaredoxin (Pdx) and poly(dimethyldiallyammonium) (PDDA) polycations were constructed on gold electrodes coated with mercaptopropane sulfonate (MPS) and on quartz slides. Second-derivative UV-vis spectra suggested similar structures of Pdx in films and solutions at pH 7. Direct electrochemistry was achieved between Pdx and gold electrodes in these films, with significantly better electrochemical reversibility than in cast Nafion-lipid-Pdx films. A formal potential dispersion model gave a good fit to square wave voltammograms by regression analysis and was used to estimate an average apparent rate constant of 4.5 s(-1). Reduced Pdx in the polyion films did not react with its natural redox partner cytochrome P450(cam) because of unfavorable thermodynamics in the film environment. Copyright 2000 Academic Press.

Journal Article↗

Cell permeable Bcl-2 binding peptides: a chemical approach to apoptosis induction in tumor cells.

Bcl-2 is a potent suppressor of apoptosis, and its overexpression contributes to tumorigenesis in many types of human cancers. To test the possibility of modulating Bcl-2 function as an anticancer strategy, a cell permeable Bcl-2 binding peptide, cell permeable moiety (cpm)-1285, was designed by chemically attaching a fatty acid to a peptide derived from the proapoptotic protein Bad. cpm-1285 entered HL-60 tumor cells, bound Bcl-2 protein, and induced apoptosis in vitro. In contrast, cpm-1285 had little effect on normal human peripheral blood lymphocytes. Furthermore, cpm-1285 had in vivo activity in slowing human myeloid leukemia growth in severe combined immunodeficient mice. These results demonstrate a novel approach for therapeutic intervention of tumor growth in vivo with small molecule inhibitors of Bcl-2.

Amino Acid Sequence↗

An EGF receptor/Ral-GTPase signaling cascade regulates c-Src activity and substrate specificity.

c-Src is a membrane-associated tyrosine kinase that can be activated by many types of extracellular signals, and can regulate the function of a variety of cellular protein substrates. We demonstrate that epidermal growth factor (EGF) and beta-adrenergic receptors activate c-Src by different mechanisms leading to the phosphorylation of distinct sets of c-Src substrates. In particular, we found that EGF receptors, but not beta(2)-adrenergic receptors, activated c-Src by a Ral-GTPase-dependent mechanism. Also, c-Src activated by EGF treatment or expression of constitutively activated Ral-GTPase led to tyrosine phosphorylation of Stat3 and cortactin, but not Shc or subsequent Erk activation. In contrast, c-Src activated by isoproterenol led to tyrosine phosphorylation of Shc and subsequent Erk activation, but not tyrosine phosphorylation of cortactin or Stat3. These results identify a role for Ral-GTPases in the activation of c-Src by EGF receptors and the coupling of EGF to transcription through Stat3 and the actin cytoskeleton through cortactin. They also show that c-Src kinase activity can be used differently by individual extracellular stimuli, possibly contributing to their ability to generate unique cellular responses.

Animals↗

CD40-independent pathways of T cell help for priming of CD8(+) cytotoxic T lymphocytes.

In many cases, induction of CD8(+) CTL responses requires CD4(+) T cell help. Recently, it has been shown that a dominant pathway of CD4(+) help is via antigen-presenting cell (APC) activation through engagement of CD40 by CD40 ligand on CD4(+) T cells. To further study this three cell interaction, we established an in vitro system using dendritic cells (DCs) as APCs and influenza hemagglutinin (HA) class I and II peptide-specific T cell antigen receptor transgenic T cells as cytotoxic T lymphocyte precursors and CD4(+) T helper cells, respectively. We found that CD4(+) T cells can provide potent help for DCs to activate CD8(+) T cells when antigen is provided in the form of either cell lysate, recombinant protein, or synthetic peptides. Surprisingly, this help is completely independent of CD40. Moreover, CD40-independent CD4(+) help can be documented in vivo. Finally, we show that CD40-independent T cell help is delivered through both sensitization of DCs and direct CD4(+)-CD8(+) T cell communication via lymphokines. Therefore, we conclude that CD4(+) help comprises at least three components: CD40-dependent DC sensitization, CD40-independent DC sensitization, and direct lymphokine-dependent CD4(+)-CD8(+) T cell communication.

