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Biomedical subjects

C Warner

Publications and source records attributed to C Warner.

At least 19 recordsLinked to original sources

In vitro and in vivo study on the effect of autogenous cancellous bone and intramedullary polymethylmethacrylate on allograft construct strength.

An in vitro study was performed to compare the effects of augmenting interlocking nails of one of two diameters (5 or 6 mm) with intramedullary polymethylmethacrylate. Subsequently, an in vivo study was performed to compare the effects of augmenting the interlocking nail with five combinations of intramedullary polymethylmethacrylate and autogenous cancellous bone applied to the periosteal surface or within the medullary canal. Dogs were killed 6 months after the procedure for biomechanical evaluation of the femora in axial compression, mediolateral and craniocaudal bending, and torsion. Results from the in vitro study at the proximal osteotomy indicated the 6-mm interlocking nail with intramedullary polymethylmethacrylate had greater stiffness than the 5-mm interlocking nail without it (p < 0.05). At the distal osteotomy, regardless of the diameter of the interlocking nail, the addition of intramedullary polymethylmethacrylate increased stiffness (p < 0.05). Results from the in vivo study indicated greater global construct stiffness with an interlocking nail alone, an interlocking nail augmented with intramedullary polymethylmethacrylate and cancellous bone at the periosteal surface, and an interlocking nail augmented with cancellous bone within the medullary canal and at the periosteal surface (p < 0.05). At the osteotomy level, the interlocking nail augmented with intramedullary polymethylmethacrylate and cancellous bone at the periosteal surface had greater stiffness than did an interlocking nail alone or an interlocking nail augmented with either intramedullary polymethylmethacrylate, cancellous bone within the medullary canal, or cancellous bone at the periosteal surface (p < 0.05) but produced the same results as an interlocking nail augmented with cancellous bone within the medullary canal and at the periosteal surface. The results suggest that augmenting interlocking nail fixation with intramedullary polymethylmethacrylate by itself offers no advantage but that a combination of intramedullary polymethylmethacrylate and cancellous bone at the periosteal surface improves structural properties at 6 months.

Animals

Effect of intramedullary polymethylmethacrylate and autogenous cancellous bone on healing of frozen segmental allografts.

This study was designed to compare bone mineral density, periosteal callus production, new bone formation, bone porosity, histologic appearance, and union of mid-diaphyseal segmental allografts of the femur stabilized with an interlocking nail technique in a canine model 6 months after the procedure. An in vivo study was performed to compare the effects of augmenting interlocking nail fixation with an interlocking nail alone, intramedullary polymethylmethacrylate, intramedullary polymethylmethacrylate and autogenous cancellous bone applied to the periosteal surface of the host-allograft junction, autogenous cancellous bone applied to the endosteal surface of the allograft, autogenous cancellous bone applied to the periosteal surface of the host-allograft junction, and autogenous cancellous bone applied to the periosteal surface of the host-allograft junction and to the endosteal surface of the allograft. There were no differences among treatments for bone mineral density at any time interval. Callus area 4 weeks after the procedure was greater along the lateral and cranial surfaces for treatments with periosteal cancellous bone (p < 0.05). New bone within the allograft segment did not differ among treatments and was reduced compared with the host-allograft junctions (p < 0.05). The amount and quality of bone tissue at the host-allograft junctions were greatest with treatments of intramedullary polymethylmethacrylate and autogenous cancellous bone applied to the periosteal surface of the host-allograft junction and of autogenous cancellous bone applied to the periosteal surface of the host-allograft junction and to the endosteal surface of the allograft (p < 0.05). The rate of bone union was lower, and there was a greater gap (non-bone tissue) remaining between host and allograft bone with treatment involving just intramedullary polymethylmethacrylate than with other treatments (p < 0.05). The results suggest that augmenting interlocking nail fixation with intramedullary polymethylmethacrylate by itself offers no advantage but that a combination of intramedullary polymethylmethacrylate and cancellous bone at the periosteal surface or of cancellous bone within the medullary canal and at the periosteal surface improves the quality of healing at 6 months.

