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Biomedical subjects

H Haller

Publications and source records attributed to H Haller.

At least 127 records · Page 7Linked to original sources

Inhibition of intercellular adhesion molecule-1 with antisense deoxynucleotides prolongs renal isograft survival in the rat.

BACKGROUND: Delayed graft function from ischemia-reperfusion injury has a negative impact on long-term renal graft survival. We tested the utility of antisense oligodeoxynucleotide (ODN) against intercellular adhesion molecule-1 (ICAM-1) in the pretransplant treatment of renal isografts in improving long-term graft survival. METHODS: Three groups of 16 inbred Lewis rats each underwent unilateral nephrectomy and were then transplanted with a kidney from a Lewis donor rat, which had received antisense ODN, reverse sense ODN, or saline vehicle six hours prior to nephrectomy. The kidneys were subjected to one hour of warm ischemia and 30 minutes of cold ischemia, which when untreated results in delayed graft function. The remaining native kidney was removed 10 days later. Serum creatinine and urinary protein excretion were measured in surviving rats at weeks 2, 4, 6, 8, 12, 16, and 20 after native nephrectomy. RESULTS: A Kaplan-Meier analysis revealed that by week 6 one half of the animals receiving reverse sense ODN and saline vehicle treatment had died, while all but 2 rats in the antisense ODN-treatment group survived to 20 weeks. Serum creatinine concentrations and urine protein excretion of surviving reverse sense and saline vehicle-treated rats were significantly higher than antisense treated rats at every time point. Histology at week 20 revealed marked interstitial fibrosis, focal glomerular sclerosis, vascular intimal and medial thickening and tubular atrophy in reverse sense and saline vehicle-treated kidneys, while antisense ODN-treated kidneys showed only modest changes. Immunohistochemistry showed macrophage and lymphocyte infiltration, as well as substantial up-regulation of MHC class II, in reverse sense and saline vehicle-treated kidneys compared to antisense ODN-treated kidneys. CONCLUSIONS: These results suggest that by ameliorating acute nonimmunological renal isograft injury, the long-term chronic nonimmunologic processes are improved as well. Furthermore, the data suggest that an antisense ODN strategy directed against ICAM-1 may have utility in human kidney transplantation.

Animals↗

A cross-over medication trial for patients with autosomal-dominant hypertension with brachydactyly.

We examined a family with autosomal-dominant hypertension and brachydactyly from northeastern Turkey. The hypertension was defined as severe, resulting in stroke before age 50 years, featuring normal renin, aldosterone, and catecholamine responses, and did not appear to be salt-sensitive. The responsible gene resides on chromosome 12p. To determine which medications were most effective, we performed a prospective clinical trial. We studied 13 affected individuals in a randomized double-blind, cross-over trial including a beta-blocker (BBL), alpha-blocker (ABL), calcium channel blocker (CCB), converting enzyme inhibitor (CEI), and hydrochlorothiazide (HCT) and placebo (PLA). We then added moxonidine (MOX) and continued the trial for an additional period in a single-blind fashion. Each drug was given for four weeks with an option to double the dose after two weeks; each washout period comprised two weeks. Blood, 24-hour urine, and saliva were studied at the outset, and blood and urine samples were obtained at the end of each phase. Blood pressure (BP) and heart rate measurements were with the patient ambulatory at 24 hours. All regimens required doubled doses at two weeks. Beta blocker, CCB, CEI, and ABL lowered BP (6 to 10 mm Hg) and BP load compared to PLA, while HCT and MOX did not. Converting enzyme inhibitor and HCT increased plasma renin activity (PRA), while BBL lowered PRA. The 24-hour urine analysis indicated a high dietary salt intake with a low potassium and calcium intake. The salivary electrolytes showed similar sodium and potassium concentrations, while chloride values were significantly higher in affected than nonaffected subjects. Thus, this monogenic form of hypertension resembles nonsalt-sensitive essential hypertension in that BBL, CCB, CEI, and ABL were effective, while HCT was not. The BP reduction was similar to other single drug trials in essential hypertension. The high salivary chloride values suggest an additional intermediary phenotype that may be related to electrolyte transport. These results raise the possibility that an as yet unknown hypertensive mechanism is operative in these subjects.

