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L Kwock

Publications and source records attributed to L Kwock.

63 records · Page 4Linked to original sources

Altered surface topology and membrane functions of rat thymocytes eluted from nylon wool columns.

(1) Following incubation of thymocytes with nylon wool at 37 degrees C, the eluted cells showed an increase in the number of microvilli per cell and a concominant elongation of the microvilli (0.22 mum versus 1.15 mum. (2) Cyclic adenosine monophosphate (cylic AMP) levels were lowered by 30-50% in nylon wool-treated thymocytes. (3) Nylon wool-treated cells showed an impaired Na+-dependent amino acid transport system (2-aminoisobutyrate) whereas the Na+-independent amino acid transport system (1-aminocyclopentane-1-carboxylate) was unaffected.

Amino Acids↗

Involvement of sulfhydryl groups in the action of the insulin and radiation on thymocyte Na+-dependent amino acid transport.

1,p-Chloromercuribenzene sulfonate concentrations less than 10(-5) M stimulate the uptake by thymocytes of 2-aminoisobutyrate, a non-metabolized amino acid. At concentrations greater than 10(-5) M of this reagent, transport is impaired and cell viability is effected. In contrast, 5,5'-dithiobis-(2-nitrobenzoate) between 10(-4) and 10(-6) M produces only stimulation of 2-aminoisobutyrate uptake after treating for 10 min. 2. Treatment of thymocytes with 10(-4)M 5,5'-dithiobis-(2-nitrobenzoate) reveals at least three categories of reactive SH groups. Titration of the most rapidly reacting category, 4 - 10(7)-7 - 10(7)/cell, activates 2-aminoisobutyrate transport to the same extent as does p-chloromercuribenzene sulfonate. Cells treated with 10(-6) M insulin showed a 30-50% reduction in the number of sulfhydryl groups that could be titrated with 5,5'-dithiobis-(2-nitrobenzoate). In thymocytes treated with 10(-6) M p-chloro(203Hg)mercuribenzene sulfonate, addition of 10(-6) or 10(-9) M insulin before treatment with the sulhydryl reagent again reduces the number of titrable SH groups by 20%. 3. Insulin (10(-10)-10(-6) M) also stimulates 2-aminoisobutyrate uptake, but the effects of insulin and SH blocker are not additive. 4. Insulin, but not p-chloromercuribenzene sulfonate, prevents the impairment of 2-aminoisobutyrate transport caused by gamma-irradiation. Treatment of cells with p-chloromercuribenzene sulfonate prior to irradiation increases the radiation impairment of 2-aminoisobutyrate transport. 5. gamma-irradiation reduces the number of 5,5'-dithiobis-(2-nitrobenzoate) reactive sulfhydryl residues by 37%. 6. A model for the action of insulin and irradiation on 2-aminoisobutyrate transport is presented.

4-Chloromercuribenzenesulfonate↗

Amino acid and sugar transport incells permissively infected with simian virus 40.

Transport of alpha-aminoisobutyric acid and 2-deoxy-D-glucose in African green monkey kidney cells was measured 8 to 100 hr following permissive simian virus 40 infection. No differences in transport were detected during the time-period studies, and no significant differences were seen between the apparent Michaelis-Menten constants of normal and virally infected cells. The absence of transport enhancement in permissive simian virus 40 infection suggests that the augmented transport of viral-transformed cell lines devolves upon altered host genome function.

Aminobutyrates↗

Effects of contrast material on single-volume proton MR spectroscopy.