Animals

Health problems and health actions among community-dwelling older adults: results of a health diary study.

This study examined the health problems and health actions reported by a sample of older adults (N = 60) who maintained health diaries over a 4-week period. The diary sample was 78% (n = 47) White; 52% (n = 31) were women, with a mean age of 75 years (SD = 5.3). Content analysis was used to examine the types of health problems reported in the diaries, which health problems were likely to be considered an illness, and what health actions were reported. Respondents reported an average of four different types of health problems over the 4-week diary period. There were differences in symptom reports related to gender, age, or race. The most frequently reported health problems were musculoskeletal problems (n = 38), runny nose and respiratory problems (n = 24), gastrointestinal problems (n = 22), and headaches (n = 22). Only 36% of all health problems were considered to be illnesses. Subjects recorded a number of health actions in response to their health complaints, including over-the-counter (OTC) medication use (83%), prescription medication use (53%), self-care activities (72%), and professional consultation (43%). Specific strategies that subjects used to deal with various health problems, implications of the findings, and the usefulness of health diaries as a clinical tool are discussed.

Aged

Ooplasmic transfer in mature human oocytes.

Ooplasmic transplantation aimed at restoring normal growth in developmentally compromised oocytes and embryos was evaluated in seven couples (eight cycles) with multiple implantation failures. Two approaches were investigated to transfer ooplasm from donor eggs at metaphase II (MII) stage into patient MII eggs: (i) electrofusion of a ooplasmic donor fragment into each patient egg (three cycles), and (ii) direct injection of a small amount of ooplasm from a donor egg into each patient egg (five cycles). Some donor eggs were used multiple times. Donor eggs were divided into two groups, one being used for ooplasmic extraction and the other one for egg donation. Cleaved embryos resulting from the latter were cryopreserved, where numbers and satisfactory development permitted. A second control group consisted of embryos derived from patient eggs after intracytoplasmic sperm injection without ooplasmic transfer. This was performed when sufficient number of eggs were available (n = 5). Donor eggs (n = 40) were evaluated cytogenetically after micromanipulation in order to confirm the presence of chromosomes. One egg was anuclear and the recipient embryos were not transferred. Normal fertilization was significantly higher after injection of ooplasm (63%) in comparison with fusion (23%). Pronuclear anomalies appeared enhanced after fusion with ooplasts. Embryo morphology was not improved in the three cycles with electrofusion and patients did not become pregnant. An improvement in embryo morphology was noted in two patients after injection of ooplasm and both became pregnant, but one miscarried. A third pregnancy was established in the repeat patient, without obvious embryo improvement. One baby was born and the third pregnancy is ongoing with a normal karyotype. Two other patients with male factor infertility had poor embryos after ooplasmic injection, but the donor embryo controls were also poor. The patients did not become pregnant and had no donor embryos frozen. Ooplasmic transfer at the MII stage may be promising in patients with compromised embryos; however, evaluation of ooplasmic anomalies and optimization of techniques will require further investigation prior to widescale application.

Cell Culture Techniques

Estrogen receptor gene expression in human uterine leiomyomata.

