Work on Salvarsan grew from experiments against trypanosomes, the parasites
responsible for African sleeping sickness. Atoxyl, an existing arsenical,
offered activity but could damage the optic nerve. Ehrlich and Bertheim
clarified its chemistry and synthesized related organoarsenic compounds in
search of a better balance between effect and toxicity. Bertheim made
compound 606 in 1907; according to later accounts, an initial test judged it
inactive, so it was set aside.
[1]
[3]
When Hata joined the Frankfurt laboratory, he systematically retested the
arsenicals in rabbits infected with T. pallidum and identified 606's
antisyphilitic action in 1909. Hata's role was therefore not merely assisting
Ehrlich: his bacteriological technique and judgement supplied the decisive
evidence, while Bertheim's synthesis made the test possible. Ehrlich and
Hata's 1910 monograph gathered the animal studies with reports from several
clinical sites and diseases; it is a record of their programme, not an
independent evaluation of it.
[2]
[5]
- 1905: Schaudinn and Hoffmann report the spirochaete now called Treponema pallidum in syphilitic lesions.
- 1907: Bertheim synthesizes compound 606 in Ehrlich's arsenical research programme; it is initially judged inactive against the organism then being tested.
- 1909: Hata's rabbit experiments demonstrate strong activity against syphilis.
- 19 April 1910: Ehrlich and Hata present preclinical and early clinical results at the Congress for Internal Medicine in Wiesbaden.
- Late 1910: Hoechst markets the compound as Salvarsan while clinical use spreads internationally.
- 1912: the more water-soluble Neosalvarsan, compound 914, follows; easier preparation does not remove the hazards of arsenical therapy.
- 1940s: penicillin displaces arsphenamine drugs as the safer and more reliable treatment for syphilis.
“606” was a laboratory sequence number. It should not be read as 605 failed
human trials, and it does not by itself assign discovery to a single person.
[1]
[2]