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Biomedical subjects

B Ding

Publications and source records attributed to B Ding.

At least 37 records · Page 2Linked to original sources

Role of endothelial nitric oxide synthase in endothelial cell migration.

Endothelium-derived nitric oxide (NO) and its precursor L-arginine have been implied to promote angiogenesis, but little is known about the precise mechanism. The inhibition of endogenous NO formation by Nomega-nitro-L-arginine methyl ester (L-NAME) (1 mmol/L) but not its inactive enantiomer D-NAME (1 mmol/L) inhibited endothelial cell sprouting from the scratched edge of the cultured bovine aortic endothelial cell monolayer. Inhibition of endogenous NO release by L-NAME was confirmed by amperometric measurement using an NO-specific electrode. In the modified Boyden chamber, L-NAME (1 mmol/L) significantly inhibited endothelial cell migration, whereas L-NAME did not affect endothelial DNA synthesis as assessed by analysis of [3H]thymidine incorporation. We then examined alteration of endothelial cell adhesion molecule expression after the inhibition of NO by L-NAME in cultured human umbilical vein endothelial cells. In both normoxic and hypoxic conditions, L-NAME (1 mmol/L) inhibited surface expression of integrin alphavbeta3, which is an important integrin facilitating endothelial cell survival and angiogenesis. However, L-NAME did not affect the expression of platelet endothelial cell adhesion molecule-1, intercellular adhesion molecule-1, vascular endothelial adhesion molecule-1, gap junction protein connexin 43, and VE-cadherin, which have been reported to potentially affect angiogenesis. In summary, inhibition of endothelial NO synthase by L-NAME attenuated endothelial cell migration but not proliferation in vitro. Furthermore, endogenous endothelium-derived NO maintains the functional expression of integrin alphavbeta3, a mediator for endothelial migration, survival, and angiogenesis. Endothelium-derived NO, thus, may play an important role in mediating angiogenesis by supporting endothelial cell migration, at least partly, via an integrin-dependent mechanism.

Animals↗

Target selectivity of MAPK phosphorothioate antisense ODN on p42/p44, p38 MAPK, and JNK protein expression and its inhibitory effect on VSMC DNA synthesis.

AIM: To analyze the target selective and sequence-specific inhibitory effect of mitogen-activated protein kinase (MAPK) phosphorothioate antisense oligodeoxynucleotides (ODN) on p42/p44, p38 MAPK, c-jun NH2-terminal protein kinases (JNK) protein expression, and DNA synthesis in vascular smooth muscle cell (VSMC). METHODS: Using a phosphorothioate-protected 17-mer antisense MAPK ODN directed against the initiation of translation sites of the p42/p44 MAPK isoforms by liposomal transfection to deplete cultured rat, rabbit, and fetal calf VSMC MAP kinases. The 17-mer sense and random sequence MAPK ODN were used as controls. After liposomal transfection, cells were exposed to 20% serum for 24 h, and then harvested in lysis buffer. P42/p44, p38 MAPK, and p46/p58 JNK protein expression were measured by Western blot. DNA synthesis was measured by [3H]thymidine incorporation. RESULTS: Treatment with MAPK antisense ODN (0.1-0.8 mumol.L-1) for 48 h reduced phosphored p42/p44 MAPK protein expression but without effect on p38 MAPK and JNK expression, and inhibited cultured rat, rabbit, and fetal calf VSMC [3H]thymidine incorporation stimulated by 20% serum in a concentration-dependent manner. CONCLUSION: The MAPK antisense ODN target-selectively and sequence-specifically reduces the p42/p44 MAPK protein expression and concentration-dependently inhibits proliferation of rat, rabbit and fetal calf VSMC.

Animals↗

[The relationship among human, gorilla, chimpanzee and orangutan].

The phylogeny of hominoid is still an open question. The contrary point is which relationship is more closed related between human and gorilla and human and chimpanzee. Tyrosinase is the essential enzyme in melanogenesis. The mutation of tyrosinase gene causes albinism. The five exons of tyrosinase gene were sequenced for gorilla, chimpanzee, orangutan and gibbon in hominoid. Combined with the human tyrosinase gene sequence, the gene tree was constructed using parsimony method. The results show that the relationship between human and gorilla is more closed related than between human and chimpanzee.

Animals↗

Inhibitory effect of MAP kinase antisense oligonucleotide on angiotensin II-induced c-myc gene expression and proliferation of rat cardiac fibroblast.

