Synopsis
Every stage of organismal life history is being challenged by global warming. Many species are already experiencing temperatures approaching their physiological limits; this is particularly true for ectothermic species, such as lizards. Embryos are markedly sensitive to thermal insult. Here, we demonstrate that temperatures currently experienced in natural nesting areas can modify gene expression levels and induce neural and craniofacial malformations in embryos of the lizard Anolis sagrei. Developmental abnormalities ranged from minor changes in facial structure to significant disruption of anterior face and forebrain. The first several days of postoviposition development are particularly sensitive to this thermal insult. These results raise new concern over the viability of ectothermic species under contemporary climate change. Herein, we propose and test a novel developmental hypothesis that describes the cellular and developmental origins of those malformations: cell death in the developing forebrain and abnormal facial induction due to disrupted Hedgehog signaling. Based on similarities in the embryonic response to thermal stress among distantly related species, we propose that this developmental hypothesis represents a common embryonic response to thermal insult among amniote embryos. Our results emphasize the importance of adopting a broad, multidisciplinary approach that includes both lab and field perspectives when trying to understand the future impacts of anthropogenic change on animal development.
Objective
This study aims to discover the most prevalent high‐risk (hr) HPV genotypes in the regions of Loreto and La Libertad, Peru.
Methods
In 2015, cervical cell samples were collected during pelvic examinations from women in the geographically distinct regions of Loreto and La Libertad, Peru. In 2017, additional samples were collected in La Libertad. A total of 429 women between the ages of 18 and 65 years living in these regions were enrolled in the study. All samples were analyzed by polymerase chain reaction for the hrHPV genotypes 16, 18, and 35.
Results
Sample collection from 126 women in 2015 in Loreto revealed an hrHPV incidence of 15.9% (20 of 126), with 60% (12 of 126) of HPV infections due to hrHPV 16. Samples from La Libertad revealed an hrHPV incidence of 14.5% incidence (44 of 303) (among 303 women). Of these infections, 38% (17) were attributable to hrHPV type 35 and 20% (9) were due to hrHPV type 16.
Conclusion
The prevalence of hrHPV genotypes in Peru may differ from those observed in North America and Europe. Loreto appears to follow the prevalence trend observed in North America, with hrHPV type 16 accounting for the majority of cases. However, hrHPV type 35 may account for a greater contribution to the cervical cancer burden in La Libertad. Further research, specifically on cervical tumor specimens, is needed.
Recombinant adenovirus serotype 5 (Ad5) vectors are promising vaccine candidates due to their intrinsic immunogenicity and potent transgene expression; however, widespread preexisting Ad5 immunity has been considered a developmental impediment to the use of traditional, or conventional, E1 and E3 gene-deleted Ad5 (
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