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Komm, O.

Publications and source records attributed to Komm, O..

3 recordsLinked to original sources

Impact of dose, duration and host immune status on ultrashort telacebec treatment in a mouse model of Buruli ulcer

Telacebec (Q203) is a new anti-tuberculosis drug in clinical development with extremely potent activity against Mycobacterium ulcerans, the causative agent of Buruli ulcer (BU). The potency of Q203 has prompted investigation of its potential role in ultra-short, even single-dose, treatment regimens for BU in mouse models. However, the relationships of Q203 dose and duration and host immune status to treatment outcomes remain unclear, as does the risk of emergence of drug resistance with Q203 monotherapy. In the present study, immunocompetent BALB/c and immunocompromised SCID-beige mice were infected in both hind footpads and treated eight weeks later. In both mouse strains, controls received rifampin-clarithromycin; others received Q203 at 0.5 or 2 mg/kg/d for 5 or 10 days. Additionally, BALB/c mice received a single dose of 2.5 or 10 mg/kg or 3.3 mg/kg/d for 3 days. Treatment response was based on changes in footpad swelling and CFU counts at the end of treatment as well as 4 and 13 weeks after stopping treatment. Efficacy depended on total dose more than duration. Total doses of 5-20 mg/kg rendered nearly all BALB/c mice culture-negative 13 weeks post-treatment without selection of Q203-resistant bacteria. Although less potent in SCID-beige mice, Q203 still rendered the majority of footpads culture-negative at total doses of 10-20 mg/kg. However, Q203 resistance was identified in relapse isolates from some SCID-beige mice. Overall, these results support the potential of Q203 monotherapy for single-dose or other ultra-short therapy for BU, although highly immunocompromised hosts may require higher doses or durations and/or combination therapy.

microbiology↗

Ultrashort treatment with telacebec alone and with companion drugs in immunocompetent and immunosuppressed mouse footpad models of Buruli ulcer

The antimicrobial treatment of Mycobacterium ulcerans infection, or Buruli ulcer (BU), has a long duration and is therefore burdensome and linked to indirect costs for affected patients. The new antimycobacterial drug telacebec (Q203) has previously shown promising treatment-shortening potential in mouse models of BU. In the present study, we investigated the potential of Q203 to reduce the treatment duration further. The first experiment investigated the possibility of cure by one, three or five doses of Q203 (2 mg/kg) with or without a companion drug (bedaquiline, BDQ, clofazimine, CFZ, or clarithromycin, CLR) in immunocompetent BALB/c mice. The second experiment assessed the effect of five doses of Q203 with or without BDQ or CFZ on Mycobacterium ulcerans infection of immunocompromised SCID-beige mice with the aim to evaluate the contribution of host immunity to treatment efficacy. In BALB/c mice, a treatment duration as short as 3 days was sufficient to prevent relapse in nearly all footpads and a single dose of Q203 with or without BDQ or CFZ prevented relapse in approximately 50% of footpads. Unlike in BALB/c mice, a small percentage of SCID-beige mouse footpads were culture-positive after a treatment duration of five days, highlighting an important role of host immunity for M. ulcerans clearance. Our results confirm the marked potency and prolonged bactericidal and sterilizing effects of Q203, even in immunocompromised SCID-beige mice.

microbiology↗

Sulforaphane exhibits in vitro and in vivo antiviral activity against pandemic SARS-CoV-2 and seasonal HCoV-OC43 coronaviruses

Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2), the cause of coronavirus disease 2019 (COVID-19), has incited a global health crisis. Currently, there are no orally available medications for prophylaxis for those exposed to SARS-CoV-2 and limited therapeutic options for those who develop COVID-19. We evaluated the antiviral activity of sulforaphane (SFN), a naturally occurring, orally available, well-tolerated, nutritional supplement present in high concentrations in cruciferous vegetables with limited side effects. SFN inhibited in vitro replication of four strains of SARS-CoV-2 as well as that of the seasonal coronavirus HCoV-OC43. Further, SFN and remdesivir interacted synergistically to inhibit coronavirus infection in vitro. Prophylactic administration of SFN to K18-hACE2 mice prior to intranasal SARS-CoV-2 infection significantly decreased the viral load in the lungs and upper respiratory tract and reduced lung injury and pulmonary pathology compared to untreated infected mice. SFN treatment diminished immune cell activation in the lungs, including significantly lower recruitment of myeloid cells and a reduction in T cell activation and cytokine production. Our results suggest that SFN is a promising treatment for prevention of coronavirus infection or treatment of early disease.

microbiology↗