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Oxophenarsine, an antisyphilis drug inhibits HIV-1-specific protein synthesis in acutely and persistently infected lymphocytes.

The development of drugs that can inhibit both acute and persistent anti-human immunodeficiency virus type 1 (HIV-1) infection is a major goal in the treatment of patients with acquired immunodeficiency syndrome (AIDS). Most of the anti-HIV-1 drugs reported thus far, such as azidothymidine (AZT), inhibit acute HIV-1 infection but have no antiviral effect against persistent infection. We report here that oxophenarsine (3-amino-4 hydroxyphenylarsineoxide hydrochloride), an antisyphilus drug inhibits HIV-1 production in acutely infected peripheral blood lymphocytes (PBL) and persistently infected T cells. In acutely infected PBL and H9 T cells, the drug is effective at concentrations as low as 0.07-0.15 micrograms/ml with no significant cytotoxicity at concentrations of 6.0 micrograms/ml or below. It does not inhibit HIV-1 reverse transcriptase at doses up to 60 micrograms/ml. The drug has no effect on HIV-1-specific DNA and RNA synthesis. However, it inhibits HIV-1 protein synthesis in both acutely and persistently infected cells.

Anti-Infective Agents↗

Eperythrozoon coccoides: influence on course of infection of Plasmodium chabaudi in mouse.

Mice infected with Plasmodium chabaudi obtained from two sources were found to be contaminated with Eperythrozoon coccoides. At each transfer of blood parasitized with plasmodia, eperythrozoa were also passed. In the presence of these organisms, the malarial infection assumed a low-level, chronic course infrequently resulting in death of the mice. When the eperythrozoa were eliminated through treatment with oxophenarsine hydrochloride, the malarial infection took an acute course always ending in death.

Animals↗

Drug-resistant Leptomonas: cross-resistance in trypanocide-resistant clones.

A Leptomonas of insect origin was highly susceptible to several standard trypanocides and leishmanicides in vitro. Resistance was induced to some of these drugs; clones were isolated from each strain. Cross-resistance patterns of the clones were derived for diamidines, quinapyramine (Antrycide), acriflavin, phenanthridines, and other drugs active against trypanosomes and leishmanias. Clones tested included two each that were resistant to acriflavin, Antrycide, diminazene aceturate (Berenil), and pentamidine and one that was resistant to stilbamidine. Appreciable cross-resistance was evident for all clones. Differences were observed between clones from the same parent strain. Collateral susceptibility towards isometamidium and oxophenarsine was detected in most clone-derived populations. In clones passaged without drug to test for drug fastness, acriflavin and pentamidine clones lost resistance within 10 transfers, whereas Berenil and Antrycide clones retained considerable resistance after 20 to 30 subcultures without drug. Considerations of differences in life cycles suggest that the clone collection may be useful in screening for agents effective against leishmanias and stercorarian trypanosomes rather than against salivary trypanosomes.

Clone Cells↗