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J Pippin

Publications and source records attributed to J Pippin.

29 records · Page 2Linked to original sources

An inexpensive method for the rapid identification of specific cDNAs from cDNA libraries.

The identification of specific cDNAs by screening filters impregnated with DNA from phage or bacterial colonies is a time-consuming and expensive undertaking. We have developed a rapid and inexpensive method for identifying specific cDNAs that involves hybridization of cDNAs to specific oligonucleotides bound to nylon filters. Using this method, we have identified specific cDNAs for a human B-cell growth factor from different cDNA libraries. The total processing time was 3 days, and 30% of the cDNAs selected by this method were correct.

Adsorption↗

Tubulointerstitial disease in glomerulonephritis. Potential role of osteopontin (uropontin).

Interstitial inflammation and tubular injury accompany most types of glomerulonephritis and are likely to mediate progressive renal injury. We hypothesized that the interstitial monocyte/macrophage accumulation in nephritis involves osteopontin, a cell attachment glycoprotein that avidly binds macrophages in vitro and induces a macrophage-rich infiltrate on subcutaneous injection in mice (Singh et al, J Exp Med, 1990, 171: 1931). In this study, we demonstrate that osteopontin messenger RNA and protein levels are up-regulated in a proportion of proximal and distal tubules in three experimental models of glomerulonephritis. In all three models, the expression of osteopontin initially precedes histological evidence of tubular injury, but is correlated with subsequent sites of monocyte/macrophage accumulation and tubular damage. Osteopontin expression also correlates with the severity of the tubulointerstitial injury, being greatest in amino-nucleoside nephrosis. These data suggest that 1) osteopontin is up-regulated in tubules in glomerular disease; 2) osteopontin may be important for macrophage accumulation at specific sites in diseased tissue; and 3) osteopontin may therefore have a role in the pathogenesis of the tubulointerstitial injury that accompanies glomerulonephritis.

Animals↗

Identification of a cDNA for a human high-molecular-weight B-cell growth factor.

Proliferation is necessary for many of the phenotypic changes that occur during B-cell maturation. Further differentiation of mature B cells into plasma cells or memory B cells requires additional rounds of proliferation. In this manuscript, we describe a cDNA for a human B-cell growth factor we call high-molecular-weight B-cell growth factor (HMW-BCGF). Purified HMW-BCGF has been shown to induce B-cell proliferation, inhibit immunoglobulin secretion, and selectively expand certain B-cell subpopulations. Studies using antibodies to HMW-BCGF and its receptor have suggested that HMW-BCGF, while produced by T cells and some malignant B cells, acts predominantly on normal and malignant B cells. The HMW-BCGF cDNA was identified by expression cloning using a monoclonal antibody and polyclonal antisera to HMW-BCGF. Protein produced from the cDNA induced B-cell proliferation, inhibited immunoglobulin secretion, and was recognized in immunoblots by anti-HMW-BCGF antibodies. The amino acid sequence of HMW-BCGF deduced from the cDNA predicts a secreted protein of 53 kDa with three potential N-linked glycosylation sites. The identification of this cDNA will allow further studies examining physiologic roles of this cytokine. We propose to call it interleukin 14.

Amino Acid Sequence↗

Attenuation of immune-mediated glomerulonephritis with an anti-CD11b monoclonal antibody.

Nephrotoxic nephritis (NTN), a model of autoimmune glomerulonephritis, is characterized by glomerular inflammation, which results in both proteinuria and an increase in eicosanoid production. In light of the ability of CD18 integrins to participate in leukocyte adherence (and thereby migration), we examined the role of the integrin CD11b/CD18 in NTN using OX42, a monoclonal antibody directed against rat CD11b. Administration of OX42 30 min before induction of NTN decreased proteinuria (by 50%) but did not affect the number of leukocytes found in the glomerulus or the accompanying increase in glomerular eicosanoid production. Administration of OX42 16 h before disease induction led to a more substantial decrease in proteinuria (80%) and, in contrast to 30 min pretreatment, decreased the number of neutrophils found in the glomerulus and the accompanying increase in glomerular eicosanoid production (both by 50%). OX42 pretreatment had no effect on the number of macrophages found in glomeruli. Circulating leukocytes from animals treated with OX42 in vivo showed saturating surface levels of antibody by fluorescence-activated cell sorting (FACS) analysis and normal upregulation of CD11b by pharmacological activation. Sixteen hours after in vivo injection of OX42, 50% more peripheral leukocytes were labeled relative to control leukocytes labeled with OX42 ex vivo. Glomerular leukocytes in NTN exhibited upregulated expression of CD11b relative to peripheral leukocytes. These data show that CD11b/CD18 may participate in the acute expression of glomerular damage in NTN in a fashion not wholly dependent on blocking neutrophil migration into glomeruli. Blockade of surface receptors (as opposed to inhibition of upregulation) is sufficient to obtain this effect.

