PubMed Health⌕ Search

PubMed · 7905869

Microsatellite, restriction fragment-length polymorphism, and sequence-specific oligonucleotide typing of the tumor necrosis factor region. Comparisons of the 4AOHW cell panel.

Abstract

The location of the TNF and other genes in the central MHC and their possible relevance to disease susceptibility provided an impetus to develop useful typing markers. The 4AOHW undertook to assess the various markers available, including DNA sequence-based systems. A panel of well-characterized lymphoblastoid cell lines were typed by Nco I RLFP analysis, SSO typing, and TNF microsatellite typing. RFLP and SSO typing were relatively reproducible as judged by the blind replicates. The two techniques provided the same results with only one exception, and it would be reasonable to prefer SSO typing because of its advantages in terms of cost and time. Microsatellite typing was much more discriminating but, as expected, less robust in that some discrepancies were apparent. As a result of the workshop and subsequent testing, alleles and haplotypes were allocated to most cells within the 4AOHW panel, including 10W cells typed in previous studies. While there was evidence that microsatellites may be relatively stable, they have the potential to identify recent mutations within ancestral haplotypes.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

L J Abraham, J V Marley, S A Nedospasov, A Cambon-Thomsen, B Crouau-Roy, R L Dawkins, M J Giphart. 1993. Microsatellite, restriction fragment-length polymorphism, and sequence-specific oligonucleotide typing of the tumor necrosis factor region. Comparisons of the 4AOHW cell panel.. https://doi.org/10.1016/0198-8859(93)90515-3

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Striping artifact removal in VisiumHD data through nuclear counts modeling.

MOTIVATION: 10x Genomics VisiumHD enables spatial transcriptomics at 2 µm × 2 µm resolution but exhibits slide-specific, non-periodic striping artifacts due to lane-width variability. These multiplicative row/column effects distort bin total counts and can bias downstream analyses. The state-of-the-art destriping approach is the normalization procedure used as a preprocessing step in bin2cell; it applies sequential high-quantile row- then column-wise normalization, which is asymmetric and can introduce edge effects/macro-stripes and distortions of large-scale total-count structure. RESULTS: We propose a statistical destriping approach that leverages nuclei segmentation from the co-registered H&E image. Assuming transcript abundance is constant within each nucleus, we model bin counts with a negative binomial distribution whose mean is a product of a nucleus-specific concentration and row- and column-specific stripe-factors reflecting lane-width variation. We fit all parameters in a generalized linear modeling framework with cross-validated regularization on stripe-factors and iterative dispersion estimation, and use the fitted parameters to correct the observed counts into a destriped image. On synthetic data with known ground truth, our method improves stripe-factor estimation accuracy and reduces error in corrected counts relative to bin2cell and bin2cell-derived baselines. Across four public VisiumHD slides, it consistently lowers striping intensity while substantially better preserving biological signal present in the large-scale global count structure and avoiding the artifacts introduced by other methods. AVAILABILITY AND IMPLEMENTATION: All source code and links to publicly available data used for this study are available at https://github.com/paolamalsot/destriping-GLM.

Artifacts↗

Impairment of echocardiographic acoustic window caused by breast implants.

Cosmetic breast implants are increasing in popularity. The presence of a breast implant overlying the anterior mediastinal space as a cause of impairment of the echocardiographic acoustic window has not been described previously. Here, we report three cases with significant impairment of echocardiographic acoustic window caused by breast implants. Clinicians should be aware of this interference and women should be informed of this dilemma before considering this cosmetic surgery.

Artifacts↗