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Biomedical subjects

S H Lin

Publications and source records attributed to S H Lin.

At least 127 records · Page 7Linked to original sources

Energy metabolism in exertional heat stroke with acute renal failure.

BACKGROUND: Heat stroke is the clinical syndrome produced when the body overheats. It can develop in the army and in healthy civilian populations who physically exert themselves in a hot and humid environment during the summer, and may result in a significant number of heat-related deaths. Since strenuous exercise is one of the major exacerbating and precipitating factors, the incidence of exertional heat stroke (ExHS) is high among military personnel undergoing military training. Furthermore, acute renal failure (ARF) may occur in 25% of patients with ExHS and it can cause metabolic alterations that affect amino acid, carbohydrate, and lipid metabolism. Adequate nutritional support is essential for the treatment of ARF. The most important determinant of nutrient requirement in ARF is the degree of hypercatabolism caused by disease associated with renal function impairment. Indirect calorimetry (IDCM) is the method by which metabolic rate is estimated from measurements of oxygen consumption and carbon dioxide production. It can also provide information about the type and rate of substrate utilization in vivo (protein, carbohydrate, and fat). METHOD: The present clinical study is a comprehensive analysis of metabolic changes which includes energy expenditure (EE) and substrate utilization in 10 patients with ExHS with ARF and 10 patients with exertional heat exhaustion (ExHE) by the use of IDCM. RESULTS: Serum urea nitrogen, creatinine, peak creatine phosphokinase levels and heart rate were significantly increased in ExHS patients during ARF stage. Serum albumin levels were significantly decreased in ExHS patients with ARF. Resting energy expenditure (REE) was increased in patients with ExHS induced ARF and was not correlated with body temperature (r = 0.421). The average increase in EE during ARF stage was about 24%. The respiratory quotient in patients with ExHS induced ARF was lower than that in normal subjects and also in patients with ExHE. Urea nitrogen appearance rate increased in patients with ExHS induced ARF and in patients with ExHE without ARF. The percentage of total REE derived from fat in ExHS induced ARF and ExHE increased, while in patients with ExHS induced ARF and ExHE, the percentages of total REE derived from carbohydrate and protein were lower than those in control subjects. CONCLUSIONS: The present results suggest that patients with exertional heat injury (both ExHS and ExHE) have hypermetabolism during the acute stage. Furthermore, patients with exertional heat-induced rhabdomyolysis and ARF have a moderately higher hypermetabolism than those without ARF during the acute stage. We believe that this mainly reflects a more pronounced reduction of the vital cell mass (muscle) in relation to body weight, and/or a compromised substrate oxidation in ExHS with ARF. Whether or not this subgroup of patients will require a higher energy/caloric support merits further investigation.

Acute Kidney Injury↗

C-met proto-oncogene expression in benign and malignant human renal tissues.

PURPOSE: Hepatocyte growth factor/scatter factor (HGF/SF) is a potent mitogen to renal epithelial cells in vitro and in vivo. HGF/SF signals through its receptor which is coded by the c-met proto-oncogene. We hypothesized that altered expression of the HGF/SF receptor, c-met, may be involved in the pathogenesis of certain renal cell carcinomas. Our objectives were to 1) assess the presence and localization of c-met protein in benign and malignant human renal tissues, and 2) correlate the presence of c-met protein with renal carcinoma histological subtype, tumor stage and tumor grade. MATERIALS AND METHODS: Immunohistochemical analysis of c-met protein was performed in 41 normal and malignant human renal samples. RESULTS: c-met Immunostaining was detected in the normal kidney tissue in all 41 samples. In the normal kidney c-met immunostaining was limited to the cell membrane and/or cytoplasm of epithelial cells in specific tubular segments, including the proximal convoluted tubule, thin and thick limbs of the loop of Henle, and the collecting duct. The glomeruli, distal convoluted tubule and stroma were consistently negative for c-met staining. c-met Immunostaining was detected in 68% of renal cell carcinomas and was more common in higher nuclear grade cancers (p < 0.034). CONCLUSIONS: The c-met receptor is present in specific tubular segments in the normal kidney and is frequently expressed in higher nuclear grade renal cancers, suggesting a role in renal carcinoma progression. Future studies should evaluate the biological significance of the HGF/ SF-c-met pathway in normal renal physiology, and renal cancer growth and progression.