Animals↗

Platelets and neutrophils are critical to the enhanced glomerular arachidonate metabolism in acute nephrotoxic nephritis in rats.

Nephrotoxic nephritis (NTN) is characterized by a marked increase in glomerular eicosanoid synthesis, which appears to play an important role in the pathophysiology of this disease model. In this study, we investigated the biochemical and cellular basis of this metabolic change. By examining the enzymatic conversion of exogenous substrates by intact glomeruli, we found that cyclooxygenase, TX synthase, and 5-lipoxygenase activities increased 4-, 8-, and 100-fold, respectively, in acute NTN. PGH2-PGE2 isomerase and leukotriene A4 hydrolase activities did not change. The cellular basis of these changes was examined using dissociated glomerular cells in vitro and by depleting platelets in vivo. Dissociated glomerular cells from nephritic glomeruli (largely mesangial cells and leukocytes) exhibited an enhanced arachidonate metabolism similar to intact nephritic glomeruli. Depletion of neutrophils (PMNs) from these cell preparations by 90% commensurately decreased 5-lipoxygenase and cyclooxygenase activity but had little effect on TX synthase activity. The recovered PMN fraction, however, did exhibit TX synthase activity. Immunocytochemical analysis of dissociated cells using an antiplatelet antibody demonstrated the presence of platelets, both adherent to cells and noncell associated. Depletion of platelets in vivo using this antibody substantially attenuated the increase in glomerular eicosanoid synthesis that accompanied NTN. Platelet depletion also decreased the influx of PMNs into the glomerulus by 50%. These data show that PMNs and platelets colocalize to the glomerulus in acute NTN and are coordinately essential to the increase in glomerular arachidonate metabolism.

Animals↗

Role of the 5-lipooxygenase pathway in obstructive nephropathy.

Leukotrienes are products of the 5-lipooxygenase pathway of arachidonic acid metabolism that possess potent inflammatory properties. We examined the potential role of this pathway in the decrease in glomerular filtration rate (GFR) and effective renal plasma flow (ERPF) observed in rats after unilateral release of bilateral ureteral obstruction (BUO) of 24 hours duration. Isolated glomeruli from rats with BUO produced significantly greater amounts of leukotriene B4 (LTB4) than glomeruli from sham-operated rats (SOR; P less than 0.0001). Glomeruli from rats with BUO given MK886, an inhibitor of the 5-lipooxygenase enzyme, or from rats with BUO subjected to both total body irradiation to prevent the leukocyte infiltration of the kidney and also given MK886 prior to obstruction, produced amounts of LTB4 not significantly different from those in glomeruli of SOR. Glomeruli from rats with BUO that had only total body irradiation prior to obstruction produced significantly less LTB4 than glomeruli from untreated BUO rats, but LTB4 production was still significantly greater than in glomeruli from SOR. There were no significant differences in GFR among SOR, SOR given MK886, and SOR subjected to total body irradiation. However, SOR given MK886 had significantly higher ERPF and lower renal vascular resistance (RVR) than SOR not pretreated with the lipooxygenase inhibitor. Rats with BUO given MK886, or subjected to total body irradiation, or both, prior to obstruction had significantly greater GFR and ERPF values and lower RVR than untreated BUO rats. Glomeruli from rats with BUO which were not pretreated had three times the leukocytes of glomeruli from SOR. This leukocyte infiltrate was composed of macrophages (about 55%) and neutrophils (about 45%).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Paradoxical exacerbation of leukocyte-mediated glomerulonephritis with cyclooxygenase inhibition.

