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Cutaneous Leishmaniasis in the Dorsal Skin of Hamsters: a Useful Model for the Screening of Antileishmanial Drugs
Published on: April 21, 2012
L220-derived peptide-bioconjugated carbon nanotubes protect hamsters against amoebic liver abscess through
Alejandro Velarde-Calderón1, José Jesús Guzmán-Mendoza1, Erasmo Orrantia-Borunda2
1Facultad de Ciencias Químicas, Universidad Autónoma de Chihuahua, Campus II Circuito Universitario s/n, Chihuahua, 31125, Mexico; Departamento de Infectómica y Patogénesis Molecular, Centro de Investigación y Estudios Avanzados (Cinvestav), Ciudad de México, 07360, Mexico.
Abstract:
The development of effective vaccines against Entamoeba histolytica remains a major challenge, particularly for preventing amoebic liver abscess (ALA). In this study, carbon nanotubes (CNTs) were evaluated as nanocarriers through bioconjugation with L220-derived peptides (PL220-CNTs). CNTs were synthesized, purified, and characterized, confirming successful bioconjugation (42%). In vitro, PL220-CNTs exhibited negligible cytotoxicity in J774 macrophages and induced morphological changes characterized by cytoplasmic prolongations and phagosome-like structures. In vivo, subcutaneous immunization of hamsters induced antigen-specific responses, including splenocyte proliferation and increased IL-17A production, suggesting the participation of an IL-17A-associated immune response. Notably, animals immunized with PL220-CNTs exhibited limited antibody production against L220-derived peptides, suggesting a predominantly cellular immune response. PL220-CNT immunization conferred complete protection against ALA following intrahepatic challenge, whereas L220 alone provided partial protection. Histological analyses revealed preservation of hepatic architecture and reduced inflammatory damage in PL220-CNT-immunized animals. Overall, these findings support the potential of bioconjugated CNTs as immunomodulatory nanoplatforms for vaccine development against amoebiasis and other infectious diseases.
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