Estrogen and progestin are believed to be important physiological regulators of uterine leiomyoma growth. We recently showed that progesterone receptor messenger ribonucleic acid (mRNA) and protein levels are increased in human uterine leiomyomas compared with those in myometrial biopsy tissue obtained from the same patient. To further characterize the molecular mechanisms underlying abnormal growth of uterine leiomyomas, we analyzed biopsy samples of tumor and adjacent normal myometrium for estrogen receptor (ER) gene expression. Northern analysis indicated that ER mRNA levels were increased 1.4-to 12.6-fold in leiomyoma compared with myometrium in all patients examined (n = 11), whereas beta-actin mRNA was not different between the two groups. The size of the primary ER mRNA transcript was 6.2 kilobases in both leiomyoma and myometrium, indicating no gross mutation of the ER gene. An ER protein of 66 kilodaltons was detected by Western blot analysis, and quantitative immunoassay of ER revealed 9448 +/- 1955 fmol/mg DNA in leiomyoma compared to 2827 +/- 979 fmol/mg DNA in myometrial tissue. Scatchard analysis of 17 beta-estradiol binding to cell-free extracts revealed enhanced binding capacity (per mg DNA) in leiomyoma tissue (n = 6) of about 6-fold, whereas ER binding affinity was not substantially different between the leiomyoma and adjacent myometrial tissues. We propose that increased expression of progesterone receptor in leiomyoma is most likely a consequence of overexpression of functional ER that results in increased end-organ sensitivity to estradiol.

Adult

Differential phosphorylation of two size forms of the N-type calcium channel alpha 1 subunit which have different COOH termini.

Two size forms of the class B N-type calcium channel alpha 1 subunit were recently identified with CNB1, an antipeptide antibody directed against an intracellular loop of this channel (Westenbroek, R.E., Hell, J.W., Warner, C., Dubel, S.J., Snutch, T.P., and Catterall, W.A. (1992) Neuron 9, 1099-1115). To investigate the biochemical differences between these two size forms, the antibodies CNB3 and CNB4 were raised against peptides with sequences corresponding to the COOH-terminal end of the full-length form. Immunoblot experiments demonstrated that both antibodies specifically recognize the longer form of 250 kDa, indicating that the COOH-terminal regions of the two size forms of the class B N-type channel alpha 1 subunit are different. Phosphorylation experiments with immunopurified calcium channels and different second messenger-activated protein kinases revealed that both the 220- and 250-kDa forms of the class B N-type calcium channel alpha 1 subunit are substrates for cAMP-dependent protein kinase, cGMP-dependent protein kinase, and protein kinase C. These three kinases incorporated approximately 1 mol of phosphate/mol of binding sites for omega-conotoxin (omega-CgTx) GVIA, a ligand specific for the N-type calcium channel, and may regulate the activity of both forms in vivo. In contrast, calcium- and calmodulin-dependent protein kinase II (CaM kinase II) phosphorylated only the long form of the class B N-type calcium channel alpha 1 subunit, with a stoichiometry of 0.5 mol of phosphate/mol of total omega-CgTx GVIA binding sites. Specific phosphorylation of the long form of the class B alpha 1 subunit by CaM kinase II may differentially regulate the function of N-type calcium channels containing different size forms of their alpha 1 subunits in vivo.

Amino Acid Sequence

Susceptibility of white-tailed deer (Odocoileus virginianus) to infection with Ehrlichia chaffeensis, the etiologic agent of human ehrlichiosis.

Although more than 320 cases of human ehrlichiosis have been diagnosed in 27 states since 1986, the reservoir host or hosts remain unknown. Since antibodies reactive to Ehrlichia chaffeensis, the etiologic agent of human ehrlichiosis, have been found in white-tailed deer (Odocoileus virginianus), we experimentally evaluated the susceptibilities of four white-tailed deer to infection with E. chaffeensis and Ehrlichia canis, a closely related species. A fifth deer served as a negative control. Isolation and nested PCR amplification results from peripheral blood indicated that E. chaffeensis circulated for at least 2 weeks. The deer developed antibodies to E. chaffeensis by day 10 after inoculation, but there was no indication of clinical disease. Immunohistochemical staining identified E. chaffeensis within macrophage-type cells in lymph nodes. The deer inoculated with E. canis did not become infected and did not seroconvert. These results indicate that white-tailed deer can support an E. chaffeensis infection with resulting rickettsemia of at least 2 weeks. The resistance to infection and the absence of seroconversion upon exposure to E. canis indicate that antibody responses previously detected among wild deer are not E. canis cross-reactions. The role of deer as competent reservoirs in the life cycle of E. chaffeensis remains to be explored with suspected tick vectors.

