Publications by authors named "Jasmine Santos"

Microplastics are routinely ingested and inhaled by humans and other organisms. Despite the frequency of plastic exposure, little is known about its health consequences. Of particular concern are plastic additives─chemical compounds that are intentionally or unintentionally added to plastics to improve functionality or as residual components of plastic production.

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Background: Previous studies have noted that participation in advanced care planning (ACP) and end-of-life (EOL) discussions remain low among Latino communities. Various studies have found that interventions within Latino communities can positively improve engagement in ACP, however, minimal research exists regarding patient satisfaction of ACP discussions with healthcare providers outside of preorganized educational interventions. Our study aims to understand how conversations about ACP are perceived by Latino patients in a primary care setting.

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Gene editing utilizing homology-directed repair has advanced significantly for many monogenic diseases of the hematopoietic system in recent years but has also been hindered by decreases between and gene integration rates. Homology-directed repair occurs primarily in the S/G phases of the cell cycle, whereas long-term engrafting hematopoietic stem cells are typically quiescent. Alternative methods for a targeted integration have been proposed including homology-independent targeted integration and precise integration into target chromosome, which utilize non-homologous end joining and microhomology-mediated end joining, respectively.

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A 23-year-old woman with progressive Friedreich's ataxia (FRDA) presented to a local urgent care facility for urinary urgency and frequency. A urinalysis showed the presence of trace ketones and glucose, and point-of-care testing revealed severely elevated glucose. The patient was referred to the emergency department and was admitted for further evaluation of hyperglycemia.

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X-linked agammaglobulinemia (XLA) is a monogenic primary immune deficiency characterized by very low levels of immunoglobulins and greatly increased risks for recurrent and severe infections. Patients with XLA have a loss-of-function mutation in the Bruton's tyrosine kinase () gene and fail to produce mature B lymphocytes. Gene editing in the hematopoietic stem cells of XLA patients to correct or replace the defective gene should restore B cell development and the humoral immune response.

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