First documented cases of invertebrate predation by greater grisons (Galictis vittata)

  First documented cases of invertebrate predation by greater grisons (Galictis vittata) Abstract  We report the first documented predation of invertebrates by greater grisons (Galictis vittata) based on camera-trap footage from a mineral lick in Southeastern Peru. Two adult individuals were recorded capturing and consuming large arachnids, likely whip spiders (Amblypygi), from a natural cavity. One grison visibly removed and discarded part of the prey prior to ingestion, suggesting selective handling to reduce risk from defensive structures. These observations extend the known cavity-focused foraging behavior of G. vittata and indicate that amblypygids may represent an underreported but regular prey item in tropical habitats. Pottie, Sam, y Adrian Forsyth. 2026. «Primeros Registros Documentados De depredación De Invertebrados Por El grisón (Galictis Vittata)». Mammalogy Notes 12 (2), 608. https://doi.org/10.47603/mano.v12n2.608 .

Antivenom Potential of the Latex of Jatropha mutabilis Baill. (Euphorbiaceae) against Tityus stigmurus Venom: Evaluating its Ability to Neutralize Toxins and Local Effects in Mice

 


Antivenom Potential of the Latex of Jatropha mutabilis Baill. (Euphorbiaceae) against Tityus stigmurus Venom: Evaluating its Ability to Neutralize Toxins and Local Effects in Mice

Abstract

Ethnopharmacological relevance

Species of the Jatropha genus (Euphorbiaceae) are used indiscriminately in traditional medicine to treat accidents involving venomous animals. Jatropha mutabilis Baill., popularly known as "pinhão-de-seda," is found in the semi-arid region of Northeastern Brazil. It is widely used as a vermifuge, depurative, laxative, and antivenom.

Aim of the study

Obtaining the phytochemical profile of the latex of Jatropha mutabilis (JmLa) and evaluate its acute oral toxicity and inhibitory effects against the venom of the scorpion Tityus stigmurus (TstiV).

Materials and methods

The latex of J. mutabilis (JmLa) was obtained through in situ incisions in the stem and characterized using HPLC-ESI-QToF-MS. Acute oral toxicity was investigated in mice. The protein profile of T. stigmurus venom was obtained by electrophoresis. The ability of latex to interact with venom components (TstiV) was assessed using SDS-PAGE, UV-VIS scanning spectrum, and the neutralization of fibrinogenolytic and hyaluronidase activities. Additionally, the latex was evaluated in vivo for its ability to inhibit local edematogenic and nociceptive effects induced by the venom.

Results

The phytochemical profile of the latex revealed the presence of 75 compounds, including cyclic peptides, glycosides, phenolic compounds, alkaloids, coumarins, and terpenoids, among others. No signs of acute toxicity were observed at a dose of 2000 mg/kg (p.o.). The latex interacted with the protein profile of TstiV, inhibiting the venom's fibrinogenolytic and hyaluronidase activities by 100%. Additionally, the latex was able to mitigate local envenomation effects, reducing nociception by up to 56.5% and edema by up to 50% compared to the negative control group.

Conclusions

The latex of Jatropha mutabilis exhibits a diverse phytochemical composition, containing numerous classes of metabolites. It does not present acute toxic effects in mice and has the ability to inhibit the enzymatic effects of Tityus stigmurus venom in vitro. Additionally, it reduces nociception and edema in vivo. These findings corroborate popular reports regarding the antivenom activity of this plant and indicate that the latex has potential for treating scorpionism.

De Souza, F. S., De Veras, B. O., Lucena, L. D. M., Casoti, R., Martins, R. D., & Ximenes, R. M. (2024). Antivenom Potential of the Latex of Jatropha mutabilis Baill. (Euphorbiaceae) against Tityus stigmurus Venom: Evaluating its Ability to Neutralize Toxins and Local Effects in Mice. Journal of Ethnopharmacology, 118642. https://doi.org/10.1016/j.jep.2024.118642