Adolescent↗

Interleukin-8 delays spontaneous and tumor necrosis factor-alpha-mediated apoptosis of human neutrophils.

During inflammation, polymorphonuclear neutrophils (PMN) are exposed to and influenced by various cytokines, including the chemoattractant interleukin-8 (IL-8). We tested the hypothesis that IL-8 affects apoptosis in PMN. We investigated which IL-8 receptor (RI or RII) might be involved, as well as the role of Bcl-2. Human PMN were isolated and cultured up to 30 hours. Apoptosis was detected by UV and light microscopy, as well as by DNA-fragmentation assay, and quantitated by flow cytometry. Interleukin-8 significantly delayed spontaneous apoptosis at 10, 20, and 30 hours in a dose-dependent fashion. Polymorphonuclear neutrophil treatment with the highest concentration of IL-8 (100 nM) decreased the percentage of apoptotic cells from 2.1 +/- 1.5 to 0.8 +/- 0.2 after 10 hours, from 31 +/- 14 to 8 +/- 5 after 20 hours, and from 47 +/- 15 to 18 +/- 8 after 30 hours of incubation (P < 0.05 for all time points, N = 6). Interleukin-8 also inhibited TNF alpha-mediated PMN apoptosis. Incubation with 20 ng/ml TNF alpha resulted in 23 +/- 6% apoptotic cells at four hours, whereas pretreatment with IL-8 (50 nM) decreased this percentage to 11 +/- 3 (N = 5, P < 0.05). We next studied the role of both types of IL-8 receptors, RI and RII, by comparing the effect of IL-8 and the product of growth-related oncogene alpha (Gro alpha) on PMN cultured for 20 hours. Both IL-8 and Gro alpha attenuated apoptosis, although IL-8 was more effective than Gro alpha. Bcl-2 was detected by intracellular fluorescent antibody cell sorter analysis, Western blot, and reverse transcription-polymerase chain reaction (RT-PCR). Neither resting PMN nor IL-8-treated neutrophils expressed BCL-2 protein, which was readily detected in control cells. Furthermore, we could not detect BCL-2 gene expression by RT-PCR. We conclude that IL-8 prolongs the lifespan of human neutrophils in vitro by delaying apoptosis. This effect may be important for a controlled and effective inflammatory response. The delay in apoptosis can be mediated by the IL-8 RII, while RI may provide an added effect. The actions of IL-8 on apoptosis are Bcl-2 independent.

Antigens, CD↗

Antisense oligodesoxynucleotide strategies in renal and cardiovascular disease.

Antisense oligodesoxynucleotides (ODN) provide a novel strategy to inhibit RNA transcription and thereby the synthesis of the gene product. Because antisense ODN hybridize with the mRNA strand, they are highly specific. Their backbone structure has been modified to phosphorothioates or phosphoamidates so that they can better withstand degradation after delivery. We have shown that antisense ODN are a useful research tool to elucidate intracellular processes. The example we provide involves the inhibition of PKC signaling. Furthermore, we have shown the potential clinical utility of antisense treatment. We successfully inhibited the expression of the surface adhesion molecule ICAM-1 with antisense ODN in a model of reperfusion injury. This model is highly applicable to the problem of delayed graft function in humans. However, "getting there" is a major problem and clearly less than half the fun. Cationic substances such as lipofectin have worked sufficiently well in the experimental setting. Viral gene transfer offers a possibility; however, viruses produce an additional series of problems. Liposomes may not provide sufficient transfer efficiency. Coating liposomes with viral fusion proteins may offer an ideal way with which to deliver the goods into the cytoplasm of the target cell.

Animals↗

Pleiotropic effects of hepatocyte growth factor in proximal tubule involve different signaling pathways.

