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Biomedical subjects

A So

Publications and source records attributed to A So.

At least 37 records · Page 2Linked to original sources

Serum MMP-3 in rheumatoid arthritis: correlation with systemic inflammation but not with erosive status.

OBJECTIVE: Metalloproteinases (MMP) play an important role in the remodelling of the extracellular matrix. However, evidence that they are responsible for tissue damage in pathological situations remains circumstantial. Stromelysin (MMP-3) production is increased in rheumatoid arthritis (RA), and has been proposed as a marker of joint damage. The relevance of serum levels of MMP-3 to erosions in RA was studied. METHODS: Fifty-three patients with active RA of > 5 yr duration and with available X-rays were stratified according to disease duration. Hand X-rays were scored for erosions. Patients were then classified into upper and lower quartiles. Serum MMP-3 levels were compared between these two groups. RESULTS: No significant differences in serum MMP-3 were seen between high and low eroders. A statistically significant correlation was observed between sMMP-3 and erthyrocyte sedimentation rate and C-reactive protein. CONCLUSIONS: Serum MMP-3 is not an independent marker of joint damage, but is correlated with systemic inflammation. Its precise role in joint damage in RA remains to be elucidated.

Adult↗

A large sample of finnish diabetic sib-pairs reveals no evidence for a non-insulin-dependent diabetes mellitus susceptibility locus at 2qter.

In the first reported positive result from a genome scan for non-insulin-dependent diabetes mellitus (NIDDM), Hanis et al. found significant evidence of linkage for NIDDM on chromosome 2q37 and named the putative disease locus NIDDM1 (Hanis et al. 1996. Nat. Genet. 13:161-166). Their total sample was comprised of 440 Mexican-American affected sib-pairs from 246 sibships. The strongest evidence for linkage was at marker D2S125 and best estimates of lambdas (risk to siblings of probands/population prevalence) using this marker were 1.37 under an additive model and 1.36 under a multiplicative model. We examined this chromosomal region using linkage analysis in a Finnish sample comprised of 709 affected sib-pairs from 472 sibships. We excluded this region in our sample (multipoint logarithm of odds score </= -2) for lambdas >/= 1.37. We discuss possible reasons why linkage to 2q37 was not found and conclude that this region is unlikely to be playing a major role in NIDDM susceptibility in the Finnish Caucasian population.

Aged↗

Exacerbation of antigen-induced arthritis in urokinase-deficient mice.

In rheumatoid arthritis, synovial expression of urokinase (uPA) activity is greatly increased (Busso, N., V. Péclat, A. So, and A. -P. Sappino. 1997. Ann. Rheum. Dis. 56:550- 557). We report the same effect in murine antigen-induced arthritis. uPA-mediated plasminogen activation in arthritic joints may have deleterious effects via degradation of cartilage and bone matrix proteins as well as beneficial effects via fibrin degradation. We evaluated these contrasting effects in vivo by analyzing the phenotype of uPA-deficient (uPA-/-) and control mice during antigen-induced arthritis. Joint inflammation was comparable in both groups up to day 3 and subsequently declined in control mice, remaining significantly elevated in uPA-/- mice on days 10 and 30 after arthritis onset. Likewise, synovial thickness was markedly increased in uPA-deficient mice persisting for up to 2 mo, whereas it subsided in control animals. Bone erosion was exacerbated in uPA-/- mice on day 30. By contrast, no difference in articular cartilage proteoglycan content was found between both groups. Significantly increased accumulation of fibrin was observed by day 30 in arthritic joints of uPA-/- mice. We hypothesized that synovial fibrin deposition plays a role in joint inflammation. Accordingly, defibrinogenation of uPA-/- mice by ancrod significantly decreased the sustained joint inflammation. All the above observations were reproducible in plasminogen-deficient (Pln-/-) mice. In conclusion, synovial fibrin deposition plays a role as a nonimmunological mechanism which sustains chronic arthritis.

Animals↗

[General practice of lumbosacral peridural infiltrations in rheumatology: considerations based on a review of the literature].

Recommendations about the practice of epidural steroid injections for low back pain and sciatica are formulated based on an extensive review of the published literature. These infiltrations should be reserved to trained physicians observing strictly aseptic conditions. Their indications are limited to the few special situations where classical treatments have failed, and only after exclusion of an infectious or tumoral process. To the present time no conclusive data have been published to prove that these procedures reduced the need for surgery in the case of herniated nucleus pulposus or spinal stenosis. Their efficacy on the intensity of pain is also controversial. Some improvement on pain and functional scores may be observed for a few weeks but this positive effect disappears 2 or 3 months post-injection.

Adrenal Cortex Hormones↗

Activation of endogenous antioxidant defenses in neuronal cells prevents free radical-mediated damage.

