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Biomedical subjects

W C Lin

Publications and source records attributed to W C Lin.

At least 37 records · Page 2Linked to original sources

The role of gastric muscle relaxation in cytoprotection induced by san-huang-xie-xin-tang in rats.

We examined the mechanism of the protective effect of San-huang-xie-xin-tang (SHXT), a traditional oriental drug, on the gastric mucosa. SHXT, given intraduodenally, inhibited the gastric secretion in pylorus-ligated rats. SHXT, given orally 30 min before the administration of aspirin, HCl-aspirin and ethanol, protected the gastric mucosa from these agent-induced gastric lesions, although it had no effect on the gastric lesions induced by indomethacin and water immersion stress. Oral administration of SHXT increased gastric contents (muscle relaxation) when they were measured 30 min after SHXT administration. SHXT also inhibited carbachol-contracted gastric muscle in vitro. Neither increased gastric contents nor inhibited ethanol lesions of SHXT were observed when these were tested 4 h after SHXT administration. Pretreatment with indomethacin which is a prostaglandin synthesis inhibitor, and N-ethylmaleimide which is a sulfhydryl blocker did not influence either the increased gastric contents or inhibited ethanol lesions of SHXT. These results indicate that gastric muscle relaxation plays an important role in the gastric protective mechanisms of SHXT, and the endogenous prostaglandins and the sulfhydryl compounds are not necessary for the action of SHXT.

Administration, Oral

Mechanisms of gastric antisecretory action of pentylenetetrazol in rats.

The present study investigated the mechanisms of gastric antisecretory action of pentylenetetrazol (PTZ) in pylorus-ligated rats. Pretreatment with indomethacin, phentolamine, propranolol, 6-hydroxydopamine, flunarizine and nifedipine, which were reported to antagonize seizures induced by PTZ, did not influence the gastric antisecretory action of PTZ. In contrast, pentobarbital and phenobarbital reverse the action of PTZ. These results suggest that prostaglandins production, adrenoceptors and calcium entry are not involved in the gastric antisecretory action of PTZ, and that the GABAA receptor complex plays an important role in the action induced by PTZ.

Animals

Design and synthesis of RNA miniduplexes via a synthetic linker approach. 2. Generation of covalently closed, double-stranded cyclic HIV-1 TAR RNA analogs with high Tat-binding affinity.

We recently developed an approach which allows rapid generation of short, double-stranded oligonucleotides whereby one end of the duplex was joined and stabilized by a synthetic linker of specific design (miniduplexes)(6). Model miniduplexes based on the HIV-1 TAR RNA hairpin were shown to be thermodynamically stable and good substrates for binding by the HIV-1 Tat protein which normally bind to natural TAR (6). In this study, we have extended our studies to the design, synthesis and analysis of the binding properties of covalently closed, double-stranded, cyclic RNA miniduplexes. A strategy using automated chemical synthesis and T4 RNA ligase-catalyzed cyclization was employed to generate cyclic oligoribonucleotides. When both ends of a shortened, wild-type TAR RNA stem (9 bp) were covalently linked through either nucleotidic loops (4-6 nt) or synthetic linkers (derivatized from hexaethylene glycol), the resulting cyclic TAR RNA analogs were good substrates for binding by both Tat-derived peptide or full-length Tat protein. Interestingly, the cyclic TAR analogs failed to show any binding if the synthetic linker was reduced in length (e.g. derivatized from triethylene glycol), although such linkers are acceptable in the hairpin-shaped miniduplexes series (6). This implies that RNA conformational changes are required for Tat binding and that these changes are restricted in certain cyclic variants. Our findings suggest that covalently-closed nucleic acid miniduplexes may be useful both to study nucleic acid-protein interactions as well as to provide a basis for therapeutic intervention as transcription decoys.

Amino Acid Sequence

Regulation of V(D)J recombination activator protein RAG-2 by phosphorylation.

