摘要
This dissertation examines the factors that influence
fomite-mediated (e.g., indirect contact) transmission of viral
gastrointestinal and respiratory illness. Specifically, the
dissertation investigates virus transfer between surfaces and virus
recovery from surfaces, models human-fomites interactions to
estimate exposure and infection risk, and elucidates causal links
between microbial contamination and illness in child care centers.
Indirect contact transmission refers to person-to-person
transmission of disease via an intermediate fomite (e.g., inanimate
object acting as a carrier of infectious disease). The role of
indirect contact in disease spread is poorly understood in part
because the transmission route of viral pathogens is often
difficult to determine. Transmission of respiratory and
gastrointestinal viruses can occur through multiple routes (e.g.,
direct contact, indirect contact, airborne, and common vehicle),
and the relative contribution of each route to total disease burden
is unclear. The first study in this dissertation examines virus
transfer between skin and surfaces, a necessary step in
fomite-mediated transmission of viral disease. In the study,
transfer of virus between fingerpads and fomites is explored in a
laboratory setting. Bacteriophage (fr, MS2, and PHIX174) are used
as proxies for pathogenic virus, and over 650 unique transfer
events are collected from 20 different volunteers. The study
concludes that approximately one quarter (23%) of recoverable virus
is readily transferred from a contaminated surface (e.g., a fomite)
to an uncontaminated surface (e.g., a finger) on contact. Using the
large data set, the direction of transfer (from
fingerpads-to-fomite or fomite-to-fingerpad) and virus species are
demonstrated to both significantly influence the fraction of virus
transferred by approximately 2-5%. To investigate the relative
importance of factors contributing to fomite-mediated transmission,
a child's risk of illness from exposure to a contaminated fomite is
modeled. Specifically, the model estimates a child's exposure to
rotavirus using a stochastic-mechanistic framework. Simulations of
a child's contacts with the fomite include intermittent
fomite-mouth, hand-mouth, and hand-fomite contacts based on
activities of a typical child under six years of age. In addition
to frequency of contact data, parameters estimated for use in the
model include virus concentration on surface; virus inactivation
rates on hands and the fomite; virus transfer between hands,
fomite, and the child's mouth; and the surface area of objects and
hands in contact. From the model, we conclude that a child's median
ingested dose from interacting with a rotavirus-contaminated ball
ranges from 2 to 1,000 virus over a period of one hour, with a
median value of 42 virus. These results were heavily influenced by
selected values of model parameters, most notably, the
concentration of rotavirus on fomite, frequency of fomite-mouth
contacts, frequency of hand-mouth contacts, and virus transferred
from fomite to mouth.…