Dopamine (DA) is oxidized to the neurotoxic prooxidant species H2O2, OH., and DA quinones. We tested whether dimethyl fumarate (DMF), an electrophile shown to induce a pleiotropic antioxidant response in nonneuronal cells, could reduce the toxicity of DA metabolites in neural cells. Treatment of the N18-RE-105 neuroblastoma-retina hybridoma cell line with 30-150 microM dopamine led to cell death within 24 h, which increased steeply with dose, decreased with higher plating density, and was blocked by the H2O2-metabolizing enzyme catalase. Pretreatment with DMF (30 microM, 24 h) significantly attenuated DA and H2O2 toxicity (40-60%) but not that caused by the calcium ionophore ionomycin. DMF treatment also elevated total intracellular GSH and increased activities of the antioxidant enzymes quinone reductase (QR), glutathione S-transferase (GST), glutathione reductase, and the pentose phosphate enzyme glucose-6-phosphate dehydrogenase. To assess the protective efficacy of QR and GST, a stable cell line was constructed in which these enzymes were overexpressed. Cell death in the overexpressing line was not significantly different from that in a cell line expressing normal QR and GST activities, indicating that these two enzymes alone are insufficient for protection against DA toxicity. Although the relative importance of a single antioxidant enzyme such as QR or GST may be small, antioxidant inducers such as DMF may prove valuable as agents that elicit a broad-spectrum neuroprotective response.

Animals↗

Hypothyroid myopathy as a complication of interferon alpha therapy for chronic hepatitis C virus infection.

Interferon alpha (IFN-alpha) therapy is associated with a number of immunological side-effects, including autoimmune diseases and a 10% prevalence of thyroiditis. Hepatitis C virus (HCV) infection itself predisposes to autoimmune phenomena including hypothyroidism and myositis. The development of clinical hypothyroidism in the presence of positive thyroid antibodies in patients infected with HCV and treated with IFN-alpha suggests a possible association between the viral disease and the therapy. HCV infection may predispose to autoimmune thyroid disease and IFN-alpha therapy may secondarily lead to the development of thyroid dysfunctions. We report the single case of a female patient who developed a severe proximal myopathy in conjunction with primary hypothyroidism (Hoffmann's syndrome) secondarily to IFN-alpha therapy for HCV infection. This case highlights the need for careful clinical and biological monitoring for potential side-effects in such patients.

Adult↗

Allele-specific variation in the degeneracy of major histocompatibility complex (MHC) restriction.

The role of peptides in determining immune responses for both allorecognition and antigen-specific recognition has been clearly documented. The importance of different regions of the major histocompatibility complex (MHC) class II molecule in contributing to recognition has been demonstrated by studies involving site-directed mutagenesis and exon shuffling. These studies have indicated that the N-terminal region of the MHC class II molecule has a role to play in contributing to the T-cell receptor (TCR)-MHC-peptide interaction. Variation in the importance of different regions of the MHC class II molecule may be dependent on different aspects of this interaction, such as restriction specificity and affinity of the responding T-cell clone, and the nature of the bound peptide. We demonstrate here that the degree of T-cell degeneracy may be allele dependent. Thus, a series of exon-shuffled molecules were generated by shuffling the first and second variable region of a particular DR beta 1 molecule with the third variable region of a different DR beta 1 molecule. A panel of transfectants, which expressed these hybrid molecules, was then generated and used as antigen-presenting cells (APCs). A panel of peptide-specific T-cell clones was generated using the native HLA-DR molecules as the restricting elements. For the majority of restricting alleles, HLA-DRB5*0101, HLA-DRB1*1101, and HLA-DRB1*0701, all three variable regions were required for recognition. The exception to this observation was HLA-DRB1*0401, which was degenerate. Such degeneracy may facilitate the breakdown of self-tolerance through the cross-reactive recognition of other alleles in DR4/DR"x" heterozygotes. Such an observation as this may contribute to our understanding of the etiopathology of rheumatoid arthritis, an autoimmune disease strongly associated with HLA-DRB1*0401.

Alleles↗

Plasminogen activation in synovial tissues: differences between normal, osteoarthritis, and rheumatoid arthritis joints.

OBJECTIVE: To analyse the functional activity of the plasminogen activators urokinase (uPA) and tissue type plasminogen activator (tPA) in human synovial membrane, and to compare the pattern of expression between normal, osteoarthritic, and rheumatoid synovium. The molecular mechanisms underlying differences in PA activities between normal and pathological synovial tissues have been further examined. METHODS: Synovial membranes from seven normal (N) subjects, 14 osteoarthritis (OA), and 10 rheumatoid arthritis (RA) patients were analysed for plasminogen activator activity by conventional zymography and in situ zymography on tissue sections. The tissue distribution of uPA, tPA, uPA receptor (uPAR), and plasminogen activator inhibitor type-1 (PAI-1) was studied by immunohistochemistry. uPA, tPA, uPAR, and PAI-1 mRNA values and mRNA distribution were assessed by northern blot and in situ hybridisations respectively. RESULTS: All normal and most OA synovial tissues expressed predominantly tPA catalysed proteolytic activity mainly associated to the synovial vasculature. In some OA, tPA activity was expressed together with variable amounts of uPA mediated activity. By contrast, most RA synovial tissues exhibited considerably increased uPA activity over the proliferative lining areas, while tPA activity was reduced when compared with N and OA synovial tissues. This increase in uPA activity was associated with increased levels of uPA antigen and its corresponding mRNA, which were localised over the synovial proliferative lining areas. In addition, in RA tissues, expression of the specific uPA receptor (uPAR) and of the plasminogen activator inhibitor-type 1

Arthritis, Rheumatoid↗

Familial polyarteritis nodosa.

