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Biomedical subjects

J Yates

Publications and source records attributed to J Yates.

At least 55 records · Page 3Linked to original sources

Bone marrow transplantation in apolipoprotein E-deficient mice. Effect of ApoE gene dosage on serum lipid concentrations, (beta)VLDL catabolism, and atherosclerosis.

Apolipoprotein E (apoE), a high-affinity ligand for lipoprotein receptors, is synthesized by the liver and extrahepatic tissues, including cells of the monocyte/macrophage lineage. Inactivation of the apoE gene in mice leads to a prominent increase in serum cholesterol and triglyceride levels and the development of premature atherosclerosis. In this study, the role of monocyte/macrophage-derived apoE in lipoprotein remnant metabolism and atherogenesis was assessed. The influence of apoE gene dosage on serum lipid concentrations was determined by transplantation of homozygous apoE-deficient (apoE-/-), heterozygous apoE-deficient (apoE+/-), and wild-type (apoE+/+) bone marrow in homozygous apoE-deficient mice. The concentration of apoE detected in serum was found to be gene dosage dependent, being 3.52 +/- 0.30%, 1.87 +/- 0.17%, and 0% of normal in transplanted mice receiving either apoE+/+, apoE+/-, or apoE-/- bone marrow, respectively. These low concentrations of apoE nevertheless dramatically reduced serum cholesterol levels owing to a reduction of VLDL and, to a lesser extent, LDL, while HDL levels were slightly raised. After 4 months on a "Western-type" diet, atherosclerosis was evidently reduced in mice transplanted with apoE+/+ bone marrow, compared with control transplanted mice. To study the mechanism of the lipoprotein changes on bone marrow transplantation, the in vivo turnover of autologous serum (beta)VLDL was studied. The serum half-life of (beta)VLDL in transplanted mice, compared with control apoE-deficient mice, was shortened mainly as a consequence of an increased recognition and uptake by the liver. Analysis of the relative contribution of the liver parenchymal cells, endothelial cells, and Kupffer cells (liver tissue macrophages) indicated an increased uptake by parenchymal cells, while the relative contribution to Kupffer cells was decreased. In conclusion, macrophage-derived apoE can dose-dependently reduce hypercholesterolemia in apoE-deficient mice owing to increased recognition and uptake of (beta)VLDL by parenchymal liver cells, leading to a decreased susceptibility to atherosclerosis.

Animals↗

Vocal tract resonance characteristics of adults with obstructive sleep apnea.

Vocal tract acoustic resonance was evaluated in a group of 10 untreated adult males with diagnosed obstructive sleep apnea (OSA) syndrome compared to 10 non-OSA adult males. Subjects were required to prolong the vowels /i/, /u/ and /a/, which were subsequently submitted to acoustic analysis of formant frequency and formant bandwidth. Results of the formant frequency analysis indicated lower formant values among the OSA group compared to the non-OSA group, for each vowel type. The lower formant frequencies among the OSA group were attributed to greater vocal tract length compared to non-OSA speakers. The corresponding formant bandwidths for each vowel produced by the OSA group were significantly wider compared to the non-OSA group. The wide formant bandwidths were interpreted to reflect significantly greater vocal tract damping in the OSA subjects, resulting from either excessive vocal tract tissue compliance or general size differences in the length and cross-sectional area of the vocal tract. Discussion focuses on the potential applications of acoustic analysis to aid in the diagnosis and follow-up treatment of OSA.

Adult↗

Cyclin-dependent kinase activation and S-phase induction of the cyclin B1 gene are linked through the CCAAT elements.