Hepatocyte growth factor (HGF) accelerates renal tubule cell regeneration and induces tubulogenic differentiation via the intracellular tyrosine kinase (TK) domain of its receptor, the proto-oncogene c-Met. We tested whether different signaling pathways may be involved by examining HGF binding and effects on cell proliferation, migration, scattering, and tubulogenic differentiation in the bipolar differentiating rabbit proximal tubule cell line PT-1 under serum-free conditions in the presence or absence of the protein TK inhibitors (PTKIs) herbimycin-A, genistein, methyl-2,5-dihydroxycinnamate, and geldanamycin. These PTKIs inhibit pp60(c-src), a nonreceptor TK involved in cell-growth control. HGF bound to a single high-affinity receptor class, increased microvilli numbers 1.5-fold, enhanced cell proliferation and migration 1.8-fold, and stimulated formation of tubule structures 2.2-fold. PTKI inhibited the mitogenic and motogenic effects of HGF with different potencies and comparable maximal effects but had no specific influence on HGF-induced tubulogenic cell differentiation. These data underline the importance of pp60(c-src) in mediating mitogenic and motogenic effects of HGF, whereas stimulation of tubulogenic cell differentiation may be transduced by a pp60(c-src)-independent pathway.

Animals↗

Differentiating and proliferative effects of HGF in renal proximal tubular cells are mediated via different signalling pathways.

BACKGROUND: As a renotropic cytokine, hepatocyte growth factor (HGF) prevents acute renal failure and accelerates renal regeneration. HGF initiates its biological effects by interaction with specific transmembrane receptors, the c-Met proto-oncogene, possessing an intracellular tyrosine kinase domain. We tested the hypothesis of whether the complex biological effects of HGF in renal proximal tubular cells are mediated by different intracellular signalling cascades and/or different receptors. METHODS: PT-1 cells, a proximal tubular cell line derived from rabbit kidney, were cultured under defined serum-free conditions to examine the biological effects of exogenously added HGF. By specific assays, we determined HGF binding and its effects on cell proliferation, migration, scattering and tubulogenic differentiation. To investigate whether HGF action could be inhibited by protein tyrosine kinase inhibitors (PTKIs), cells were incubated with HGF and different concentrations of herbimycin A, genestein, methyl-2,5-dihydroxycinnamate (MDC) and geldanamycin. All PTKIs are known inhibitors of pp60(c-src), a non-receptor tyrosine kinase involved in cell growth control. RESULTS: HGF bound with high affinity to cell membrane receptors and displayed multiple biological effects. Compared with serum-free controls, HGF increased the number of microvilli 1.5-fold, enhanced cell proliferation and migration 1.8-fold, and stimulated the formation of tubular structures 2.3-fold. Consistent with the known tyrosine kinase activity of the c-Met receptor, the mitogenic and motogenic effects of HGF were inhibited by PTKIs in a dose-dependent manner with the following order of potency: geldanamycin > herbimycin A > genestein > MDC. In contrast, however, the HGF-induced tubulogenic cell differentiation was not inhibited specifically by PTKIs. CONCLUSIONS: The finding that PTKIs inhibited the mitogenic response but not the tubulogenic differentiation induced by HGF indicates different intracellular signal transduction pathways. We suggest that pp60(c-src) plays a key role in mediating the mitogenic and motogenic action of HGF, whereas tubulogenic cell differentiation induced by HGF is transduced by a pp60(c-src)-independent signalling pathway.

Animals↗

L-type calcium channel expression depends on the differentiated state of vascular smooth muscle cells.

