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Biomedical subjects

G Ding

Publications and source records attributed to G Ding.

At least 19 recordsLinked to original sources

Ethanol-induced macrophage apoptosis: the role of TGF-beta.

Both clinical and laboratory reports indicate that ethanol addicts are prone to recurrent infections. We hypothesize that ethanol promotes macrophage apoptosis, thus compromising the efficiency of the mononuclear phagocyte system in dealing with infection. We studied the effect of ethanol on macrophage apoptosis. Human monocytes isolated from healthy subjects after an alcohol drinking binge showed enhanced apoptosis (before, 1.2 +/- 0.3% vs after, 28.4 +/- 3.7% apoptotic cells/field). Peritoneal macrophages harvested from ethanol-treated rats also showed increased (p < 0.0001) apoptosis. DNA isolated from peritoneal macrophages of ethanol-treated rats displayed integer multiples of 200 base pairs (ladder pattern). Furthermore, macrophages harvested from ethanol-treated rats had an enhanced expression as well as accumulation of TGF-beta. In in vitro studies, ethanol promoted apoptosis of human monocytes as well as rat peritoneal macrophages. In addition, ethanol enhanced apoptosis of murine macrophages (J774) in a time-dependent manner. The ethanol-induced apoptosis was amplified by LPS and partly attenuated (p < 0.001) by anti-TGF-beta Ab. TGF-beta also promoted macrophage apoptosis in a dose-dependent manner. Moreover, ethanol enhanced TGF-beta protein production by macrophages. These results indicate that ethanol promotes macrophage apoptosis. This effect of ethanol seems to be partly mediated through the generation of TGF-beta by macrophages.

Animals

Morphine promotes apoptosis in Jurkat cells.

Patients with intravenous heroin addiction are prone to recurrent infections and at times these infections are fatal. We evaluated the effect of morphine on the apoptosis of Jurkat cells and freshly isolated human T lymphocytes. Morphine promoted apoptosis of both the Jurkat cells and the freshly isolated T lymphocytes in a dose-dependent manner. DAGO, a specific mu receptor agonist, also promoted Jurkat cell apoptosis. DNA isolated from morphine-treated Jurkat cells and T lymphocytes also showed integer multiples of 200 base pairs. Superoxide dismutase (SOD) enhanced lymphocyte apoptosis; whereas catalase attenuated the morphine-induced apoptosis of Jurkat cells as well as of T lymphocytes. Morphine-treated Jurkat cells also showed a decreased expression of bcl-2 and an enhanced expression of bax. In addition, morphine-treated Jurkat cells showed activation of caspase-3. These results indicate that morphine-induced T lymphocyte apoptosis may be mediated through the generation of reactive oxygen species. The change in ratio of bax and bcl-2 seems to tilt the balance toward apoptosis, leading to the activation of caspase-3. This study provides further support for the hypothesis that morphine may be directly compromising immune function by enhancing apoptosis of T lymphocytes in patients with heroin addiction.

Apoptosis

Human glomerular epithelial cell express CD4 and interaction with gp120 protein promotes PYK2 tyrosine phosphorylation.

Focal segmental glomerulosclerosis (FSGS) is the predominant glomerular lesion in patients with HIV infection. Visceral glomerular epithelial cell (vGEC) injury is a key feature of this glomerular lesion. However, the exact mechanism of HIV-1-induced vGEC injury is not clear. We studied the presence of CD4 (HIV-1 receptor) in vGECs. vGECs were cultured from human kidneys and used during the 5th to 10th passages. Immunocytochemical studies were carried out to visualize CD4 receptors in these cells. Protein and RNA were extracted from vGECs and renal cortical tissues. Western and Northern blots were generated and probed for the expression of CD4. To determine the downstream effect of ligand receptor interaction, vGECs were treated either with variable concentrations of HIV-1 gp120 protein (0.001 to 0.1 microg/ml) for 1 min or with a fixed dose of gp120 protein (0.01 microg/ml) for variable time periods (0 to 10 min), and at the end of the incubation period, tyrosine phosphorylation of pyk2 was studied. Immunocytochemical studies showed the presence of CD4 receptors in vGECs. Western and Northern blot studies confirmed the presence of CD4 expression in these cells. gp120 protein promoted vGEC tyrosine phosphorylation of pyk2 in a dose- and time-dependent manner. The present study provides a mechanistical insight for the role of HIV-1 in the development of glomerular injury in patients with HIV infection.

