Our results confirm the need to test for HRPT2 in FIHP families, especially those with parathyroid carcinomas, atypical adenomas or adenomas with cystic change.
Objective:
Human papillomavirus (HPV) vaccination was introduced in Japan in
April 2013, as a national immunization program for girls aged 12–16 years, after an
initial introduction in 2010 as a public-aid program for girls aged 13–16 years. The
Yuri-Honjo district had the highest vaccine coverage among women aged 17–51 years in 2017,
due to the original public-aid program. The aim of this study was to evaluate the
differences in the vaccine types of HPV16/18 infections between 2008–2012 (pre-vaccine
era) and 2013–2017 (vaccine era).
Materials and Methods:
We evaluated whether HPV vaccination was associated
with a decrease in the prevalence of HPV16/18 and high-risk HPV and the incidence of
HPV-associated cervical lesions. A total of 1,342 women aged 18–49 years, covering both
the pre-vaccine and vaccine eras, who visited Yuri Kumiai General Hospital and underwent
HPV genotype tests from June 2008 to December 2017 were compared.
Results:
Among women aged 18–24 years with higher vaccine coverage (68.2%),
the prevalence of HPV16/18 and high-risk HPV decreased from 36.7% and 69.4%, respectively,
in the pre-vaccine era to 5.8% and 50.0%, respectively, in the vaccine era (p=0.00013 and
p=0.047, respectively). Among those with cervical intraepithelial neoplasia grade 2− and
grade 2+, HPV16/18 prevalence decreased from 30.0% to 2.7% (p=0.0018) and from 81.8% to
36.4% (p=0.030), respectively. In this age group, the rate of HPV16/18 positivity
decreased significantly. Among age groups with lower vaccine coverage, HPV prevalence did
not significantly differ between the two eras.
Conclusion:
The prevalence of HPV16/18 and high-risk HPV significantly
decreased in women aged 18–24 years, most of whom were vaccinated. HPV vaccination
effectively reduced the prevalence of HPV16/18 infections in the Yuri-Honjo district.
The beta bind: Copper(I) binds to amyloid β‐peptide fragments (see structure) as a stable bis(histidine), two‐coordinate, near‐linear complex, even in the presence of potential additional ligands. As has been proposed or assumed in other studies, the copper(I)–peptide complexes react with dioxygen to form the reactive oxygen species H2O2, without the need for a third histidine ligand to promote the chemistry.
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