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J C Ford

Publications and source records attributed to J C Ford.

At least 19 recordsLinked to original sources

Comparison of selected retention models in reversed-phase liquid chromatography.

Retention models are usually compared by how well the model equation fits retention data for one solute taken over a range of mobile phase compositions. Even when retention data for multiple solutes are used, the quality of the fit is often judged by the statistical goodness-of-fit alone. This study compared four different RPLC retention models, encompassing three distinct mathematical forms. Each model was fit to the retention data of multiple solutes and the sets of best-fit parameters were examined in terms of the underlying physico-chemical assumptions of the models. Next, for the linear and quadratic models, some of the model parameters were calculated a priori and the rest of the model parameters were then obtained in subsequent fittings. The sets of best-fit parameters obtained in this manner were more consistent with the underlying assumptions of these models than were the sets of parameters obtained entirely through regressions to the experimental data. Thus, the extraction of parameters by fitting a model to the retention data of a single solute may result in unreliable values for those parameters, even in the case of a fit that would be considered good when judged by conventional statistical criteria. That is, although parameters extracted in such a fashion may be suitable for optimization or similar uses, they may not be suitable for determining the appropriateness of the underlying assumptions of retention models.

Chromatography, Liquid↗

Modeling the effect of solvation on solute retention in reversed-phase liquid chromatography.

The retention of a homologous series of alkylbenzenes was determined on octyl and octadecyl reversed-phase columns in several polar organic liquids. Free energies of transfer were calculated by the SM5.0R classical solvation model for each organic liquid tested and for several alkanes. The relationships between the measured retention factors and the calculated free energies of transfer were then investigated. Although the natural logarithms of the retention factor and the calculated free energies of transfer were linearly correlated, the obtained free energies of transfer of the solutes did not completely explain the retention behavior of the solutes. Nonetheless, even in these pure organic liquids, the energetics of RPLC retention behaved very similarly to those of partitioning.

Chromatography, High Pressure Liquid↗

Primary and secondary prostatic adenocarcinoma of the urinary bladder.

Urinary bladder involvement by prostatic adenocarcinoma (PAC) is not well characterized in the literature. Fifteen consecutive cases of PAC diagnosed in the urinary bladder over a period of 10 years were reviewed. All bladder and prostate slides from each patient were evaluated. Eleven patients (group A) had synchronous PAC in the prostate. In these patients, bladder PAC occurred 2 to 11 years after the initial diagnosis of PAC in the prostate and tended to have a higher Gleason score than the original prostatic PAC. Four cases of bladder PAC in group A had areas with features of urothelial carcinoma, with focal positive immunoreactivity for thrombomodulin in 2 cases. Two patients (group B) had undergone radical prostatectomy for PAC 15 years earlier. The lesions in the urinary bladder in both cases showed histopathologic features similar to those seen in the previous prostatic malignancies. Two patients (group C) had histories of previously resected urothelial carcinoma. Bladder PAC was diagnosed at routine follow-up, and repeated prostate biopsy up to 2 years after the diagnosis of bladder PAC showed no evidence of prostatic PAC. PAC in the urinary bladder may be either primary or secondary. Secondary PAC is usually associated with high-grade and high-stage carcinoma in the prostate and may mimic transitional cell carcinoma. Primary bladder lesions may or may not be associated with a history of PAC in the prostate. The prognosis of patients with the primary carcinoma is favorable. HUM PATHOL 32:434-440.

Adenocarcinoma↗

Characterization of experimental spinal cord injury with magnetization transfer ratio histograms.

This study was designed to characterize the severity of tissue damage in experimental spinal cord injury using magnetization transfer (MT) histogram analysis. Seven Sprague-Dawley rats were subjected to laminectomy and standard weight-drop injury to the spinal cord (four rats at 15 cm drop-height and three rats at 2.5 cm). Three control animals underwent laminectomy without weight-drop. After sacrifice, the animals were scanned at 1.9 T with a pulsed off-resonance MT technique. Following magnetic resonance (MR) imaging, the cords were embedded in paraffin and sectioned into 5-microm sections for semiquantitative histopathological analysis. Composite histograms were generated using data spanning an axial distance of 3 cm centered on the injury site. MT histogram parameters, such as the amount of tissue with statistical correspondence to normal white matter, were highly predictive of histopathological results, including myelination state and neurofilament damage. Less correlation with edema was observed, suggesting that the technique was most sensitive to true tissue alteration.

