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Biomedical subjects

C Liu

Publications and source records attributed to C Liu.

At least 325 records · Page 18Linked to original sources

[Multiprocessor study and design for digital color ultrasonic medical imaging system].

In this paper, the design of a multi-processor for digital color ultrasonic medical imaging system is discussed. It is a shared memory multiprocessor of MIMD architecture. The whole system is devided into several parts according to the complexity of the signal-processing, and each part is allocated a certain duties. Besides, the solving method of multiprocessor's bus conflicting is discussed and an architecture block diagram is given in the paper.

Equipment Design↗

Heat shock protein 70 expression in myocardium is blunted with simulated weightlessness.

Exposure of cardiac cells to a mild thermal or ischaemic stress, sufficient to induce HSP expression, protects them against a subsequent exposure to a more severe ischaemic stress. Over expression of HSPs by transfection of herpes simplex virus vectors in vitro or in transgenic animal in vivo can protect primary cardiac cells from subsequent exposure to severe thermal or hypoxic stress. The increases in myocardial and liver HSP70 accumulation in response to nonexertional heat stress are attenuated with senescence, and hearts from aged animals exhibit an impaired ability to produce the protective HSP. In our previous work, peculiar changes associated with aging, like lipofuscin accumulation and collagen deposition were shown in the myocardial tissue of long-term simulated weightless rats. We therefore designed the present study to examine whether the heat-stress induced HSP70 accumulation in myocardial tissue may decline with simulated weightlessness.

Animals↗

[Amelioration of nerve growth factor against noise-induced threshold shift: a transmission electron microscope observation].

OBJECTIVE: To study the protective effects of nerve growth factor(NGF) on noise-induced hearing damage in guinea pigs. METHODS: NGF injected Guinea pigs were consecutively exposed to white noise of 115 dB(A) for 6 days continually (45 min.d-1). Auditory thresholds were measured using auditory cortex evoked response to tone bursts in different post-exposure intervals (1 h, 1 d, 2 d, 3 d and 6 d). The ultrastructural changes within hair cells were also observed by a transmission electron microscope(TEM). RESULTS: The auditory threshold shifts in test group A(NGF:1,000 U.kg-1.d-1, i.m.), B(NGF:2,000 U.kg-1.d-1, i.m.) and C(NGF:3,000 U.kg-1.d-1, i.m.) were significantly fewer than that in the control group(Saline: 1 ml.kg-1.d-1, i.m.). Threshold shifts almost recovered in test group B and C 3 days after the exposure; while a threshold shift of (16.43 +/- 6.91) dB was present 6 days after the exposure in the control group. TEM showed that all three rows of the outer hair cells(OHCs) of the basal turn in the control group displayed significant pathological changes. Depolymerization of actin filiaments within stereocilia, swelling of submembraneous cistern and the efferent nerve-ending and slight edema of hair cells were evident. In test group A, the hair cells display slight pathological changes, which are confined in the third row of OHCs in a local position of the basal turn. In group B and C hair cells have nearly normal appearance. CONCLUSION: NGF is able to reduce threshold shift, and promote the recovery of auditory threshold in acoustic trauma. This factor can, to some extent, protect against noise-induced hearing damage.

Animals↗

[The electrophilic and electrophobic effect in molecular vibration spectra].

A new point of view for electronic effect of molecular vibration spectra was brought: the electrophilic effect of substitution group can enhance the strength of covalent bond. Therefore, its stretching vibration frequency will be increased. Contrarily, electrophobic effect makes frequency decrease. As far as the coordination bond is concerned, if electrophobic substitution group links up the atom which provides the electron doublet then the strength of coordination bond will be enhanced and the stretching vibration frequency of the bond will be increased. The electrophilic substitution group makes the frequency decrease. If substitution group links with the atom that accepts electron, the electronic effect of substitution group is on the contrary.

English Abstract↗

[Study on the photoinduced-color changing about novel azobenzocrown ether derivatives 16ABC-OH and 16ABC-NH2 in water solution and Langmuir-Blodgett film].