Despite intensive interest in understanding the differentiation of vascular smooth muscle cells (VSMC), no information is available about differential regulation of ion channels in these cells. Since expression of the L-type Ca2+ channel can be influenced by differentiation in other cell types, we tested the hypothesis that the L-type (C class) channel is a specific differentiation marker of VSMC and that expression of these channels depends on the state of cell differentiation. We used rat aortic (A7r5) VSMC, which express functional L-type Ca2+ channels, and induced dedifferentiation by cell culture in different media. Treatment with retinoic acid was used to redifferentiate the VSMC. We characterized the differentiated state of the cells by using immunohistochemistry and Western blot analysis for smooth muscle (SM) alpha-actin and SM-myosin heavy chain (MHC). The number of functional Ca2+ channels was significantly decreased in dedifferentiated VSMC and increased upon differentiation with retinoic acid. Ca2+ channel function was assessed by whole-cell voltage clamp techniques. Using Western blot and dihydropyridine binding analysis, we found that the expression of the Ca2+ channel alpha1 subunit, and to a lesser extent the beta2 subunit, was directly correlated with the expression of SM alpha-actin and SM-MHC. We conclude that expression of L-type Ca2+ channel alpha1 subunits, and thus a functional Ca2+ channel, is highly coordinated with expression of the SM-specific proteins required for specialized smooth muscle cell functions. Furthermore, our results demonstrate that the L-type Ca2+ channel is a novel marker for differentiation of VSMC. The data suggest that regulation of ion channel expression during differentiation may have physiological importance for normal smooth muscle function and may influence VSMC behavior under pathophysiological conditions.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

Antiendothelial cell antibodies in thromboangiitis obliterans.

The occurrence of autoimmune phenomena in 28 patients with thromboangiitis obliterans (Buerger's disease) was determined. The following were sought: antineutrophil cytoplasmic antibodies against proteinase 3 (cANCA) and myeloperoxidase (pANCA), antinuclear antibodies, anti-Ro antibodies, anticardiolipin antibodies, and antiendothelial cell antibodies (AECA). For the last, an enzyme-linked immunosorbent assay was developed which verified the presence of the AECA phenomenon with immunofluorescence and confocal microscopy. Seven patients with active disease had AECA titers of 1,857 +/- 450 arbitrary units (AU) compared with 126 +/- 15 AU in 30 normal control subjects (P < 0.001) and 461 +/- 41 AU in 21 patients in remission (P < 0.01). Antibodies from the sera of patients with active disease reacted not only with surface epitopes but also with sites within the cytoplasm of human endothelial cells. AECA may be useful in following disease activity and may play a role in the pathogenesis of thromboangiitis obliterans.

Adult↗

Atrial natriuretic peptide clearance receptor participates in modulating endothelial permeability.

The atrial natriuretic peptide (ANP)-C receptor is generally believed to clear ANP; however, the ANP-C receptor may serve to reduce cAMP by inhibiting adenylate cyclase. ANP decreases endothelial permeability in coronary endothelial cell monolayers. We tested the hypothesis that part of this effect might be mediated by the ANP-C receptor. We used an endothelial cell monolayer from rat coronary endothelium and measured albumin flux. We applied either ANP or a ring-deleted ANP (C-ANP), which only stimulates the ANP-C receptor. ANP and C-ANP both decreased permeability from 100 pM to 100 nM by 60 and 30%, respectively. ANP increased endothelial cGMP contents 5.5-fold, whereas C-ANP had no effect. ANP reduced endothelial cAMP contents by 75%, which was only partly blocked by pertussis toxin. C-ANP also reduced cAMP; however, this effect was completely blocked by pertussis toxin. Protein kinase G inhibition blocked the ANP-mediated decrease in permeability by 50%. In contrast, pretreatment with pertussis toxin, in the face of protein kinase G inhibition, blocked the effect completely. C-ANP decreased permeability by half the amount of ANP. This C-ANP effect was completely blocked by pertussis toxin but not by protein kinase G inhibition. Isoproterenol (10 microM) increased permeability by almost 50%, which was completely blocked by ANP but only partially blocked by C-ANP. The C-ANP effect was blocked completely by pertussis toxin. Isoproterenol increased cAMP threefold, which was abolished by ANP. C-ANP reduced the isoproterenol-induced increase in cAMP by 50%. Isoproterenol had no effect on cGMP. We conclude that agonist binding to the ANP-C receptor inhibits cAMP production via a Gi protein-coupled signaling system. This inhibition may contribute to the decreased endothelial permeability evoked by ANP in this system.

