Login / Signup

In Vitro and In Vivo Cysticidal Effects of Carica Papaya Cell Suspensions.

Cynthia GuzmánNelly VillalobosAnabel Ortiz CaltempaMarisela HernándezGuadalupe NúñezJuan SalazarRaúl José BobesGladis FragosoSciutto EddaMaria Luisa Villarreal
Published in: Infection and immunity (2023)
Parasitic diseases are a major public health problem worldwide. Plant-derived products appear to be ideal candidates from a biotechnological perspective, being sustainable and environmentally friendly. The antiparasitic properties of Carica papaya have been attributed to some of its components, including papain and other compounds that are concentrated in the latex and seeds. This study demonstrated in vitro a high and insignificantly different cysticidal activity of soluble extract that was obtained after the disruption of nontransformed wild-type (WT) cells as well as transformed papaya calluses (PC-9, PC-12, and PC-23) and papaya cell suspensions (CS-9, CS-12, and CS-23). In vivo , cell suspensions of CS-WT and CS-23 that had been previously lyophilized were tested with respect to their cysticidal effects, compared with those of three commercial antiparasitic drugs. CS-WT and CS-23 together reduced the number of cysticerci, the number of buds, and the percentage of calcified cysticerci in a similar extent to albendazole and niclosamide, whereas ivermectin was less effective. Mice were then orally immunized with CS-23 that expressed the anti-cysticercal KETc7 antigen (10 μg/mouse), CS-WT (10 mg/mouse), or both together to evaluate their preventive properties. CS-23 and CS-WT significantly reduced the expected parasite and increased the percentage of calcified cysticerci as well as recovery, being more effective when employed together. The results reported in this study support the feasibility of the development of an anti-cysticercosis vaccine from cells of C. papaya in in vitro cultures, as they are a source of an anthelmintic, natural, and reproducible product.
Keyphrases
  • public health
  • single cell
  • induced apoptosis
  • cell therapy
  • wild type
  • oxidative stress
  • cell cycle arrest
  • type diabetes
  • adipose tissue
  • cell proliferation
  • skeletal muscle
  • mesenchymal stem cells
  • pi k akt