TY - JOUR
T1 - Potential of Cinnamomum burmanni Leaf Extract as an Exogenous Antioxidant and Spermatoprotective for Rattus norvegicus L. Exposed to Polystyrene Nanoplastics
AU - Nurbani, Farah Annisa
AU - Pramudya, Manikya
AU - Safitri, Maya
AU - Sugiharto,
AU - Aunurohim,
AU - Hayati, Alfiah
AU - Septiani, Adiibtia
AU - Dewi, Putri Alicia
AU - Nashrulloh, Allam Thoriq
AU - Vuanghao, Lim
N1 - Publisher Copyright:
© 2025@ author(s).
PY - 2025/5
Y1 - 2025/5
N2 - Polytyrene nanoplastics (NPs) (<1 µm) have high toxicity when entered and accumulated in cells. NPs accumulation causes oxidation stress, thus increasing reactive oxygen species (ROS) production, resulting in necrosis or apoptosis, as well as affecting endogenous antioxidant activity, such as superoxide dismutase (SOD) and catalase (CAT). Cinnamomum burmanni plant contains flavonoids, cinnamaldehyde, phen, and olic acid, potentially exogenous antioxidants. The study aims to analyze the potential of C. burmanni leaf extract for SOD and CAT levels, sperm quality, epithellia tubulus thickness, tubulus seminiferus diameter, and number of spermatogenic Rattus norvegicus cells exposed to NPs. Twenty-five male R. novergicus are divided into five groups (n = 5): two controls (without and with NPs) and three groups (combination of NPs and variations in extract concentrations of 100, 200, and 400 mg/kg. The SOD and CAT levels were measured with an ELISA kit. The histology was observed by counting the spermatogenic cells, measuring the epithellia thickness, and tubulus seminiferus diameter. The sperm motility, viability, and sperm count were observed to determine the sperm quality. Leaf extract of C. burmanni treatment with different concentrations not significantly increased SOD levels but significantly decreased the levels of CAT (P<0.05). The addition of C. burmanni leaf extract significantly increased the spermatogenic cell count, epithelia tubulous thickness, sperm viability, and sperm count (P<0.05), while sperm motility and tubulous seminiferous diameter not significantly increased. According to the results, C. burmanni leaf extract has antioxidant potential against the toxic effects of NPS.
AB - Polytyrene nanoplastics (NPs) (<1 µm) have high toxicity when entered and accumulated in cells. NPs accumulation causes oxidation stress, thus increasing reactive oxygen species (ROS) production, resulting in necrosis or apoptosis, as well as affecting endogenous antioxidant activity, such as superoxide dismutase (SOD) and catalase (CAT). Cinnamomum burmanni plant contains flavonoids, cinnamaldehyde, phen, and olic acid, potentially exogenous antioxidants. The study aims to analyze the potential of C. burmanni leaf extract for SOD and CAT levels, sperm quality, epithellia tubulus thickness, tubulus seminiferus diameter, and number of spermatogenic Rattus norvegicus cells exposed to NPs. Twenty-five male R. novergicus are divided into five groups (n = 5): two controls (without and with NPs) and three groups (combination of NPs and variations in extract concentrations of 100, 200, and 400 mg/kg. The SOD and CAT levels were measured with an ELISA kit. The histology was observed by counting the spermatogenic cells, measuring the epithellia thickness, and tubulus seminiferus diameter. The sperm motility, viability, and sperm count were observed to determine the sperm quality. Leaf extract of C. burmanni treatment with different concentrations not significantly increased SOD levels but significantly decreased the levels of CAT (P<0.05). The addition of C. burmanni leaf extract significantly increased the spermatogenic cell count, epithelia tubulous thickness, sperm viability, and sperm count (P<0.05), while sperm motility and tubulous seminiferous diameter not significantly increased. According to the results, C. burmanni leaf extract has antioxidant potential against the toxic effects of NPS.
KW - Antioxidant
KW - Cinnamon
KW - Fertility
KW - Health Care
KW - Nanoplastics
UR - http://www.scopus.com/inward/record.url?scp=85218742228&partnerID=8YFLogxK
U2 - 10.4308/hjb.32.3.693-699
DO - 10.4308/hjb.32.3.693-699
M3 - Article
AN - SCOPUS:85218742228
SN - 1978-3019
VL - 32
SP - 693
EP - 699
JO - HAYATI Journal of Biosciences
JF - HAYATI Journal of Biosciences
IS - 3
ER -