Familial polyarteritis nodosa (PAN) is rare. We describe here two siblings who developed PAN 8 years apart. HLA typing showed that the affected family members shared a common haplotype with their unaffected mothers. Further study of the family history suggested the possibility of an inherited disorder of connective tissue predisposing to autoimmunity and aneurysm formation.

Adolescent↗

Chronic liver disease due to hepatitis C.

The low concentration of hepatitis C virus in the blood of infected patients has made it difficult to detect. Infected patients can now be identified by using more sensitive immunoassays and amplification of viral RNA by the polymerase chain reaction. Nevertheless, the virus remains difficult to eliminate. We present the case of a woman with a history of autoimmune haemolytic anaemia, thrombocytopenia, and common variable immunodeficiency who developed chronic hepatitis.

Adult↗

Construction, characterisation and kinetics of a single chain antibody recognising the tumour associated antigen placental alkaline phosphatase.

The murine monoclonal antibody H17E2 recognises placental alkaline phosphatase (PLAP), an antigen present in the human term placenta and also expressed by many tumours. The antibody is of value in both immunoscintigraphy and radioimmunotherapy in testicular and ovarian cancer. The small size of genetically engineered single chain antibodies (SCAs) should give diagnostic and therapeutic advantages of improved tumour penetration and increased blood clearance compared to IgG. Employing recombinant DNA techniques a SCA based on H17E2 has been expressed in Escherichia coli and has been shown to bind placental alkaline phosphatase specifically. When administered to nude mice bearing human tumour xenografts, the H17E2 SCA effectively localised to tumour whilst a co-administered non-specific SCA did not. H17E2 SCA achieves tumour: blood ratios that are superior to those achieved with whole IgG, probably owing to its rapid blood clearance. We conclude that the H17E2 SCA is suitable for further investigation as an agent for clinical imaging and therapy. Additionally, the SCA can also be used for the construction of antibody based fusion proteins to target other effector functions to tumour cells.

Alkaline Phosphatase↗

A recombinant single chain antibody interleukin-2 fusion protein.

Recombinant interleukin-2 (rIL-2) therapy has been shown to be of value in the treatment of some cases of melanoma and renal cell carcinoma. However its use can be limited by severe systemic toxicity. Targeting rIL-2 to the tumour should improve the anti-tumour immune response and decrease the systemic toxicity. With this aim we have employed recombinant DNA techniques to construct a single chain antibody interleukin-2 fusion protein (SCA-IL-2). The protein used in this model system comprises the variable domains of the anti-lysozyme antibody D1.3 fused to human IL-2. It has been expressed by secretion from Escherichia coli and the purified product possesses antigen binding specificity and retains the immunostimulatory activities of rIL-2. This approach can be taken to generate SCA-IL-2 proteins that bind to appropriate cellular antigens. In vivo administration of a tumour binding SCA-IL-2 should result in a localised high concentration of IL-2 in tumour tissues, maximising the anti-tumour immune response, whilst keeping systemic side effects to a minimum.

Amino Acid Sequence↗

Co-expression of human T cell receptor chains with mouse CD3 on the cell surface of a mouse T cell hybridoma.

In this study we demonstrate that human T cell receptor (TcR) chains can be co-expressed with murine CD3 on the cell surface of a murine T cell hybridoma. Human TcR alpha and beta genes from the Jurkat leukaemic cell line were transfected into a TcR-negative mouse T cell hybridoma, TG40. The Jurkat TcR was successfully co-expressed at the cell surface with mouse CD3 components. Brightly staining transfectants were selected by fluorescence-activated cell sorting, and levels of expression comparable to a normal T cell line were achieved suggesting that the human TcR dimer assembled efficiently with the mouse CD3 complex. Northern blot analysis demonstrated similar levels of TcR messenger RNA to those found in the parental Jurkat line. Although we have not formally demonstrated surface expression of the Jurkat TcR alpha chain, the residual alpha gene transcript which is present in murine TG40 line is non-expressible. In order to test the signalling capacity of this human/mouse complex, the transfectants were stimulated with an anti-V beta 8 monoclonal antibody. This stimulus led to interleukin-2 production by the transfectants, demonstrating the delivery of a transmembrane signal. In addition, B10.A mice were immunised with the transfectants, and the antisera from these mice stained the transfectant and the Jurkat cell line, but not the parental T cell hybridoma. This interspecies transfection approach should now permit us to explore the requirements for T cell activation, the constraints on TcR alpha beta chain pairing, and creates ideal reagents for inducing a mouse anti-human TcR-specific response with a view to producing panels of anti-human TcR monoclonal antibodies.

Animals↗