Two kinds of azobenzocrown ether derivation 16ABC-OH and 16ABC-NH2 have been synthesized, and their photoinduced color changing phenomena has been investigated in water solution, the reaction of 16ABC-OH is the photochemical Cis-trans-isomerization, and it is a first-order reaction, but the reaction of 16ABC-NH2 photochemical Cis-trans-isomeriation is very complex; and it is not a first-order reaction. In Langmuir-Blodgett film of 16ABC-OH, there is not molecular self-assembly phenomenon, the part of Cis-16ABC-OH become to iso-16ABC-NH2, but in the film, 16ABC-NH2 form H-Polymer by self-assembly, and the photochromic Cis-trans-isomerization is forbidded.

English Abstract↗

Reduction of intracerebral hemorrhaging in a rabbit embolic stroke model.

OBJECTIVE: To study the effects of a spin trap agent and a CD18 antibody administered after stroke induction on intracerebral hemorrhaging. The drugs can prevent leukocyte adhesion. METHODS: A rabbit embolic stroke model that produces intracerebral hemorrhage was used. RESULTS: A time course study showed that hemorrhaging was grossly apparent in approximately 50% of the subjects at 5 hours and in 75% at 24 hours after embolization. MDL 101,002, a spin trap agent, administered IV 5 minutes after embolization, significantly decreased the volume of hemorrhage. It also improved the behavior score relative to vehicle-treated rabbits. The CD18 antibody tended to decrease hemorrhage volume. CONCLUSION: The beneficial effect of MDL 101,002 may be caused by inhibition of free radical injury to brain tissue, thereby protecting brain microvessel integrity. Acute therapy for intracerebral hemorrhage may be feasible.

Animals↗

Hydrogen storage in single-walled carbon nanotubes at room temperature

Masses of single-walled carbon nanotubes (SWNTs) with a large mean diameter of about 1.85 nanometers, synthesized by a semicontinuous hydrogen arc discharge method, were employed for hydrogen adsorption experiments in their as-prepared and pretreated states. A hydrogen storage capacity of 4.2 weight percent, or a hydrogen to carbon atom ratio of 0.52, was achieved reproducibly at room temperature under a modestly high pressure (about 10 megapascal) for a SWNT sample of about 500 milligram weight that was soaked in hydrochloric acid and then heat-treated in vacuum. Moreover, 78.3 percent of the adsorbed hydrogen (3.3 weight percent) could be released under ambient pressure at room temperature, while the release of the residual stored hydrogen (0.9 weight percent) required some heating of the sample. Because the SWNTs can be easily produced and show reproducible and modestly high hydrogen uptake at room temperature, they show promise as an effective hydrogen storage material.

Journal Article↗

Regulation of the amiloride-sensitive epithelial sodium channel by syntaxin 1A.

The first step in transepithelial sodium absorption lies at the apical membrane where the amiloride-sensitive, epithelial sodium channel, ENaC, facilitates sodium entry into the cell. Here we report that the vesicle traffic regulatory (SNARE (soluble N-ethylmaleimide-sensitive factor attachment protein receptor)) protein, syntaxin 1A (S1A), inhibits ENaC mediated sodium entry. This inhibitory effect is selective for S1A and is not reproduced by syntaxin 3. The inhibition does not require the membrane anchoring domain of syntaxin 1A. It was reversed by the S1A-binding protein, Munc-18, but not by a Munc-18 mutant, which lacks syntaxin affinity. Immunostaining of epitope-tagged ENaC subunits showed that syntaxin 1A decreases ENaC current by reducing the number of ENaC channels in the plasma membrane; S1A does not interfere with ENaC protein expression. Immunoprecipitation of syntaxin 1A from the sodium-transporting epithelial cell line, A6, co-precipitates ENaC. These findings indicate that syntaxin 1A and other members of the SNARE machinery are involved in the control of plasma membrane ENaC content, and they suggest that SNARE proteins participate in the regulation of sodium absorption in relation to agonist mediated vesicle insertion-retrieval processes.

Animals↗

Study of the sugar chains of recombinant human amyloid precursor protein produced by Chinese hamster ovary cells.