Animals↗

Calcium-activated potassium channels and nitrate-induced vasodilation in human coronary arteries.

In some but not all arterial beds, smooth muscle cell calcium-activated K+ channels (KCa channels) play a central role in the mediation of the vasodilator response to nitric oxide (NO) and other nitrates. We investigated the effect of nitrates on KCa channels in the relaxation of human coronary arteries by means of isometric contraction experiments in arterial rings. We also measured whole-cell currents in freshly isolated human coronary artery vascular smooth muscle cells via the patch-clamp technique. Sodium nitroprusside, diethylamine-nitric oxide complex sodium salt and isosorbide mononitratre completely relaxed rings preconstricted with 5 microM serotonin and produced dose-dependent relaxations of 5 microM serotonin-preconstricted human rings. The relaxations were inhibited by 2-(4-carboxyphenyl)-4,4,5,5-tetramethylimidazoline-oxyl 3-oxide (10 microM), which neutralizes nitric oxide. The KCa channel blockers iberiotoxin (100 nM) and tetraethylammonium ions (1 mM) significantly inhibited SNP-induced relaxations of human coronary arteries. Moreover, in the patch-clamp experiments, SNP (1 microM) stimulated KCa currents and spontaneous transient outward K+ currents carried by Ca spark activated KCa channels. The SNP-induced (1 microM) KCa current was strongly inhibited by iberiotoxin (100 nM). These data show that activation of KCa channels in smooth muscle cells contributes to the vasodilating actions of nitrates and nitric oxide in human coronary arteries. This finding may have unique clinical significance for the development of antianginal and antihypertensive drugs that selectively target K+ channels and Ca sparks.

Coronary Vessels↗

Farnesol inhibits L-type Ca2+ channels in vascular smooth muscle cells.

Earlier experiments with animal and human arteries have shown that farnesol, a natural 15-carbon (C15) isoprenoid, is an inhibitor of vasoconstriction (Roullet, J.-B., Xue, H., Chapman, J., McDougal, P., Roullet, C. M., and McCarron, D. A. (1996) J. Clin. Invest. 97, 2384-2390). We report here that farnesol reduced KCl- and norepinephrine-dependent cytosolic Ca2+ transients in fura-2-loaded intact arteries. An effect on Ca2+ signaling was also observed in cultured aortic smooth muscle cells (A10 cells). In these cells, farnesol reduced KCl-induced [Ca2+]i transients and mimicked the inhibitory effect of Ca2+-free medium on the [Ca2+]i response to both 12,13-phorbol myristate acetate, a protein kinase C activator, and thapsigargin, a specific endoplasmic reticulum ATPase inhibitor. Perforated patch-clamp experiments further showed in two vascular smooth muscle cell lines (A10 and A7r5), a reversible, dose-dependent inhibitory effect of farnesol on L-type Ca2+ currents (IC50 = 2.2 microM). Shorter (C10, geraniol) and longer (C20, geranylgeraniol) isoprenols were inactive. L-type Ca2+ channel blockade also occurred under tight (gigaohm) seal configuration using cell-attached, single-channel analysis, thus suggesting a possible action of farnesol from within the intracellular space. We finally demonstrated that farnesol did not affect Ca2+-sensitive pathways implicated in smooth muscle contraction, as tested with alpha-toxin permeabilized arteries. Altogether, our results indicate that farnesol is an inhibitor of vascular smooth muscle Ca2+ signaling with plasma membrane Ca2+ channel blocker properties. The data have implications for the endogenous and pharmacological regulation of vascular tone by farnesol or farnesol analogues.

Animals↗

Cloning of two novel human importin-alpha subunits and analysis of the expression pattern of the importin-alpha protein family.