Blotting, Northern

Excretion of ofloxacin into saliva in rats with renal failure.

To clarify effects of renal failure on salivary distribution of ofloxacin (OFLX), a quinolone antibiotics, blood, parotid and mandibular saliva were collected from the single-step 5/6th-nephrectomized and sham-operated (control) rats after bolus i. v. administration of OFLX (5 mg/kg). The concentrations of OFLX in these samples were determined by high-performance liquid chromatography. Renal failure induced by the partial nephrectomy significantly elevated plasma levels and cumulative salivary excretion of OFLX when compared to control rats. Total body clearance was significantly decreased by the renal failure, although salivary clearance of the partially nephrectomized rats was about three times larger than that of the control. At the terminal phase, the saliva/plasma concentration ratios of OFLX for parotid and mandibular saliva in control rats was 0.249 +/- 0.180 and 0.136 +/- 0.024, respectively, and there was a significant difference between both salivary glands. The saliva/plasma concentration ratios in the rats with renal failure were significantly greater than those in the control group in both parotid (about 3.2 times) and mandibular (about 2.5 times) saliva. The results of this study suggest that the salivary excretion of OFLX is significantly increased by renal failure and a glandular difference in the salivary excretion of OFLX exists in both rats with normal and impaired renal function.

Animals

Oxidized LDL stimulates the expression of TGF-beta and fibronectin in human glomerular epithelial cells.

Abnormal lipid accumulation in glomeruli is a recognized early event in the development of glomerulosclerosis. The presence of LDL and scavenger receptors has recently been demonstrated in glomerular cells, including the visceral epithelial cells. To explore the possible molecular mechanisms of lipid-induced glomerular injury, the present investigation was conducted to examine the effects of oxidized LDL (ox-LDL) on the expression of transforming growth factor (TGF)-beta and fibronectin by cultured human glomerular epithelial cells (GEC). Cultured GEC were exposed to human ox-LDL (0 to 100 micrograms/ml) for various time points. Ox-LDL induced a dose- and time-dependent increase in the expression of TGF-beta mRNA. Actinomycin D, a transcriptional inhibitor, but not cycloheximide, a protein synthesis inhibitor, inhibited the response. GEC exposed to ox-LDL also demonstrated elevated levels of fibronectin mRNA. In addition, treatment of GEC with ox-LDL resulted in increased TGF-beta and fibronectin protein expression as detected by immunocytochemistry. Addition of anti-TGF-beta antibody significantly inhibited the increase in fibronectin message level induced by ox-LDL. These data suggest that ox-LDL stimulates matrix protein fibronectin in GEC by a mechanism involving expression of TGF-beta. Thus, accumulation of lipids in human glomerular epithelial cells may contribute to the pathogenesis of glomerulosclerosis through TGF-beta mediated mechanism(s).

Antibody Specificity

Antioxidant expression in experimental hydronephrosis: role of mechanical stretch and growth factors.

