Efficacy and Pharmacokinetics of Guanidine Derivative LQOF-G2 in an In Vivo Leishmania (Viannia) braziliensis Model
Klinger Antonio da Franca Rodrigues, Luana Ribeiro dos Anjos, Mércya Lopes Braga, Franciregina Silva Araújo, Maria Raisse Ribeiro de Sousa, José Wheslley Rodrigues de Lucena, Patrick Vinclair, André Colom, Eric Erdociain, Aude Gendras, Anais Giry, Eduardo René Pérez GonzálezBackground/Objectives: Due to their toxicity and the limited efficacy of current therapies, Leishmaniases represent a major public health challenge. The search for new treatments is urgent. LQOF-G2 is a synthetic guanidine compound whose in vitro leishmanicidal potential has already been investigated by our group. The present study evaluates the in vivo efficacy, safety-related parameters, treatment-associated cytokine responses, and pharmacokinetic (PK) properties of the novel guanidine derivative LQOF-G2. Methods: Golden hamsters infected with Leishmania (Viannia) braziliensis were treated with LQOF-G2 (5 and 10 mg/kg, i.p.). Pharmacokinetic characterization was performed in BALB/c mice following intravenous and intraperitoneal administration. Results: Treatment with LQOF-G2 significantly reduced cutaneous lesion size and parasite burden at both the site of infection (up to 98.6 ± 0.8%) and in the lymph nodes (up to 99.7 ± 0.3%). No marked alterations were observed in the biochemical and hematological parameters evaluated at the tested doses. Treatment was associated with increased TNF-α and IFN-γ responses and reduced IL-10 levels following ex vivo antigen stimulation, consistent with a more pro-inflammatory/type-1-associated cytokine profile. Because murine cytokine ELISA reagents were used with golden hamster samples without independent species-specific analytical validation, these findings were considered exploratory and supportive rather than quantitatively validated evidence of an immunomodulatory mechanism. Pharmacokinetic characterization in BALB/c mice revealed moderate clearance (46 ± 4 mL/min/kg), a relatively large apparent volume of distribution (Vdss = 11 ± 1 L/kg), and a long elimination half-life (6.8 ± 0.4 h) following intravenous administration. After intraperitoneal administration, rapid absorption (Tmax = 0.25 h) and an absolute bioavailability of 44% were observed. Conclusions: Overall, these findings support LQOF-G2 as a candidate for further preclinical investigation in cutaneous leishmaniasis.