Animals↗

Immunohistochemical study of papillary thyroid carcinoma and possible papillary thyroid carcinoma-related benign thyroid nodules.

Recent immunohistochemical studies have identified different antisera that have various degrees of sensitivity and specificity for papillary thyroid carcinoma (PTC). In this study, we performed immunostaining for CK, EMA, HBME, CD57 and CD15 in PTC, and benign thyroid nodular lesions to compare the sensitivity and the specificity of these antisera for PTC. In addition, we studied the patterns of immunostaining of these antisera in benign nodular thyroid lesions displaying a fine chromatin pattern, foci of cells with nuclear grooves, and optically clear nuclei. Fifty-five PTC (composed of 30 papillary variants and 25 follicular variants), 5 follicular carcinomas, 30 follicular adenomas, and 20 thyroid nodular lesions (5 papillary variants and 15 follicular variants) were submitted for immunostaining with CK, EMA, HBME, CD57, and CD15. CK and HBME showed the highest sensitivity and specificity for PTC when an arbitrary cutoff of more than 10% positive cells was considered as positive diagnostic immunostaining for these sera. The other antisera were less sensitive and less specific. One case of PTC showed negative HBME but positive CD15, whereas three papillary variants and two follicular variants of benign thyroid nodules revealed a positive diagnostic HBME immunostaining for PTC and negative CK immunostaining. Any combination of positive diagnostic immunostaining with CK+ HBME, CK+ CD57 or CK+ CD15 has a sensitivity of 95% and specificity of 90% for PTC. Thyroid nodules with a diffuse or focal fine chromatin pattern and focal areas with nuclear grooves or optically clear nuclei displayed immunoreactivity ranging from 0% to 50% of cells. Three of five follicular carcinomas showed negative reactivity for HBME, CD57, and CD15. A combination of immunostaining with CK, HBME and CD57 (or CD15) is a sensitive and specific test for PTC. This panel can be used to rule out thyroid nodules posing a diagnostic problem with PTC. Follicular adenoma and nodules of the thyroid, with a fine chromatin pattern and focal nuclear grooves or optically clear nuclei, displayed an intermediate range of reactivity between reactive thyroid tissue and PTC.

Adult↗

Predictive value of extent and grade of ductal carcinoma in situ in radiologically guided core biopsy for the status of margins in lumpectomy specimens.

AIMS: The correlation between the extent and grade of ductal carcinoma in situ (DCIS) in a core needle biopsy of breast, and the presence of an extensive intraductal carcinoma component (EIC) or positive resection margins in a subsequent mastectomy, has not been adequately addressed in the literature. MATERIALS AND METHODS: Seventy-eight core needle biopsies with mammography and mastectomy correlation (27 total mastectomies, 51 lumpectomies) were reviewed. The extent and grade of DCIS in the biopsies were determined and compared with the mammographic findings and the status of the EIC and margins in subsequent mastectomy specimens. RESULTS: Twenty-four cases of core biopsies with at least three foci of low-grade DCIS or at least two foci of high grade DCIS (group I) corresponded in large part to cases of mastectomy with a positive EIC (20/23 cases, or predictive value of 87%). Nine of 15 cases of lumpectomy in this group were associated with margins positive for or close to (less than 0.1 cm from) carcinoma. Thirty-three cases of core biopsies with one or two foci of low-grade DCIS or one focus of high-grade DCIS (group II) were associated with mastectomies with a limited extent of DCIS. Only four of 22 lumpectomy specimens in this group had margins positive for or close to carcinoma. Twenty-one cases of core biopsies without DCIS (group III) represented all five mastectomy specimens without DCIS, and 16 mastectomies with DCIS and negative EIC. None of the 14 cases of lumpectomy in this group had margins positive for carcinoma. The predictive value for EIC status may be even higher if mammographic findings are used in cases with a low number of foci (two foci of low-grade DCIS or one focus of high-grade DCIS in short biopsy cores). CONCLUSIONS: There was a good correlation between the extent and grade of DCIS in core biopsies and the status of EIC in subsequent mastectomy specimens. Core needle biopsies with at least three foci of low-grade DCIS or at least two foci of high-grade DCIS are associated with a greater likelihood of positive or close margins in subsequent lumpectomies. Core biopsies without DCIS are associated with a greater likelihood of negative margins in subsequent lumpectomies.

