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Buckley, B.

Publications and source records attributed to Buckley, B..

2 recordsLinked to original sources

Image-Based Quantitative Single-Cell Method Showed Increase of Global Chromatin Accessibility in Tumor Compared to Normal Cells

The phenotypic plasticity of cancer cells has recently emerged as an important factor of treatment failure. The mechanisms of phenotypic plasticity are not fully understood. One of the hypotheses is that the degree of chromatin accessibility defines the easiness of cell transitions between different phenotypes. To test this, a method to compare overall chromatin accessibility between cells in a population or between cell populations is needed. We propose to measure the chromatin accessibility of a cell by total fluorescence signal from nuclei stained with DNA-binding fluorescent molecules. This method is based on the existing data that some small molecules bind nucleosome-free DNA more easily than nucleosomal DNA. Thus, nuclear fluorescence of these molecules is proportional to the amount of nucleosome-free DNA, serving as a measure of chromatin accessibility. We optimized the method using several DNA binding molecules and known chromatin modulating agents. Using a set of tumor and non-tumor cells of different origins we observed the tendency to the higher chromatin accessibility of tumor versus non-tumor cells. Chromatin accessibility was also increased upon oncogene-induced transformation of mouse and human cells.

cancer biology↗

Ovarian disrupting effects and mechanisms of long- and short-chain per- and polyfluoroalkyl substances in mice

BackgroundThe extensive use of per- and polyfluoroalkyl substances (PFAS) has led to environmental contamination and bioaccumulation. Previous research linked PFAS exposure to female reproductive disorders, but the mechanism remains elusive. Further, most studies focused on legacy long-chain PFOA and PFOS, yet the reproductive impacts of other long-chain PFAS and short-chain alternatives are rarely explored. ObjectivesWe investigated the effects and mechanisms of long- and short-chain PFAS on the ovary and associated ovarian functions. MethodsA 3D in vitro ovarian follicle culture system and an in vivo mouse model, together with approaches of reverse transcription-quantitative polymerase chain reaction, enzyme-linked immunosorbent assay, RNA-sequencing, pharmacological treatment, in situ zymography, histology, in situ hybridization, analytical chemistry, and benchmark dose modeling (BMD), were used to test environmentally relevant exposure levels of six long- and short-chain PFAS on follicle maturation, hormone secretion, and ovulation. ResultsIn vitro exposure revealed that long-but not short-chain PFAS interfered with gonadotropin-dependent follicle maturation, ovulation, and hormone secretion. Mechanistically, long-chain perfluorononanoic acid (PFNA) acted as a peroxisome proliferator-activated receptor gamma (PPAR{gamma}) agonist in granulosa cells to disrupt follicle-stimulating hormone (FSH)-dependent follicle maturation, luteinizing hormone (LH)-stimulated ovulation, and associated gene regulatory pathways. In vivo mouse exposure confirmed the ovarian accumulation of PFNA and the mechanism of PPAR{gamma}-mediated ovarian toxicities of PFNA observed in vitro. The BMD analysis of in vitro and in vivo results suggested human relevant exposure levels of long-chain PFAS in our study pose an extra risk of ovarian defects, with follicular rupture as the most sensitive endpoint. DiscussionUsing in vitro follicle culture and in vivo mouse models, we discovered that long-chain PFAS interfere with gonadotropin-dependent follicle maturation, hormone secretion, and ovulation, posing a non-negligible risk to womens reproductive health including anovulation, irregular menstrual cycles, and sub- or infertility.

pharmacology and toxicology↗