Antigen receptor genes are assembled by site-specific DNA rearrangement. The recombination activator genes RAG-1 and RAG-2 are essential for this process, termed V(D)J rearrangement. The activity and stability of the RAG-2 protein have now been shown to be regulated by phosphorylation. In fibroblasts RAG-2 was phosphorylated predominantly at two serine residues, one of which affected RAG-2 activity in vivo. The threonine at residue 490 was phosphorylated by p34cdc2 kinase in vitro; phosphorylation at this site in vivo was associated with rapid degradation of RAG-2. Instability was transferred to chimeric proteins by a 90-residue portion of RAG-2. Mutation of the p34cdc2 phosphorylation site of the tumor suppressor protein p53 conferred a similar phenotype, suggesting that this association between phosphorylation and degradation is a general mechanism.

3T3 Cells

Design and synthesis of RNA miniduplexes via a synthetic linker approach.

Double-stranded oligodeoxyribonucleotides or single-stranded oligoribonucleotides with specific secondary structure have been proposed as potential antagonists to target nucleic acid-binding proteins (the sense approach). A major limitation of this strategy is that these derivatives are generally considered to be too large for pharmaceutical applications. We have developed a synthetic linker approach whereby nucleic acid duplexes of a much smaller size (miniduplexes) can be generated directly from a standard oligonucleotide synthesis. In this approach, four synthetic linkers (derivatized respectively from 1,9-nonanediol, triethylene glycol, 1,3-propanediol, and hexaethylene glycol) of different length and hydrophobicity were designed and incorporated into a model RNA molecule based on the TAR stem-loop structure of HIV-1. Their thermal stabilities were evaluated by measuring denaturation profiles (Tm measurements). These linker-derivatized RNA molecules were then assessed for their ability to bind to either a full-length protein (HIV-1 Tat protein) or a short peptide (Tat-derived peptide) through RNA mobility shift assays. Results from this study indicate that such modified miniduplex structures retain full binding activity relative to that of the wild-type sequence (Kd values), while Tm values were increased by 24-31 degrees C compared to an open duplex of the same length. This system provides a new direction in the use of nucleic acid miniduplexes as a novel class of oligonucleotide analogues for both fundamental research and possible therapeutic applications.

Amino Acid Sequence

Transfer of interleukin 2 receptor genes into squamous cell carcinoma. Modification of tumor cell growth.

OBJECTIVE: Human squamous cell carcinomas of the head and neck (SCCHN) have been shown to express interleukin 2 receptor (IL-2R), and binding of the ligand, IL-2, to the receptor results in tumor growth inhibition in vitro or in vivo in an SCCHN xenograft model in nude mice. To optimize growth inhibitory effects of IL-2, expression of the alpha or gamma chains of IL-2R in SCCHN was experimentally modified by transfection of tumor cells with the respective IL-2R genes or the lacZ gene as control. DESIGN: Using plasmid vectors containing the IL-2R alpha chain gene under the control of a cytomegalovirus promoter or the IL-2R gamma chain gene under the control of a Rous sarcoma virus promoter, the IL-2R genes were transferred by lipofection into SCCHN cell lines. Stable transfectants were selected, cloned by limiting dilution, and clones were compared with the parental cell lines for their sensitivity to the growth-inhibitory effect of IL-2. RESULTS: Transfer of the IL-2R alpha chain gene into SCCHN cells resulted in significant upregulation of expression of the IL-2R alpha chain on tumor cell surface but not in increased tumor growth inhibition by IL-2. In contrast, SCCHN IL-2R gamma transfectants, which expressed IL-2R gamma chain transcripts as confirmed in RNase protection assays, were significantly inhibited in growth and were sensitive to lower concentrations of IL-2 than the parental cell lines. CONCLUSIONS: Genetic modification of IL-2R expression on IL-2R-positive tumor cells in culture significantly alters their proliferative response to IL-2. These observations open a way for developing new strategies for therapy of SCCHN based on direct interactions of IL-2 with its receptor on tumor cells.

Carcinoma, Squamous Cell

Complementation of two related tumour cell classes during experimental metastasis tagged with different histochemical marker genes.