Biopsy, Needle↗

Cancellous bone volume and structure in the forearm: noninvasive assessment with MR microimaging and image processing.

PURPOSE: To develop and apply a method for the derivation of cancellous bone architectural parameters from in vivo magnetic resonance (MR) images of the distal radius and to evaluate these parameters as predictors of vertebral fracture status in osteopenia. MATERIALS AND METHODS: MR images (137 x 137 x 500-micron3 voxel size) were acquired with a three-dimensional partial flip-angle spin-echo pulse sequence in the distal radius of 36 women. Subjects were classified as healthy or with osteoporosis on the basis of vertebral deformity and bone mineral density (BMD). Images rated as of adequate quality in 20 subjects were processed with a method that is applicable in the limited spatial resolution regime. The method relies on histogram deconvolution to obviate binary segmentation. Cancellous bone structure was treated as a quasi-regular lattice and analyzed with spatial autocorrelation, yielding parameters that quantify intertrabecular spacing, contiguity, and a measure of longitudinal alignment called tubularity. RESULTS: Whereas neither BMD nor any of the structural parameters individually correlated significantly with vertebral deformity fraction, a simple function that involved tubularity and longitudinal spacing predicted deformity fraction well (r = .78, P < .005). CONCLUSION: Histomorphometric parameters characterizing cancellous bone in the distal radius can be derived from in vivo MR microimages and are predictive of vertebral deformity.

Absorptiometry, Photon↗

Atm-dependent interactions of a mammalian chk1 homolog with meiotic chromosomes.

BACKGROUND: Checkpoint pathways prevent cell-cycle progression in the event of DNA lesions. Checkpoints are well defined in mitosis, where lesions can be the result of extrinsic damage, and they are critical in meiosis, where DNA breaks are a programmed step in meiotic recombination. In mitotic yeast cells, the Chk1 protein couples DNA repair to the cell-cycle machinery. The Atm and Atr proteins are mitotic cell-cycle proteins that also associate with chromatin during meiotic prophase I. The genetic and regulatory interaction between Atm and mammalian Chk1 appears to be important for integrating DNA-damage repair with cell-cycle arrest. RESULTS: We have identified structural homologs of yeast Chk1 in human and mouse. Chk1(Hu/Mo) has protein kinase activity and is expressed in the testis. Chk1 accumulates in late zygotene and pachytene spermatocytes and is present along synapsed meiotic chromosomes. Chk1 localizes along the unsynapsed axes of X and Y chromosomes in pachytene spermatocytes. The association of Chk1 with meiotic chromosomes and levels of Chk1 protein depend upon a functional Atm gene product, but Chk1 is not dependent upon p53 for meiosis I functions. Mapping of CHK1 to human chromosomes indicates that the gene is located at 11q22-23, a region marked by frequent deletions and loss of heterozygosity in human tumors. CONCLUSIONS: The Atm-dependent presence of Chk1 in mouse cells and along meiotic chromosomes, and the late pachynema co-localization of Atr and Chk1 on the unsynapsed axes of the paired X and Y chromosomes, suggest that Chk1 acts as an integrator for Atm and Atr signals and may be involved in monitoring the processing of meiotic recombination. Furthermore, mapping of the CHK1 gene to a region of frequent loss of heterozygosity in human tumors at 11q22-23 indicates that the CHK1 gene is a candidate tumor suppressor gene.

Amino Acid Sequence↗

Numerical model for calculation of apparent diffusion coefficients (ADC) in permeable cylinders--comparison with measured ADC in spinal cord white matter.

We have implemented a numerical method for calculation of the apparent diffusion coefficient (ADC) in spinal cord injury, which takes into account the distribution of axon diameters and permeability found in spinal cord white matter, as well as relative axonal volume. We propose a procedure for determining the status of axonal integrity from measured ADC values. These methods have been applied to a well characterized rat spinal cord injury model, affording a prediction of the increase in axonal permeability which is presumed to be closely related to functional deficit. ADC values are compared to those calculated from analytical formulas in the literature, and possible factors underlying the ADC behavior are explored. Calculated results indicate both axonal swelling and cell membrane permeability to be important factors contributing to ADC in traumatic spinal cord injury.

