1.Nosocomial outbreak of coronavirus disease in two general wards during the initial wave of the pandemic in 2020, Tokyo, Japan
Naoya Sakamoto ; Masayuki Ota ; Tomoko Takeda ; Atsushi Kosaka ; Takuya Washino ; Sentaro Iwabuchi ; Minako Beppu ; Itaru Nishiduka ; Tamano Matsui ; Motoi Suzuki ; Fukumi Nakamura-Uchiyama
Western Pacific Surveillance and Response 2022;13(1):38-42
Objective:
Coronavirus disease 2019 (COVID-19), caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), was first reported in China and subsequently spread worldwide. In Japan, many clusters occurred during the first wave in 2020. We describe the investigation of an early outbreak in a Tokyo hospital.
Methods:
A COVID-19 outbreak occurred in two wards of the hospital from April to early May 2020. Confirmed cases were individuals with laboratory-confirmed SARS-CoV-2 infection linked to Wards A and B, and contacts were patients or workers in Wards A or B 2 weeks before the index cases developed symptoms. All contacts were tested, and cases were interviewed to determine the likely route of infection and inform the development of countermeasures to curb transmission.
Results:
There were 518 contacts, comprising 472 health-care workers (HCWs) and 46 patients, of whom 517 were tested. SARS-CoV-2 infection was confirmed in 42 individuals (30 HCWs and 12 patients). The proportions of SARS-CoV-2 infections in HCWs were highest among surgeons, nurses, nursing assistants and medical assistants. Several HCWs in these groups reported being in close proximity to one another while not wearing medical masks. Among HCWs, infection was thought to be associated with the use of a small break room and conference room.
Discussion
Nosocomial SARS-CoV-2 infections occurred in two wards of a Tokyo hospital, affecting HCWs and patients. Not wearing masks was considered a key risk factor for infection during this outbreak; masks are now a mandated countermeasure to prevent the spread of SARS-CoV-2 infection in hospital settings.
2.Hospital-based screening to detect patients with cadmium nephropathy in cadmium-polluted areas in Japan.
Toru SASAKI ; Hyogo HORIGUCHI ; Akira ARAKAWA ; Etsuko OGUMA ; Atsushi KOMATSUDA ; Kenichi SAWADA ; Katsuyuki MURATA ; Kazuhito YOKOYAMA ; Takehisa MATSUKAWA ; Momoko CHIBA ; Yuki OMORI ; Norihiro KAMIKOMAKI
Environmental Health and Preventive Medicine 2019;24(1):8-8
BACKGROUND:
In health examinations for local inhabitants in cadmium-polluted areas, only healthy people are investigated, suggesting that patients with severe cadmium nephropathy or itai-itai disease may be overlooked. Therefore, we performed hospital-based screening to detect patients with cadmium nephropathy in two core medical institutes in cadmium-polluted areas in Akita prefecture, Japan.
METHODS:
Subjects for this screening were selected from patients aged 60 years or older with elevated serum creatinine levels and no definite renal diseases. We enrolled 35 subjects from a hospital in Odate city and 22 from a clinic in Kosaka town. Urinary ß-microglobulin and blood and urinary cadmium levels were measured.
RESULTS:
The criteria for renal tubular dysfunction and the over-accumulation of cadmium were set as a urinary ß-microglobulin level higher than 10,000 μg/g cr. and a blood cadmium level higher than 6 μg/L or urinary cadmium level higher than 10 μg/g cr., respectively. Subjects who fulfilled both criteria were diagnosed with cadmium nephropathy. Six out of 57 patients (10.5% of all subjects) had cadmium nephropathy.
CONCLUSIONS:
This hospital-based screening is a very effective strategy for detecting patients with cadmium nephropathy in cadmium-polluted areas, playing a complementary role in health examinations for local inhabitants.
REGISTRATION NUMBER
No. 6, date of registration: 6 June, 2010 (Akita Rosai Hospital), and No. 1117, date of registration: 26 December, 2013 (Akita University).
Aged
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Aged, 80 and over
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Cadmium
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adverse effects
;
urine
;
Cadmium Poisoning
;
blood
;
complications
;
urine
;
Creatinine
;
urine
;
Environmental Exposure
;
adverse effects
;
Environmental Monitoring
;
Environmental Pollutants
;
adverse effects
;
urine
;
Female
;
Hospitals
;
Humans
;
Japan
;
Kidney Diseases
;
chemically induced
;
urine
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Male
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Middle Aged
;
Sex Distribution