Control of cell proliferation is dependent on the regulated expression of the cyclin genes. Induction of cyclin B1 gene expression in S phase has been shown to require sequences within the first 90 bp of the proximal promoter region. In this study, we defined the cell cycle regulatory elements within this region and explored the mechanism by which the cyclin B1 gene is activated. A CDE-like element that is important in S-phase regulation of other genes was not required for correct cell cycle expression of cyclin B1. Instead, two CCAAT boxes were essential for S-phase induction of cyclin B1 gene in both NIH3T3 and HeLa cells. Induction of cyclin B1 by cyclin/cyclin-dependent kinase (cdk) complexes were examined by cotransfection of the reporter along with appropriate expression vectors. Complexes of cdk4 with cyclin D1 or cdk2 with cyclin E or A can activate the cyclin B1 promoter, and activation is uniquely dependent on the CCAAT elements in both normal and heterologous contexts. This transcription factor NF-Y binds to both CCAAT elements. These findings suggest that S phase-specific induction of the cyclin B1 promoter is dependent upon NF-Y binding to the CCAAT elements and is correlated with activation by cyclin-dependent kinases.

3T3 Cells↗

ATP-citrate lyase as a target for hypolipidemic intervention. Design and synthesis of 2-substituted butanedioic acids as novel, potent inhibitors of the enzyme.

ATP-citrate lyase is the primary enzyme responsible for the synthesis of cytosolic acetyl-CoA in many tissues. Inhibitors of the enzyme represent a potentially novel class of hypolipidemic agent, which are anticipated to have combined hypocholesterolemic and hypotriglyceridemic properties. A series of 2-substituted butanedioic acids have been designed and synthesized as inhibitors of the enzyme. The best compounds, 58, 68, 71, 74 have reversible Ki's in the 1-3 microM range against the isolated rat enzyme. As representative of this compound class, 58, has been shown to exert its inhibitory action through a mainly competitive mechanism with respect to citrate and a noncompetitive one with respect to CoA. None of the inhibitors were able to inhibit cholesterol and/or fatty acid synthesis in HepG2 cells. This has been attributed to the adverse physicochemical properties of the molecules leading to a lack of cell penetration. Despite this, a lead structural class of compound has been identified with the potential for modification into potent, cell-penetrant, and efficacious inhibitors of ATP-citrate lyase.

ATP Citrate (pro-S)-Lyase↗

Water soluble inhibitors of topoisomerase I: quaternary salt derivatives of camptothecin.

Eleven water soluble 7-substituted quaternary ammonium salt derivatives of 10,11-(methylenedioxy)- and 10,11-(ethylenedioxy)-(20S)-camptothecin were synthesized via the Friedlander reaction followed by nucleophilic displacement with an aromatic amine. All of these compounds were more potent than camptothecin in the in vitro cleavable complex assay. These inherently charged camptothecin derivatives were cytotoxic against three different human tumor cell lines (SKOV3, an ovarian adenocarcinoma; SKVLB a multidrug resistant ovarian adenocarcinoma; and HT-29, a colon carcinoma). A selected group of five compounds was evaluated in the nude mouse HT-29 xenograft model. Two of these quaternary salts (17 and 18) were more efficacious than Topotecan in delaying tumor growth. In an extended in vivo model, 18 demonstrated tumor regression.

Adenocarcinoma↗

Octreotide inhibits the growth and development of three types of experimental liver metastases.

A study was performed to assess the effects of octreotide on the growth and development of liver metastases in rats. Tumour was induced by intraportal injection of three tumorigenic cell lines (the fibrosarcoma HSN and colonic adenocarcinomas K12/Tr and WB2054M) in syngeneic rats. Octreotide treatment (2 micrograms subcutaneously for 3 or 4 weeks) was started 18 h and 1 week after tumour induction; a delay in treatment of 1 week allowed micrometastases to develop. Treatment with octreotide significantly (P < 0.001) reduced the median hepatic replacement of liver by tumour compared with that of control rats given saline (controls: HSN 76.4 per cent, K12/Tr 17.5 per cent, WB2054M 43.9 per cent; octreotide treatment delayed 18 h: HSN 2.7 per cent, K12/Tr 0.6 per cent, WB2054M 1.3 per cent; octreotide treatment delayed 1 week: HSN 9.3 per cent, K12/Tr 2.5 per cent, WB2054M 2.3 per cent). These results clearly indicate that octreotide significantly inhibits the growth and development of experimental liver metastases. Further studies are required both to delineate the mechanism of action and to investigate these effects in a clinical setting.