BACKGROUND AND PURPOSE: Administration of contrast material before proton MR spectroscopy may allow more accurate placement of the volume of interest, particularly in tumors; yet, some data have suggested that contrast material may alter the results of MR spectroscopy. To determine the validity of this contention, we performed pre- and postcontrast MR spectroscopy in patients with brain tumors and compared the results with those obtained from a phantom. METHODS: Ten patients with astrocytomas were examined with single-volume MR spectroscopy before and after administration of contrast material. Voxel placement was identical for all studies. Peak area, peak height, and width at half maximum were measured for N-acetyl aspartate (NAA), creatine (Cr), and choline (Cho) in all studies. A phantom containing a 10 mmol concentration of NAA, Cr, and Cho was prepared in phosphate-buffered saline and mixed with contrast concentrations varying from 0.1 to 1.0 mmol. The phantom was studied by MR spectroscopy with the same parameters as used for the clinical studies. RESULTS: No significant differences were found between the pre- and postcontrast MR spectroscopy studies for the three parameters measured. In phantom studies, there was a significant decline in the Cho peak area and height and an increase in the width at half maximum as the concentration of contrast material increased from 0.1 to 1.0 mmol. NAA and Cr peaks showed no significant changes in peak height or area. CONCLUSION: Contrast material may be administered before clinical MR spectroscopy without affecting its interpretation.

Aspartic Acid↗

Pulmonary microangiography. A comparison of in vitro versus in vivo perfusion techniques in dogs.

Because of a need to correlate pulmonary microvascular changes with physiologic data during lung injury, in vitro and in vivo pulmonary capillary microangiography was performed on normal dogs and those subjected to oleic acid injury and glass bead microembolization. During these studies, no significant differences were found between microangiograms obtained after in vitro and in vivo perfusion techniques. This work therefore suggests that in vitro microangiography yields reliable morphologic information more conveniently than more expensive and difficult in vivo techniques. In vitro pulmonary capillary microangiography can provide reliable structural information which can be correlated with physiologic data.

Angiography↗

Proton MR spectroscopic characteristics of a presumed giant subcortical heterotopia.

A newborn presented with a mass replacing the left cerebral hemisphere. Although the internal signal characteristics of the lesion were suggestive of disorganized gray and white matter, a true neoplasia such as a ganglioglioma could not be totally excluded. Biopsy is not recommended in these cases since the results may be misleading. Proton MR spectroscopy was used; this technique also suggested the hamartomatous nature of the lesion. Based on the clinical course and the imaging features, conservative therapy and observation were undertaken instead of surgery. At 6 months of age, the patient is stable and the lesion is unchanged.

Brain Neoplasms↗

Proton MR spectroscopy of squamous cell carcinoma of the extracranial head and neck: in vitro and in vivo studies.

PURPOSE: To determine the ability of in vitro one-dimensional and two-dimensional proton MR spectroscopy to help differentiate squamous cell carcinoma of the extracranial head and neck from normal tissues and to correlate the in vitro observations with clinical studies. METHODS: In vitro 1-D and 2-D correlated proton MR spectroscopy (11 T) was performed in tissue specimens of squamous cell carcinoma of the head and neck (n = 19), in normal tissue (n = 13), in metastatic cervical lymph nodes (n = 3), and in a squamous cell carcinoma cell line. In vivo 1-D proton MR spectroscopy (1.5 T) was performed in patients with squamous cell carcinoma (n = 7) and in healthy volunteers (n = 7). The ratio of the areas under the choline (Cho) and creatine (Cr) resonances were calculated for 1-D proton MR spectra for the in vitro tissue studies and correlated with the in vivo studies. Data from in vitro 2-D correlated spectroscopy were analyzed for differences in the presence or absence of various metabolites in samples of tumor and normal tissue. Statistical analysis consisted of 2 x 2 factorial repeated measures analysis of variance (ANOVA), discriminate analysis, and chi2 test. RESULTS: The mean in vitro 1-D proton MR spectroscopic Cho/Cr ratio was significantly higher in tumor than in normal tissue. The difference between the mean ratios appeared to increase with increasing echo time. All in vivo tumor Cho/Cr ratios were greater than the calculated mean in vitro tumor ratio, whereas six of the seven volunteers had no detectable Cho and Cr resonances. Two-dimensional correlated MR spectroscopic data revealed that a variety of amino acids have a significantly greater likelihood of being detected in tumor than in normal tissues. CONCLUSIONS: One-dimensional and 2-D proton MR spectroscopy can help differentiate primary squamous cell carcinoma and nodal metastases containing squamous cell carcinoma from normal tissue both in vitro and in vivo. In addition, 2-D spectroscopy can help identify the presence of certain amino acids in squamous cell carcinoma that are not detected in normal tissue.

Carcinoma, Squamous Cell↗