Animals↗

Magnetic resonance imaging observations of blood-brain-barrier permeability in an animal model of brain injury.

RATIONALE AND OBJECTIVES: Knowledge of the in vivo relaxivity of paramagnetic contrast agents is important in the accurate measurement of the permeability of the blood-brain barrier (BBB). This study was aimed at developing an animal model for the magnetic resonance (MR) imaging investigation of injuries to the BBB. METHODS: MR imaging (1.9 T) was performed in 18 rats with acute, stable injuries to the brain caused by freezing. After injection of gadodiamide (0.05-0.20 mmol/kg), estimates were made of BBB permeability, leakage space, and relaxivity (also measured in saline). RESULTS: The BBB was always disrupted at the injured site (permeability = 0.038 min-1 +/- 0.0006). The central area of necrosis and the periphery of edema showed substantial differences in leakage space and relaxivity. The relaxivity of gadodiamide was much greater at the injured site than in saline. CONCLUSION: The in vivo relaxivity at a site of pathologic change in the brain may be substantially greater than that measured in aquo.

Animals↗

The Schizosaccharomyces pombe rad3 checkpoint gene.

The rad3 gene of Schizosaccharomyces pombe is required for checkpoint pathways that respond to DNA damage and replication blocks. We report the complete rad3 gene sequence and show that rad3 is the homologue of Saccharomyces cerevisiae ESR1 (MEC1/SAD3) and Drosophila melanogaster mei-41 checkpoint genes. This establishes Rad3/Mec1 as the only conserved protein which is required for all the DNA structure checkpoints in both yeast model systems. Rad3 is an inessential member of the 'lipid kinase' subclass of kinases which includes the ATM protein defective in ataxia telangiectasia patients. Mutational analysis indicates that the kinase domain is required for Rad3 function, and immunoprecipitation of overexpressed Rad3 demonstrates an associated protein kinase activity. The previous observation that rad3 mutations can be rescued by a truncated clone lacking the kinase domain may be due to intragenic complementation. Consistent with this, biochemical data suggest that Rad3 exists in a complex containing multiple copies of Rad3. We have identified a novel human gene (ATR) whose product is closely related to Rad3/Esr1p/Mei-41. ATR can functionally complement esr1-1 radiation sensitivity in S. cerevisiae. Together, the structural conservation and functional complementation suggest strongly that the mechanisms underlying the DNA structure checkpoints are conserved throughout evolution.

Adenosine Triphosphatases↗

Comparison of methods for extracting linear solvent strength gradient parameters from gradient chromatographic data.

The linear solvent strength (LSS) theory of gradient elution is useful in the optimization of separations in high-performance liquid chromatography. While the fundamental parameters of this theory are defined in terms of isocratic behavior, gradient operation has been used previously to estimate those parameters to allow rapid optimization of the separation. In this study, various methods of extracting the LSS parameters from gradient retention data were examined. Sets of synthetic retention data were calculated directly from the equations of the LSS theory. When realistic experimental uncertainties were incorporated into these data sets, the LSS parameters used to generate the synthetic data were not recovered accurately unless special precautions were taken. For large molecules, an approximate LSS expression could be used to determine the solvent strength parameter with an error of less than 13%, which is comparable to or better than those for the other methods evaluated.

Chromatography, High Pressure Liquid↗

Treatment of experimental intracranial murine melanoma with a neuroattenuated herpes simplex virus 1 mutant.

Brain metastases occur commonly in the setting of a variety of human cancers. At present, such cases are invariably fatal and highlight a need for research on new therapies. We have developed a mouse brain tumor model utilizing the Harding-Passey melanoma cell line injected intracranially into C57Bl/6 mice. Tumors develop in 100% of the mice and can be detected by magnetic resonance imaging as early as 5 days post cell injection. Death from tumor progression occurs between 12 and 16 days post cell injection. Stereotactic injection of the neuroattenuated HSV-1 strain 1716 into brain tumors 5 or 10 days postinjection of the melanoma cells results in a statistically significant increase in the time to development of neurological symptoms and in complete tumor regression and the long-term survival of some treated animals. Moreover, viral titration studies and immunohistochemistry suggest that replication of this virus is restricted to tumor cells and does not occur in the surrounding brain tissue. These results suggest that HSV-1 mutant 1716 shows particular promise for use as a therapeutic agent for the treatment of brain tumors.