Animals↗

Physical map locations of the phospholipid biosynthetic structural and regulatory genes of Saccharomyces cerevisiae.

Here we report the physical map locations of five genes required for phospholipid biosynthesis in Saccharomyces cerevisiae. These include four structural genes (INO1, CHO2, OPI3 and PIS1) and one global negative regulatory gene (UME6). Collectively, this information completes the mapping of all phospholipid biosynthetic structural and regulatory genes identified to date.

Chromosome Mapping↗

Predicting vertebral deformity using bone densitometry at various skeletal sites and calcaneus ultrasound.

We investigated the usefulness of bone density measurements from multiple skeletal sites and calcaneus ultrasound for evaluating the probability of vertebral deformation. Bone mineral density (BMD) was measured at the second metacarpal and middle phalanges using radiographic absorptiometry of hand radiographs, and at the lumbar spine using dual-energy x-ray absorptiometry. Distal radius and proximal radius were measured using single-energy x-ray absorptiometry (SXA), expressed as bone mineral content (BMC, grams per centimeter), and as BMD (grams per square centimeter). The calcaneus was measured using both SXA (BMD) and broadband ultrasound attenuation (BUA). Among the women in this study (mean age 74, SD = 5), 84 women developed new vertebral deformations (57 cases with one and 27 cases with two or more deformations), which were identified on serial radiographs during an average of 9 years prior to the measurements of bone density. Logistic regression analysis was used to calculate odds ratios for risk of deformation corresponding to a 1-SD difference in density or ultrasound, adjusted for age. All bone measurements were significantly associated with vertebral deformation, with odds ratios (95% confidence intervals) ranging from 1.40 (1.10, 1.78) for proximal radius BMD to 1.88 (1.45, 2.44) for calcaneus BMD measurements. Measurements of calcaneal BUA, calcaneal BMD, and hand BMD generally remained significant when included simultaneously with another measurement in the same model, suggesting that spine or radius BMD may not provide much additional information about risk of deformation. It appears that all of the measurements of bone density and ultrasound provide useful information regarding the probability of deformation. These findings await confirmation in a prospective study.

Absorptiometry, Photon↗

Effect of octreotide infusion on hepatic and tumour blood flow in two experimental models of liver metastases.

OBJECTIVE: To investigate the effects of octreotide infusion on hepatic and tumour blood flow in rats with experimentally induced liver tumours. DESIGN: Blood flow was determined in tumour-bearing rats using a dual reference microsphere technique before and after intravenous infusion of octreotide. METHODS: Tumours were induced in syngeneic rats by intraportal injection of K12-Tr and WB2054-M adenocarcinoma cells. Hepatic arterial and portal venous inflow, tumour blood flow and systemic arterial pressure were determined before and after octreotide infusion (0.05 microgram/min). RESULTS: In rats with K12-Tr tumours there was no change in tumour blood flow, hepatic arterial flow or portal venous inflow after octreotide infusion. In contrast, in rats with WB2054-M tumours, octreotide infusion resulted in a significant reduction in the blood flow to the hepatic tumour (from 0.37 to 0.135 ml/min/g) but had no effect on hepatic artery or portal venous inflow. CONCLUSION: The reduction in blood flow to tumours derived from WB2054-M cells could, at least in part, explain the inhibitory effect of octreotide on the growth and development of these tumours. However, octreotide had no effect on blood flow to tumours derived from K12-Tr cells, suggesting that the analogue must inhibit tumour growth by other mechanisms.