Animals

Differential phosphorylation of two size forms of the neuronal class C L-type calcium channel alpha 1 subunit.

L-type calcium channels mediate long-lasting calcium currents which are modulated by protein phosphorylation. Using site-directed anti-peptide antibodies, we show that the alpha 1 subunit of the neuronal class C L-type calcium channel from rat brain exists in two size forms. The longer form, LC2, with an apparent molecular mass of 210-235 kDa was phosphorylated in vitro by cAMP-dependent protein kinase (cA-PK), but the shorter form, LC1, with an apparent molecular mass of 190-195 kDa was not a substrate for cA-PK. In contrast, LC1 and LC2 are both substrates for protein kinase C (PKC), calcium- and calmodulin-dependent protein kinase II, and cGMP-dependent protein kinase (cG-PK). The site-directed anti-peptide antibody CNC2 was produced against the COOH-terminal end of the class C L-type alpha 1 subunit as predicted by molecular cloning and sequencing of cDNA. CNC2 recognized LC2 but not LC1 by immunoblotting and immunoprecipitated only LC2 phosphorylated by either cA-PK or PKC. These results indicate that LC1 is truncated at its COOH-terminal end with respect to LC2 and that cA-PK preferentially phosphorylates sites in the COOH-terminal region of the alpha 1 subunit that are present in LC2 but not LC1. The selectivity of cA-PK for phosphorylation of the COOH-terminal region of LC2 suggests that the channel activities of the two alpha 1 subunit size forms may be differentially regulated by neurotransmitters and hormones which act through cAMP-dependent mechanisms, while both alpha 1 subunit isoforms may be modulated by PKC, cG-PK, and calcium- and calmodulin-dependent protein kinase II.

Amino Acid Sequence

Progesterone receptor messenger ribonucleic acid and protein are overexpressed in human uterine leiomyomas.

OBJECTIVE: Our purpose was to identify molecular mechanisms underlying abnormal growth of uterine leiomyomas. STUDY DESIGN: Biopsy samples of tumor and adjacent "normal" myometrium from nine patients were analyzed for progesterone receptor gene expression and for proliferation-associated antigen Ki-67. RESULTS: Northern analysis indicated that progesterone receptor messenger ribonucleic acid levels were increased twofold to 15-fold in leiomyoma compared with adjacent myometrial biopsy tissue from all patients (n = 9), whereas beta-actin messenger ribonucleic acid was at similar levels in these samples. Quantitative immunoassay, immunohistochemistry studies, and Western blot analyses revealed increased amounts of progesterone receptor protein in the tumor tissue. Both the progesterone receptor A and B forms were expressed in the leiomyoma and adjacent myometrium. Corresponding to increased progesterone receptor gene expression, the proliferation-associated antigen Ki-67 was also significantly elevated in the leiomyoma tissue. CONCLUSION: These data provide the first evidence that progesterone receptor messenger ribonucleic acid is overexpressed in uterine leiomyomas, suggesting that amplified progesterone-mediated signaling is instrumental in the abnormal growth of these tumors.

Adult

Identification and differential subcellular localization of the neuronal class C and class D L-type calcium channel alpha 1 subunits.

