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Hydrogen Sulfide Heightens Disease in TB, Suggesting a New Therapeutic Target

The tuberculosis bacteria induce increased hydrogen sulfide production by human macrophages, which increases pathogenesis

Written byUniversity of Alabama at Birmingham
| 4 min read
Stained human lung tissue from a patient who was on anti-tuberculous therapy and underwent emergency pneumonectomy
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BIRMINGHAM, AL — A new culprit—hydrogen sulfide—has been found for the deadly infectious disease tuberculosis. Hydrogen sulfide gas is known for its rotten egg smell, yet it has normal physiological roles in the human body to communicate among cells.

When tuberculosis bacteria invade the lung, however, the amounts of hydrogen sulfide in the lung microenvironment appear to greatly increase, and this makes the microbe more virulent and better able to block the body's protective immune response, according to research led by Andries "Adrie" Steyn, PhD, a University of Alabama at Birmingham professor of microbiology.

The source of this hydrogen sulfide, Mycobacterium tuberculosis bacteria, or Mtb, are able to induce human macrophage immune cells to produce more hydrogen sulfide. Thus, Mtb exploits macrophage metabolism to increase Mtb virulence. During the disease, Mtb grows and safely persists inside macrophages, the immune cells that normally should have protected the lungs by killing the engulfed bacteria. In a bacterial sense, the Mtb become wolves in sheep's clothing.

"To the best of our knowledge," Steyn said, "no study has yet reported a role for host hydrogen sulfide in the control of bacterial disease."

Two research papers by Steyn and colleagues—the first descriptions of this unexpected role for host-generated hydrogen sulfide in bacterial pathogenesis—are published in Nature Communications and Proceedings of the National Academy of Sciences, or PNAS.

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