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Biomedical subjects

R H Lin

Publications and source records attributed to R H Lin.

At least 55 records · Page 3Linked to original sources

A dominant human leucocyte antigen DR4-Dw15 restricted mycobacterial 65 kDa antigen-specific T-cell immunity in Chinese patients with rheumatoid arthritis.

The human leucocyte antigen DR4-associated immune responses to Mycobacterium tuberculosis 65 kDa heat shock protein were considered to be relevant to the pathogenesis of rheumatoid arthritis (RA). In the Chinese population, DR4-Dw15 was found to be the predominant DR4 subtype in RA. To further define the immune responses associated with DR4-Dw15 molecules, the proliferative responses of peripheral (PBMC) and synovial mononuclear cells (SFMC) to mycobacterial 65 kDa antigen were evaluated. The SFMC of all of our RA patients responded significantly to 65 kDa mycobacterial antigen. The responses of PBMC to this antigen in RA were much lower than those of SFMC. Our results further indicated that relatively low numbers of peripheral antigen-specific T-cells, but not incompetence of peripheral antigen presenting cells, might be related to the observed low responsiveness to 65 kDa antigen in PBMC of RA patients. Of utmost importance, DR4-Dw15 was proved to be one of the major restrictive molecules in mycobacterial 65 kDa antigen-specific immune responses in Chinese RA patients.

Adult↗

The in vivo effect of lipopolysaccharide on the spontaneous release of transmitter from motor nerve terminals.

1. The in vivo effect of E. coli lipopolysaccharide (LPS) on the spontaneous release of transmitter was studied in the isolated phrenic nerve-diaphragm preparation of the mouse. 2. The resting membrane potential was decreased and frequency of miniature endplate potentials (m.e.p.ps) was increased by treatment with LPS. 3. Pretreatment of diaphragms with ouabain markedly increased the frequency of m.e.p.ps in control group but not in the LPS group. 4. When mice were treated with polymyxin B (a LPS neutralizer), pentoxifylline (an inhibitor of tumor necrosis factor-alpha formation) and NG-nitro-L-arginine (an inhibitor of nitric oxide (NO) synthase) the effects of LPS were reversed. 5. These results suggest that LPS increases the spontaneous transmitter release through, at least in part, the pathways of tumour necrosis factor-alpha and NO followed by an inhibition of the Na(+)-pump activity in the endplate area.

Animals↗

Antibody to Mycobacterium tuberculosis 65 kDa heat shock protein in patients with rheumatoid arthritis--a survey of antigen-specific antibody isotypes and subclasses in an endemic area of previous tuberculosis infection.

OBJECTIVE: To clarify the significance of the humoral immune response triggered by the Mycobacterium tuberculosis (M.tb) 65 kDa heat shock protein (hsp) in the pathogenesis of rheumatoid arthritis (RA). METHODS: M.tb 65 kDa hsp-specific IgG, IgA, IgM, and IgG subclass antibodies in serum or synovial fluid (SF) of RA and other disease patients were determined by enzyme linked immunosorbent assay (ELISA). RESULTS: RA patients did not show any characteristic increase in mycobacterial 65 kDa hsp-specific antibodies compared with healthy individuals. In contrast, antigen-specific IgG and IgG2 antibody titres in the serum of RA patients were significantly lower than those of patients with tuberculosis and normal controls. In addition, there was also no significant difference in antibody titre between the serum and SF of RA patients, nor was any significant difference found between the SF of RA and Reiter's patients. CONCLUSION: The failure to detect a significant increase in IgG anti-M.tb 65 kDa hsp antibodies in RA patients does not exclude the possibility of microbial immunity in the aetiology of RA. Nevertheless, anti-M.tb 65 kDa hsp antibodies clearly do not appear to be the disease specific markers for RA and their relatively reduced concentrations may argue against their playing a major role in the disease pathogenesis.

Antibodies, Bacterial↗

Vasodilator agents modulate rat glomerular mesangial cell growth and collagen synthesis.

Mesangial cell activation and extracellular matrix accumulation are hallmarks of many forms of glomerulonephropathy. We investigated the effect of several agents possessing vasodilating activities on rat mesangial cell growth and collagen synthesis. Using cell counting and a modified MTT assay, it was shown that dipyridamole, pentoxifylline, dicentrine, prazosin and doxazosin all caused a dose-dependent inhibition of serum-stimulated rat mesangial cell proliferation. Platelet-derived growth factor-induced cell proliferation was also inhibited by doxazosin and pentoxifylline. Dipyridamole and pentoxifylline inhibited collagen synthesis in confluent mesangial cells while dicentrine and doxazosin did not. The procollagen alpha 1 (I) mRNA expression was also decreased by dipyridamole and pentoxifylline. These results suggested that, in addition to dipyridamole, pentoxifylline and alpha 1-adrenoceptor blockers may have a potential to delay the progression of chronic glomerulopathy associated with mesangial proliferation.