The import of many proteins into the nucleus is mediated by the importin-alpha/beta heterodimer. While only one importin-beta gene has been found, several forms of importin-alpha have been described. In addition to the three human importin-alphas already identified, we report here the primary structure of two new human importin-alpha proteins. The five known human importin-alpha subunits can be classified into three subfamilies that appear conserved in higher eukaryotic organisms. We show by immunoblotting that the different importin-alpha subfamilies are expressed in a variety of human tissues and mammalian cell lines.

Amino Acid Sequence↗

T cell adhesion to P-selectin induces tyrosine phosphorylation of pp125 focal adhesion kinase and other substrates.

Lymphocyte binding to endothelial surface adhesion molecules is an important early step in inflammation, which is mediated initially by P-selectin and E-selectin. We tested the hypothesis that lymphocyte binding to the selectin adhesion molecules induces intracellular signaling by tyrosine phosphorylation. We used an adhesion assay, which relied on cell binding to chimeric proteins consisting of the extracellular domains for P-selectin and E-selectin. Tyrosine phosphorylation was determined using anti-phosphotyrosine Abs by confocal microscopy and Western blot. Binding to P-selectin induced a significant increase in anti-phosphotyrosine immunoreactivity. The P-selectin effect was time dependent with an early response after 10 min and a maximum effect at 30 min. Western blot showed a time-dependent phosphorylation of two distinct 68- and 125-kDa proteins. These proteins were pp125 focal adhesion kinase (FAK) and paxillin, as shown by immunoprecipitation and colocalization. Phosphorylation of pp125 FAK was time dependent reaching a maximum after 30 min. Incubation with the tyrosine kinase inhibitor genistein, and, to a lesser extent, with the protein kinase C inhibitor staurosporine, resulted in decreased pp125 FAK phosphorylation. Our results are the first to demonstrate that lymphocyte binding to P-selectin induces tyrosine phosphorylation of distinct proteins. Thus, lymphocyte activation may occur already at the initial contact with surface adhesion molecules.

Animals↗

Regulation of spontaneous transient outward potassium currents in human coronary arteries.

BACKGROUND: Spontaneous transient outward potassium currents (STOCs) induce myogenic relaxation in small cerebral vessels. We found STOCs in human coronary artery vascular smooth muscle cells (VSMCs) and studied their regulation. METHODS AND RESULTS: K+ currents were recorded in human coronary VSMCs by current- and voltage-clamp techniques. STOCs were recorded in the presence of 200 mumol/L Cd2+ and 10 mumol/L verapamil, which block voltage-dependent Ca2+ channels. STOCs were inhibited by iberiotoxin (100 nmol/L), a selective blocker of Ca(2+)-activated potassium channels (BKCa), and disappeared in a Ca(2+)-free bath. Iberiotoxin depolarized the VSMCs within 20 minutes from -44 +/- 7 to -18 +/- 5 mV (n = 17). The Ca2+ ionophore A23187 increased intracellular Ca2+ and stimulated whole-cell BKCa current. Depletion of Ca2+ from the sarcoplasmic reticulum with caffeine (4 mmol/L) abolished STOCs for several minutes. Ryanodine (50 mumol/L) transiently stimulated STOCs but then completely inhibited STOCs within 10 minutes. The firing frequency of STOCs was directly correlated with intracellular Na+ concentrations from 0 to 24 mmol/L. Lowering intracellular Na+ to zero abolished STOCs. We next gave monensin (30 mumol/L) to increase intracellular Na+. This maneuver resulted in an increase in whole-cell current fluctuations and STOCs. Monensin-induced STOCs were abolished by either lowering extracellular Ca2+ to zero or chelating Ca2+ intracellularly with BAPTA-AM (30 mumol/L). CONCLUSIONS: STOCs resulted from BKCa activity and were dependent on extracellular Ca2+ but not significantly on voltage-dependent Ca2+ channels. STOCs were dependent on intracellular Na+ and intracellular calcium store refilling state. We suggest that Ca2+ entry into the cell through reverse-mode Na+/Ca2+ exchange determines calcium store refilling, which in turn regulates STOC generation in human coronary VSMCs.