Nephrotoxic nephritis (NTN) is characterized by glomerular inflammation, an increase in glomerular eicosanoid synthesis, and renal dysfunction. Data further suggest that eicosanoids may play a critical role in the inflammatory response. In the current study, we examined the effects of in vivo manipulation of arachidonate metabolism on the cellular component of the inflammatory response in NTN. We found that inhibition of cyclooxygenase with indomethacin in mild NTN caused a two- to fourfold increase in the leukocyte influx into glomeruli with a change histologically from a focal to a more diffuse lesion. Both the accompanying proteinuria and the increase in ex vivo glomerular eicosanoid production were also augmented by the administration of indomethacin. The effect of indomethacin was reversible and not limited to the acute phase of NTN. The administration of aspirin, like indomethacin, augmented the glomerular inflammation of NTN. Neither OKY-046 (a thromboxane synthase inhibitor) nor MK-886 (a 5-lipoxygenase inhibitor) altered the glomerular inflammation of NTN. Administration of exogenous prostaglandin E (in the form of misoprostol) did diminish the proteinuria accompanying NTN; however, glomerular inflammation was not significantly affected. Incubation of glomeruli with [14C]arachidonate demonstrated the presence of noncyclooxygenase pathways of arachidonate metabolism (11-, 12-, and 15-lipoxygenases) with increased activity in NTN. These data demonstrate that cyclooxygenase inhibition may paradoxically worsen glomerular inflammation and suggest a potential role for noncyclooxygenase/non-5-lipoxygenase pathways of arachidonate metabolism.

Animals↗

Urinary eicosanoids and the assessment of glomerular inflammation.

Nephrotoxic nephritis, a model system for glomerulonephritis, is characterized by glomerular inflammation, proteinuria, and a marked increase in ex vivo glomerular eicosanoid production. This study addressed whether urinary eicosanoids might serve as noninvasive markers for glomerular inflammation and damage with nephrotoxic nephritis and its accelerated variant. Accelerated nephritis, relative to simple nephritis, was characterized by more substantial glomerular inflammation, particularly that due to neutrophils. Correspondingly, accelerated nephritis was accompanied by greater proteinuria and more marked elevations in glomerular eicosanoids generated ex vivo. With respect to urinary eicosanoids, thromboxane, but not leukotriene B4, was detected in the urine of normal animals. After the induction of nephrotoxic nephritis, urinary thromboxane was moderately elevated (twofold) and urinary leukotriene B4 was variably present (three of seven animals). In accelerated nephritis, urinary thromboxane was more markedly elevated (sixfold) and leukotriene B4 was consistently present. The presence of urinary leukotriene B4 was confirmed by gas chromatography/mass spectrometry. Urinary eicosanoids together correlated with glomerular leukocyte numbers and proteinuria by linear regression. Urinary leukotriene B4 individually correlated with glomerular neutrophil numbers. Renal metabolism of leukotriene B4 to omega oxidation products by the rat kidney was not apparent. These data validate that the enhanced glomerular eicosanoid metabolism seen in nephrotoxic nephritis takes place in vivo and additionally suggest that both urinary thromboxane and leukotriene B4 may serve as noninvasive markers for glomerular inflammation and damage. In light of these and prior studies, urinary thromboxane may be a general marker of glomerular inflammation and leukotriene B4 may be a more specific index of acute inflammation.

Animals↗

Role of leukocytes in metabolic and functional derangements of experimental glomerulonephritis.

