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Biomedical subjects

Z Song

Publications and source records attributed to Z Song.

At least 55 records · Page 3Linked to original sources

Clinical observation on preservation of lens anterior capsule in reduction of complications associated with silicone oil.

PURPOSE: To observe the effect of preservation of anterior capsule on the incidence of complications associated with silicone oil. METHODS: 82 patients (82 eyes) accepted trans pars plana vitrectomy (TPPV) combined with lensectomy of whom, 30 eyes with preservation of anterior capsule (PAC) and 52 eyes with no preservation of anterior capsule (NPAC). Analysis of the incidence of complications associated with use of oil. RESULTS: The incidence rate was 50.0% in NPAC group, and 23.3% in PAC group (P < 0.025). There were secondary glaucoma (21.1%), band keratopathy (13.5%) and corneal decompensation (9.6%) in NPAC group, while there was none of them in PAC group. CONCLUSIONS: Preservation of anterior capsule is an effective method to reduce the complications associated with silicone oil.

Adolescent↗

[The cluster analysis of trace elements in fructus cnidii from different region].

The contents of trace elements in Fructus Cnidii from different region were assayed by atom absorption spectrum and analyzed by cluster analysis methods. The results showed the contents of trace elements from different regions were different, which had some relativity with habitats, but should be further studied.

Cluster Analysis↗

[FI-ICL determination of isoniazide].

A novel flow injection inhibitory chemiluminescence (FI-ICL) system for the determination of isoniazide is presented. While isoniazide mixed with hexacyanoferrate stream, by the fast oxidation reaction between isoniazide and K3Fe(CN)6, K4Fe(CN)6 was generated, which then inhibit the CL reaction of K3Fe(CN)6 and luminol. The CL emission was correlated with the isoniazide concentration in the range from 1.40 x 10(-3) to 5.50 micrograms.mL-1, the D.L. is 4.8 x 10(-4) micrograms.mL-1 (3 sigma); and the RSD is less than 3.5% for 5.5 x 10(-2) micrograms.mL-1 isoniazide (n = 9). This system has been applied for the determination of isoniazide in pharmaceutical samples and the recovery is from 98.2% to 101%.

Antitubercular Agents↗

[Upconversion luminescent dynamics of HoP5O14 noncrystallite excited by DCM dye laser].

The dynamics processes of 370-580 nm upconversion luminescence of HoP5O14 noncrystalline excited by DCM dye laser is reported in this paper. It is found that both mechanisms of energy transfer upconversion among ions and step-wise multiphoton absorption of single ion are involved in the upconversion luminescence, the upconversion dynamics would change greatly when the frequency of pumping laser has a little variation.

Crystallization↗

[An effect enhancement mechanism of up-conversion luminescence--up-conversion sensitization].

The research of frequency up-conversion has been developed greatly in recent ten years. In order to achieve its applications, it needs to enhance the up-conversion efficiency further greatly, which is the core problem of up-conversion. Because of the specialty of Yb3+ ion energy level, Yb3+ can greatly enhance up-conversion luminescence of co-doped rare earth ion activator through energy transfer. Meanwhile it may not cause the obvious fluorescence quenching. Thus it is very significance to investigate up-conversion sensitization which Yb3+ ion acts as a sensitizer. It is more important that it is quite urgent to combine up-conversion efficiency and material property to develop up-conversion. This paper reviews the proposing and developing process of up-conversion sensitization. The achievement of up-conversion sensitization field especial the originate fruit in indirect up-conversion sensitization obtained by China are introduce emphatically.

Chemical Phenomena↗

[The upconversion "characteristic saturation phenomenon" of ErYb:ZBLAN glass excited by 966 nm diode laser].

This paper researches the upconversion luminescence of Er:ZBLAN and ErYb:ZBLAN glasses excited by 966 nm diode laser. It is found that there is a new kind of "characteristic saturation phenomenon". It is that the log-log plot's slope of upconversion luminescence intensity upon laser power of ErYb:ZBLAN glass is decreased clearly than that of Er:ZBLAN, and both of their log-log plots are rather good straight line. This upconversion mechanism is a new kind of "diffusion-transfer" mechanism, that is energy diffusion among Yb3+ ions sequential followed by energy transfer between Er(3+)-Yb3+ ions. The "characteristic saturation phenomenon" is just resulted from energy diffusion.