Carcinoma, Renal Cell↗

Control of excretion of potassium: lessons from studies during prolonged total fasting in human subjects.

A deficit of K+ of close to 300 mmol develops in the first 2 wk of fasting, but little further excretion of K+ occurs, despite high levels of aldosterone and the delivery of ketoacid anions that are not reabsorbed in the distal nephron. Our purpose was to evaluate how aldosterone could have primarily NaCl-retaining, rather than kaliuretic, properties in this setting. To evaluate the role of distal delivery of Na+, four fasted subjects received an acute infusion of NaCl to induce a natriuresis. To assess the role of distal delivery of HCO3-, five fasted subjects were given an infusion containing NaHCO3. The natriuresis induced by an infusion of NaCl caused only a small rise in the rate of excretion of K+ (0.8 +/- 0.1 to 1.9 +/- 0.3 mmol/h); in contrast, when HCO3- replaced Cl- in the infusate, K+ excretion rose to 8.3 +/- 2.2 mmol/h, despite little excretion of HCO3- (urine, pH 5.8) and similar rates of excretion of Na+. The transtubular K+ concentration gradient was 19 +/- 3 with HCO3- and 6 +/- 2 with NaCl. We conclude that the infusion of NaHCO3 led to an increase in K+ excretion, likely reflecting an increased rate of distal K+ secretion. With a low distal delivery of HCO3-, aldosterone acts as a NaCl-retaining, rather than a kaliuretic, hormone.

Adult↗

Genotypic characterization and multivariate survival analysis of chronic lymphocytic leukemia in Taiwan.

In Taiwan, as in other areas of Asia, the incidence of chronic lymphocytic leukemia (CLL) is low. A retrospective analysis was conducted to elucidate the clinicopathologic features of CLL patients in Taiwan. Of the 47 cases of CLL enrolled in this study, 45 were immunophenotyped as B-CLL; the other 2 were T-CLL. It was found that the lower the Binet and Rai stages of the B-CLL, the longer patients survive (p = 0.0131 and 0.0142, respectively). Univariate analysis showed that fatigue, splenomegaly, hepatomegaly and anemia are associated with poor survival with p values of 0.0203, 0.0184, 0.0001 and 0.171, respectively. By multivariate analysis with Cox's proportional hazard model, hepatomegaly and decrease in body weight were the two most significant predictors of survival. However, molecular parameters of kappa or lambda immunoglobulin (Ig) gene rearrangement or double allele rearrangement of Ig gene did not significantly increase the predictability of the prognosis.

Adult↗

Application of rearrangements of T cell receptor gene in the diagnosis of mediastinal T-lymphoblastic lymphoma: a case report.

The cytologic diagnosis of lymphoid cells in pleural effusion is not readily apparent. The atypical lymphocytes in reactive process or viral infection may mimic immature lymphoblasts in lymphoblastic lymphoma. Therefore, an objective and reliable method to identify malignant lymphoid cells is important. Here we reported the application of T cell receptor (TCR) gene analysis, together with cytomorphology and immunophenotypic studies, to establish the diagnosis of T-lymphoblastic lymphoma in a 20-year-old female who presented with a mediastinal tumor and pleural effusion. The diagnosis of malignant lymphoma was suspected by cytology and then confirmed by TCR beta chain (TCR beta) gene rearrangement. The rearrangement of TCR beta gene revealed by Southern blot technique implied a T-monoclonal lymphoid population which is most likely malignant. Immunophenotypic studies revealed expression of TdT and T cell antigens indicating a T lymphoblastic lymphoma. As shown in this case, antigen receptor gene analysis can be conducted with a much smaller number of cells to identify a malignant clone among a heterogeneous cell population.