Analysis of Variance↗

Studies on cytotoxic and genotoxic effects of cadmium nitrate and lead nitrate in Chinese hamster ovary cells.

Cadmium nitrate decreased the viability of Chinese hamster ovary (CHO) cells in a concentration-dependent manner; 50% inhibition (IC50) was achieved at 0.015 mM. In contrast, lead nitrate appeared to be less toxic. Neither cadmium nitrate nor lead nitrate significantly increased frequencies of binucleated CHO cells with micronuclei (MN). However, both cadmium nitrate and lead nitrate could augment sister chromatid exchanges (SCEs). Cadmium nitrate induced SCEs with a potency approximately equal to that of mitomycin C and more than 10 times higher than lead nitrate. Cadmium nitrate also increased chromosome aberrations (CAs), which included breaks, acentrics, interchanges, and dicentrics of chromosomes. In addition, cadmium nitrate induced a decrease in the mitotic index (MI), but lead nitrate increased it. In summary, it appears that both of these two heavy metal salts have cytogenetic toxicities with different degrees of effects on the cytotoxicity, MN, CAs, and SCEs in CHO cells. However, SCE was the most sensitive endpoint for indicating mutagenetic effects of cadmium and lead in the present study.

Animals↗

Syncope as the presenting symptom of nasopharyngeal carcinoma.

Syncope is a rare symptom of nasopharyngeal carcinoma, a common tumor in Taiwan. We describe two patients with nasopharyngeal carcinoma who presented with frequent syncopal attacks five months before the diagnosis was made. We postulate that the mechanism of syncope is involvement of the glossopharyngeal or vagal nerve by para-pharyngeal extension of the tumor.

Aged↗

The treatment of autoimmune disease in (NZB/NZW)F1 mice with syngeneic photomodulated splenocytes.

(NZB x NZW)F1 (B/W) mice spontaneously develop a disease which is remarkably similar to systemic lupus erythematosus (SLE) in humans. This disease is characterized by the appearance of autoantibodies to double-stranded (ds)DNA and the subsequent development of fatal glomerulonephritis. The prophylactic treatment of B/W mice with syngeneic photomodulated autoimmune spleen cells was found to significantly improve survival, and to inhibit the outgrowth of autoreactive B cells and the production of high-titre IgG anti-dsDNA antibodies. The function of the autoreactive T cells in vivo, however, did not change significantly. Our findings suggested a novel treatment for spontaneously occurring autoantibody-related autoimmune diseases.

Animals↗

Cytogenetic toxicity of uranyl nitrate in Chinese hamster ovary cells.

The effects of uranyl nitrate (UO2+2) on viability, cell cycle kinetics (CCK), micronuclei (MN), chromosome aberrations (CA), and sister-chromatid exchanges (SCE) in Chinese hamster ovary (CHO) cells were investigated. Uranyl nitrate decreased the viability of CHO cells in a dose-related fashion. The concentration for 50% inhibition (IC50) of uranyl nitrate on viability was 0.049 mM. Uranyl nitrate at concentrations ranging from 0.01 to 0.3 mM decreased CCK and increased frequencies of MN and SCE. CA were also significantly augmented by uranyl nitrate. This finding indicates that uranyl nitrate has the property of causing genotoxicity and cytotoxicity in CHO cells. It appears that this cytogenetic toxicity of uranyl nitrate provides a biological basis for the potential teratogenic effect of uranium on developing fetal mice.

Analysis of Variance↗

Inhibition of glucosyltransferase activities of Streptococcus mutans by a monoclonal antibody to a subsequence peptide.