Animals↗

Targeting transgene expression to airway epithelia and submucosal glands, prominent sites of human CFTR expression.

Targeting therapeutic gene expression to disease-affected tissues is an essential component of effective and safe gene therapy. After birth, CFTR gene expression in human lungs is localized predominantly in the epithelial cells lining the upper airways, especially in the ducts and serous tubules of the submucosal glands. We have developed a K18 expression cassette, based on the DNA control elements of the human cytokeratin 18 gene. Temporal and spatial analyses of transgenic mice demonstrated that this expression cassette targets transgene expression to almost all cell types in which CFTR is expressed. Airway epithelium expression started as early as 11.5 days of gestational age and continued into the adulthood of the transgenic mice. In these adult mice, the pattern of the reporter expression strikingly matched that of the human cytokeratin 18 and human CFTR genes. The transgene expression was epithelium-specific and undetectable in connective tissue, muscle, bone, cartilage, blood, and endothelial cells. Significantly, high levels of expression were detected in tracheal submucosal glands. Together, these results suggest that our K18 expression cassette has a high potential for clinical application in gene therapy for patients with cystic fibrosis.

Animals↗

Construction and identification of recombinant adenovirus vector containing the hVEGF165 gene.

To construct the recombinant adenovirus vector containing the cDNA for human vascular endothelial growth factor (hVEGF165), the cDNA for hVEGF165 was subcloned into pACCMV.pLpA. Subsequently, this recombinant pACCMV.hVEGF was co-transfected into 293 cells together with pJM17 to obtain the replication-deficient recombinant adenovirus containing hVEGF gene--AdCMV.hVEGF. The VEGF gene expression was detected by using RT-PCR and Western blot in rabbit aorta vascular smooth muscle cells (VSMC) infected with AdCMV.hVEGF. Cultured human umbilical vein endothelial cells (HUVEC) were incubated with the conditioned medium (CM) from above mentioned VSMC infected with AdCMV.hVEGF to observe the effect of VEGF on proliferation of HUVEC. 48 h after the infection with AdCMV.hVEGF, VSMC demonstrated VEGF expression, and the expressed VEGF could stimulate the proliferation of HUVEC in vitro. Successfully prepared AdCMV.hVEGF165 could express biologically active VEGF in infected VSMC, and stimulate proliferation of HUVEC.

Adenoviridae↗

Experimental study on the effect of ligustrazine in the prevention of intimal proliferation of deendothelial artery.

To evaluate the possibility of employing ligustrazine in the prevention of restenosis, the effects of ligustrazine on the intimal thickening of air-injured carotid artery of rats were investigated, and the effects of ligustrazine on the proliferation of rabbit aortic median smooth muscle cells (SMCs) cultivated in vitro were examined. Artery injury model of 18 rats of about 3 months old was established by Fishman air-dry method. Fourteen days after operation, the maximal artery intimal and medial thickness of the control and ligustrazine group was measured on the image analysis system. Using cell counting and thymidine (3H-TdR) up-take method, we also examined the effects of ligustrazine on the proliferation of aortic median SMC from 4 rabbits. Ligustrazine was found to inhibit the proliferation and 3H-TdR up-take of SMC in a dose-dependent manner in vitro (P < 0.05 or P < 0.01 vs control). It also inhibited the intimal thickening of rat arteries after deendothelialization. The maximal intimal thickness of ligustrazine group was much thinner than that of the control (35.9 +/- 3.8 microns vs 80.2 +/- 23.4 microns, P < 0.01). It was showed that ligustrazine could be used for prevention of restenosis in clinical practice.

Animals↗

Restrictive effect of puerarin on myocardial infarct area in dogs and its possible mechanism.