AIM: To investigate the inhibitory effect of down-regulating mitogen activated protein kinase (MAPK) on c-myc gene expression and further on cardiac fibroblast proliferation. METHODS: Cultured neonatal rat cardiac fibroblasts was pretreated with a phosphorothioate-protected 17-mer antisense MAPK oligodeoxynucleotide (ODN) directed against the initiation of translation sites of the p42 and p44 MAPK isoforms by liposomal transfection. A 17-mer sense and mismatch sequence MAPK ODN were used as controls. After liposomal transfecting, cells were exposed to angiotensin II (Ang II) 10 nmol.L-1 for 5 min and then harvested in lysis buffer. MAPK activity was measured by Western blot and P-81 phosphocellulose filter paper method by using [gamma-32P]ATP and myelin basic protein as substrates. c-myc mRNA expression stimulated by Ang II for 30 min was measured by Northern blot. DNA synthesis and collagen protein synthesis induced by Ang II for 24 h were measured by [3H]thymidine incorporation and [3H]Proline incorporation, respectively. RESULTS: Antisense ODN 0.2 mumol.L-1 reduced Ang II-induced MAPK activities by 72%, MAPK protein expression by 80%, and suppressed c-myc mRNA expression by 97%, respectively. [3H]thymidine incorporation and [3H]proline incorporation in Ang II-induced cardiac fibroblast were inhibited by 59% and 58%, respectively. CONCLUSION: A 17-mer MAPK antisense oligonucleotide directed againsts the initiation of translation sites of MAPK could specifically inhibit Ang II-stimulated cultured neonatal rat cardiac fibroblast proliferation through down-regulating MAPK activity and further depleting c-myc mRNA expression.

Angiotensin II↗

[Inhibitory effects of antisense oligonucleotides targeting mitogen-activated protein kinase (MAPK) mRNA on neonatal rat cardiac fibroblast proliferation induced by Ang II and EGF].

In the present study, the antisense oligodeoxynucleotide (ODN) approach was used to investigate whether mitogen-activated protein kinase (MAPK) is necessary for the proliferation response in neonatal rat cardiac fibroblast (FB) induced by angiotensin II (AngII) or epidermal growth factor (EGF), the proximal cytosolic signal transduction pathways which are quite different processes. A phosphorothioate-protected 17-mer directed against the initiation of translation sites P42 MAPK mRNA was introduced into FB by liposomal transfection. The results showed that (1) after a 24 h treatment with AngII or EGF (all 10(-8) mol/L), the FB numbers were increased by 39% and 68%, while the rate of DNA synthesis increased by 60% and 102%, respectively. (2) Following 5 min or 10 min stimulation with AngII or EGF, MAPK activity ([gamma-32P] ATP incorporation) increased by 202% and 305%, and phospho-MAPK protein content increased by 545% and 646% correspondingly. (3) As compared with lipofectin + AngII/EGF control, after pretreatment with MAPK antisense ODN, the MAPK protein expression was inhibited significantly; the rate of DNA synthesis of FB induced by AngII or EGF was reduced by 53% and 46%, cell numbers by 38% and 44%, respectively. Meanwhile, MAPK activity was decreased by 74.2% and 65.9%, phospho-MAPK protein content by 85% and 90%. The sense or random ODN has not much effect on them. Consequently, it can be concluded that (1) MAPK activity is essential in the event of involving FB proliferation response reduced by AngII and EGF, and (2) FB proliferation response could be inhibited by the MAPK antisense ODN through depletion of MAPK.

Angiotensin II↗

Developmental regulation of intercellular protein trafficking through plasmodesmata in tobacco leaf epidermis

Plasmodesmata mediate direct cell-to-cell communication in plants. One of their significant features is that primary plasmodesmata formed at the time of cytokinesis often undergo structural modifications, by the de novo addition of cytoplasmic strands across cell walls, to become complex secondary plasmodesmata during plant development. Whether such modifications allow plasmodesmata to gain special transport functions has been an outstanding issue in plant biology. Here we present data showing that the cucumber mosaic virus 3a movement protein (MP):green fluorescent protein (GFP) fusion was not targeted to primary plasmodesmata in the epidermis of young or mature leaves in transgenic tobacco (Nicotiana tabacum) plants constitutively expressing the 3a:GFP fusion gene. Furthermore, the cucumber mosaic virus 3a MP:GFP fusion protein produced in planta by biolistic bombardment of the 3a:GFP fusion gene did not traffic between cells interconnected by primary plasmodesmata in the epidermis of a young leaf. In contrast, the 3a MP:GFP was targeted to complex secondary plasmodesmata and trafficked from cell to cell when a leaf reached a certain developmental stage. These data provide the first experimental evidence, to our knowledge, that primary and complex secondary plasmodesmata have different protein-trafficking functions and suggest that complex secondary plasmodesmata may be formed to traffic specific macromolecules that are important for certain stages of leaf development.