Preliminary analysis indicated that a 19-amino-acid peptide sequence (435 to 453 of GtfC) within a highly conserved region of the glucosyltransferases of the cariogenic streptococci might be functionally important (J.-S. Chia, S.-W. Lin, T.-Y. Hsu, J.-Y. Chen, H.-W. Kwan, and C.-S. Yang, Infect. Immun. 61:1563-1566, 1993). To obtain antipeptide monoclonal antibodies (MAbs), the 19-amino-acid peptide was conjugated to bovine serum albumin and used as an antigen in BALB/c mice. Six immunoglobulin G-secreting hybridoma clones, CJSm18-S1 to -S6, specifically reacted with this peptide and with purified GtfC and GtfD but not with bovine serum albumin in an enzyme-linked immunosorbent assay. The concentrated hybridoma supernatant of all six MAbs inhibited GtfC enzymatic activity but failed to inhibit GtfD, although GtfD contains the same peptide sequence. Further analysis of a purified immunoglobulin G2b MAb from one of the clones, CJSm18-S3, confirmed that this MAb specifically inhibited GtfC enzymatic activity for insoluble-glucan synthesis in a dose-dependent manner. CJSm18-S3, even at high concentrations, had no effect on GtfD, which synthesizes water-soluble glucan exclusively. Furthermore, the in vitro sucrose-dependent adherence of Streptococcus mutans was also inhibited by CJSm18-S3 in a dose-dependent manner. Our results indicate that the peptide containing the N-terminal conserved region of glucosyltransferases is functionally important for both enzymatic activity and bacterial adherence.

Amino Acid Sequence↗

Presentation of a circulating self protein (C5) to MHC class II restricted T cells.

Presentation of a soluble self antigen, the fifth component of complement (C5), is discussed with emphasis on the differential ability of presentation by subpopulations of APC (dendritic cells, macrophages, B cells, fibroblasts, B cell lines and bone marrow macrophages). Constitutive presentation of C5 in C5 sufficient mice is a prerequisite for tolerance induction in MHC class II restricted T cells and can be directly demonstrated by the ability of ex-vivo APC from C5 sufficient, but not C5 deficient mice, to activate C5 specific T cells in vitro in the absence of added antigen. C5 presentation and tolerance induction in MHC class II restricted T cells is strictly dependent on an exogenous source of self antigen. C5 biosynthesized, but not secreted by macrophages is ignored by MHC class II restricted cells and induces neither tolerance nor autoimmunity. C5 presentation for tolerance induction depends largely on the efficiency of antigen uptake by APC, a property which varies within different APC subpopulations and with the nature of the antigen.

Animals↗

Gamma delta T-cell lines isolated from intestinal epithelium respond to a B-cell lymphoma.

gamma delta T-cell hybrid clones were obtained from intestinal intraepithelial lymphocytes (i-IEL) by fusion with the BW5147 thymoma line. Four clones which expressed different V gamma/V delta genes were selected for further study. All of the gamma delta clones secreted interleukin-2 (IL-2) in the presence of the BALB/c-derived B-lymphoma line, A20. No alpha beta T-cell hybrid clones derived from spleen or i-IEL responded to A20. We obtained several pieces of evidence which strongly suggest that these responses are mediated by the gamma delta T-cell receptor (TcR). Class II major histocompatibility complex (MHC), FcR and surface Ig expressed on A20 are not involved in the response. Native i-IEL derived from BALB/c selectively survive in culture in the presence of A20 cells. The ligand may be a superantigen-like molecule because all our gamma delta T-cell clones responded to A20 in spite of their different combinations of V gamma/V delta gene segments.

Animals↗

Breaking T cell tolerance with foreign and self co-immunogens. A study of autoimmune B and T cell epitopes of cytochrome c.

The initiation of autoimmune B cell and T cell responses by self Ag or by foreign pathogens (molecular mimics) is not well understood. In the present study, cytochrome c (cyt c) was used as a model autoantigen to investigate how self-proteins are involved in the priming of autoimmune T cell responses. Immunization with foreign cyt c has been extensively analyzed in previous studies as a model for both humoral and cellular immune responses. Mice do not, however, make antibody or T cell responses to immunization with self (mouse) cyt c. In addition, T cell tolerance can be broken by autoreactive B cells that are readily elicited by immunization with cross-reactive foreign cyt c. These immune B cells presumably bind self cyt c and process and present the self Ag to stimulate an autoreactive T cell response. Autoreactive T cell clones derived by this mechanism are all specific for determinants within amino acids 1-80 of the cyt c protein presented by I-Ek. No T cell responses were observed to the carboxyl terminal 81-104 fragment that dominates the response to foreign cyt c. All clones derived in this study are stimulated by a polypeptide encompassing amino acids 54-68 and utilized the V beta 8.2 TCR gene. In contrast, T cells stimulated by foreign cyt c did indeed respond to fragment 81-104 and appear to utilize alternate TCR genes. Our data demonstrate that B cells specific for linear determinants distributed along the entire length of the foreign cyt c molecule can provide the stimulus required for breaking T cell tolerance to self cyt c. The applications of this work to understanding the mechanisms of autoimmune disease are discussed.

Amino Acid Sequence↗

An MHC interaction site maps to the amino-terminal half of the T cell receptor alpha chain variable domain.

