PubMed Health⌕ Search

Biomedical subjects

R K Ward

Publications and source records attributed to R K Ward.

12 recordsLinked to original sources

Telomere length measurements using digital fluorescence microscopy.

BACKGROUND: The ends of chromosomes (telomeres) are important to maintain chromosome stability, and the loss of telomere repeat sequences has been implicated in cellular senescence and genomic instability of cancer cells. The traditional method for measuring the length of telomeres (Southern analysis) requires a large number of cells (>10(5)) and does not provide information on the telomere length of individual chromosomes. Here, we describe a digital image microscopy system for measurements of the fluorescence intensity derived from telomere repeat sequences in metaphase cells following quantitative fluorescence in situ hybridization (Q-FISH). METHODS: Samples are prepared for microscopy using Q-FISH with Cy3 labeled peptide nucleic acid probes specific for (T(2)AG(3))(n) sequences and the DNA dye DAPI. Separate images of Cy3 and DAPI fluorescence are acquired and processed with a dedicated computer program (TFL-TELO). With the program, the integrated fluorescence intensity value for each telomere, which is proportional to the number of hybridized probes, is calculated and presented to the user. RESULTS: Indirect tests of our method were performed using simulated as well as defined tests objects. The precision and consistency of human telomere length measurements was then analyzed in a number of experiments. It was found that by averaging the results of less than 30 cells, a good indication of the telomere length (SD of 10-15%) can be obtained. CONCLUSIONS: We demonstrate that accurate and repeatable fluorescence intensity measurements can be made from Q-FISH images that provide information on the length of telomere repeats at individual chromosomes from limited number of cells.

Algorithms↗

Short telomeres on human chromosome 17p.

Human chromosomes terminate in a series of T2AG3 repeats, which, together with associated proteins, are essential for chromosome stability. In somatic cells, these sequences are known to be gradually lost through successive cells divisions; however, information about changes on specific chromosomes is not available. Individual telomeres could mediate important biological effects as was shown in yeast, in which loss of a single telomere results in cell-cycle arrest and chromosome loss. We now demonstrate by quantitative fluorescence in situ hybridization (Q-FISH; ref. 7) that the number of T2AG3 repeats on specific chromosome arms is very similar in different tissues from the same donor and varies only to some extent between donors. In all sixteen individuals studied, telomeres on chromosome 17p were shorter than the median telomere length--a finding confirmed by analysis of terminal restriction fragments from sorted chromosomes. These observations provide evidence of chromosome-specific factors regulating the number of T2AG3 repeats in individual telomeres and raise the possibility that the relatively short telomeres on chromosome 17p contribute to the frequent loss of 17p alleles in human cancers.

Adult↗

Telomeres in the mouse have large inter-chromosomal variations in the number of T2AG3 repeats.

The ultra-long telomeres that have been observed in mice are not in accordance with the concept that critical telomere shortening is related to aging and immortalization. Here, we have used quantitative fluorescence in situ hybridization to estimate (T2AG3)n lengths of individual telomeres in various mouse strains. Telomere lengths were very heterogeneous, but specific chromosomes of bone marrow cells and skin fibroblasts from individual mice had similar telomere lengths. We estimate that the shortest telomeres are around 10 kb in length, indicating that each mouse cell has a few telomeres with (T2AG3)n lengths within the range of human telomeres. These short telomeres may be critical in limiting the replicative potential of murine cells.

Animals↗

Automated image detection and segmentation in blood smears.

A simple technique which automatically detects and then segments nucleated cells in Wright's giemsa-stained blood smears is presented. Our method differs from others in 1) the simplicity of our algorithms; 2) inclusion of touching (as well as nontouching) cells; and 3) use of these algorithms to segment as well as to detect nucleated cells employing conventionally prepared smears. Our method involves: 1) acquisition of spectral images; 2) preprocessing the acquired images; 3) detection of single and touching cells in the scene; 4) segmentation of the cells into nuclear and cytoplasmic regions; and 5) postprocessing of the segmented regions. The first two steps of this algorithm are employed to obtain high-quality images, to remove random noise, and to correct aberration and shading effects. Spectral information of the image is used in step 3 to segment the nucleated cells from the rest of the scene. Using the initial cell masks, nucleated cells which are just touching are detected and separated. Simple features are then extracted and conditions applied such that single nucleated cells are finally selected. In step 4, the intensity variations of the cells are then used to segment the nucleus from the cytoplasm. The success rate in segmenting the nucleated cells is between 81 and 93%. The major errors in segmentation of the nucleus and the cytoplasm in the recognized nucleated cells are 3.5% and 2.2%, respectively.

Algorithms↗

Increased serum stability and prolonged biological half-life of neocarzinostatin covalently bound to monoclonal antibodies.

