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1.
J Patient Cent Res Rev ; 7(4): 337-342, 2020.
Article in English | MEDLINE | ID: mdl-33163554

ABSTRACT

Despite comparable screening and incidence rates that are 26% below that of non-Hispanic Whites, Hispanic women present with breast cancer at more advanced stages of disease, representing a continuing and troubling health disparity for this population. Reducing these disparities warrant more innovative research approaches to better understand perspectives of Hispanic patients regarding barriers to treatment and how these perspectives compare to those of their providers. A pilot qualitative study was conducted at a major urban cancer center in Arizona that measured both patient and provider perspectives regarding barriers to treatment. Through a multimethod qualitative analysis, researchers surveyed patients and providers to identify perceived barriers and discordance in shared understanding. Data collection and analysis consisted of surveying patients and providers, then performing inductive qualitative analysis. Results indicated the highest concordance, or shared understanding, between patients and providers was in recognizing barriers within delivery of care, such as cost of care and insurance coverage. The greatest discordance, or gaps in shared understanding, existed in upstream barriers of the health care system, such as emotional support and trust in systems. These results underscore the gap in shared understanding between patients and providers regarding upstream barriers to care as well as the nonclinical social determinants of health Hispanic patients face in accessing breast cancer treatment. More research is warranted using this approach as a tool to reduce health disparities.

2.
PLoS Pathog ; 12(2): e1005447, 2016 Feb.
Article in English | MEDLINE | ID: mdl-26895155

ABSTRACT

Toxoplasma gondii, a common brain-tropic parasite, is capable of infecting most nucleated cells, including astrocytes and neurons, in vitro. Yet, in vivo, Toxoplasma is primarily found in neurons. In vitro data showing that interferon-γ-stimulated astrocytes, but not neurons, clear intracellular parasites suggest that neurons alone are persistently infected in vivo because they lack the ability to clear intracellular parasites. Here we test this theory by using a novel Toxoplasma-mouse model capable of marking and tracking host cells that directly interact with parasites, even if the interaction is transient. Remarkably, we find that Toxoplasma shows a strong predilection for interacting with neurons throughout CNS infection. This predilection remains in the setting of IFN-γ depletion; infection with parasites resistant to the major mechanism by which murine astrocytes clear parasites; or when directly injecting parasites into the brain. These findings, in combination with prior work, strongly suggest that neurons are not incidentally infected, but rather they are Toxoplasma's primary in vivo target.


Subject(s)
Astrocytes/parasitology , Brain/parasitology , Neurons/parasitology , Toxoplasma , Toxoplasmosis/parasitology , Animals , Cells, Cultured , Disease Models, Animal , Interferon-gamma/metabolism , Intracellular Space/parasitology , Mice
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