To identify and localize the protein products of genes encoding distinct L-type calcium channels in central neurons, anti-peptide antibodies specific for the class C and class D alpha 1 subunits were produced. Anti-CNC1 directed against class C immunoprecipitated 75% of the L-type channels solubilized from rat cerebral cortex and hippocampus. Anti-CND1 directed against class D immunoprecipitated only 20% of the L-type calcium channels. Immunoblotting revealed two size forms of the class C L-type alpha 1 subunit, LC1 and LC2, and two size forms of the class D L-type alpha 1 subunit, LD1 and LD2. The larger isoforms had apparent molecular masses of approximately 200-210 kD while the smaller isoforms were 180-190 kD, as estimated from electrophoresis in gels polymerized from 5% acrylamide. Immunocytochemical studies using CNC1 and CND1 antibodies revealed that the alpha 1 subunits of both L-type calcium channel subtypes are localized mainly in neuronal cell bodies and proximal dendrites. Relatively dense labeling was observed at the base of major dendrites in many neurons. Staining in more distal dendritic regions was faint or undetectable with CND1, while a more significant level of staining of distal dendrites was observed with CNC1, particularly in the dentate gyrus and the CA2 and CA3 areas of the hippocampus. Class C calcium channels were concentrated in clusters, while class D calcium channels were generally distributed in the cell surface membrane of cell bodies and proximal dendrites. Our results demonstrate multiple size forms and differential localization of two subtypes of L-type calcium channels in the cell bodies and proximal dendrites of central neurons. The differential localization and multiple size forms may allow these two channel subtypes to participate in distinct aspects of electrical signal integration and intracellular calcium signaling in neuronal cell bodies. The preferential localization of these calcium channels in cell bodies and proximal dendrites implies their involvement in regulation of calcium-dependent functions occurring in those cellular compartments such as protein phosphorylation, enzyme activity, and gene expression.

Amino Acid Sequence

Molecular mapping of the HLA class II region in HLA-DR3 associated idiopathic membranous nephropathy.

Susceptibility to IMN is associated, in European Caucasoids, with the extended HLA haplotype in A1, B8, and DR3. It is unclear from previous investigations of HLA class II genes whether the association with A1, B8, DR3 is due to an HLA-DR or -DQ locus, or both, or to another locus linked to HLA class II. To examine genetic polymorphism over a more extensive area of DNA than previously, we carried out long range mapping of the HLA class II region of A1, B8, DR3 patients and healthy controls to discover if new markers of disease could be identified at this level of organization. Large fragments of genomic DNA were cut using enzymes with infrequent restriction sites, and were separated by pulsed field gel electrophoresis (PFGE) and analyzed using a series of probes which cover the HLA class II region. In several different DR3 haplotypes examined, the overall content of DNA and organization of the class II region were similar. However, both patient and control B8, DR3 haplotypes contained an extra Pvul site in the DRB region, compared to the disease-neutral B18, DR3 haplotype. Further, the DP region of the patient B8, DR3 haplotypes contained an additional partial BssHII cutting site which was not identified in the control B8, DR3 haplotypes. This structural heterogeneity in the vicinity of DP could have implications for genetic susceptibility to IMN and for linkage disequilibrium.

Chromosomes, Human, Pair 6

Localization of receptor sites for insect-selective toxins on sodium channels by site-directed antibodies.

Site-directed antibodies corresponding to conserved putative extracellular segments of sodium channels, coupled with binding studies of radiolabeled insect-selective scorpion neurotoxins, were employed to clarify the relationship between the toxins' receptor sites and the insect sodium channel. (1) The depressant insect toxin LqhIT2 was shown to possess two noninteracting binding sites in locust neuronal membranes: a high-affinity (KD1 = 0.9 +/- 0.6 nM) and low-capacity (Bmax1 = 0.1 +/- 0.07 pmol/mg) binding site as well as a low-affinity (KD2 = 185 +/- 13 nM) and high-capacity (Bmax2 = 10.0 +/- 0.6 pmol/mg) binding site. (2) The high-affinity site serves as a target for binding competition by the excitatory insect toxin AaIT. (3) The binding of LqhIT2 was significantly inhibited in a dose-dependent manner by each of four site-directed antibodies. The binding inhibition resulted from reduction in the number of binding sites. (4) The antibody-mediated inhibition of [125I]AaIT binding differs from that of LqhIT2: three out of the four antibodies which inhibited LqhIT2 binding only partially affected AaIT binding. Two antibodies, one corresponding to extracellular and one to intracellular segments of the channel, did not affect the binding of either toxin. These data suggest that the receptors to the depressant and excitatory insect toxins (a) comprise an integral part of the insect sodium channel, (b) are formed by segments of external loops in domains I, III, and IV of the sodium channel, and (c) are localized in close proximity but are not identical in spite of the competitive interaction between these toxins.