We assessed whether levels of renal reactive oxygen species (ROS) and antioxidant enzymes are perturbed in rats following unilateral ureteral obstruction (UUO). The mechanism of catalase perturbation was investigated using proximal tubule suspensions following stimulation with transforming growth factor (TGF)-beta and interleukin (IL)-1 and in a proximal tubular cell line (OKC) subjected to cyclic mechanical stretch, which mimics the early hydrodynamic derangement after UUO. Levels of catalase and copperzinc superoxide dismutase (Cu,Zn-SOD) mRNA from 96-h UUO rats showed a 5.5-fold (P < 0.001) and 5.0-fold (P < 0.001) decrease, respectively, compared with the contralateral unobstructed kidney (CUK). Levels of superoxide anion and hydrogen peroxide showed a significant 1.8-fold (P < 0.0001) and 14.0-fold (P < 0.0001) increase, respectively, in 96-h UUO kidney slice cultures. In situ hybridization and immunohistochemistry showed Cu,Zn-SOD and catalase mRNA and protein transcription expressed in proximal tubules of UUO and CUK specimens. Catalase mRNA levels were markedly downregulated following a 1-h exposure of isolated proximal tubules to TGF-beta (0.1-10 ng) and IL-1 (1-5 ng), in comparison to control proximal tubular suspensions. OKC subjected to cyclic mechanical stretch for 1-24 h had marked decrements in catalase mRNA levels, compared with unstretched cells at the same time point. These results indicate that a primary downregulation of proximal tubular Cu,Zn-SOD and catalase expression develops in the proximal tubules of UUO with consequent increments in cortical oxidant levels. These findings suggest that either an early mechanical disturbance produced by UUO or local tubular generation of cytokines can reduce tubular catalase expression. The downregulation of catalase mRNA expression, together with increased oxidant stress in the rat renal cortex post-UUO, may amplify the proinflammatory state of experimental hydronephrosis culminating in tubulointerstitial injury and fibrosis.

Animals

[A new method and instrument for brainlocal hypothermia].

A new method and instrument for brainlocal hypothermia have been introduced in this paper. The instrument provides hypothermia to cerebral blood circulation by using cold probe hyperthemia to body venors blood by using electric heater. So it reduces the temperature only local in brain. This therapy system provides a safe and successful method for brain protection in wide clinical application, such as brain injure emergency, cerebrovascular disease therapy, heart operation etc.

Body Temperature

[Impedance of cerebrovascular system simulated by a hemodynamic model of brain circulation].

A hemodynamics model of cerebral Willis circulation is proposed. The model consists of the compensation of blood flow as well as the compliance, resistance and inductance of arteries. The impedances of carotid and vertebral arteries are obtained by solving the govern equations. The theoretical impedances correspond well with the experimental results. The simulating results demonstrate that the alteration of the arterial dynamic parameters influences not only the ipsilateral impedance but also the contralateral arterial system. These conclusions suggest that the carotid or vertebral impedance is not suitable for describing the behaviour of its own arterial system, because the impedance is also influenced by the other arterial system and blood pressure.

Animals

Inhibition of cellular growth and steroid 11 beta-hydroxylation in ras-transformed adrenocortical cells by the fungal toxins beticolins.

The proliferation of GM16 and 4CDT ras-transformed newborn rat adrenocortical (RTAC) cells and Y1 mouse adrenal tumor cells was inhibited by beticolins, the fungal toxins extracted from Cercospora beticola, at submicromolar concentrations in a dose-dependent manner. Inhibitory concentrations for half the maximum inhibition were 150, 75 and 25 nM for beticolin-1 and 230, 150 and 50 nM for beticolin-2 in GM16, 4CDT and Y1 cells respectively. Beticolins strongly inhibited the production of 11 beta-hydroxysteroids on the second and third days of treatment in a dose-dependent manner between 0.1 and 1 microM. Beticolins were shown by confocal microscopy to be localized in cytoplasmic organelles about 30-40 min after treatment. This finding favors a direct action of beticolins on mitochondrial steroid 11 beta-hydroxylase albeit another less direct mechanism involving a cytoplasmic signaling pathway cannot be excluded.

Adrenal Cortex

Myofibroblasts in experimental hydronephrosis.