Nephrotoxic nephritis (NTN) is characterized by an influx of leukocytes into the glomerulus, with accompanying glomerular dysfunction and a marked increase in glomerular eicosanoid production. We examined the relationship between the glomerular inflammatory cell infiltrate and the concomitant metabolic/functional changes in this model of renal disease using a combination of in vivo immunologic strategies to both decrease [X-irradiation and cobra venom factor (CVF)] and increase (preimmunization with rabbit immunoglobulin G or accelerated NTN) the inflammatory cell infiltrate. With the use of these manipulations, a close correlation between glomerular leukocytes and the proteinuria of NTN was observed. The ablative strategies (X-irradiation and CVF) also attenuated the increase in leukotriene B4 (LTB4) generation seen with NTN and virtually completely prevented the increase in thromboxane B2 (TxB2) production (basal and angiotensin II elicited). Accelerated NTN, in contrast, increased and prolonged the rise in glomerular LTB4 production and exacerbated the increase in TxB2 production. Glomerular prostaglandin E2 production was not altered by the induction of nephritis nor any of the aforementioned immunologic manipulations. Regression analysis established that glomerular TxB2 production correlated significantly with the leukocyte influx at both 3 and 24 h. Glomerular LTB4 production correlated only with the presence of leukocytes at 3 h. Both glomerular TxB2 and LTB4 production were closely correlated with the renal dysfunction as assessed by proteinuria. These data suggest that leukocytes play a direct critical role in both the functional and metabolic alterations that occur in the setting of NTN. They further imply that leukocytes are crucial to the observed increase in glomerular eicosanoid production.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Immunocytochemical and neurochemical evidence for age-related loss of GABA in the inferior colliculus: implications for neural presbycusis.

The present study describes substantial, selective, age-related loss of the putative inhibitory neurotransmitter GABA in the central nucleus of the inferior colliculus (CIC) of rat based on immunocytochemical and neurochemical data. For immunocytochemistry, neurons in the CIC were immunolabeled using an antibody against a GABA conjugate in young adult (2- to 7-month-old) and aged (18- to 29-month-old) Fischer-344 rats. Computer-assisted morphometry was then used to generate maps of GABA-immunoreactive neurons in the CIC. The number of GABA-positive neurons was reduced 36% in the ventrolateral portion of the CIC of aged animals (93 neurons/mm2) compared to their matched young adult cohorts (145 neurons/mm2; p less than 0.01). For neurochemistry, basal and K(+)-evoked release of the endogenous amino acids GABA, glutamate (Glu), aspartate (Asp), and tyrosine (Tyr) from micropunches of the CIC were measured in 8 age-paired animals from the 2 age groups using high-performance liquid chromatography. Overflow of radiolabeled acetylcholine (3H-ACh) was also determined. In both age groups, K(+)-evoked release of GABA, Glu, Asp, and 3H-ACh from CIC punches was significantly enhanced above basal efflux (+200, +215, +163, and +309%, respectively), while Tyr release was unchanged. Evoked release of 3H-ACh and all amino acids except Tyr showed substantial Ca2+ dependence. A significant (p less than 0.05) age-related reduction in both basal (-35%) and K(+)-stimulated (-42%) efflux of GABA from the CIC was observed. A corresponding decrease in postrelease tissue content of GABA in CIC of aged rats was observed (-30%, p less than 0.05). In contrast, tissue content as well as basal and evoked release of Glu, Asp, Tyr, and 3H-ACh was similar between the 2 age groups. Age-related GABA neurochemical changes described in the CIC were not observed in the release of the other amino acids or 3H-ACh from either the rostral ventrolateral medulla or the somatosensory cortex, 2 brain regions involved in processing non-auditory sensory input. These data support previous findings that GABA, Glu, Asp, and ACh may subserve neurotransmission in the CIC. Additionally, these data provide clear evidence for a pronounced, region- and neurotransmitter-selective, age-related reduction of GABA in the CIC. These findings support the hypothesis that impairment of inhibitory GABAergic neurotransmission in the CIC may contribute to abnormal auditory perception and processing seen in neural presbycusis.

Acetylcholine↗

Patent ductus arteriosus in the elderly.

Patent ductus arteriosus presenting in an elderly patient is unusual. This report describes the oldest patient (72 years) to undergo successful surgical interruption of a patent ductus arteriosus with a unique clinical presentation of typical angina pectoris with normal coronary anatomy. A possible pathophysiologic mechanism for this previously unreported presenting symptom is proposed. The natural history of patent ductus arteriosus and the role of surgery in the elderly patient are discussed.

Aged↗