Intercellular complementation during tumour development and metastasis was analysed for two different oncogene (ras or sis) transformants of Balb/c 3T3 cells, tagged with different histochemical marker genes (lacZ or ALP to generate LZEJ or APSI cells, respectively), by localising them after their co-injection with specific double-staining protocols. This model evaluates whether limited progression of each tumour class can be facilitated reciprocally during co-localisation and co-growth in nude mice by taking advantage of the sensitivity of the histochemical marker genes for localising them. After intravenous co-injection of equal numbers of both cells to analyse experimental metastasis, most foci transiently established in the lung for several hours were comprised of only one cell class. However, a significant fraction of foci contained both cell types, as identified in double-stained whole-lung tissues and in lung sections. Evidence was obtained that LZEJ cells increase the survivability and subsequent growth of APSI-containing micrometastases during co-localisation in lung, when compared to APSI cells injected alone. Conversely, APSI cells facilitate expansion of LZEJ cells from micrometastatic foci into overt-metastatic nodules in the lung. These analyses reveal reciprocity during experimental metastasis by two related tumour cell classes derived from the same parental cell.

3T3 Cells

A V(D)J recombinase-inducible B-cell line: role of transcriptional enhancer elements in directing V(D)J recombination.

Rapid analysis of mechanisms that regulate V(D)J recombination has been hampered by the lack of appropriate cell systems that reproduce aspects of normal prelymphocyte physiology in which the recombinase is activated, accessible antigen receptor loci are rearranged, and rearrangement status is fixed by termination of recombinase expression. To generate such a system, we introduced heat shock-inducible V(D)J recombination-activating genes (RAG) 1 and 2 into a recombinationally inert B-cell line. Heat shock treatment of these cells rapidly induced high levels of RAG transcripts and RAG proteins that were accompanied by a parallel induction of V(D)J recombinase activity, strongly suggesting that RAG proteins have a primary role in V(D)J recombination. Within hours after induction, these cells began to rearrange chromosomally integrated V(D)J recombination substrates but only if the substrates contained an active transcriptional enhancer; substrates lacking an enhancer were not efficiently rearranged. Activities necessary to target integrated substrates for rearrangement were provided by two separate lymphoid-specific transcriptional enhancers, as well as an active nonlymphoid enhancer, unequivocally demonstrating that such elements enhance both transcription and V(D)J recombinational accessibility.

Animals

Receptors for interleukin 2 on human squamous cell carcinoma cell lines and tumor in situ.

Several human head and neck squamous carcinoma cell lines were found to bind 125I-labeled or fluorescein-labeled interleukin 2 (IL-2). This binding was inhibited by an excess of cold ligand, IL-2, and by anti-p55 and anti-p70 monoclonal antibodies to the alpha and beta chains, respectively, of the IL-2 receptor (IL-2R). A small number (300/cell) of high-affinity IL-2R (2 x 10(-12) M) and a larger number (> 13,000/cells) of intermediate-affinity IL-2R (3 x 10(-10) M) were present on these tumor cells. By affinity cross-linking, tumor cells were shown to bind 125I-IL-2 to a M(r) 66,000 and 55,000 doublet peptide. The alpha and beta chains of the IL-2R also were detected on the surface of cultured tumor cells using the relevant monoclonal antibodies and flow cytometry. Immunoperoxidase staining with anti-p70 monoclonal antibody confirmed the expression of IL-2R on squamous cell carcinomas of the head and neck in situ. The presence of transcripts for p55/IL-2R-alpha and p70/IL-2R-beta in PCI-1 cells was confirmed by the polymerase chain reaction followed by hybridization to the IL-2R-alpha complementary DNA probe or IL-2R-beta complementary DNA probe, respectively. Our observations demonstrate that intermediate-affinity and high-affinity IL-2Rs are expressed on some human squamous cell carcinomas of the head and neck and that the receptors are functional, because growth of these tumor cell lines can be directly inhibited by exogenously supplied IL-2. The presence of IL-2R on human solid tumors could be important to consider, in addition to immunomodulatory effects of IL-2, in developing optimal therapeutic strategies for the administration of IL-2 to patients with cancer.

Antibodies, Monoclonal

Initial results for automated computational modeling of patient-specific electromagnetic hyperthermia.