Interstitial fibrosis is a common outcome of longterm ureteral obstruction. One pathological arm of the fibrotic reaction in diverse tissue loci and experimental models is the retraction of granulation tissue. The role of the myofibroblast in granulation tissue contraction and fibrocontractive diseases has been well established, but the mechanisms leading to differentiation of fibroblastic cells into myofibroblasts during the evolution of inflammation are not yet fully clarified. Investigators using other model systems have shown that macrophage-derived transforming growth factor-beta 1 (TGF-beta 1) may be pivotal in the process of myofibroblast modulation. Our laboratory has shown that the unilateral ureteral obstruction in the rat is characterized by a 20-fold increment in infiltrating renal cortical interstitial macrophages, an increase in cortical TGF-beta 1 gene expression, which parallels the infiltrating macrophage burden, and immunolocalization of this peptide growth factor in close proximity to resident interstitial fibroblasts. Because of this model's features, it was our aim to assess whether a myofibroblastic modulation was operant in the renal cortex of obstructed rat kidneys versus the control contralateral unobstructed kidney specimens. Immunolabeling for alpha-smooth muscle actin and the intermediate filament protein, desmin, was detected and steadily intensified from 24 to 96 hours after unilateral ureteral obstruction in obstructed kidneys only. In temporal concert with the detection of alpha-smooth muscle actin protein, the mRNA expression for this cytoskeletal component exhibited 3.7-, 15.7-, and 4.1-fold increments in the renal cortex of obstructed kidneys versus the contralateral unobstructed kidney specimens at 24, 48, and 96 hours after unilateral ureteral obstruction, respectively. Whole body X-irradiation, administered to rats 11 days before proximal left ureteral ligation, significantly lowered cortical interstitial macrophage number, cortical TGF-beta and alpha-smooth muscle actin mRNA levels as well as the intensity of immunolabeling for alpha-smooth muscle actin from 12 to 96 hours after unilateral ureteral obstruction. These data support a postulate that renal cortical TGF-beta 1, derived from the infiltrating macrophage, in part, contributes to the subsequent interstitial fibrosis response to renal injury by fostering the modulation of fibroblasts to myofibroblasts within the renal cortex after ureteral obstruction.

Actins

Macrophages, monocyte chemoattractant peptide-1, and TGF-beta 1 in experimental hydronephrosis.

Early cellular and molecular derangements have been evaluated as potential pivotal factors for the late development of interstitial fibrosis after experimental hydronephrosis. In this study, we delineated the kinetics of renal cortical macrophage infiltration as well as the cortical expression of transforming growth factor-beta 1 (TGF-beta 1) and monocyte chemoattractant peptide-1 (MCP-1) at 12, 48, and 96 h after unilateral ureteral obstruction (UUO). Interstitial macrophage number in the obstructed kidney versus the contralateral unobstructed kidney (CUK) significantly increased by 12 (11.1 +/- 0.9 vs. 4.5 +/- 0.6), 48 (27.5 +/- 0.9 vs. 4.0 +/- 0.8), and 96 h (71.4 +/- 4.6 vs. 3.2 +/- 0.4) after UUO. MCP-1 mRNA was detected from 12 to 96 h in the obstructed kidney but was absent in the CUK specimens at all time points. Apical tubular MCP-1 expression, on immunolabeling, was present from 12 through 96 h after UUO in the obstructed kidney but not the CUK specimen. On Northern analysis, there were highly significant 2.6-, 5.8-, and 7.0-fold increments in renal cortical TGF-beta 1 mRNA levels at 12, 48, and 96 h, respectively, in the obstructed kidney versus the CUK specimen. Intracellular TGF-beta 1, on immunolabeling, was detected only in the obstructed kidneys of UUO rats at all three time points and was confined to peritubular cells of the renal interstitium. A significant (P < 0.005) correlation (r = 0.95) between interstitial macrophage number and cortical TGF-beta 1 mRNA levels was noted.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Transforming growth factor-beta expression in macrophages during hypercholesterolemic states.

