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Biomedical subjects

D J Riley

Publications and source records attributed to D J Riley.

At least 19 recordsLinked to original sources

Kidney transplantation during the first trimester of pregnancy: immunosuppression with mycophenolate mofetil, tacrolimus, and prednisone.

We present a case of living, related-donor kidney transplantation during the first trimester of pregnancy. The patient received mycophenolate mofetil (MMF), tacrolimus, and prednisone throughout the entire pregnancy. This is the first reported case of use of MMF during pregnancy. The mother did well, except for mild preeclampsia and mild renal insufficiency at term. The baby girl was born prematurely at week 353/7. The only possible teratogenic effects detected included hypoplastic nails and short fifth fingers. No chromosomal abnormalities were found. The child is growing and developing normally. Although we do not recommend the use of mycophenolate mofetil during pregnancy based on this experience, it is reassuring to know that a successful outcome can be expected in mothers treated with MMF during pregnancy.

Abnormalities, Drug-Induced↗

Retinoblastoma protein enhances the fidelity of chromosome segregation mediated by hsHec1p.

Retinoblastoma protein (Rb) plays important roles in cell cycle progression and cellular differentiation. It may also participate in M phase events, although heretofore only circumstantial evidence has suggested such involvement. Here we show that Rb interacts, through an IxCxE motif and specifically during G(2)/M phase, with hsHec1p, a protein essential for proper chromosome segregation. The interaction between Rb and hsHec1p was reconstituted in a yeast strain in which human hsHEC1 rescues the null mutation of scHEC1. Expression of Rb reduced chromosome segregation errors fivefold in yeast cells sustained by a temperature-sensitive (ts) hshec1-113 allele and enhanced the ability of wild-type hsHec1p to suppress lethality caused by a ts smc1 mutation. The interaction between Hec1p and Smc1p was important for the specific DNA-binding activity of Smc1p. Expression of Rb restored part of the inactivated function of hshec1-113p and thereby increased the DNA-binding activity of Smc1p. Rb thus increased the fidelity of chromosome segregation mediated by hsHec1p in a heterologous yeast system.

Amino Acid Motifs↗

Role of proteolysis and apoptosis in regression of pulmonary vascular remodeling.

Remodeled pulmonary arteries return to normal structural conditions after the increase in pulmonary artery flow resistance is reversed. We studied whether proteolysis of extracellular matrix proteins and apoptosis occur during reversal of remodeling produced by chronic hypoxia in the rat. Main pulmonary arteries were removed at different times during a 10-day period of exposure to 10% O2 and 14 days after return to air. Content and rates of degradation of collagen and elastin as well as immunoreactive collagenase in tissue and isolated mast cells were measured. Immunoblots for collagenase and tissue inhibitor of metalloproteinases (TIMP) were performed. Apoptosis was assessed by cleavage of DNA and TUNEL assay. Excess collagen and elastin present at 10 days of hypoxia decreased to near normal levels after 3-5 days of air. Transient increases in collagenolytic and elastolytic enzyme activities accompanied the rapid decrease in matrix proteins. Mast cells containing collagenase accumulated in remodeled pulmonary arteries, and the active form of collagenase appeared at the time of peak proteolytic activity. TIMP increased during remodeling. Apoptosis was maximal 3 days after return to air. Our results suggest that activation of enzymes, which degrade matrix proteins, and apoptosis play a role in resolution of vascular remodeling.

Animals↗

Flow cytometric determination of cell proliferation in hypertensive blood vessels.