Animals

Biochemical properties and subcellular distribution of an N-type calcium channel alpha 1 subunit.

A site-directed anti-peptide antibody, CNB-1, that recognizes the alpha 1 subunit of rat brain class B calcium channels (rbB) immunoprecipitated 43% of the N-type calcium channels labeled by [125I]omega-conotoxin. CNB-1 recognized proteins of 240 and 210 kd, suggesting the presence of two size forms of this alpha 1 subunit. Calcium channels recognized by CNB-1 were localized predominantly in dendrites; both dendritic shafts and punctate synaptic structures upon the dendrites were labeled. The large terminals of the mossy fibers of the dentate gyrus granule neurons were heavily labeled, suggesting that the punctate labeling pattern represents calcium channels in nerve terminals. The pattern of immunostaining was cell specific. The cell bodies of some pyramidal cells in layers II, III, and V of the dorsal cortex, Purkinje cells, and scattered cell bodies elsewhere in the brain were also labeled at a low level. The results define complementary distributions of N- and L-type calcium channels in dendrites, nerve terminals, and cell bodies of most central neurons and support distinct functional roles in calcium-dependent electrical activity, intracellular calcium regulation, and neurotransmitter release for these two channel types.

Amino Acid Sequence

Analysis of complement C4 loci in Caucasoids and Japanese with idiopathic membranous nephropathy.

Deletion of the HLA class III complement gene, C4A, has been linked with susceptibility to a number of autoimmune diseases. In this study, we show a strong positive association between C4A gene deletion and development of idiopathic membranous nephropathy (IMN) in European Caucasoids [patients, 17/27 (63%); healthy controls, 13/65 (20%); RR 6.8; P = 0.003]. To clarify whether C4A deletion is an independent risk factor for IMN or is increased secondarily to the Caucasoid HLA A1, B8, DR3 extended haplotype, we examined the frequency of C4A deletion in Japanese patients, in whom the disease is associated with another HLA haplotype (DR2-DQw1). Analysis of 31 Japanese patients and 46 healthy controls showed that C4A deletion was present in only one patient (3%) and one control (2%). In addition, examination of the C4B locus in Japanese patients showed that there was no significant increase in the estimated frequency of C4B deletion in patients against controls (31 vs. 27%) and no difference in the frequency of the C4B long gene (73 vs. 87%) or C4B short gene (77 vs. 78%). We conclude that although C4A deletion confers significant risk of IMN in Caucasoids, there is no significant association between C4 polymorphism, as detected here, and risk of IMN in Japanese. This suggests that either C4A deletion is irrelevant to the pathogenesis of IMN or that more than one genetic mechanism is involved.

Asian People

Characterization of the two size forms of the alpha 1 subunit of skeletal muscle L-type calcium channels.

The molecular properties of two size forms of the alpha 1 subunit of purified skeletal muscle calcium channels were analyzed. The minor, full-length, form, alpha 1(212), was found to have an apparent molecular mass of 214 kDa by Ferguson plot analysis, while the major, truncated, form, now designated alpha 1(190), had an apparent molecular mass of 193 kDa. Antibody mapping of the C-terminal region of alpha 1(190) with 10 anti-peptide antibodies placed the C terminus between residues 1685 and 1699. Three consensus sites for cAMP-dependent protein phosphorylation are present in the C-terminal region of alpha 1(212) but not in alpha 1(190), and they may be important for the regulation of the ion conductance activity of the calcium channel.

Amino Acid Sequence

Subunits of purified calcium channels. Alpha 2 and delta are encoded by the same gene.