Macrophage infiltration into the glomerular mesangium is a prominent feature of various glomerulopathies. Recent evidence suggests that infiltrating macrophages may play a role in propagating initial glomerular injury to the development of glomerulosclerosis via transforming growth factor-beta (TGF-beta)-stimulating matrix accumulation. Rats with the acute puromycin aminonucleoside (PA) nephrosis exhibit an elevated gene expression of glomerular TGF-beta 1; however, the cellular origin of this upregulation is unknown. Using polymerase chain reaction (PCR), we detected that the TGF-beta 1 isoform is expressed in glomerular macrophages isolated from experimental rats made hypercholesterolemic by either diet or by induction of PA nephrosis. Peritoneal macrophages from nephrotic or dietary-hypercholesterolemic animals also exhibited a significant increment in the expression of TGF-beta 1 mRNA on Northern analysis, in contrast to similar cells obtained from normal control rats. PCR analysis of glomerular RNA also detected the expression of the TGF-beta 2 mRNA isoform. TGF-beta 2 mRNA expression was not observed in isolated glomerular macrophages from either glomeruli of PA-nephrotic rats or from glomeruli of animals with dietary hypercholesterolemia. Expression of the TGF-beta 3 mRNA isoform was only observed by PCR in J774 A.1 cells. Thus the as a cellular source for the enhanced expression of TGF-beta 1 during the acute nephrotic phase of our toxic, progressive glomerulopathy model and within several days of inducing only hypercholesterolemia by dietary means.

Albuminuria

Rheumatoid factors from the peripheral blood of two patients with rheumatoid arthritis are genetically heterogeneous and somatically mutated.

We report the DNA sequences of the heavy and light chain immunoglobulin genes of 11 monoclonal rheumatoid factor (RF)-secreting lines derived from the peripheral blood of two patients with rheumatoid arthritis (RA). It is evident from immunogenetic analysis of these lines that RA-associated RF activity can arise from a wide variety of heavy and light chain genes and gene combinations. Although the RF response from our two patients shows a bias in gene usage toward those genes used to encode monoclonal RF, particularly VkIII, relatively few of these RFs are reactive with the monoclonal antiidiotypes 6B6.6 and 17.109 that define VkIII germline-encoded light chains and the loss of this idiotypic reactivity is clearly related to somatic mutation. Finally, RFs derived from peripheral blood of RA patients show a similar heterogeneity of epitope binding to Fc as that seen for synovium-derived RF and some are clearly different in binding specificity from the restricted RF population found in patients with B cell malignancies. Somatic mutations as well as different VH/VL combinations contribute to the heterogeneity in the binding patterns of these RA-derived RF.

Amino Acid Sequence

Macrophages and renal disease.

In this multimodel overview, we have provided the seminal experimental evidence for the crucial contribution of macrophages in the progression of glomerular and interstitial fibrosis. Although all the experimental data provided in this review definitely increase our understanding of the progress of renal disease, we have been mindful to use caution in extrapolating data from animal experiments to the clinical setting (109). In addition, uncertainty still exists as to whether macrophages activation entails a generalized mechanism in which the cells release growth factors and other mediators such as bioactive lipids and nitric oxide simultaneously, or a selective mechanism in which the cells release some but not all macrophage products (110). However, we anticipate that further substantial clinical and experimental observations are on the horizon. Novel therapeutic strategies in these models must be concerned with the prevention of renal macrophage recruitment and/or the suppression of the fibrogenic ability of this pluripotential inflammatory cell.

Animals

DNA regions flanking the mouse Ig 3' alpha enhancer are differentially methylated and DNAase I hypersensitive during B cell differentiation.

Two B cell-specific enhancer elements are associated with the IgH gene cluster. One enhancer is located within the J-C mu intron (E mu), whereas a second enhancer (3' alpha E) is approximately 12.5 kb 3' of the C alpha membrane exon. In an attempt to understand the function of 3' alpha E, we have characterized its surrounding structural milieu during various stages of B cell differentiation through analysis of methylation patterns and the identification of DNAse I-hypersensitive sites. We observed a correlation between the chromatin structure of this region and the differentiation state of the cell. Compared to liver and brain, the region 3' of alpha was hypermethylated in pre-B and T cell lines and became progressively demethylated as B cell differentiation continued. A DNAse I-hypersensitive site was present in pre-B cell lines about 17 kb 3' of 3' alpha E. In fully differentiated myeloma cell lines, a second cluster of DNAse I-hypersensitive sites was present immediately 5' of 3' alpha E. Our data indicate that the 3' alpha enhancer is relatively sequestered during early stages of B cell differentiation and becomes increasingly accessible at later stages.