We have used cloned T cell receptor (TCR) genes from closely related CD4 T cell lines to probe the interaction of the TCR with several specific major histocompatibility complex (MHC) class II ligands. Complementarity determining region 3 (CDR3) equivalents of both alpha and beta TCR chains are required for antigen-MHC recognition. Our data provide novel information about the rotational orientation of TCR-MHC contacts in that exchange of the amino terminal portion of the TCR alpha chain containing the putative CDR1 and CDR2 regions results in both gain and loss of MHC class II specificity by the resulting receptor. These two TCRs differ primarily in recognition of polymorphisms in the second hypervariable region of the MHC class II alpha chain. These results document the involvement of CDR1 and/or CDR2 of the TCR alpha chain in MHC recognition and suggest a rotational orientation of this TCR to its MHC ligand.

Amino Acid Sequence↗

T and B cell receptors discriminate major histocompatibility complex class II conformations influenced by the invariant chain.

Direct recognition of major histocompatibility complex (MHC) molecules may occur when T cells are positively selected in the thymus and also during recognition of non-self MHC molecules. Since peptide recognition and binding of particular monoclonal antibodies is strongly influenced by the invariant chain (Ii) of the class II molecule, we have asked whether Ii also affects recognition of non-self MHC molecules by T cells. We find that Ii binding alters MHC class II conformation as detected by a monoclonal antibody, and that this alteration is retained in cell surface MHC class II molecules after Ii dissociates. This altered conformation also affects recognition by allogeneic T cells. Normal T cells and T cell clones preferentially recognize MHC class II molecules that have been associated with Ii, suggesting that thymic selection may be influenced by MHC conformation independently of specific peptide binding.

Animals↗

Reduction of blood PO2 decrease and PCO2 increase during asphyxia by paramedian reticular nucleus in cats.

Effects of activation of paramedian reticular nucleus (PRN) on the systemic arterial blood pressure (SAP), heart rate, renal nerve activity (RNA), and changes of the partial pressure of the arterial blood oxygen (PO2) and carbon dioxide (PCO2) during asphyxia were studied in cats anesthetized with chloralose (40 mg/kg) and urethane (400 mg/kg). During a 35-s period of asphyxial anoxia, SAP and RNA increased while heart rate decreased significantly. The arterial blood PO2 decreased by 64.6 +/- 4.7% while the PCO2 increased by 54.6 +/- 6.3%. Electrical stimulation of PRN produced a mild to moderate decrease of the SAP, heart rate, and RNA, but arterial PO2 and PCO2 did not change significantly. When PRN was stimulated simultaneously with asphyxia, increases of SAP and RNA and changes of blood gases subsequent to asphyxia reduced significantly. Arterial PO2 decreased only 54.0 +/- 4.9% while the PCO2 increased 39.4 +/- 10.5% (p < 0.01). Similar effects were observed in the venous blood from inferior vena cava. In addition, when the arteriovenous difference of PO2 and PCO2 was compared, simultaneous PRN stimulation during asphyxia produced a higher PO2 reserve (66.3%) and less PCO2 production (-7%) than without PRN stimulation; PO2 54.2%, PCO2 (-2.9%). The results suggest that PRN is a structure that can exert inhibition over a wide spectrum of body functions; not only autonomic system but probably also metabolism.

Animals↗

Correlation of cardiovascular and respiratory responses to glutamate excitation of pressor areas of the medulla in cats.

Cardiorespiratory responses, including changes of systemic arterial pressure (SAP), renal or splanchnic sympathetic nerve activity (SNA) and phrenic nerve activity (PNA), were elicited by microinjection of monosodium glutamate solution (0.5 M, 100 nl) into the dorsal (DM) and rostral ventrolateral medulla (RVLM) in 15 vagotomized cats anesthetized by urethane-chloralose and paralyzed by gallamine triethiodide. Artificial ventilation was adjusted to keep the end-tidal CO2 concentration at 4.0-0.5%. Sixty two pressor and 17 non-pressor sites were stimulated. Most of the stimulations inhibited the PNA. The responses of SNA was variable, showing increases, decreases or no change. Inhibition of SNA during SAP increase was not secondary to baroreceptor activation as the inhibition persisted in carotid sinus/aortic denervated animals. Although various combinations of changes of SNA and PNA were observed, their temporal courses were similar in many instances. Attenuation of SNA and PNA was synchronized, suggesting that these changes are coupled in the stimulating sites. The findings suggest that some neurons in DM and RVLM act as a functional unit to modulate cardiorespiratory functions whereas others simply coexist in the same area independent from each other.

Animals↗