Adult↗

[Chemical burn caused by hydrofluoric acid in Kaohsiung area--a 5-year experience].

Hydrofluoric acid (HF) has been used extensively in industry and laboratory, and also is a common agent for occupational chemical burn. Severe pain and destruction of deep tissue layers occurred when skin was injured by hydrofluoric acid. Some fatal change may happen especially when hydrocalcemia was induced. For presentation of its special character and the use of antidote, we report one outbreak and six individual victims of hydrofluoric acid injury during the previous 5 years in Kaohsiung area. We hope medical personnel could have more accurate management and clinical care for those who are injured by HF, and workers should pay attention to any chemical agents they use to prevent any further injury as a result of careless use of such chemicals.

Adult↗

The effects of ursodeoxycholic acid in patients with severe obstructive jaundice after drainage procedure.

BACKGROUND: The aim of this study is to evaluate the therapeutic effect of ursodeoxycholic acid (UDCA) for patients with severe obstructive jaundice after drainage procedure. METHODS: From September 1993 to December 1994, patients admitted with severe obstructive jaundice (serum bilirubin > 15 mg/dl) and successful drainage were enrolled into our study. They were randomly divided into two groups to receive UDCA 600 mg per day (UDCA group) or a placebo (placebo group) until operation or discharge. Bile drainage amount, clinical symptoms and signs and adverse effects of drugs were recorded daily. Biochemical tests, including albumin, total bilirubin, cholesterol, alanine aminotransferase, aspartate aminotransferase, alkaline phosphatase, gamma-glutamyl transpeptidase and prothrombin time, were checked first, on the third and seventh days, and then two weeks after drainage. RESULTS: Thirty-eight patients (M/F = 36/ 2, mean age 66.6 +/- 6.4 years) completed the study, 18 in the UDCA group and 20 in the placebo group. There were no differences in age, sex, causes of obstructive jaundice or methods of drainage procedure between the UDCA and placebo groups. Improvement in biochemical test results were noted in both groups. However, bile drainage amount and changes in liver biochemical test, especially the decrement of serum bilirubin, were not significantly different between both groups. CONCLUSIONS: UDCA seemed not to benefit patients with severe obstructive jaundice after successful drainage.

Aged↗

Electrophoretic mobility of biological cells in asymmetric electrolyte solutions.

The electrophoretic mobility of a particle covered by a membrane in an a:b electrolyte solution is modeled theoretically. The membrane, which simulates the surface of a biological cell, is ion-penetrable, and carries homogeneously distributed negative fixed charges. An approximate expression for the electrophoretic mobility is derived. Based on the results of numerical simulation, we conclude the following: (1) The absolute Donnan potential increases with the concentration of the fixed charges C0, but decreases with the ionic strength I. (2) The greater the valence of cation alpha, the lower the absolute potential distribution. (3) The greater the C0, the greater the absolute mobility of a particle, magnitude of mu, and the greater the friction coefficient of the membrane phase gamma, the smaller the magnitude of mu. (4) A large I or a large a leads to a small magnitude of mu. (5) The greater the ratio (permittivity of solution/permittivity of membrane phase), the smaller the magnitude of mu. (6) For a large gamma, magnitude of mu decreases with the thickness of membrane d under the condition of constant amount of fixed charges. However, if gamma is sufficiently small, the variation of magnitude of mu as a function of d exhibits a maximum. The classic result of Smoluchowski for the electrophoretic mobility of a rigid particle can be recovered as a limiting case of the present model.

Animals↗

Probing the domain structure of abrin-a by tryptic digestion.

