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1.
Oncotarget ; 9(18): 14692-14722, 2018 Mar 06.
Article in English | MEDLINE | ID: mdl-29581875

ABSTRACT

While many efforts have been made to pave the way toward human space colonization, little consideration has been given to the methods of protecting spacefarers against harsh cosmic and local radioactive environments and the high costs associated with protection from the deleterious physiological effects of exposure to high-Linear energy transfer (high-LET) radiation. Herein, we lay the foundations of a roadmap toward enhancing human radioresistance for the purposes of deep space colonization and exploration. We outline future research directions toward the goal of enhancing human radioresistance, including upregulation of endogenous repair and radioprotective mechanisms, possible leeways into gene therapy in order to enhance radioresistance via the translation of exogenous and engineered DNA repair and radioprotective mechanisms, the substitution of organic molecules with fortified isoforms, and methods of slowing metabolic activity while preserving cognitive function. We conclude by presenting the known associations between radioresistance and longevity, and articulating the position that enhancing human radioresistance is likely to extend the healthspan of human spacefarers as well.

2.
Cell Cycle ; 16(17): 1578-1584, 2017.
Article in English | MEDLINE | ID: mdl-28594262

ABSTRACT

Androgenetic alopecia is the most common form of hair loss. Minoxidil has been approved for the treatment of hair loss, however its mechanism of action is still not fully clarified. In this study, we aimed to elucidate the effects of 5% minoxidil topical foam on gene expression and activation of signaling pathways in vertex and frontal scalp of men with androgenetic alopecia. We identified regional variations in gene expression and perturbed signaling pathways using in silico Pathway Activation Network Decomposition Analysis (iPANDA) before and after treatment with minoxidil. Vertex and frontal scalp of patients showed a generally similar response to minoxidil. Both scalp regions showed upregulation of genes that encode keratin associated proteins and downregulation of ILK, Akt, and MAPK signaling pathways after minoxidil treatment. Our results provide new insights into the mechanism of action of minoxidil topical foam in men with androgenetic alopecia.


Subject(s)
Alopecia/drug therapy , Gene Expression Regulation , Minoxidil/administration & dosage , Minoxidil/therapeutic use , Signal Transduction/genetics , Administration, Topical , Adolescent , Adult , Gene Expression Profiling , Gene Expression Regulation/drug effects , Humans , Male , Middle Aged , Scalp/drug effects , Scalp/pathology , Signal Transduction/drug effects , Young Adult
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