Animals

The effect of vasopressin on the cytoskeleton of the epithelial cell.

Vasopressin (AVP) promotes the fusion of vesicles containing water channels with the apical membrane of receptor cells in the amphibian bladder and mammalian kidney. Fusion is accompanied by depolymerization of the actin cytoskeleton. In this review, we present the evidence for actin depolymerization by AVP in the whole cell, and the application of confocal microscopy and immunogold electron microscopy in localizing depolymerization to the apical region of the receptor cell.

Actins

Cholesterol, macrophages, and gene expression of TGF-beta 1 and fibronectin during nephrosis.

Hypercholesterolemia aggravates experimental progressive glomerular injury. Evidence suggests the infiltrating glomerular macrophage (M phi) is a potential effector mechanism for the noxious effects of hypercholesterolemia. Because transforming growth factor (TGF)-beta 1 is secreted by activated M phi s and also stimulates fibronectin production by glomerular cells, we evaluated the kinetics of gene expression for these moieties in glomeruli isolated from nephrotic rats at 3, 7, 11, and 42 days after the delivery of puromycin aminonucleoside (PA). We also assessed whether cholesterol feeding, which raises the glomerular M phi number, alters the glomerular mRNA levels for TGF-beta 1 and fibronectin. Glomerular mRNA levels for TGF-beta 1 and fibronectin in nephrotic rats exhibited a biphasic temporal pattern, decreasing significantly below control at 3 and 7 days after PA but increasing significantly at 11 and 42 days after PA. The upregulated gene expression for TGF-beta 1 and fibronectin at 11 days after PA temporally corresponded to the phase of mesangial M phi infiltration in this model. Cholesterol feeding to both normal and nephrotic rats significantly increased glomerular TGF-beta 1 and fibronectin mRNA levels at 11 days after PA. Immunohistochemical labeling for M phi s and intracellular TGF-beta 1 demonstrated both mesangial and cortical interstitial localization with the TGF-beta1-positive cells possessing M phi nuclear morphology. These findings identify a novel interaction between hypercholesterolemia, augmented glomerular M phi accumulation, and upregulated glomerular TGF-beta 1 and fibronectin gene expression. These perturbations within the acutely injured glomerulus constitute an early pathobiological determinant for the later development of mesangial matrix expansion and glomerulosclerosis.

Albuminuria

Serum factor(s) induced by restraint stress in mice and rats suppresses lymphocyte proliferation.

LACA mice were individually restrained in a specially made cylindrical cage for 10-20 h at room temperature (20 degrees C). Serum obtained from stressed mice was found to suppress normal mouse lymphocyte proliferation induced by concanavalin A, suggesting the presence of a suppressive factor(s) in the stressed serum. Adrenalectomy or injections of naltrexone (1, 10, or 20 mg/kg, ip), just prior to and in the middle of the stress period, did not affect the suppressive activity of serum from mice. However, the suppressive activity was totally abolished by general anesthesia with urethane (1.5 g/kg, ip). These results suggest that adrenal hormones and opiate receptors are not involved in the generation of the suppressive factor(s) and that the central nervous system plays a very important role in this process. SD rats were restrained in a supine position for 20 h at room temperature (20 degrees C) and serum from stressed rats was also found to be able to suppress normal mouse lymphocyte proliferation. A further analysis of "stressed serum" indicated that the suppressive factor(s) was heat stable (56 degrees C, 30 min) and acid stable (pH 3.8), but sensitive to 100 degrees C (3 min), an organic solvent (greater than 60% methanol), and proteinases (trypsin and chymotrypsin). From the measurement of gel filtration (HPLC), the molecular weights of the suppressive factor(s) were 155 and 370 kDa. Taken together, these results indicate that the suppressive factor(s) is a protein with a large molecular weight.

Adrenalectomy