Adenocarcinoma↗

Octreotide, the reticuloendothelial system, and experimental liver tumour.

The inhibitory effect of octreotide on the growth of liver tumour is probably mediated (at least in part) by stimulation of the hepatic reticuloendothelial system (RES) activity. This study therefore investigated the effect of octreotide on the hepatic and splenic RES (assessed by the uptake of technetium 99m labelled albumin colloid, 99mTc-AC) in normal and tumour bearing rats and in animals treated with gadolinium chloride. The effects of gadolinium chloride and octreotide alone or in combination on the growth of liver tumour were also studied. Octreotide significantly stimulates both hepatic and splenic uptake of 99mTc-AC in normal rats and tumour bearing rats. In controls, the uptake of 99mTc-AC was significantly reduced by gadolinium chloride and was not changed by octreotide. RES blockade with gadolinium chloride significantly increased (p < 0.001) tumour growth compared with controls (hepatic replacement 42%; 95% confidence intervals (CI), 27.6 to 56.4 v 16.7%, 95% CI, 11.1 to 21.3%) whereas octreotide significantly inhibited (p < 0.001) the percentage hepatic replacement by tumour (0.7%; 95% CI, 0 to 2.3 v 16.7%; 95% CI, 11.1 to 21.3). This study highlights the importance of the RES in the development of liver tumour. Furthermore, octreotide inhibited the growth of liver tumour in rats with RES blockade, albeit to a lesser degree than in normal animals. These findings suggest that octreotide inhibits the growth of hepatic tumour by mechanisms other than stimulation of RES activity.

Animals↗

Improved engraftment of human spleen cells in NOD/LtSz-scid/scid mice as compared with C.B-17-scid/scid mice.

T and B lymphocyte-deficient mice homozygous for the severe combined immunodeficiency (SCID) mutation can be immunologically engrafted with human lymphocytes. However, low levels of human peripheral blood mononuclear cell engraftment are commonly observed, impeding full use of this model. We now demonstrate that strain background in mice homozygous for the scid mutation is a strong determinant of levels of human lymphocyte engraftment. NOD/LtSz-scid/scid mice support higher levels of engraftment of both human spleen and peripheral blood mononuclear cells than do C.B-17-scid/scid mice. We observed, using human spleen cell injected scid mice, 1), high levels of engraftment of the host peripheral lymphoid tissues with human CD45+ (leukocytes), CD3+ (T cells), CD4+ (helper/inducer), and CD8+ (suppressor/cytotoxic) lymphoid cells for up to 24 weeks in NOD/LtSz-scid/scid mice; 2), migration of high numbers of human lymphocytes to peripheral lymphoid and nonlymphoid organs in NOD/LtSz-scid/scid, but not in C.B-17-scid/scid mice; 3), higher levels of serum immunoglobulin of human origin in NOD/LtSz-scid/scid mice than in C.B-17-scid/scid mice; 4), histological lesions characteristic of human anti-mouse xenoreactivity in NOD/LtSz-scid/scid mice; and 5), human origin antibodies against filarial antigens after engraftment with native human spleen cells. The use of NOD/LtSz-scid/scid mice as recipients to achieve significantly enhanced human lymphopoietic cell engraftment will now enable human immunity to be more easily studied in animal models.

Animals↗

B lymphocytes are not required for murine resistance to the human filarial parasite, Brugia malayi.