Developments in finite-difference time-domain (FD-TD) computational modeling of Maxwell's equations, super-computer technology, and computed tomography (CT) imagery open the possibility of accurate numerical simulation of electromagnetic (EM) wave interactions with specific, complex, biological tissue structures. One application of this technology is in the area of treatment planning for EM hyperthermia. In this paper, we report the first highly automated CT image segmentation and interpolation scheme applied to model patient-specific EM hyperthermia. This novel system is based on sophisticated tools from the artificial intelligence, computer vision, and computer graphics disciplines. It permits CT-based patient-specific hyperthermia models to be constructed without tedious manual contouring on digitizing pads or CRT screens. The system permits in principle near real-time assistance in hyperthermia treatment planning. We apply this system to interpret actual patient CT data, reconstructing a 3-D model of the human thigh from a collection of 29 serial CT images at 10 mm intervals. Then, using FD-TD, we obtain 2-D and 3-D models of EM hyperthermia of this thigh due to a waveguide applicator. We find that different results are obtained from the 2-D and 3-D models, and conclude that full 3-D tissue models are required for future clinical usage.

Computer Simulation

Altered establishment/clearance mechanisms during experimental micrometastasis with live and/or disabled bacterial lacZ-tagged tumor cells.

To study micrometastasis at its earliest stages, the bacterial lacZ marker gene was introduced into human EJ Ha-ras-transformed BALB/c 3T3 cells (LZEJ), followed by their intravenous injection into nude mice. Lung micrometastases were easily identified by blue staining of lacZ-tagged cells minutes/hours after injection, permitting effective evaluation of establishment/clearance mechanisms of LZEJ cells. Different treatments were used to disable LZEJ cells (fixation, irradiation, or mitomycin C) to determine modulation of these processes--although unable to divide, these cells stain for lacZ expression for days after treatment. Fixation-killed cells generated large microfoci (> 13-15 cells/focus) with well-rounded morphologies while live, irradiated, or mitomycin-treated cells generated smaller, irregularly shaped foci (3-7 cells/focus). Fixed-cell foci were cleared more slowly from lungs than the other three classes, even when prefiltered to remove large aggregates. All foci of disabled cells were eventually cleared while a basal level of live-cell foci persisted. Co-injection of fixed and live cells (or preinjection of fixed cells, followed by live cells) resulted in complete clearance of live-cell microfoci; in contrast, preinjection of live cells (then injection of fixed cells) led to survival of live-cell micrometastases. Therefore, altered deformability and/or cell surface interactions of tumor cells modulate the effectiveness of host-clearing mechanisms in the lung and in some situations these altered cells facilitate clearance of live tumor cells that are normally tumor-progressing.

3T3 Cells

Is cadmium genotoxic?

Previous evidence that cadmium(II) causes gene mutations in bacteria or mammalian cells was weak. However, alterations in protocol have recently led to better evidence for its mutagenicity, especially in bacteria. Mutagenicity results may be confounded by tolerance mechanisms. Exposure of DNA in vitro to Cd2+ or to Cd2+ hydrogen peroxide does not result in strand breaks or alkali-labile sites. The fact that bacterial and mammalian cells appear to sustain some type of repairable DNA damage after exposure to Cd2+ suggests that the damage must be caused in an indirect manner. Recently, the ability of cadmium-metallothionein complex to cause DNA strand breaks has been described. Cd2+ also induces a "pro-oxidant state" by causing a depletion of cellular glutathione. This finding is consistent with the role of Cd2+ as a clastogen and may explain its weak mutagenicity at loci which cannot detect complex mutations. Cd2+ can also inhibit DNA repair, and can therefore act synergistically with certain mutagens and, presumably, carcinogens.

Animals

Pure rhabdomyosarcoma of the corpus uteri in a postpartum patient: report of a case and review of the literature.

Pure rhabdomyosarcomas originate in the female genital tract. They are uncommon and most often occur in infancy or childhood as sarcoma botryoides (embryonal rhabdomyosarcoma) which involve the vagina and cervix. Such tumors rarely occur in adults. A pure rhabdomyosarcoma of the uterus that arose in a postpartum patient is described. The pertinent literature is discussed.

Adult

Involvement of central GABAA receptor complex in controlling the basal gastric secretory activity in pylorus-ligated rats.