Journal Article↗

Effect of antisense mitogen-activated protein kinase oligonucleotides on rat vascular smooth muscle cell proliferation induced by EGF in vitro.

AIM: To study the preventive effect of down-regulating mitogen-activated protein kinase (MAPK) on vascular smooth muscle cell (VSMC) proliferation. METHODS: Cultured rat VSMC was pretreated with a phosphorothioate-protected 17-mer antisense MAPK oligodeoxynucleotides (ODN) directed against the initiation of translation sites of the p42- and p44-MAPK isoforms by liposomal transfection. A 17-mer sense and a random sequence MAPK ODN were used as control. After liposomal transfection, cells were exposed to epidermal growth factor (EGF) 1 nmol.L-1 for 10 min and then harvested in lysis buffer. MAPK activity was measured by Western blot and P-81 phosphocellulose filter papers method by using [gamma-32P] ATP and myelin basic protein as substrate. DNA synthesis was measured by [3H]thymidine incorporation. RESULTS: Antisense ODN 0.2 mumol.L-1 reduced EGF-induced MAPK activities by 84%, and inhibited VSMC [3H]thymidine incorporation stimulated by EGF. CONCLUSION: A 17-mer MAPK antisense oligonucleotide directed against the initiation of translation sites of the p44- and p42-MAPK inhibited EGF-stimulated rat VSMC proliferation.

Animals↗

Stapled anastomosis in esophageal resections with Chinese staplers: a retrospective study of 1965 consecutive cases.

OBJECTIVES: To investigate the safety and efficacy of mechanical anastomosis with Chinese staplers in the surgical treatment of esophageal carcinoma and carcinoma of gastric cardia in order to find out an alternative effective anastomotic technique to hand-sewn method. METHODS: From August 1980 to April 1996, there were totally 1264 cases of esophageal carcinoma and 701 cases of carcinoma of gastric cardia receiving esophagogastric anastomosis with Chinese staplers combined with telescope suturing of seromuscular layers after resection of tumors, with age ranging from 28 years to 81 years and a man to woman ratio of 4:1 (1572/393). The anastomosis was performed at the cervical region in 44 patients, and intrathoracically in 1921. Our technical essential points also included fixation of the gastric substitute to the thoracic apex or mediastinum with 3-4 stitches to relieve the anastomotic tension. RESULTS: Compared with the reported postoperative leakage rate from 2%-4% in China and 4.2%-12.3% abroad, our techniques reduced the total leakage rate to 0.8%, that is, cervical leakage rate was 11.4% (5/44), and intrathoracic leakage rate 0.57% (11/1921). The intrathoracic leakage rate was 0.99% (8/808) for the first 8 years, and 0.27% for the following 8 years. There was no leakage (0/350) in the last 3 years. There anastomotic stricture occurred in 98 patients (4.99%) which could be relieved by Bougie or balloon dilatation. The total operative mortality was reduced to 0.76%. CONCLUSIONS: Mechanical anastomosis with Chinese staplers combined with telescope suturing should be an effective method to prevent the occurrence of anastomotic leakage after esophageal resections.

Adult↗

[Effects of simulated weightlessness and irradiation on metabolism of rat myocardial cells cultured in vitro].

To investigate the changes of the metabolism of rat myocardiac cells cultured in vitro under simulated weightlessness and gamma-irradiation, rat myocardiac cells were rotated on a horizontal clinostat, and irradiated with 2Gy 60Co gamma-ray. The results showed: (1) after irradiation, the LDH activity and SOD concentrations showed a significant increase, and the MDA concentration also increased. (2) After irradiation, LDH activity increased 60% on the 3rd day, and SOD concentration almost doubled on the first day. (2) MDA concentration also increased but it reduced to normal after the 3rd day. (3) Simple rotation on the clinostat showed no effect on the parameter, but there was a synergistic effect when it was combined with gamma-irradiation.

Animals↗

Effects of simulated weightlessness and gamma-irradiation on myocardial cells and osteoblasts.

The effects of simulated weightlessness and gamma-irradiation on the structure and function of the myocardial cells and osteoblasts were investigated with a rotating clinostat and 2 Gy 60Co gamma-irradiation. The results showed: (1) Under the simulated weightlessness (SWL), the diameter of the myocardial cells decreased 40%. And the long-short diameter proportion decreased 70%, (P < 0.01); SWL affected the cell skeleton and the distribution of microfilament became ununiform, the orientation was unclear; SWL had significant effects on osteoblast disintegration and proliferation. The disintegration function decreased and the proliferation process was inhibited; (2) 2 Gy 60Co gamma-ray irradiation had significant effects on Lactate Dehydrogenase (LDH) activity and Superoxide Dismutase (SOD), Malonaldehyde (MDA) content in the myocardial cells, (P < 0.05) (5) A synergistic effect was observed between irradiation and SWL.