Animals↗

The 14-3-3 proteins encoded by the BMH1 and BMH2 genes are essential in the yeast Saccharomyces cerevisiae and can be replaced by a plant homologue.

The 14-3-3 proteins comprise a family of highly conserved acidic proteins. Several activities have been ascribed to these proteins, including activation of tyrosine and tryptophan hydroxylases in the presence of calcium/calmodulin-dependent protein kinase II, regulation of protein kinase C, phospholipase A2 activity, stimulation of exocytosis and activation of bacterial exoenzyme S (ExoS) during ADP-ribosylation of host proteins. In addition, a plant 14-3-3 protein is present in a G-box DNA/protein-binding complex. Previously, we isolated the BMH1 gene from Saccharomyces cerevisiae encoding a putative 14-3-3 protein. Using the polymerase chain reaction method, we have isolated a second yeast gene encoding a 14-3-3 protein (BMH2). While disruption of either BMH1 or BMH2 alone had little effect, it was impossible to obtain viable cells with both genes disrupted. The cDNA encoding a plant 14-3-3 protein under the control of the inducible GAL1 promoter complemented the double disruption. Transfer of the complemented double disruptant to a medium with glucose resulted in the appearance of a high percentage of large budded cells. After prolonged incubation, these cells became enlarged with irregular buds and chains of cells defective in cell-cell separation became visible. These results suggest an essential role of the 14-3-3 proteins, possibly at a later stage of the yeast cell cycle.

14-3-3 Proteins↗

Osteoporosis: clinical assessment with quantitative MR imaging in diagnosis.

PURPOSE: To determine if the magnetic resonance (MR) imaging effective transverse relaxation rate (R2*) of trabecular bone marrow is lowered in osteoporosis. MATERIALS AND METHODS: R2* was measured in 146 women. Control subjects (n = 77; mean age, 46.6 years) had high mean spinal bone mineral densities (BMDs) and no vertebral deformities. Patients with spinal osteoporosis (n = 59; mean age, 59.7 years) had at least one thoracic vertebral deformity and/or low BMDs. RESULTS: R2* was lower in patients for L-2 through L-5 (P < .001). Average R2* of L-3 through L-5 (R2*av) was the best discriminator (64.79 sec-1 +/- 1.18 [standard error] for control subjects vs 53.39 sec-1 +/- 1.24 for patients; P < .0001). R2*av decreased with age in control subjects. The difference in R2*av in a subset of 38 age-matched pairs of patients and control subjects was 8.25 sec-1 (P < .0001). Subjects with deformities had lower 52*av than did control subjects (52.3 sec-1 +/- 1.6 vs 62.5 sec-1 +/- 1.1, P < .0001). R2*av was correlated with mean BMD (r = .54, P < .0001). CONCLUSION: Patients with osteoporosis have lower R2*s in vertebral marrow.

Absorptiometry, Photon↗

14-3-3 protein homologs required for the DNA damage checkpoint in fission yeast.

During the cell cycle, DNA is replicated and segregated equally into two daughter cells. The DNA damage checkpoint ensures that DNA damage is repaired before mitosis is attempted. Genetic studies of the fission yeast Schizosaccharomyces pombe have identified two genes, rad24 and rad25, that are required for this checkpoint. These genes encode 14-3-3 protein homologs that together provide a function that is essential for cell proliferation. In addition, S. pombe rad24 null mutants, and to a lesser extent rad25 null mutants, enter mitosis prematurely, which indicates that 14-3-3 proteins have a role in determining the timing of mitosis.

14-3-3 Proteins↗

A method for in vivo high resolution MRI of rat spinal cord injury.

We have developed an implanted radiofrequency coil to obtain high resolution in vivo MR images at 1.9 Tesla of rat spinal cords that have been injured using a standardized weight drop technique. The signal-to-noise ratio and motion artifact suppression of these images is superior to that achieved in earlier attempts at this field strength using an external surface coil. The high quality and spatial resolution provided by this technique afford the possibility for longitudinal studies of experimental spinal cord injury before and after treatment, as well as detailed correlation of in vivo MRI contrast, histopathological findings, and functional deficit, in a controlled setting.

Animals↗