Saxena Pallavi, Gupta Amit Kumar, Saharan Vinod
Department of Botany, Mohanlal Sukhadia University, Udaipur, 313001, Rajasthan, India.
Department of Molecular Biology and Biotechnology, Rajasthan College of Agriculture, Maharana Pratap University of Agriculture and Technology, Udaipur, 313 001, Rajasthan, India.
Environ Sci Pollut Res Int. 2023 Feb;30(9):23646-23654. doi: 10.1007/s11356-022-23912-x. Epub 2022 Nov 3.
Boron nanoparticles have emerged as promising nanomaterials with a wide array of applications in the biomedical, industrial, and environmental fields. However, the potential impact of these nanoparticles on aquatic organisms is not yet known. In the present study, the comparative impact of boron nitride nanoparticles and its bulk form is investigated on two freshwater algae. For this purpose, the effect on the physiological index, cellular morphology, and biochemistry profiles are examined. In Chlorella vulgaris, nano form of boron nitride is found to reduce the growth more (40%) than its bulk form (with ~ 25% growth reduction) at 50 mgl treatment level. While in case of Coelastrella terrestris, 40% reduction under nano form and 33.33% reduction under bulk form is observed at 100 mgl of boron nitride. Chlorophyll and carotenoid levels were also reduced under nanoparticles compared to the bulk. Proline, lactate dehydrogenase, and malondialdehyde assay were found significantly high under nanoparticle exposure. Additionally, increased catalase and superoxide dismutase enzyme activity under nanoparticle exposure revealed that the antioxidant system was activated in both the algae to eliminate the adverse influence of reactive oxygen species. The shading effect and aggregation of nanoparticles over the surface of algal cells are also important factors in attributing toxicity which are confirmed through the compound, TEM, and SEM micrographs. The study suggests that the nano form is more toxic than the bulk form and toxicity is concentration-dependent.
硼纳米颗粒已成为有前景的纳米材料,在生物医学、工业和环境领域有着广泛应用。然而,这些纳米颗粒对水生生物的潜在影响尚不清楚。在本研究中,研究了氮化硼纳米颗粒及其块状形式对两种淡水藻类的比较影响。为此,检测了对生理指标、细胞形态和生化特征的影响。在小球藻中,在50毫克/升处理水平下,发现纳米形式的氮化硼比其块状形式对生长的抑制作用更大(40%),块状形式的生长抑制率约为25%。而在地生小球藻中,在100毫克/升的氮化硼处理下,纳米形式下生长减少40%,块状形式下减少33.33%。与块状相比,纳米颗粒处理下叶绿素和类胡萝卜素水平也降低。在纳米颗粒暴露下,脯氨酸、乳酸脱氢酶和丙二醛检测结果显著升高。此外,纳米颗粒暴露下过氧化氢酶和超氧化物歧化酶活性增加,表明两种藻类中的抗氧化系统均被激活,以消除活性氧的不利影响。纳米颗粒在藻类细胞表面的遮光效应和聚集也是造成毒性的重要因素,这通过复合物、透射电镜和扫描电镜显微照片得到证实。该研究表明,纳米形式比块状形式毒性更大,且毒性具有浓度依赖性。