Javascript must be enabled to continue!
Cellular accumulation and cytotoxic effects of zinc oxide nanoparticles in microalga Haematococcus pluvialis
View through CrossRef
Background
Zinc oxide nanoparticles (ZnO NPs) are widely used in household and cosmetic products which imply an increased releasing of these particles into the environment, especially aquatic ecosystems, resulting in the need of assessing the potential toxic effects of ZnO NPS on the aquatic organisms, particularly on microalgae which form the base for food chain of aquatic biota. The present study has investigated the dose- and time-dependent cellular accumulation and the corresponding cytotoxic effects of increasing concentrations of ZnO NPs from 10–200 μg/mL on microalga
Haematococcus pluvialis
at an interval of 24 h for 96 h.
Methods
The scanning electron microscopy-energy dispersive X-ray spectroscopy (SEM-EDX) was used to qualitatively detect the cellular accumulation of ZnO NPs in algal cells, while inductively coupled plasma optical emission spectrometry (ICP OES) was performed to quantify the cell associated-zinc in algal cells. The percentage of cell death, reduction in algal biomass, and loss in photosynthetic pigments were measured to investigate the cytotoxic effects of ZnO NPs on
H. pluvialis
. Extracellular and intracellular changes in algal cells resulted from the treatment of ZnO NPs were demonstrated through optical, scanning, and transmission electron microscopic studies.
Results
SEM-EDX spectrum evidenced the accumulation of ZnO NPs in algal biomass and ICP OES results reported a significant (
p
< 0.05) dose- and time-dependent accumulation of zinc in algal cells from 24 h for all the tested concentrations of ZnO NPs (10–200 μg/mL). Further, the study showed a significant (
p
< 0.05) dose- and time-dependent growth inhibition of
H. pluvialis
from 72 h at 10–200 μg/mL of ZnO NPs. The morphological examinations revealed substantial surface and intracellular damages in algal cells due to the treatment of ZnO NPs.
Discussion
The present study reported the significant cellular accumulation of ZnO NPs in algal cells and the corresponding cytotoxic effects of ZnO NPs on
H. pluvialis
through the considerable reduction in algal cell viability, biomass, and photosynthetic pigments together with surface and intracellular damages.
Title: Cellular accumulation and cytotoxic effects of zinc oxide nanoparticles in microalga
Haematococcus pluvialis
Description:
Background
Zinc oxide nanoparticles (ZnO NPs) are widely used in household and cosmetic products which imply an increased releasing of these particles into the environment, especially aquatic ecosystems, resulting in the need of assessing the potential toxic effects of ZnO NPS on the aquatic organisms, particularly on microalgae which form the base for food chain of aquatic biota.
The present study has investigated the dose- and time-dependent cellular accumulation and the corresponding cytotoxic effects of increasing concentrations of ZnO NPs from 10–200 μg/mL on microalga
Haematococcus pluvialis
at an interval of 24 h for 96 h.
Methods
The scanning electron microscopy-energy dispersive X-ray spectroscopy (SEM-EDX) was used to qualitatively detect the cellular accumulation of ZnO NPs in algal cells, while inductively coupled plasma optical emission spectrometry (ICP OES) was performed to quantify the cell associated-zinc in algal cells.
The percentage of cell death, reduction in algal biomass, and loss in photosynthetic pigments were measured to investigate the cytotoxic effects of ZnO NPs on
H.
pluvialis
.
Extracellular and intracellular changes in algal cells resulted from the treatment of ZnO NPs were demonstrated through optical, scanning, and transmission electron microscopic studies.
Results
SEM-EDX spectrum evidenced the accumulation of ZnO NPs in algal biomass and ICP OES results reported a significant (
p
< 0.
05) dose- and time-dependent accumulation of zinc in algal cells from 24 h for all the tested concentrations of ZnO NPs (10–200 μg/mL).
Further, the study showed a significant (
p
< 0.
05) dose- and time-dependent growth inhibition of
H.
pluvialis
from 72 h at 10–200 μg/mL of ZnO NPs.
The morphological examinations revealed substantial surface and intracellular damages in algal cells due to the treatment of ZnO NPs.
Discussion
The present study reported the significant cellular accumulation of ZnO NPs in algal cells and the corresponding cytotoxic effects of ZnO NPs on
H.
pluvialis
through the considerable reduction in algal cell viability, biomass, and photosynthetic pigments together with surface and intracellular damages.
Related Results
Onopordum acaulon
extracts–mediated synthesis of zinc oxide nanoparticles, evaluation of cytotoxicity, and inhibitory potential of microbial biofilm and quorum sensing
Onopordum acaulon
extracts–mediated synthesis of zinc oxide nanoparticles, evaluation of cytotoxicity, and inhibitory potential of microbial biofilm and quorum sensing
Plant extracts are used as cheap and environmentally friendly complexing and stabilizing agents for the green synthesis of nanoparticle with good properties. Zinc oxide nanoparticl...
Nitrate starvation associated with strong light induces astaxanthin accumulation in a new green microalga Haematococcus pluvialis isolated from Algerian freshwater
Nitrate starvation associated with strong light induces astaxanthin accumulation in a new green microalga Haematococcus pluvialis isolated from Algerian freshwater
The unicellular microalgae Haematococcus pluvialis is of great interest because it is an exclusive and the richest source of natural astaxanthin (3, 3’- dihydroxy-β-carotene-4, 4’-...
The Effect of Titanium Dioxide Nanoparticles on Haematococcus pluvialis Biomass Concentration
The Effect of Titanium Dioxide Nanoparticles on Haematococcus pluvialis Biomass Concentration
The increased release of Titanium dioxide nanoparticles (TiO2 NPs) into the aquatic ecosystem is caused by the augmented utilization of nanoparticles in personal care and household...
Enhanced production of astaxanthin in a microalga Haematococcus pluvialis NIES-144
Enhanced production of astaxanthin in a microalga Haematococcus pluvialis NIES-144
Astaxanthin is a ketocarotenoid, which is used as a feed supplement in aquaculture for the production of salmon, trout, shrimp as well as a colorant for egg yolk in the poultry ind...
A New Method for Calculating Zinc Content and Determining Appropriate Zinc Levels in Foods
A New Method for Calculating Zinc Content and Determining Appropriate Zinc Levels in Foods
Calculating the zinc content per 100 kcal, 100 g or 100 mL, or the reference amount customarily consumed (RACC) of food shows the zinc content of some foods inappropriately. So, ma...
Interaction studies of nanomaterials with plasma protein using experimental and computational methods
Interaction studies of nanomaterials with plasma protein using experimental and computational methods
Nanomaterials have received considerable attention due to their unique physicochemical properties and various applications. The present study attempts to fill in the knowledge gaps...
Haematococcus pluvialis derived astaxanthin – a powerful bioactive compound for vegetable oils
Haematococcus pluvialis derived astaxanthin – a powerful bioactive compound for vegetable oils
Introduction: The beneficial effects on health result from the protective action of astaxanthin (AXT) as a powerful antioxidant capable of scavenging free radicals and protecting c...
Extraction of astaxanthin from Haematococcus pluvialis
Extraction of astaxanthin from Haematococcus pluvialis
The astaxanthin extraction work comprised two main objectives. The first objective described the fundamental information of solubility of astaxanthin in supercritical carbon dioxid...