BACKGROUND: Measurement of vascular cell proliferation in animal models of hypertension is currently accomplished by demonstrating [(3)H]-thymidine ([(3)H]-dT) incorporation into DNA using autoradiography. This method, however, is labor intensive, requires radioactivity, and is limited by the inherent difficulty in discriminating labeled and unlabeled cells. To address these limitations, a flow cytometric-based method is described utilizing incorporation of 5-bromo-2'-deoxyuridine (BrdU) into DNA of nuclei isolated from blood vessels. METHODS: Pulmonary hypertension was induced in rats by exposure to 10% O(2) (hypoxia) for varying periods of time. Pulmonary arteries and aorta from rats injected with BrdU prior to sacrifice were isolated, fixed with 10% formalin, and digested with Protease XIV. The intact nuclei liberated by this treatment were successively treated with HCl/Triton X-100 and sodium borate. Processed nuclei were probed with a BrdU-specific fluorescein-conjugated antibody, and the percentage of BrdU staining cells was determined using flow cytometry. RESULTS: An approximately 20-fold increase in BrdU-positive cells at 3 days of hypoxia in pulmonary arteries (relative to control) with no change in aorta was observed. These results were similar to previous studies using [(3)H]-dT labeling. CONCLUSIONS: Flow cytometric determination of cell proliferation in blood vessels is a simple, objective technique that may facilitate measurement of cell proliferation in animal models of vascular disease.

Animals↗

Shared cadaver donor-husband HLA class I mismatches as a risk factor for renal graft rejection in previously pregnant women.

During the last few years, we have observed four cases in which accelerated rejection of a cadaver donor kidney in a previously pregnant woman could be clearly attributed to the rapid emergence of anti-human leukocyte antigen (HLA) antibodies that had been stimulated by mismatched paternal antigens but were completely undetectable at the time of transplantation. In addition to reviewing those cases, we also reviewed data on 19 other women with a history of at least one pregnancy who underwent transplantation with a first cadaveric kidney since 1991 and were followed for at least six months. The HLA antigens of the husbands had to have been determined and all accelerated rejection or early graft losses due to confirmed or presumed immunological causes were considered. Of the 19 additional women meeting these inclusion criteria, three suffered early immunological graft loss. As in our index cases, two of these women had also received kidneys from donors who shared at least one major immunogenic mismatched antigen with the respective husband for a total of six of seven women with early immunological graft loss. Only one of the 16 women without accelerated rejection or early immunological graft loss had a donor who shared a mismatched antigen with her husband. The difference between the two groups is statistically significant (p = 0.0005). These findings, considered with individual cases reported by other groups, indicate that transplantation from a cadaver donor with immunogenic mismatched class I HLA antigen(s) shared with the husband should be avoided in women with a previous history of pregnancy even when anti-HLA antibodies are not currently detected.

Adult↗

Isolation of differentially expressed genes in hypertensive pulmonary artery of rats.

Pulmonary artery remodeling is a complex biological process, and a key molecular mechanism regulating this process is selective up- and downregulation of genes. We used reverse transcriptase-polymerase chain reaction (RT-PCR) differential display in a rat model of hypoxic pulmonary hypertension to identify selectively expressed genes relevant to pulmonary artery remodeling. We characterized the pattern of gene expression in hypertensive and normal arteries. Eight differentially expressed cDNAs were selected, isolated, and characterized. Homology searches identified 4 previously identified genes and 4 novel genes that were not further characterized. The known genes were beta-glucoronidase, hemeoxygenase-2 (HO-2), glycerol-3-phosphate dehydrogenase, and cytoplasmic gamma-actin. Each of the 4 known genes was relevant to processes involved in pulmonary artery remodeling. We conclude that mRNA differential display was informative in identifying genes coding for products directly involved in pulmonary artery remodeling.

Actins↗

A paradigm for cancer treatment using the retinoblastoma gene in a mouse model.

Discovery of tumor suppressor genes has provided a rational approach to cancer prevention and treatment. Loss of retinoblastoma susceptibility gene (Rb) function is a rate-limiting event in the development of human and mouse cancers. Establishment of animal models of cancer associated with Rb deficiency allowed us to develop and test long-awaited approaches to genetic correction for treating tumors in vivo. Recent studies demonstrated that (1) prevention of carcinogenesis is achieved by correction of gene copy number in Rb+/- mice, and (2) reconstitution of Rb gene functions is sufficient for suppression of neoplasia in immunocompetent mice. These results fulfill a promise of cancer treatment by reconstitution of tumor suppressor function.