The N- and O-glycans of recombinant amyloid precursor protein (APP), purified from Chinese hamster ovary cells transfected with the human 695-amino acid form of APP, were separately released by hydrazinolysis under different conditions. The reducing ends of the released N- and O-glycans were reduced with NaB3H4 and derivatized with 2-aminobenzamide (2AB), respectively. After acidic N-glycans were obtained by anion-exchange column chromatography, these were converted to neutral oligosaccharides by sialidase digestion, demonstrating that their acidic nature was entirely due to sialylation. The sialidase-treated N-glycans were then fractionated by lectin column chromatography and their structures were determined by linkage-specific sequential exoglycosidase digestion. These results demonstrated that recombinant APP has bi- and triantennary complex type N-glycans with fucosylated and nonfucosylated trimannosyl cores. In a similar fashion, the 2AB-labeled O-glycans derived from APP were determined to be mono- and disialylated core type 1 structures. Taken together, these results indicate that recombinant APP has sialylated bi- and triantennary N-glycans with fucosylated and nonfucosylated cores and sialylated O-glycans with core type 1 structures.

Amyloid beta-Protein Precursor↗

Structure and function of the mammalian egg zona pellucida.

The zona pellucida is a thick extracellular coat that surrounds all mammalian eggs and preimplantation embryos. The zona pellucida supports communication between oocytes and follicle cells during oogenesis; protects oocytes, eggs, and embryos during development, and regulates interactions between ovulated eggs and free-swimming sperm during and following fertilization. Mutant females that produce eggs that lack a zona pellucida are infertile. The functions of the zona pellucida during fertilization now can be ascribed to certain of its glycoproteins. Here we describe some aspects of zona pellucida structure and function as they relate to mammalian fertilization. J. Exp. Zool. (Mol. Dev. Evol.) 285:251-258, 1999.

Animals↗

Nephroblastoma overexpressed gene (NOV) codes for a growth factor that induces protein tyrosine phosphorylation.

NOV (nephroblastoma overexpressed gene) is a member of the CCN (connective tissue growth factor [CTGF], Cyr61/Cef10, NOV) family of proteins. These proteins are cysteine-rich and are noted for having growth-regulatory functions. We have isolated the rat NOV gene, and the DNA sequence shares 90% identity with the mouse and 80% identity with the human sequences. The rat NOV gene was expressed in all rat tissues examined, including brain, lung, heart, kidney, liver, spleen, thymus and skeletal muscle. Higher levels of rat NOV mRNA were seen in the brain, lung and skeletal muscle compared to the other tissues. Examination of NOV expression in various human cell lines revealed that NOV was expressed in U87, 293, T98G, SK-N-MC and Hs683 but not in HepG2, HL60, THP1 and Jurkat. The human NOV gene was transfected into 293 cells and the expressed protein purified. When 3T3 fibroblasts were treated with this recombinant NOV protein, a dose-dependent increase in proliferation was observed. Analysis of tyrosine-phosphorylated proteins revealed that when 3T3 cells were treated with NOV, a 221 kDa protein was phosphorylated. These data suggest that NOV can act as a growth factor for some cells and binds to a specific receptor that leads to the phosphorylation of a 221 kDa protein.

3T3 Cells↗

DNA damage by copper(II) complexes: coordination-structural dependence of reactivities.

A variety of copper complexes with different structural features have been shown to bind double-helical DNA with binding constants of 10(4)-10(7) M-1 and to promote double-strand DNA damage upon reductant/H2O2 activation. The interaction of the Cu complex with DNA results in hyperchromism and shifts to longer wavelengths of the strongest transitions in the Cu complexes, as well as striking hypochromism or hyperchromism of DNA absorption at 260 nm. In the presence of DMPO as the spin trap, the solution of each copper complex exhibits typical four-line ESR spectra of the hydroxyl radical by adding 2-mercaptoethanol and H2O2 to the solution. Quantitation by 2-deoxy-D-ribose shows that the competence of hydroxyl radical generation by the copper complexes upon reductant and H2O2 activation decreases in order, that is, Cu(HTCD)(2+)-Cu(Im)4Cl2-Cu(IDB) (NO3)2 > Cu(IDB)Cl2 > Cu(IDBt)Cl2. The copper complex-mediated hydroxyl radical, a powerful oxidant that attacks the adjacent DNA, is responsible for the DNA oxidative damage. The lambda DNA damage chemistry illustrates that the competence and selectivity of double-strand lambda DNA damage by the copper complexes are dependent on their geometric structures and types of ligands. The decreasing order of the DNA damage capacity by the present complexes is Cu(Im)4Cl2-Cu(IDB)-(NO3)2 > Cu(HTCD)2+ > Cu(IDBt)Cl2 > Cu(IDB)Cl2.