Abrin-a is a potent plant toxin that consists of A and B chains linked by a disulfide bond. The abrin-a A chain (AaTA) has N-glycosidase activity while the abrin-a B chain (AaTB) has galactose-binding activity. By partial tryptic digestion, the domain structure of abrin-a was investigated. Seven tryptic fragments with molecular masses greater than 3500 Da were isolated and characterized. One fragment, designated T-21 and consisting of 153 amino acid residues, contained the major part of the second domain of AaTB and, after cross-linking of T-21 with glutaraldehyde, the reaction product had the same level of hemagglutinating activity as native abrin. When the T-21 fragment was conjugated with AaTA, the conjugate inhibited protein biosynthesis in HeLa cells. This suggests that the T-21 fragment is able to bind specifically to cells; its conjugate facilitates membrane translocation of AaTA into cells and consequently inhibits protein biosynthesis. T-21, with a molecular mass less than AaTB, is therefore a potentially useful substance for the preparation of immunotoxins.

Abrin↗

Suppression of human bladder cancer growth by increased expression of C-CAM1 gene in an orthotopic model.

Recently, we demonstrated that an immunoglobulin-like cell adhesion molecule, C-CAM, acts as a tumor suppressor in prostate cancer. It is known that C-CAM is expressed in many epithelial cell types. In this study, we tested the possibility that C-CAM may also suppress bladder cancer progression. We used an orthotopic tumor model, which provides a relevant organ condition for examining the interaction between primary tumor cells and their microenvironment; this interaction has a critical impact on the behavior of carcinoma. We constructed a recombinant adenovirus expressing C-CAM1 (an isoform of C-CAM) and infected the 253J B-V cell line, a tumorigenic human bladder carcinoma subline. In vitro, C-CAM1 protein was detected in C-CAM1 adenovirus-infected cells but not in antisense control virus-infected cells, and the levels of expression showed dose dependency. When these cells were injected orthotopically in nude mice, we found that the increased expression of C-CAM1 in the 253J B-V cells repressed the growth of 253J B-V-induced tumors. Taken together, these data indicate that C-CAM1 is a potent tumor suppressor in human bladder cancer.

Adenosine Triphosphatases↗

Estimation of the distance change between cysteine-457 and the nucleotide binding site when sodium pump changes conformation from E1 to E2 by fluorescence energy transfer measurements.

The first indication of the size of a conformational change implicated in ion transport by sodium pump has been obtained by measuring the change in efficiency of fluorescence energy transfer between two specific locations on the alpha-subunit. The donor (5'-(iodoacetamido)fluorescein) attaches covalently to cysteine-457, and the acceptor (2'(or 3')-O-(trinitrophenyl)adenosine 5'-triphosphate) binds reversibly to the active site. The acceptor binds nearly 2 orders of magnitude tighter to the Na+ than to the K+ conformation of the enzyme and quenches donor fluorescence more efficiently in the Na+ than in the K+ conformation. The estimated distance between donor and acceptor, assuming random orientation of their emission and absorption dipoles, increases 2.9 +/- 0.6 A when the enzyme changes from the Na+ to the K+ conformation. Stopped-flow measurements of the change in fluorescence energy transfer efficiency with time when the doubly-labeled pump is mixed with Na+ or K+ demonstrate that the donor/acceptor pair reports the change between the E1 and E2 conformations of unphosphorylated enzyme. The observed first-order rate constant for the change in energy transfer efficiency depends sigmoidally on [K+] and inversely on [Na+], and both rate and amplitude data for the change in energy transfer efficiency can be fit with the same values of the rate and ion-dissociation constants as published data for the conformational change between E1 and E2 obtained by singly labeling the enzyme with fluorophores that report changes in protein microenvironment. The prerequisite for successfully measuring the distance change and equating the protein rearrangement with a step in the catalysis-transport cycle is that the donor by itself does not report the conformational change.

Adenosine Triphosphate↗

Antibody binding to a peptide but not the whole protein by recognition of the C-terminal carboxy group.