Animals↗

Remodeling of rat neonatal pulmonary artery: role of matrix metalloproteinases.

We studied whether rapid thinning of large pulmonary arteries of neonatal rats is associated with breakdown of collagen. Pulmonary artery extracts from fetal to 21 days of age were assayed for collagen content and matrix metalloproteinases. Within 3 days postpartum, no changes in collagen content, collagenolytic activity, or levels of stromelysin-l or gelatinase A were observed. After day 3, collagen content and total proteolytic activity increased with little change in matrix metalloproteinase expression. Thus, collagen was not degraded, and the late increases in collagen and total proteolytic activity were probably growth related. Unlike adult rats in which collagen is broken down after reversal of hypoxic pulmonary artery remodeling, collagen is not broken down in neonatal pulmonary arteries during adaptation to extrauterine life.

Animals↗

Expression of matrix-degrading enzymes in pulmonary vascular remodeling in the rat.

Exposure of rats to hypoxia causes pulmonary arterial remodeling, which is partly reversible after return to air. We hypothesized that degradation of excess collagen in remodeled pulmonary arteries in the posthypoxic period is mediated by endogenous matrix metalloproteinases (MMPs). Total proteolytic, collagenolytic, and gelatinolytic activities, levels of stromelysin-1 and tissue inhibitor of metalloprotease-1 (TIMP-1), and immunolocalization of stromelysin-1 in main pulmonary arteries were determined after exposure of rats to 10% O2 for 10 days followed by normoxia. We observed transient increases in total proteolytic, collagenolytic, and gelatinolytic activities and expression of approximately 72-, 68-, and 60-kDa gelatinases by zymography within 3 days of cessation of hypoxic exposure. The level of TIMP-1 increased as the stromelysin-1 level increased. Immunoreactive stromelysin-1 was localized predominantly in the luminal region of normal and hypertensive pulmonary arteries. These results are consistent with the notion that endogenous MMPs may mediate the breakdown of excess collagen in remodeled pulmonary arteries during the early posthypoxic period.

Animals↗

Mast cell collagenase correlates with regression of pulmonary vascular remodeling in the rat.

Pulmonary vascular remodeling, produced by cell hypertrophy and extracellular matrix protein synthesis in response to hemodynamic stress, regresses after reduction of blood pressure, possibly by proteolysis of structural proteins. To test this postulate, we assessed the breakdown of extracellular matrix proteins and expression of collagenase and elastase in pulmonary arteries of rats exposed to hypoxia (10% O2 for 10 d) followed by normoxia. During hypoxia, contents of collagen and elastin increased in pulmonary arteries and latent rat interstitial collagenase was expressed without increased collagenolytic activity or mRNA levels. At 3 days after normoxia, collagen and elastin contents decreased coincident with the new appearance of activated collagenase and transient increases in collagenolytic and elastolytic activities. The amount of immunoreactive collagenase, localized predominately in connective tissue-type mast cells, was increased in the adventitia and media of hypertensive vessels. We conclude that mast cells containing latent collagenase are recruited into the outer walls of pulmonary arteries during remodeling. It is possible that mast cell-derived collagenase contributes to collagen breakdown in pulmonary arteries during early recovery from hypoxia and plays a role in restoration of vascular architecture.

Animals↗

Earlier onset of melanotroph carcinogenesis in mice with inherited mutant paternal allele of the retinoblastoma gene.

The role of genomic imprinting in the development of tumors with defective retinoblastoma protein function remains debatable. Disruption of either parental allele of the murine retinoblastoma (Rb) gene is sufficient for spontaneous melanotroph carcinogenesis to occur in almost all Rb+/- mice. Nevertheless, mice with a disrupted paternal Rb allele succumb to tumors faster. In these animals, the first foci of proliferating atypical Rb-negative cells appear and progress to overtly malignant tumors earlier. In addition, more foci of early atypical proliferation are observed. In Rb+/- mice, however, parental origin influences neither Rb expression nor proliferation of melanotrophs. Accordingly, Rb-/- mice rescued by the human RB transgene transmitted either paternally or maternally have similar survival rates. Taken together, the data point to the existence of an imprinted gene in an Rb-linked locus. The function of this gene affects the onset of melanotroph carcinogenesis, likely by controlling preferential survival of the cells with secondary loss of the Rb maternal allele. Rb+/- mice may serve as useful models to identify and characterize genomic imprinting mechanisms influencing carcinogenesis associated with Rb loss of function.

