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PubMed · 2962477

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1988. Warning labels.. https://pubmed.ncbi.nlm.nih.gov/2962477/

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Effects of therapy with didanosine on hematologic parameters in patients with advanced human immunodeficiency virus disease.

Myelosuppression is associated with human immunodeficiency virus (HIV) infection and may also be produced by agents used for the treatment of the disease or the treatment of its complications. Didanosine (ddl; 2',3'-dideoxyinosine) is a newer purine nucleoside that has recently become available for therapy for HIV infection. The effects of didanosine on peripheral blood counts have been retrospectively evaluated in the first 170 patients treated with this new agent in four phase I trials. Patients treated with didanosine showed statistically significant improvements in hemoglobin levels, white cell counts, and granulocyte and platelet numbers as compared with baseline values. These changes were seen with or without prior therapy with zidovudine, were somewhat more pronounced at higher doses of didanosine, and persisted for up to 1 year. Reported adverse events included peripheral neuropathy, diarrhea, and most notably, pancreatitis. It is concluded that, while some toxic side effects occur, didanosine therapy in HIV infection is associated with an amelioration of HIV-induced myelosuppression.

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Release of granulocyte-macrophage colony-stimulating factor by alveolar macrophages in the lung of HIV-1-infected patients. A mechanism accounting for macrophage and neutrophil accumulation.

In this paper, the release of granulocyte-macrophage colony-stimulating factor (GM-CSF) in the lung of patients with HIV-1 infection was evaluated. This cytokine has well recognized effects on granulocyte and macrophage growth and differentiation and plays some role in the mechanisms leading to the accumulation of alveolar macrophages (AM) in patients with interstitial lung disease. Detectable levels of GM-CSF (up to 10 pg/ml) were demonstrated in unconcentrated bronchoalveolar lavage fluid retrieved from HIV-1-seropositive patients, thus suggesting that the GM-CSF is released in vivo in the lung during HIV-1 infection. A statistically significant correlation was demonstrated between the bronchoalveolar lavage concentrations of GM-CSF and the absolute numbers of AM and lung neutrophils. Cell-free supernatants obtained from unstimulated 24-h cultured AM isolated from HIV-1-infected patients contained discrete amounts of GM-CSF, as demonstrated by an immunoenzymatic assay. AM lost the capability of releasing GM-CSF after 72 h of culture, thus suggesting that the production of GM-CSF is not constitutive in AM. After exposition of AM with LPS, the release of GM-CSF and the expression of its mRNA significantly increased with respect to the baseline values; interestingly, the amount of GM-CSF released by LPS-stimulated AM was more than 10-fold higher in HIV-1-infected patients than in healthy subjects. As demonstrated by flow cytometry analysis, more than 70% of freshly isolated AM efficiently bound phycoerythrin-GM-CSF, thus indicating that they express the receptor for GM-CSF. Determination of AM in G1, S, and G2+M by flow cytometry showed that, after 48 h of culture with GM-CSF, 5.5 to 7% of AM entered the proliferative phase of the cell cycle. Taken together, these findings suggest that AM might represent an important source of GM-CSF production in HIV-1 infection. In particular, the hypothesis is formulated that pulmonary opportunists might trigger AM to synthesize GM-CSF in situ. The local overproduction of this cytokine is likely to play a role in the pathogenic events leading to the local proliferation of AM and recruitment of neutrophils in AIDS-associated interstitial lung disease.

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A controlled trial comparing continued zidovudine with didanosine in human immunodeficiency virus infection. The NIAID AIDS Clinical Trials Group.

BACKGROUND: Although zidovudine is effective in patients with human immunodeficiency virus (HIV) infection, its efficacy may decline with prolonged use. Didanosine is another inhibitor of HIV reverse transcriptase. We evaluated the effectiveness of changing anti-HIV treatment from zidovudine to didanosine. METHODS: This multicenter, double-blind study involved 913 patients who had tolerated zidovudine for at least 16 weeks. The patients had the acquired immunodeficiency syndrome (AIDS), AIDS-related complex with less than or equal to 300 CD4 cells per cubic milliliter, or asymptomatic HIV infection with less than or equal to 200 CD4 cells per cubic milliliter. They were randomly assigned to receive 600 mg per day of zidovudine, 750 mg per day of didanosine, or 500 mg per day of didanosine. RESULTS: There were significantly fewer new AIDS-defining events and deaths among the 298 subjects assigned to 500 mg per day of didanosine than among the subjects who continued to receive zidovudine (relative risk, 1.39; 95 percent confidence interval, 1.06 to 1.82; P = 0.015). With 750 mg of didanosine, there was no clear benefit over zidovudine (relative risk, 1.10; 95 percent confidence interval, 0.86 to 1.42). The efficacy of didanosine was unrelated to the duration of previous zidovudine treatment. In the two didanosine groups, there were improvements in the number of CD4 cells (P less than 0.001 for both groups) and in p24 antigen levels (P = 0.03 in the 500-mg group; P = 0.005 in the 750-mg group), as compared with the zidovudine group. CONCLUSIONS: Changing treatment from zidovudine to 500 mg per day of didanosine appears to slow the progression of HIV disease.

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