Antipeptide antibodies have become indispensable tools in modern biochemistry and molecular biology. Unfortunately, not all antipeptide antibodies react with their target proteins. The reasons why certain antipeptide antibodies fail to do so are not always clear, although it is commonly assumed that conformational difference between the peptide antigens and the corresponding sequences in proteins accounts for most failures. Here, we report detailed characterization of an antipeptide mAb which reacted avidly with the peptide antigen but did not react with the same sequence in a protein. ELISA analysis using analogs of the antigen peptide revealed that this mAb did not react with a C-terminus-extended analog of the antigen peptide and reacted poorly with a peptide amide analog of the antigen peptide. These results suggest that the mAb recognizes an epitope including the C-terminal-free carboxyl group of the peptide. This analysis also revealed that the epitope recognized by this mAb was located in the C-terminal pentapeptide, RY-IRS. Four amino acid side chains (R,I,R, and S) in this pentapeptide were shown by alanine-scanning to be critical for antibody recognition. Analysis of the polyclonal antisera raised against this peptide revealed that antibodies reacting with this unique carboxyl-containing epitope are most abundant. This unexpected finding has since been shown in several other cases in this laboratory, suggesting that generation of antibodies that recognize carboxyl-containing artificial epitopes may be rather common. we also found that the use of a peptide amide (instead of peptide acid) antigen did not prevent a similar problem; in this case, the C-terminal amide became part of the epitope. Based on these findings, we suggest a method for enhancing the probability of isolating protein-reactive mAbs.

Amino Acid Sequence↗

A universal tag for recombinant proteins.

Incorporation of tags into recombinant proteins can facilitate their identification and purification. In addition, these tags can also be used to monitor the trafficking or localization of the recombinant proteins inside the cells. Several such tags have been developed. However, the lengths of these tags make it cumber-some to incorporate them into the desired proteins. Typically, one must subclone the desired cDNA into a plasmid containing the tag sequence at a suitable restriction site or ligate a synthetic oligonucleotide containing the tag sequence at a suitable restriction site in the cDNA of the desired protein. These manipulations can be avoided, if one uses a short peptide tag that can be incorporated by PCR. We show here that a short peptide tag, RYIRS can be easily incorporated at the C termini of recombinant proteins by PCR. We also showed that by using a mAb specific for this peptide sequence, the tagged proteins could be easily detected in Western blot analysis, immunofluorescence staining, and immunoprecipitation. The interactions between this tag sequence and the mAb have been well characterized. One can take advantage of this information and control the reactivities between the tagged proteins and the mAb by varying the lengths of the peptide tags. Furthermore, we showed that this tag can be used to monitor whether a recombinant protein is properly translated and terminated because the interactions between this tag sequence and the mAb requires that the tag be at the C-terminus of the protein.

Amino Acid Sequence↗

Identification of a new isoform of cell-cell adhesion molecule 105 (C-CAM), C-CAM4: a secretory protein with only one Ig domain.

A series of Southern blot hybridization experiments using probes derived from different regions of the rat liver cell-cell adhesion molecule 105 (C-CAM) cDNA revealed the presence of a 9.6 kb EcoRI genomic fragment that seemed to encode a unique C-CAM isoform. An RNase protection study showed that this c-CAM transcript was expressed in placenta, spleen, lung and large intestine. In contrast, the other C-CAM isoforms, C-CAM1 and C-CAM2, are expressed in liver and small intestine. This result also suggests that the new isoform, which we named C-CAM4, was indeed encoded by a new C-CAM gene. A rat placenta cDNA library was then screened and the full-length cDNA coding for C-CAM4 was isolated. The deduced protein contained 142 amino acids and had a calculated molecular mass of 15 kDa. C-CAM4 was composed of a leader sequence and the first V-like Ig domain typical of C-CAM-family proteins. However, C-CAM4 lacked the C-like Ig domains, the transmembrane domain, and the cytoplasmic domain found in other C-CAM isoforms. Thus, C-CAM4 is different from the other known C-CAMs in that it is a secreted protein. We have previously shown that the first Ig domain of C-CAM1 is crucial for its adhesion function. The V-like Ig domain of C-CAM4 had 92% and 89% sequence identity with the corresponding regions of C-CAM1 and C-cam2 respectively. Together these results suggest that C-CAM4 may play a role in regulating the function of other C-CAM family proteins.