To evaluate the protective effect of puerarin on ischemic myocardium in dogs with acute myocardial infarction (AMI) and to reveal its possible mechanism, 10 dogs were randomly divided into puerarin group (group G) and control group (group C). AMI model was established in all dogs. Puerarin or saline was administered over a period of 21 days. Coronary angiography was performed before and after ligation of coronary artery. Eight hemorheological parameters were examined before and 22 days after the operation. The infarct area and vessel density of myocardium were assessed. The infarct area in group G was smaller than that in group C. Angiography 2 h and 22 d after ligation of coronary artery revealed significant augmentation of collateral vessels in group G as compared with control group. The platelet aggregation and the blood viscosity were increased during AMI when compared with control phase, and the increased indexes during AMI would be inhibited when puerarin were given. Capillaries and distribution vessel density in ischemic zone on day 22 showed statistically significant augmentation in group G as compared with control group. Puerarin might improve the opening and formation of coronary collateral circulation, and might inhibit the increase of platelet aggregation and the blood viscosity during AMI, and thereby improve microcirculation and restrict myocardial infarct area.

Animals↗

An epistatic interaction controls the latency of a transgene-induced mammary tumor.

Previous studies from our laboratory demonstrated that the latency, tumor growth, and metastatic progression of polyoma middle T-induced mammary tumor in an FVB/NJ inbred mouse background could be significantly altered by the introduction of different genetic backgrounds. In this study we extend these findings by mapping a number of interacting quantitative trait loci responsible for the changes in phenotype. Introduction of the I/LnJ inbred genetic background into the FVB/NJ-PyMT animal significantly accelerated the appearance of the primary tumor (35 vs. 57 days postnatal, p < 10(-7)). A backcross mapping panel was established, and loci responsible for the tumor acceleration were detected on Chrs 15 and 9. Examination of the genotype/phenotype correlation revealed that the FVB/NJ but not the I/LnJ allele of the Chr 15 locus was associated with tumor acceleration and was conditional on the presence of I/LnJ allele on Chr 9. These loci, designated Apmt1 and Apmt2, map to homologous regions associated with LOH in human breast cancer. These results suggest that allelic variants of genes in these regions may contribute to age of onset in human breast cancer.

Animals↗

Pacing-induced heart failure causes a reduction of delayed rectifier potassium currents along with decreases in calcium and transient outward currents in rabbit ventricle.

OBJECTIVE: Heart failure in patients and in animal models is associated with action potential prolongation of the ventricular myocytes. Changes in several membrane currents have been already demonstrated to underlie this prolongation. However, information on the two components (I(Kr) and I(Ks)) of the delayed rectifier potassium current (I(K)) in rapid pacing induced heart failure is lacking. METHODS AND RESULTS: Action potentials and whole-cell currents, I(K), I(to1), I(K1), and I(Ca-L) were recorded in apical myocytes of left ventricle from 10 rabbits subjected to left ventricular pacing at 350-380 beats/min for 3-4 weeks and 10 controls with sham operation. Action potential duration at 90% repolarization (APD(90)) was prolonged in myocytes from failing hearts compared to controls at both cycle lengths of 333 and 1000 ms. Both E-4031-sensitive and -resistant components of I(K) (I(Kr), I(Ks)) in myocytes from failing hearts were significantly less than those of control hearts; tail current densities of I(Kr) and I(Ks) following depolarization to +50 mV were 0.62+/-0.05 vs. 0.96+/-0.12 pA/pF (P<0.05), and 0.27+/-0.08 vs. 0.52+/-0.08 pA/pF (P<0.05), respectively. There was no significant difference between control and failing myocytes in the voltage- and time-dependence of activation of total I(K), I(Kr) and I(Ks). The peak of L-type Ca(2+) current (I(Ca-L)) was significantly reduced in myocytes from failing hearts (at +10 mV, -9.29+/-0.52 vs. -12.28+/-1.63 pA/pF, P<0.05), as was the Ca(2+)-independent transient outward current (I(to1); at +40 mV, 4.8+/-0.9 vs. 9.6+/-1.3 pA/pF, P<0.05). Steady state I-V curve for I(K1) was similar in myocytes from failing and control hearts. CONCLUSIONS: Decrease of I(K) (both I(Kr) and I(Ks)) in addition to reduced I(to1), may underly action potential prolongation at physiological cycle length and thereby contribute to arrhythmogenesis in heart failure.

Action Potentials↗