Animals↗

Intercellular protein trafficking through plasmodesmata.

During plant morphogenesis, groups of cells differentiate to form specialized tissues possessing distinct structures and functions. Cell specialization is a result of specific gene expression at the individual cell level. Coordination of differential gene expression among cells requires that cells communicate with one another. Plasmodesmata provide a cytoplasmic pathway for direct intercellular communication. Recent discoveries that macromolecules such as transcription factors, viral proteins, and plant defense-related proteins can traffic through plasmodesmata suggest that intercellular protein trafficking is potentially an important means to regulate plant developmental processes, physiological functions, plant-pathogen interactions, and plant defense reactions. Thus, elucidating the specific functions and mechanisms of intercellular protein trafficking has broad implications in understanding how a plant develops and functions at the molecular level. This review is to provide an update on this rapidly developing area of plant biology, with emphasis on the discussion of possible mechanisms underlying intercellular protein trafficking.

Biological Transport↗

Cell-to-cell movement of potato spindle tuber viroid.

Viroids are non-translatable, autonomously replicating circular RNAs that infect only plants. An important component of the viroid infection process is cell-to-cell movement; however, there is virtually no information available about the pathways and mechanisms of this process. In this study, potato spindle tuber viroid (PSTVd) has been used as a model system to investigate the mechanism of viroid cell-to-cell transport. Infectious RNA transcripts were produced from PSTVd cDNA clones in vitro, labeled with the nucleotide-specific fluorescent dye TOTO-1 iodide, and used for micro-injection. When injected into symplasmically isolated guard cells of mature tomato and tobacco leaves, PSTVd remained in the injected cells; in contrast, PSTVd injected into symplasmically connected mesophyll cells moved rapidly from cell to cell. A 1400 nt RNA containing only vector sequences was unable to move out of the injected mesophyll cells, but when PSTVd was fused to this transcript, the fusion RNA moved from cell to cell. At the DNA level, PSTVd cDNA also appears able to mediate cell-to-cell movement of plasmid DNA. These data indicate that (i) PSTVd moves from cell to cell via plasmodesmata, and (ii) this movement may be mediated by a specific sequence or structural motif.

Biological Transport↗

[Effects of simulated weightlessness and overweight on the growth of osteoblast cultured in vitro].

A special rotator designed for this experiment was used to simulate the gravitational conditions. 3 groups of osteoblast cells were cultured under simulated hypogravity, normal (1 g) or hypergravity acceleratively (3 g) for 7 d. Changes of cell shape and speed of cell division were observed. The results showed that cells cultured under simulated hypogravity became round and cells divided slowly as compared with 1g group. While cells cultured under 3 g divided more actively and many growth spots appeared in the culture bottle.

Biophysical Phenomena↗

Viral RNA trafficking is inhibited in replicase-mediated resistant transgenic tobacco plants.

Transgenic tobacco (Nicotiana tabacum cv. Turkish Samsun NN) plants expressing a truncated replicase gene sequence from RNA-2 of strain Fny of cucumber mosaic virus (CMV) are resistant to systemic CMV disease. This is due to suppression of virus replication and cell-to-cell movement in the inoculated leaves of these plants. In this study, microinjection protocols were used to directly examine cell-to-cell trafficking of CMV viral RNA in these resistant plants. CMV RNA fluorescently labeled with the nucleotide-specific TOTO-1 iodide dye, when coinjected with unlabeled CMV 3a movement protein (MP), moved rapidly into the surrounding mesophyll cells in mature tobacco leaves of vector control and untransformed plants. Such trafficking required the presence of functional CMV 3a MP. In contrast, coinjection of CMV 3a MP and CMV TOTO-RNA failed to move in transgenic resistant plants expressing the CMV truncated replicase gene. Furthermore, coinjection of 9.4-kDa fluorescein-conjugated dextran (F-dextran) along with unlabeled CMV 3a MP resulted in cell-to-cell movement of the F-dextran in control plants, but not in the transgenic plants. Similar results were obtained with viral RNA when the 30-kDa MP of tobacco mosaic virus (TMV) was coinjected with TMV TOTO-RNA into replicase-resistant transgenic tobacco expressing the 54-kDa gene sequence of TMV. However, in these transgenic plants, the TMV-MP was still capable of mediating cell-to-cell movement of itself and the 9.4-kDa F-dextran. These results indicate that an inhibition of cell-to-cell viral RNA trafficking is correlated with replicase-mediated resistance. This raises the possibility that the RNA-2 product is potentially involved in the regulation of cell-to-cell movement of viral infectious material during CMV replication.