Effect of compounds related to gamma-aminobutyric acid (GABA) receptor complex on gastric acid secretion was studied to clarify a role of endogenous GABA in controlling the basal secretory activity in pylorus-ligated rats. When pentobarbital, a GABAA stimulant, was given to pylorus-ligated rats after recovery from ether anesthesia, the drug did not modify gastric acid secretion. In contrast, pentobarbital significantly stimulated acid secretion in rats anesthetized with urethane. The basal acid secretion was much higher in the rats without urethane anesthesia. Diazepam, an agonist of the benzodiazepine (BZP) receptor, did not change gastric acid secretion in both the animal groups. Picrotoxin, pentylenetetrazol (PTZ) and bicuculline, which block GABAergic mediation, significantly reduced gastric acid secretion in rats without urethane anesthesia. Moreover, the inhibition by picrotoxin was reversed completely by pentobarbital and moderately by diazepam, while the inhibition by PTZ was partly reversed by pentobarbital but not affected by diazepam. These findings suggest that the central GABAA receptor complex may play a significant role in controlling the basal gastric secretory activity. The direct involvement of the BZP receptor may be small, if any. The stimulatory mechanism through the mediation of GABAA receptor complex appears to be demonstrable when the basal secretory activity is lowered.

Analysis of Variance

Early diagnosis of a vein of Galen aneurysm: report of a case.

Congenital vascular malformation with an aneurysm of the vein of Galen is rarely seen, particularly in the prenatal period. With the advancement of diagnostic techniques such as ultrasonography, we were able to detect a case prenatally and to diagnose it postnatally.

Cerebral Veins

High-resolution analyses of two different classes of tumor cells in situ tagged with alternative histochemical marker genes.

To evaluate interactions of two different tumor cell classes during the establishment of micrometastases at the single-cell level, two different BALB/c 3T3 tumor cell derivatives were established that harbor different histochemical marker genes: bacterial lacZ in a EJ-Harvey ras transformant (abbreviated LZEJ cells) and human placental alkaline phosphatase (ALP) gene in a human c-sis transformant (APSI cells). Several different histochemical staining methods were evaluated, using the distinctiveness of lacZ and ALP gene activities, for identification of these cell classes singly or together in the lung after their intravenous injection into nude mice. LZEJ and APSI cells could readily be distinguished from each other after co-injection by using specific and sequential staining protocols of whole organs or sections; staining of host organ cells was minimized. Co-injection of the two tumor cell classes resulted in similar numbers of homogeneous microfoci in lungs of LZEJ or APSI cells within minutes after injection that persisted for several hours before clearance of most of them. Furthermore, a significant percentage of foci could be identified containing both classes of tumor cells on whole-organ or section evaluations; these cohabiting foci resisted clearance from lungs. Therefore, use of two different histochemical marker genes to tag different classes of tumor cells provides a powerful approach for determining their in situ co-localization, cooperation, or interference with the establishment and development of micrometastases, as well as an opportunity to evaluate gene regulation in situ at the single-cell level.

Alkaline Phosphatase

Ependymin as a substrate for outgrowth of axons from cultured explants of goldfish retina.

Ependymin, a prominent protein of the brain's extracellular fluid (ECF) was previously implicated in the consolidation of memory and in the activity-driven sharpening of the retinotectal projection. Because both these phenomena probably involve the growth and elaboration of appropriate synapses, we have tested whether ependymin can serve as a substrate for the growth of axons from goldfish retinal ganglion cells in a culture assay. Ependymin (Ep), laminin (LAM), polylysine (PL), and Concanavalin A (Con A) were plated on glass coverslips either uniformly or in striped patterns. Ep alone, either soluble or partly polymerized (by dropping calcium concentration and pH), was a good substrate for axonal outgrowth, as good or better than PL and Con A, but not as good as LAM. Neurites grew faster on LAM (71 microns/h) than on Ep (32 microns/h) or on PL (22 microns/h). Fasciculation was low on LAM, intermediate on Ep, and highest on PL. In exclusive side-by-side stripe assays, axons preferred LAM over Ep, but gave weak or no preference for Ep over Con A or PL. With stripes of LAM + Ep alongside pure LAM, the axons preferred the mixture of LAM + Ep. When antibodies to Ep were plated in stripes over continuous Ep substrate, the axons avoided the antibody-blocked stripes and grew on the Ep stripes. Antibodies to Ep did not, however, block growth on laminin substrates, nor did antibodies to LAM block growth on Ep. Dot blots and western blots showed very little cross recognition between the antibodies. Ependymin is a good substrate for neurite outgrowth, which is normally present in ECF, and adhesion to Ep is independent of LAM and possibly additive to it.

Animals