English Abstract↗

[Clinical value of preserving intercostal-brachial nerve during breast cancer operations].

OBJECTIVE: To study the value of preserving intercostal-brachial nerve during axillary dissection for breast neoplasms. METHODS: From June 1996 to December 1997, stage I, II breast cancer patients were divided into experimental group (n = 45) and control group (n = 60) respectively. The intercostal-brachial nerve was preserved in the experimental group and not in the control group. Both were followed up after operations. RESULTS: The postoperation morbidity of arm sensory disturbance was 7.1% in the experimental group, which was significantly different from that of the control group(63.3%, chi2 = 34.69, P < 0.01). No difference was noted in the recurrence rate between the two groups. CONCLUSIONS: Preserving intercostal-brachial nerve may significantly decrease the morbidity of postoperation arm sensory disturbance during axillary dissection for stage I, II breast cancer patients.

Adult↗

The effect of fibroblast growth factor 8, isoform b, on the biology of prostate carcinoma cells and their interaction with stromal cells.

Fibroblast growth factor 8, isoform b (FGF8b), has been implicated in the oncogenesis of the prostate and mammary epithelia. We examined whether overexpression of FGF8b in a weakly tumorigenic prostate carcinoma cell line, LNCaP, could alter the growth and tumorigenic properties of these cells. LNCaP cells were infected with a lentivirus vector carrying FGF8b cDNA and the green fluorescent protein (GFP) cDNA in the same construct, and the infected cell population was sorted on the basis of GFP protein expression. It was demonstrated that, in comparison with the cells transduced with GFP-vector alone, LNCaP cells with FGF8b-GFP expression manifested an increased growth rate, higher soft agar clonogenic efficiency, enhanced in vitro invasion, and increased in vivo tumorigenesis. Most strikingly, whereas parental or vector-control LNCaP cells failed to grow at all in an in vivo tumorigenesis/diaphragm invasion assay in nude mice, the cells overexpressing FGF8b proliferated as deposits of tumor cells on the diaphragm, frequently with indications of tumor cell invasion into the diaphragm. Coculturing of primary prostatic or non-prostatic stromal cells with the infected LNCaP cells led us to observe that: (a) stromal cells, irrespective of tissue origin, strongly suppressed LNCaP cell growth; (b) FGF8b producing LNCaP cells could partially evade the stromal inhibition, perhaps from the autocrine stimulatory effect of FGF8b; and (c) production of FGF8b in the coculture had a stimulatory effect on the proliferation of the stromal cells, prostatic or non-prostatic. This stimulation was not attributable to the direct action of FGF8b on stromal cells. Instead, it appears that epithelial-stromal cell-cell contact and some unknown soluble factors secreted by LNCaP cells upon stimulation of FGF8b are required for the maximal effect. Together, these results suggest that the growth rate and biological behavior of prostatic cancer cells can be altered to a more aggressive phenotype by up-regulation of FGF8b expression. These changes in phenotype also influence the interaction of the affected cells with stromal cells. The data obtained may have direct relevance to the progression of prostate cancer, recognizing that FGF8b is naturally overexpressed in advanced disease.

3T3 Cells↗

Differential protective activity of alpha A- and alphaB-crystallin in lens epithelial cells.