Adenosine Triphosphatases↗

The role of surface loops (residues 204-216 and 627-646) in the motor function of the myosin head.

A characteristic feature of all myosins is the presence of two sequences which despite considerable variations in length and composition can be aligned with loops 1 (residues 204-216) and 2 (residues 627-646) in the chicken myosin-head heavy chain sequence. Recently, an intriguing hypothesis has been put forth suggesting that diverse performances of myosin motors are achieved through variations in the sequences of loops 1 and 2 [Spudich, J. (1994) Nature (London) 372, 515-518]. Here, we report on the study of the effects of tryptic digestion of these loops on the motor and enzymatic functions of myosin. Tryptic digestions of myosin, which produced heavy meromyosin (HMM) with different percentages of molecules cleaved at both loop 1 and loop 2, resulted in the consistent decrease in the sliding velocity of actin filaments over HMM in the in vitro motility assays, did not affect the Vmax, and increased the Km values for actin-activated ATPase of HMM. Selective cleavage of loop 2 on HMM decreased its affinity for actin but did not change the sliding velocity of actin in the in vitro motility assays. The cleavage of loop 1 and HMM decreased the mean sliding velocity of actin in such assays by almost 50% but did not alter its affinity for HMM. To test for a possible kinetic determinant of the change in motility, 1-N6-ethenoadenosine diphosphate (epsilon-ADP) release from cleaved and uncleaved myosin subfragment 1 (S1) was examined. Tryptic digestion of loop 1 slightly accelerated the release of epsilon-ADP from S1 but did not affect the rate of epsilon-ADP release from acto-S1 complex. Overall, the results of this work support the hypothesis that loop 1 can modulate the motor function of myosin and suggest that such modulation involves a mechanism other than regulation of ADP release from myosin.

Actins↗

Functional expression of a human thrombin receptor in Sf9 insect cells: evidence for an active tethered ligand.

Desensitization of recombinant human thrombin receptors expressed in Sf9 insect cells was compared with native thrombin receptors in megakaryoblast erythroleukaemia (HEL) cells. Addition of thrombin (2 units/ml) or agonist peptide SFLLRN (10 microM) to HEL cells, or to Sf9 cells infected with recombinant baculovirus containing the thrombin receptor cDNA, produced an increase in the free cytosolic Ca2+ concentration ([Ca2+]i) as measured by fura-2. The response in HEL cells was transient, reflecting a rapid homologous desensitization. In contrast, [Ca2+]i in Sf9 cells expressing the thrombin receptor increased rapidly to a peak value that slowly declined, but remained elevated for at least 12 min following stimulation by thrombin. The sustained [Ca2+]i response to thrombin was not reversed by washout of thrombin or by any subsequent addition of hirudin. Pretreatment of Sf9 cells with either thrombin (2 units/ml) or SFLLRN (10 or 50 microM) for 5 min produced a shift in the ED50 for SFLLRN (added 10 min after washout) from 0.4 microM to 20 and 7 microM, respectively. Thus, desensitization of thrombin receptors expressed in Sf9 cells occurs slowly and reflects a decrease in receptor affinity. The sustained [Ca2+]i response in Sf9 cells stimulated by thrombin may reflect continuous activation by the tethered ligand. To test this hypothesis, the effect of protease treatment during the sustained phase of the response was examined. Addition of either aminopeptidase M or thermolysin reversed the sustained response to SFLLRN, but only thermolysin reversed the sustained response to thrombin. Thermolysin had no effect on the change in [Ca2+]i observed following carbachol stimulation of Sf9 cells expressing the M5 muscarinic receptor. Furthermore, following thermolysin treatment, the cells remained responsive to a subsequent application of SFLLRN. These results demonstrate that the tethered ligand remains active for extended periods of time after thrombin stimulation and suggests that further hydrolysis by extracellular proteases may represent an important mechanism of rapid receptor deactivation.

Amino Acid Sequence↗