Immunocompetent mice are resistant to the growth and development of human lymphatic filarial parasites, including the aperiodic strain of Brugia malayi. We have recently established that mice homozygous for the severe combined immunodeficiency (scid) mutation, and therefore deficient in both T and B lymphocytes, are permissive for infection. This observation suggests that components of the adaptive (antigen-specific) immune system are obligate requirements for murine resistance to B. malayi. In order to determine more precisely the component of the immune system that mediates murine resistance to B. malayi, we have used mouse strains in which individual genes involved in the maturation of specific components of the immune system have been disrupted by homologous recombination. In previous studies, we demonstrated that mice that lack either major histocompatibility (MHC) class I restricted, CD8+ T lymphocytes (beta 2-microglobulin knockout mice; beta 2M-/-) or CD4+ T lymphocytes (CD4 knockout mice; CD4-/-) are as resistant to B. malayi as intact mice. In the current study, we have used mice in which the membrane exon of the immunoglobulin (Ig) mu (heavy chain) constant region gene segment has been disrupted by homologous recombination. These mice cannot develop mature B lymphocytes and lack serum Ig. We demonstrate that such "B-less" mice are completely resistant to B. malayi. These data, taken in combination with the observation that T-cell-deficient athymic mice homozygous for the nu (nude) mutation are fully permissive for infection, suggest that B lymphocytes and their products are neither required nor sufficient to mediate resistance to B. malayi.

Animals↗

Influence of gonadal steroids on susceptibility to Brugia malayi in scid mice.

In the present study, we demonstrate that male scid/scid mice have higher adult worm burdens than do female scid/scid mice following equal challenge doses of infective Brugia malayi L3 larvae. Gonadectomy of four week old immature mice has no effect on worm burden in either sex, suggesting that the gender dichotomy between males and females does not depend on continued presence of endogenous gonadal steroids. The worm yield from female, but not male, mice can be increased by prepubertal oophorectomy combined with administration of either estradiol or testosterone in depot form. Our results raise the possibility that prepubertal steroid pulse(s) result(s) in physiological changes in male scid/scid mice that enhance worm growth. These studies confirm earlier reports of epidemiological data in humans suggesting a sexual dimorphism in susceptibility to filarial infection. Our data suggest that this gender difference is not due simply to the presence of adult gonadal steroids, but rather to ontogenic differentiative actions of sex steroids in the host.

Animals↗

Low plasma and renal tissue levels of L-arginine in rats with obstructive nephropathy.

Rats with bilateral ureteral obstruction (BUO) of 24 hours duration had significantly lower plasma levels of L-arginine than at baseline (P < 0.0001), but no significant changes occurred in sham-operated rats (SOR). In contrast, rats with bilateral nephrectomy had greater plasma levels of L-arginine four hours (P < 0.03) and 24 hours (not significant) after nephrectomy than at baseline. Total body irradiation prior to obstruction prevented the decrease in plasma levels of L-arginine in rats with BUO but had no effect on these values in SOR. Renal tissue levels of L-arginine were 20% lower in rats with BUO than in SOR. Total body irradiation prior to BUO resulted in greater renal tissue levels of L-arginine than occurred in nonirradiated rats with BUO (P < 0.002). Total body irradiation did not effect renal tissue levels of L-arginine in SOR. Excretion of reactive nitrogen intermediates in urine (URNI), indicative of L-arginine metabolism through the nitric oxide pathway, was lower in rats with BUO than in SOR (P < 0.001). Proximal tubules from rats with BUO synthesized less L-arginine than those from SOR (P < 0.02). The results indicate that: (1) decreased levels of L-arginine in plasma and renal tissue of rats with BUO correlate with leukocyte infiltration of the kidney, and (2) decreased synthesis of L-arginine occurs in proximal tubules of rats with BUO when compared to tubules from SOR.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Transposition of IST2 in Thiobacillus ferrooxidans.

The genome of Thiobacillus ferrooxidans contains at least two different repetitive DNA elements. One of these elements, termed IST2 has been sequenced and shown to exhibit the characteristics of a typical prokaryotic insertion sequence. Furthermore, preliminary evidence has implicated IST2 in genomic rearrangements, although the mechanism of rearrangement, whether by transposition or recombination, has not been established. In this report we provide evidence from detailed restriction enzyme analyses and DNA sequencing data that support a model of transposition, consistent with the notion that IST2 is a mobile insertion sequence.

Amino Acid Sequence↗