Polyacrylamide gel electrophoresis of purified rabbit skeletal muscle L-type calcium channel before and after reduction of disulfide bonds confirmed that 27- and 24-kDa forms of the delta subunit are disulfide-linked to the 143-kDa alpha 2 subunit. The amino acid sequences of three peptides obtained by tryptic digestion of the delta subunits corresponded to amino acid sequences predicted from the 3' region of the mRNA encoding alpha 2. One of these peptides had the same sequence as the N terminus of the 24- and 27-kDa forms of the delta subunit and corresponded to residues 935-946 of the predicted alpha 2 primary sequence. Anti-peptide antibodies directed to regions on the N-terminal side of this site recognized the 143-kDa alpha 2 subunit in immunoblots of purified calcium channels under reducing conditions, whereas an antipeptide antibody directed toward a sequence on the C-terminal side of this site recognized 24- and 27-kDa forms of the delta subunit. A similar result was obtained after immunoblotting using purified transverse tubules or crude microsomal membrane preparations indicating that alpha 2 and delta occur as distinct disulfide-linked polypeptides in skeletal muscle membranes. Thus, the delta subunits are encoded by the same gene as the alpha 2 subunit and are integral components of the skeletal muscle calcium channel.

Amino Acid Sequence

Influence of single and multiple doses of oral ranitidine on the gastric transit of an indigestible capsule in humans.

The effect of single and multiple doses of ranitidine on the gastric residence time of an indigestible pH-sensitive radiotelemetric device, the Heidelberg capsule, was evaluated in 12 healthy men (mean age, 29 +/- 8 years) in a placebo-controlled, randomized, crossover study. Each subject received 150 mg ranitidine or placebo orally 2 hours before administration of the Heidelberg capsule. A 500 kcal standardized breakfast was served 1/2 hour before the capsule was administered. Gastric pH was monitored at 15-minute intervals, until pyloric passage (pH increase greater than or equal to 3 U) of the Heidelberg capsule was observed. Blood samples (n = 12) were collected 0 to 8 hours after administration of drug or placebo. The subjects continued to receive ranitidine or placebo b.i.d. for 7 days and returned on day 8 for a similar evaluation. After a 1-week washout period, the subjects received the alternative treatment. The mean (+/- SD) gastric residence time of the Heidelberg capsule was significantly decreased after both single and multiple doses of ranitidine compared to placebo (3.1 +/- 0.9 versus 3.8 +/- 1.1 hours, p less than 0.02; and 2.9 +/- 0.74 versus 3.9 +/- 0.9 hours, p less than 0.005, n = 9). Gastric residence time was not determined in three subjects who showed unusually slow gastrointestinal motility after both placebo and ranitidine. Mean AUC(0-8 hr) and AUC(0-infinity) were significantly increased, whereas Cmax, tmax, and t1/2 remained unchanged after 7 days of ranitidine b.i.d. treatment. No ranitidine double-peak profile or linear pharmacokinetic-pharmacodynamic relationship was identified.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral

Restriction fragment length polymorphism analysis of major histocompatibility complex class II genes from inbred chicken lines.

High molecular weight DNA was extracted from sperm from chickens of 14 inbred lines. The DNA was digested with each of four restriction enzymes (Pvu II, Hind III, Bgl II, and Bam HI), electrophoresed for 18 or 45 h, blotted onto nitrocellulose, and hybridized to a chicken major histocompatibility complex (MHC, B complex) class II beta-chain probe (beta 2-exon specific). Restriction fragment length polymorphisms (RFLPs) were found with each of the restriction enzymes used. Birds with the same B haplotype always showed the same RFLP pattern; however, some birds of different B haplotypes also shared the same RFLP pattern. To test for the Mendelian inheritance of the RFLP patterns, the F2 progeny of an informative cross were analysed. The RFLP patterns corresponded with the serologically determined B haplotypes of the F2 birds, thereby showing the Mendelian inheritance of the polymorphic bands.

Animals