alphaA- and alphaB-crystallins are molecular chaperones expressed at low levels in lens epithelial cells, and their expression increases dramatically during differentiation to lens fibers. However, the functions of alphaA- and alphaB-crystallins in lens epithelial cells have not been studied in detail. In this study, the relative ability of alphaA- and alphaB-crystallin, in protecting lens epithelial cells from apoptotic cell death was determined. The introduction of alphaA-crystallin in the transformed human lens epithelial (HLE) B-3 lens epithelial cell line (which expresses low endogenous levels of alphaB-crystallin) led to a nearly complete protection of cell death induced by staurosporine, Fas monoclonal antibody, or the cytokine tumor necrosis factor alpha. To further study the relative protective activities of alphaA- and alphaB-crystallins, we created a cell line derived from alphaA-/-alphaB-/- double knockout mouse lens epithelia by infecting primary cells with Ad12-SV40 hybrid virus. The transformed cell line alphaAalphaBKO1 derived from alphaA/alphaB double knockout cells was transfected with alphaA- or alphaB-crystallin cDNA contained in pCIneo mammalian expression vector. Cells expressing different amounts of either alphaA-crystallin or alphaB-crystallin were isolated. The ability of alphaA- or alphaB-crystallin to confer protection from apoptotic cell death was determined by annexin labeling and flow cytometry of staurosporine- or UVA- treated cells. The results indicate that the anti-apoptotic activity of alphaA-crystallin was two to three-fold higher than that of alphaB-crystallin. Our work suggests that comparing the in vitro annexin labeling of lens epithelial cells is an effective way to measure the protective activity of alphaA- and alphaB-crystallin. Since the expression of alphaA-crystallin is largely restricted to the lens, its greater protective effect against apoptosis suggests that it may play a significant role in protecting lens epithelial cells from stress.

Animals↗

Helix tilt of the M2 transmembrane peptide from influenza A virus: an intrinsic property.

Solid-state NMR has been used to study the influence of lipid bilayer hydrophobic thickness on the tilt of a peptide (M2-TMP) representing the transmembrane portion of the M2 protein from influenza A. Using anisotropic (15)N chemical shifts as orientational constraints, single-site isotopically labeled M2-TMPs were studied in hydrated dioleoylphosphatidylcholine (DOPC) and dimyristoylphosphatidylcholine (DMPC) lipid bilayers oriented between thin glass plates. These chemical shifts provide orientational information for the molecular frame with respect to the magnetic field in the laboratory frame. When modeled as a uniform ideal alpha-helix, M2-TMP has a tilt of 37(+/-3) degrees in DMPC and 33(+/-3) degrees in DOPC with respect to the bilayer normal in these lipid environments. The difference in helix tilt between the two environments appears to be small. This lack of a substantial change in tilt further suggests that significant interactions occur between the helices, as in an oligomeric state, to prevent a change in tilt in thicker lipid bilayers.

Anisotropy↗

Imaging membrane protein helical wheels.

Resonance patterns have been observed in 2D solid-state NMR spectra of the transmembrane segment of M2 protein from Influenza A virus in oriented samples reflecting the helical wheel of this alpha-helix. The center of this pattern uniquely defines the helical tilt with respect to the bilayer normal without a need for resonance assignments. The distribution of resonances from amino acid specific labels around the "PISA wheel" defines the rotational orientation of the helix and yields preliminary site-specific assignments. With assignments high-resolution structural detail, such as differences in tilt and rotational orientation along the helical axis leading to an assessment of helical coiling, can be obtained.

Influenza A virus↗

Transmembrane domain of M2 protein from influenza A virus studied by solid-state (15)N polarization inversion spin exchange at magic angle NMR.

The M2 protein from the influenza A virus forms a proton channel in the virion that is essential for infection. This tetrameric protein appears to form a four-helix bundle spanning the viral membrane. Here the solid-state NMR method, 2D polarization inversion spin exchange at magic angle (PISEMA), has been used to obtain multiple constraints from specifically amino acid-labeled samples. The improvement of spectral resolution from 2D PISEMA over 1D methods and 2D separated local field methods is substantial. The reliability of the method is validated by comparison of anisotropic chemical shift and heteronuclear dipolar interactions from single site labeled samples. The quantitative interpretation of the high-resolution constraints confirms the helix tilt to be within the range of previous experimental determinations (32 degrees -38 degrees ). The binding of the channel inhibitor, amantadine, results in no change in the backbone structure at position Val(27,28), which is thought to be a potential binding site for the inhibitor.

Amino Acid Sequence↗