TY - JOUR
T1 - Protection of Exogenous Antioxidant of Cinnamomum Burmanii as a Hepatoprotective on the Toxicological Responses of Nanoplastics in Rats (Rattus Norvegicus L.)
AU - Soepriandono, Hari
AU - Sugiharto,
AU - Pramudya, Manikya
AU - Nurbani, Farah Annisa
AU - Dewi, Firli Rahmah Primula
AU - Vuanghao, Lim
AU - Aunurohim,
AU - Muchtaromah, Bayyinatul
AU - Hayati, Alfiah
N1 - Publisher Copyright:
© RJPT All right reserved.
PY - 2025
Y1 - 2025
N2 - Nanoplastics of polystyrene (NPs) are widely dispersed and pose a serious concern as non-biodegradable pollutants to human health. Given our unintentional exposure to toxic chemicals in everyday life, it is crucial to evaluate their toxicity and inhibition. This can be achieved by employing exogenous antioxidants sourced from natural substances. We investigated the toxicity of NPs and the protective impact of exogenous antioxidants on the liver in an animal model. Each experimental group received NPs alone (10μL/kg, for 14 days) as negative control. Three additional treatment groups were exposed to a combination of NPs (for 14 days) along with Cinnamomum burmanii leaf extract (CLE) at concentrations of 100, 200, and 400mg/kg for 28 days, and one control group was used as a reference. All treatments were administrated via oral gavage. The toxic effects and protection from NPs and CLE were investigated based on the levels of SGOT, SGPT, bilirubin, and ALP in the blood serum and specific changes in the liver cells of Wistar rats. The results indicated oxidative damage caused by NPs exposure accompanied by disruptions in enzymatic biochemical parameters, levels of SGPT, SGOT, and ALP, with no changes in bilirubin levels. Histological changes in the liver revealed inflammation, necrotic cells, and chromosomal condensation as signals of increased cell proliferation. The addition of CLE could mitigate the oxidative damage induced by NPs. In conclusion, overall, our comprehensive observations indicate adverse effects of NPs exposure on hepatocyte structure and function. Increased levels of SGPT, SGOT, and ALP indicate liver disturbances, although bilirubin level remains unchanged. The addition of CLE (400 mg/kg) is capable of restoring the disturbance caused by NPs.
AB - Nanoplastics of polystyrene (NPs) are widely dispersed and pose a serious concern as non-biodegradable pollutants to human health. Given our unintentional exposure to toxic chemicals in everyday life, it is crucial to evaluate their toxicity and inhibition. This can be achieved by employing exogenous antioxidants sourced from natural substances. We investigated the toxicity of NPs and the protective impact of exogenous antioxidants on the liver in an animal model. Each experimental group received NPs alone (10μL/kg, for 14 days) as negative control. Three additional treatment groups were exposed to a combination of NPs (for 14 days) along with Cinnamomum burmanii leaf extract (CLE) at concentrations of 100, 200, and 400mg/kg for 28 days, and one control group was used as a reference. All treatments were administrated via oral gavage. The toxic effects and protection from NPs and CLE were investigated based on the levels of SGOT, SGPT, bilirubin, and ALP in the blood serum and specific changes in the liver cells of Wistar rats. The results indicated oxidative damage caused by NPs exposure accompanied by disruptions in enzymatic biochemical parameters, levels of SGPT, SGOT, and ALP, with no changes in bilirubin levels. Histological changes in the liver revealed inflammation, necrotic cells, and chromosomal condensation as signals of increased cell proliferation. The addition of CLE could mitigate the oxidative damage induced by NPs. In conclusion, overall, our comprehensive observations indicate adverse effects of NPs exposure on hepatocyte structure and function. Increased levels of SGPT, SGOT, and ALP indicate liver disturbances, although bilirubin level remains unchanged. The addition of CLE (400 mg/kg) is capable of restoring the disturbance caused by NPs.
KW - Antioxidant
KW - Cinnamomum burmanii
KW - Hepatoprotective
KW - Medicine
KW - Nanoplastic
UR - http://www.scopus.com/inward/record.url?scp=85218141757&partnerID=8YFLogxK
U2 - 10.52711/0974-360X.2025.00057
DO - 10.52711/0974-360X.2025.00057
M3 - Article
AN - SCOPUS:85218141757
SN - 0974-3618
VL - 18
SP - 365
EP - 371
JO - Research Journal of Pharmacy and Technology
JF - Research Journal of Pharmacy and Technology
IS - 1
ER -