Age of Onset↗

HEC, a novel nuclear protein rich in leucine heptad repeats specifically involved in mitosis.

The protein encoded by the human gene HEC (highly expressed in cancer) contains 642 amino acids and a long series of leucine heptad repeats at its C-terminal region. HEC protein is expressed most abundantly in the S and M phases of rapidly dividing cells but not in terminal differentiated cells. It localizes to the nuclei of interphase cells, and a portion distributes to centromeres during M phase. Inactivation of HEC by microinjection of specific monoclonal antibodies into cells during interphase severely disturbs the subsequent mitoses. Disordered sister chromatid alignment and separation, as well as the formation of nonviable cells with multiple, fragmented micronuclei, are common features observed. These results suggest that the HEC protein may play an important role in chromosome segregation during M phase.

Amino Acid Sequence↗

Mutations of N-terminal regions render the retinoblastoma protein insufficient for functions in development and tumor suppression.

To assess biological roles of the retinoblastoma protein (RB), four independent transgenic mouse lines expressing human RB with different deletions in the N-terminal region (RBdeltaN) were generated and compared with mice expressing identically regulated, full-length RB. Expression of both RB and RBdeltaN caused developmental growth retardation, but the wild-type protein was more potent. In contrast to wild-type RB, the RBdeltaN proteins were unable to rescue Rb-/- mice completely from embryonic lethality. Embryos survived until gestational day 18.5 but displayed defects in the terminal differentiation of erythrocytes, neurons, and skeletal muscle. In Rb+/- mice, expression of the RBdeltaN transgenes failed to prevent pituitary melanotroph tumors but delayed tumor formation or progression. These results strongly suggest that N-terminal regions are crucial for embryonic and postnatal development, tumor suppression, and the functional integrity of the entire RB protein. Furthermore, these transgenic mice provide models that may begin to explain human families with low-penetrance retinoblastoma and mutations in N-terminal regions of RB.

Amino Acid Sequence↗

Polymeric carrier of proline analogue with antifibrotic effect in pulmonary vascular remodeling.

The proline analogue cis-4-hydroxy-L-proline (cHyp) inhibits collagen accumulation but diffuses out of tissues. To prolong the antifibrotic effect, we used a copolymer of cHyp attached to a backbone of poly(ethylene glycol) (PEG) and lysine. The copolymer was encapsulated in liposomes conjugated with PEG or in liposomes coated with the polysaccharide amylopectin to improve uptake by lungs after intravenous infusion. Amylopectin-liposomes had approximately 3-fold greater uptake in cultured endothelial cells compared with PEG-liposomes and greater lung retention 1 wk after infusion (5.2 +/- 0.8% versus 2.7 +/- 0.2%, p < 0.05). Sustained antifibrotic activity, assayed by growth inhibition of smooth muscle cells and fibroblasts over 4 d, was greater for amylopectin-liposomes/copolymer than PEG-liposomes/copolymer. Inhibition of collagen accumulation in pulmonary arteries of hypoxic (10% O2) rats was used to assess antifibrotic activity. Amylopectin-liposomes/copolymer attenuated increased right ventricular pressure by approximately 50% and completely prevented excess vascular collagen 1 wk after a single intravenous injection. The copolymer in liposomes was > 1,000-fold more effective by weight than unencapsulated monomeric cHyp. Thus, the copolymer, a potent, long-acting antifibrotic agent, totally prevented collagen accumulation for 1 wk in pulmonary arteries undergoing vascular remodeling when delivered in amylopectin-liposomes.

Amylopectin↗