The pharmacokinetics of neocarzinostatin (NCS) have been compared to NCS conjugates with monoclonal antibodies using Balb/c and tumor bearing nude mice. Data on blood and whole body clearance revealed that the high MW conjugate persists in the body far longer and at a higher level than the free drug. Excretion of the free drug occurs with an extremely rapid renal clearance and localization of the remaining drug in the kidney, whereas the NCS immunoconjugate remained in circulation far longer allowing time for tumor localization to occur without renal accumulation of drug. In addition, NCS conjugated to monoclonal antibody was found to retain its activity in human serum better than free drug, in agreement with data obtained for other NCS-derivatives. Half-time of inactivation was greatly extended when measured under relevant conditions in a DNA strand-break assay. The results indicate that two of the most important requirements for the successful targeting of NCS in vivo, decreased clearance rate and increased serum stability are achieved by conjugation to antibody. Both results increase the probability of NCS accumulating in tissue while still in its active form. Coupling of NCS to monoclonal antibody decreases clearance and inactivation rate and increases localization of the active drug in tumor tissue.

Animals↗

Antigen-restricted antigenic competition induced by 2,4-dinitrochlorobenzene: association with depression of lymphocyte proliferation.

2,4,6-Trinitrochlorobenzene (picryl chloride) and 2,4-dinitrochlorobenzene (DNCB) fail to cross-sensitize with respect to contact sensitivity in mice. Nevertheless, topical exposure of mice to DNCB and other skin-sensitizing dinitrobenzene derivatives was found to result in a significant impairment of draining lymph node cell proliferative responses induced following epicutaneous challenge with picryl chloride 5 days later. The inhibition of picryl chloride induced proliferation was associated with an impairment of contact sensitization to this chemical. The effect of DNCB on subsequent responses to picryl chloride was transient and no longer detectable 15 days following exposure. The inhibition of proliferation and contact sensitization caused by DNCB was largely restricted to picryl chloride. Thus, DNCB failed to influence the development of contact allergy to the unrelated chemical 4-ethoxymethylene-2-phenyloxazol-5-one (oxazolone) and exerted a far less pronounced effect on oxazolone-induced proliferative responses. These data, therefore, describe an antigen-restricted form of antigenic competition which is associated with a depression of the primary lymphocyte proliferative response.

Animals↗

Acute-phase proteins and the serological evaluation of experimental contact sensitivity in the mouse.

The evaluation of contact reactions in previously sensitized mice is assessed conventionally by measurement of increases in ear thickness following challenge. In an attempt to develop a serological method for the investigation of contact sensitization in mice, we have examined whether analysis of changes in the concentration of acute-phase proteins in response to challenge provides a reliable alternative means of evaluating elicitation reactions. Measurement of either the relative serum haptoglobin concentration, using radial immunodiffusion, or the absolute concentration of serum amyloid A, by an enzyme-linked immunosorbent assay, has been found to correlate well with induced increases in ear thickness following challenge. Changes in the concentration of acute-phase proteins proved to be of sufficient sensitivity to reflect the specificity of contact sensitization and its inhibition by antigenic competition.

Acute-Phase Proteins↗

Deblurring random time-varying blur.

The problem of restoring a constant image distorted by a system of random time-varying point-spread functions is studied. The restoration is based on a finite number of images that are observed in a finite period of time. Two features distinguish this problem. The first is that of the signal-noise dependency, and the second is the availability of large amounts of data. The Wiener criterion approach is used to solve the signal-noise-dependency problem. The problem of data size is also alleviated. For the case of time-space separability, a Karhunen-Loève transformation is used to reduce the computations to the size of a single-frame problem. For the case in which the noise is stationary in time and in space, a solution based on the direct form of the Wiener filter is presented. The amount of computations here is reduced considerably by the use of fast Fourier transforms and circulant matrix approximations whenever they are valid.

Algorithms↗

Social anxiety disorder: common, disabling, and treatable.

BACKGROUND: Social anxiety disorder (also known as social phobia) is characterized by extreme fear, avoidance, or both of one or more social or performance situations, such as making a presentation, meeting new people, or eating in front of others. This condition is common, with a lifetime prevalence of up to 13%, and one third of affected persons have major dysfunction. METHODS: The English-language literature on social anxiety disorder indexed on MEDLINE was searched using the phrases "social phobia" or "social anxiety disorder;" this search was supplemented with other data sources, such as recent textbooks, to determine common clinical symptoms, differential diagnosis, and management in the primary care setting. RESULTS: Recognition and treatment of social anxiety disorder is poor; only a small minority of patients with this condition have it appropriately diagnosed or treated. Primary care physicians should suspect social anxiety disorder in patients who have specific symptoms and signs (such as hyperhidrosis, flushing, tremor, and white-coat hypertension), in patients who have symptoms of anxiety (such as chest pain, palpitations, or dizziness), or in patients who have another known anxiety disorder, depression, or substance abuse. Drug treatment consists of serotonin-reuptake inhibitors, monoamine oxidase inhibitors, or high-potency benzodiazepines. A specific type of psychotherapy called cognitive behavioral therapy is another effective treatment, but it is not acceptable or accessible to most patients. CONCLUSIONS: Because social anxiety disorder is common, disabling, and treatable, primary care physicians should intensify their efforts to recognize it.

Adolescent↗