Publications
Department of Medicine faculty members published more than 3,600 peer-reviewed articles in 2024.
2006
2006
2006
2006
Homelessness annually affects an estimated 2.3 million to 3.5 million individuals living in the United States. Homeless people face difficulties in meeting their basic needs. Many have substance abuse problems and mental illness, lack social support, and have no medical insurance. These challenges complicate the homeless patient's ability to engage in end-of-life advanced planning, adhere to medications, and find an adequate site to receive terminal care. Employing a multidisciplinary team to care for homeless patients can help address their needs and improve care. For patients who continue to use illicit substances while receiving end-of-life care, experts recommend scheduling frequent clinic visits, using long-acting pain medications, dispensing small quantities of medications at a time, and using a written pain agreement. Homeless people are less likely to have a surrogate decision maker. Clinicians should have frequent, well-documented conversations with these patients about end-of-life wishes. Homeless people can rarely use hospice services because they lack the financial resources for inpatient hospice and have neither the home nor the social support required for home hospice. Developing inpatient palliative care services at hospitals that serve many homeless people could improve the end-of-life care homeless people receive.
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The American Heart Association (AHA) and the American Diabetes Association (ADA) have each published guidelines for cardiovascular disease prevention: The ADA has issued separate recommendations for each of the cardiovascular risk factors in patients with diabetes, and the AHA has shaped primary and secondary guidelines that extend to patients with diabetes. This statement will attempt to harmonize the recommendations of both organizations where possible but will recognize areas in which AHA and ADA recommendations differ.
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The inhibition of hepatic uptake transporters, such as OATP1B1, on the pharmacokinetics of atorvastatin is unknown. Here, we investigate the effect of a model hepatic transporter inhibitor, rifampin, on the kinetics of atorvastatin and its metabolites in humans. The inhibitory effect of a single rifampin dose on atorvastatin kinetics was studied in 11 healthy volunteers in a randomized, crossover study. Each subject received two 40-mg doses of atorvastatin, one on study day 1 and one on study day 8, separated by 1 week. One intravenous 30-min infusion of 600 mg rifampin was administered to each subject on either study day 1 or study day 8. Plasma concentrations of atorvastatin and metabolites were above the limits of quantitation for up to 24 h after dosing. Rifampin significantly increased the total area under the plasma concentration-time curve (AUC) of atorvastatin acid by 6.8+/-2.4-fold and that of 2-hydroxy-atorvastatin acid and 4-hydroxy-atorvastatin acid by 6.8+/-2.5- and 3.9+/-2.4-fold, respectively. The AUC values of the lactone forms of atorvastatin, 2-hydroxy-atorvastatin and 4-hydroxy-atorvastatin, were also significantly increased, but to a lower extent. An intravenous dose of rifampin substantially increased the plasma concentrations of atorvastatin and its acid and lactone metabolites. The data confirm that OATP1B transporters represent the major hepatic uptake systems for atorvastatin and its active metabolites. Inhibition of hepatic uptake may have consequences for efficacy and toxicity of drugs like atorvastatin that are mainly eliminated by the hepatobiliary system.
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