Cell Communication↗

Selective trafficking of KNOTTED1 homeodomain protein and its mRNA through plasmodesmata.

Plasmodesmata are intercellular organelles in plants that establish cytoplasmic continuity between neighboring cells. Microinjection studies showed that plasmodesmata facilitate the cell-to-cell transport of a plant-encoded transcription factor, KNOTTED1 (KN1). KN1 can also mediate the selective plasmodesmal trafficking of kn1 sense RNA. The emerging picture of plant development suggests that cell fate is determined at least in part by supracellular controls responding to cellular position as well as lineage. One of the mechanisms that enables the necessary intercellular communication appears to involve transfer of informational molecules (proteins and RNA) through plasmodesmata.

Amino Acid Sequence↗

Cucumber mosaic virus 3a protein potentiates cell-to-cell trafficking of CMV RNA in tobacco plants.

Contrary to a previous report, electron microscopic studies on the Fny strain of cucumber mosaic virus (CMV)-infected tobacco tissues revealed that plasmodesmata were not structurally modified during CMV infection, nor were virions ever observed in plasmodesmata connecting infected cells. To further explore the basis of CMV infection, experiments were performed on the CMV 3a ORF. The 3a protein of CMV was expressed in and purified from Escherichia coli. The purified protein was labeled with fluorescein isothiocyanate (FITC) and subsequently microinjected into mesophyll cells of mature leaves of Nicotiana tabacum cv. Turkish Samsun NN. Within a brief period (as little as 1 sec), the microinjected FITC-labeled CMV 3a protein moved into neighboring cells. Co-injection of unlabeled CMV 3a protein with 9.4-kDa fluorescein-conjugated dextran (F-dextran) resulted in extensive cell-to-cell movement (diffusion) of the F-dextran, indicating that the 3a protein can interact with and dilate plasmodesmata. Furthermore, co-injection of unlabeled 3a protein with fluorescently labeled infectious CMV RNA molecules resulted in rapid and extensive cell-to-cell transport. In contrast, a mutant form of the 3a protein was unable to traffic from cell to cell, to increase the size exclusion limit of plasmodesmata, or to potentiate cell-to-cell trafficking of CMV RNA molecules. Microinjection studies performed on transgenic tobacco plants expressing the CMV 3a protein indicated that fluorescently labeled CMV RNA moved out of the target cell into the surrounding mesophyll tissue. In addition, expression of the CMV 3a protein also potentiated the cell-to-cell movement of 9.4-kDa F-dextran. Collectively, these results provide direct experimental evidence that the CMV 3a protein functions as the movement protein of CMV. These findings are consistent with the hypothesis that CMV moves from cell-to-cell in the form of a ribonucleoprotein complex.

Base Sequence↗

Study on the antimutagenic effect of pine needle extract.

The micronucleus test and sister-chromatic exchange (SCE) test were used to research the antimutagenic effect of pine needle extract. The results showed that the mutagenic effect of cyclophosphamide (CP) was inhibited by the pine needle extract. The micronucleus frequencies (MNF) of mouse bone marrow and human lymphocytes from peripheral blood were decreased with the effect of the extract (the dose was 2000 mg/kg or 5 mg/ml); the frequency of SCE in human lymphocytes was also reduced significantly, which indicated that the MNF and the SCE frequencies were negatively correlated with the dose of pine needle extract (r = -0.9782, -0.9587, -0.9765, respectively). This suggested that the pine needle extract was an effective antimutagen and it is important to choose the proper doses of pine needle extract for antitumor effect.

Adult↗

[P-NMR analysis of the hepatic cell energetic metabolism in tumor-bearing mice by moxibustion treatment].

The new technique, NMR (nuclear magnetic resonance) spectrum analysis was used in this research to measure the state of energetic metabolism of hepatic cells at the organic level. The experimental results demonstrated that moxibustion on Guanyuan (CV4) point could remarkably increase the ATP molecules in the hepatic cells, significantly raise the thermodynamic reserve and phosphate potential of the hepatic cells, so as to enhance the functional activities of liver. It is discussed here of the mechanism of anti-tumor by moxibustion treatment and of the theory of warming the kidney and enhancing the Yang to tonify to energetic Qi by moxibustion on Guanyuan point.

Animals↗