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Yousefzadeh, M. J.

Publications and source records attributed to Yousefzadeh, M. J..

2 recordsLinked to original sources

Fisetin extends lifespan in a murine model of recessive dystrophic epidermolysis bullosa

Recessive Dystrophic Epidermolysis Bullosa (RDEB) is a rare genodermatosis characterized clinically by extensive inflammation, cutaneous destruction, and fibrosis that demonstrates properties similar to rapid skin aging. As tissue ages, it accumulates cellular damage and exhaustion leading to a state of senescence. Cellular senescence is an aging or disease-related phenomenon of stable exit from the cell cycle that leads to an increased inflammatory phenotype. RDEB and other EB subsets of patients need an adjunct to or alternate therapy that addresses the issues of inflammation, pain, and pruritus. Fisetin is a safe, naturally occurring compound proven to be effective at sensitizing senescent cells to cell death and ameliorating senescence-associated inflammation. In this paper, we demonstrate fisetins ability to increase survival and reduce senescent cell burden in a hypomorphic mouse model of RDEB.

molecular biology↗

Clonal dynamics and somatic evolution of haematopoiesis in mouse

Haematopoietic stem cells maintain blood production throughout life. While extensively characterised using the laboratory mouse, little is known about how the population is sustained and evolves with age. We isolated stem cells and progenitors from young and old mice, identifying 221,890 somatic mutations genome-wide in 1845 single cell-derived colonies, and used phylogenetic analysis to infer the ontogeny and population dynamics of the stem cell pool. Mouse stem cells and progenitors accrue [~]45 somatic mutations per year, a rate only about 2-fold greater than human progenitors despite the vastly different organismal sizes and lifespans. Phylogenetic patterns reveal that stem and multipotent progenitor cell pools are both established during embryogenesis, after which they independently self-renew in parallel over life. The stem cell pool grows steadily over the mouse lifespan to approximately 70,000 cells, self-renewing about every six weeks. Aged mice did not display the profound loss of stem cell clonal diversity characteristic of human haematopoietic ageing. However, targeted sequencing revealed small, expanded clones in the context of murine ageing, which were larger and more numerous following haematological perturbations and exhibited a selection landscape similar to humans. Our data illustrate both conserved features of population dynamics of blood and distinct patterns of age-associated somatic evolution in the short-lived mouse.

genomics↗