Animals↗

p53 and Egr-1 additively suppress transformed growth in HT1080 cells but Egr-1 counteracts p53-dependent apoptosis.

The human fibrosarcoma cell line, HT1080, clone H4, was used to determine if the transformation suppressive functions of p53 and Egr-1 have the same underlying mechanism. This cell line expresses only mutant p53 and no detectable Egr-1. H4 clones stably expressing Egr-1 are less transformed in proportion to the level of Egr-1 expressed, acting through the induction of the TGFbeta1 gene. Here, H4 cells and the highest Egr-1 expressing clone were transfected with a vector expressing normal human p53 to derive stable clones expressing p53. The expression of p53 in H4 cells inhibited transformed growth and reduced tumorigenicity. The effect of coexpression of both p53 and Egr-1 was additive, producing cell lines with 30% of normal growth rate and sevenfold reduced tumorigenicity compared with control lines. These results indicated that each factor may act independently by different pathways, although each additively increased the level of p21WAF1 cell cycle inhibitor. However, exposure of the H4-derived cells to UV-C irradiation produced contrasting effects. Cell cycle analyses showed that the presence of p53 was associated with loss of the G1 and S cells to apoptosis after irradiation. In contrast, the expression of Egr-1 increased entry into S/G2 phase of the cell cycle with little apoptosis via a mechanism involving elevated FAK and low caspase activities. Apoptosis was observed only in the cell lines that expressed no Egr-1, especially those expressing wt-p53, and was preceded by high caspase activity. In summary, Egr-1 suppressed transformation and counteracted apoptosis by the coordinated activation of TGFbeta1, FN, p21 and FAK, leading to enhanced cell attachment and reduced caspase activity. In the doubly expressing cell line, the survival effect of Egr-1 was dominant over the apoptotic effect of p53.

Apoptosis↗

Activation of caspase-3 in the retina of transgenic rats with the rhodopsin mutation s334ter during photoreceptor degeneration.

The role of caspase-3 in photoreceptor degeneration was examined in a line of transgenic rats that carry a rhodopsin mutation S334ter. Photoreceptor degeneration in these animals is rapid. It is detected as early as postnatal day (PD) 8, and by PD 20, only one of the original 12 rows of nuclei remain in the outer nuclear layer. At PD 11 and 12, the number of photoreceptors dying per day reaches a peak of approximately 30% of the total photoreceptors in the retina. Coincident with this rapid degeneration is an increase in caspase-3-like activity as assessed by the cleavage of a fluorescent substrate N-acetyl-Asp-Glu-Val-Asp-aminomethylcoumarin and an increase in activated caspase-3 as determined by Western blot analysis for its 12 kDa subunit. Intraocular injection of an irreversible caspase-3 inhibitor N-benzyloxycarbonal-Asp(OMe)-Glu(OMe)-Val-Asp(Ome)-fluoromethyk etone partially protected photoreceptors from degeneration. These findings indicate that a caspase-3-dependent mechanism is operative in photoreceptor death in the transgenic rats under investigation.

Animals↗

Synthesis, calcium mobilizing, and physicochemical properties of D-chiro-inositol 1,3,4,6-tetrakisphosphate, a novel and potent ligand at the D-myo-inositol 1,4,5-trisphosphate receptor.

The synthesis of a novel and potent ligand at the D-myo-inositol 1,4, 5-trisphosphate receptor (InsP3R) is described. D-chiro-Inositol 1,3, 4,6-tetrakisphosphate (7) and L-chiro-inositol 1,3,4, 6-tetrakisphosphate (ent-7) have been synthesized from D-2, 5-di-O-benzyl-chiro-inositol and L-2,5-di-O-benzyl-chiro-inositol, respectively. The potency of binding and Ca2+ release of 7 and ent-7 were examined in L15 and Lvec cells. 7 was a full agonist at the InsP3R in both cells, and ent-7 was inactive. The results are compared to those from D-myo-inositol 1,4,5-trisphosphate (1), DL-scyllo-inositol 1,2,4-trisphosphate (2), DL-myo-inositol 1,2,4, 5-tetrakisphosphate (3), scyllo-inositol 1,2,4,5-tetrakisphosphate (4), D-myo-inositol 2,4,5-trisphosphate (5), and D-chiro-inositol 1, 3,4-trisphosphate (6). The protonation processes of 7 have also been investigated by 31P NMR titration experiments.

Animals↗