Arteries↗

Glucose: a continuous risk factor for cardiovascular disease.

The glucose level that defines diabetes mellitus is that level above which patients have a high risk of eye, kidney, and neuronal disease. The risk of these complications rises as glucose levels increase, and decreases as therapy brings the glucose level down. Thus, in patients with diabetes, glucose is a continuous, modifiable risk factor for eye, kidney and peripheral nerve disease. Plasma glucose concentrations in the diabetic range are also a continuous risk factor for cardiovascular disease (CVD). Moreover, epidemiological evidence shows that the relationship between plasma glucose concentration and CVD extends well below the glucose level defined for diabetes and even impaired glucose tolerance. This continuous relationship between glucose and CVD exists in all people, not just in those with a defined metabolic disease, and is therefore similar to the relationship between cholesterol or blood pressure and CVD. It may be secondary to either a direct effect of elevated glucose or to some underlying metabolic abnormality that raises both glucose and cardiovascular risk. Whether interventions that lower glucose will also lower the risk of CVD is still unknown; the results of clinical trials are awaited.

Blood Glucose↗

Moderate exercise leads to decreased expression of beta1 and beta2 integrins on leucocytes.

Intravascular adhesion of leucocytes plays a role in the pathogenesis of acute and chronic vascular disease. Regular aerobic exercise seems to protect against vascular disease. Since leucocyte adhesion is mediated by integrins, we tested the hypothesis that surface expression of the integrin adhesive receptors LFA-1 (cd11a/cd18), MAC-1 (cd11b/cd18), gp 150/95 (cd11c/cd18), and VLA-4 (cd29/cd49) is decreased by moderate endurance exercise. Surface expression of integrins was measured by FACS analysis in 19 healthy subjects (16 males, 3 females, 36.6 +/- 8.7 years, 177.1 +/- 7.5 cm, 70.3 +/- 8.1 kg) before and after submaximal exercise (3 h run) using monoclonal antibodies against cd11a, cd11b, cd11c, cd18, cd29 and cd49. In addition, we compared resting integrin expression in this group with a group of sedentary subjects (19 males, 6 females, 29.3 +/- 5.3 years). White blood cell count increased from 5300 ml(-1) to 9740 ml(-1) during exercise (P < 0.001). Nevertheless, the expression (indicated by the mean log fluorescence) of cd11a (94 +/- 24 vs. 78 +/- 14) and cd18 (128 +/- 31 vs. 102 +/- 21) on lymphocytes and of cd11a (104 +/- 25 vs. 85 +/- 16), cd11c (497 +/- 171 vs. 408 +/- 126) cd29 (109 +/- 16 vs. 89 +/- 16), cd49 (69 +/- 8 vs. 54 +/- 11) on monocytes was decreased after exercise (all P < 0.05). In contrast, integrin expression on granulocytes was not altered by exercise. Comparison of exercising and sedentary subjects showed a significantly decreased expression of integrins in exercising subjects. Our results demonstrate that moderate exercise leads to decreased expression of integrin receptors on leucocytes. This decreased expression of adhesion molecules may result in decreased adhesion and infiltration of leucocytes into the vessel wall. This phenomenon may play a role in the beneficial effect of moderate exercise in prevention of acute and chronic vascular disease.

Adult↗

H1 and HMG17 extracted from calf thymus nuclei are efficient DNA carriers in gene transfer.

In this article we describe the chromatographic separation of acid nuclear protein fractions which have previously been shown to be active in DNA transfection experiments. By combining anionic and cationic ion exchangers, we were able to separate and identify some of the active proteins. In addition to HMG1, already known for its transfection activity, we have identified histone H1 and HMG17 as further transfection-active proteins. The highest transfection activity was associated with H1 and another nonidentified protein showing a somewhat higher electrophoretic mobility than H1. We have also found that the presence of CaCl2 in a low concentration in the cell culture medium is an important requirement for transfection.

Animals↗