| Literature DB >> 36124012 |
Jana Bacova1, Petr Knotek2, Katerina Kopecka2, Ludek Hromadko3, Jan Capek1, Pavlina Nyvltova1, Lenka Bruckova1, Ladislava Schröterova4, Blanka Sestakova4, Jiri Palarcik5, Martin Motola3, Dana Cizkova6, Ales Bezrouk7, Jiri Handl1, Zdenek Fiala8, Emil Rudolf4, Zuzana Bilkova1, Jan M Macak3,9, Tomas Rousar1.
Abstract
Purpose: Titanium dioxide nanoparticles, 25 nm in size of crystallites (TiO2 P25), are among the most produced nanomaterials worldwide. The broad use of TiO2 P25 in material science has implied a request to evaluate their biological effects, especially in the lungs. Hence, the pulmonary A549 cell line has been used to estimate the effects of TiO2 P25. However, the reports have provided dissimilar results on caused toxicity. Surprisingly, the physicochemical factors influencing TiO2 P25 action in biological models have not been evaluated in most reports. Thus, the objective of the present study is to characterize the preparation of TiO2 P25 for biological testing in A549 cells and to evaluate their biological effects.Entities:
Keywords: A549 cells; P25; dispersion; nanoparticles; nanotoxicity; titanium dioxide
Mesh:
Substances:
Year: 2022 PMID: 36124012 PMCID: PMC9482439 DOI: 10.2147/IJN.S374955
Source DB: PubMed Journal: Int J Nanomedicine ISSN: 1176-9114
Overview of Reports Testing TiO2 P25 Biological Effect in A549 Cells
| Detection of Cell Impairment [100 µg.mL−1 TiO2 P25] | Tested Dose of TiO2 P25 [µg.mL−1] | Sonication/Duration | Viability Test/References |
|---|---|---|---|
| No | ≤ 800 | Probe/10 min | MTS |
| No | ≤ 250 | Probe/16 min | WST-1 |
| No | ≤ 1000 | N.D. | WST-1 |
| No | ≤ 100 | N.D. | MTT |
| Yes | ≤ 1000 | Bath/30 min | MTS |
| Yes | ≤ 100 | Probe/30 min | MTT |
| Yes | ≤ 200 | Bath/15 min | MTT |
| Yes | ≤ 75 | Bath/15 min | MTT/WST-1 |
Figure 1SEM images of TiO2 P25 nanoparticles at two different magnifications.
Figure 2XRD patterns of TiO2 P25 nanoparticles showing anatase (black) and rutile (red) peaks. The sample of TiO2 P25 consisted of 90.4% (wt) of anatase (ICDD:00–021-1272) and 9.6% (wt) of rutile (ICDD:00–021-1276) phases.
Figure 3Results of dispersion of TiO2 P25 in distilled water (100 µg.mL−1) using four dispersion techniques: hand shaking, ultrasonic (= US) bath, US probe and Ultra-turrax. The particle size distribution was measured - (A) directly after finished 40 min dispersion, or (B) after various dispersion times between 5–60 min.
Figure 4Results of TiO2 P25 size distribution (100 µg.mL−1) in different solutions: distilled water, 0.9% NaCl, cell culture medium w/wo 10% fetal bovine serum (FBS) for 10 min using ultrasonic bath. Data are presented as intensity distribution (A) and cumulative intensity (B) of TiO2 P25 size.
TiO2 P25 Cytotoxicity Evaluation in A549 Cells. Dehydrogenase Activity (= Cell Viability, WST-1 Test) and Glutathione Levels Were Assayed in A549 Cells Treated with 0–100 µg.mL−1 TiO2 P25 in Culture Medium w/wo Fetal Bovine Serum (FBS) for 24 h. The Results are Expressed as Mean ± SD (p < 0.001, Compared to Untreated Cells; Three Independent Experiments)
| Cell Culture | TiO2 P25 [µg.mL−1] | Dehydrogenase Activity | Glutathione Level |
|---|---|---|---|
| Without FBS | 0 | 100 ± 3% | 100 ± 3% |
| 1 | 99 ± 5% | 100 ± 5% | |
| 10 | 101 ± 4% | 98 ± 5% | |
| 100 | 97 ± 4% | 85 ± 7% ( | |
| With FBS | 0 | 100 ± 3% | 100 ± 4% |
| 1 | 97 ± 5% | 104 ± 6% | |
| 10 | 98 ± 8% | 91 ± 4% ( | |
| 100 | 97 ± 9% | 87 ± 4% ( |
Figure 5TEM images of A549 cells treated with TiO2 P25 w/wo fetal bovine serum. (A), without FBS; (B), with FBS. The pictures confirmed internalization of TiO2 P25 in the cytoplasm in vesicles (arrowheads, inserts). TiO2 P25 accumulated in the vicinity of slender cytoplasmic projections (arrows). Scale bar = 5 µm (mag. 2500x); insert (A) (mag. 11,100x); insert (B) (mag. 14,500x).
Figure 6Estimation of TiO2 P25 effects in A549 cells. A549 cells were treated with TiO2 P25 (0–100 µg.mL−1) and MWCNTs (100 µg.mL−1) with FBS for 24 h. (A) nuclear condensation and fragmentation, (B) ROS production and (C) A549 cells morphology (scale bar = 10 µm) were estimated. The results are expressed as mean ± SD (***p < 0.001, compared to untreated cells).
Interlaboratory Comparison of TiO2 P25 Biological Effects in A549 Cells. A549 Cells Were Treated with TiO2 P25 (0–100 µg.mL−1) for 4 and 24 h in Two Cellular Laboratories Independently. Dehydrogenase Activity (= Cell Viability, WST-1 Test) Was Measured After Treatment. The Results are Expressed as Mean ± SD (Compared to Untreated Cells = 100%)
| Time | TiO2 P25 [µg.mL−1] | Laboratory I | Laboratory II |
|---|---|---|---|
| 100 ± 7% | 100 ± 6% | ||
| 100 ± 8% | 101 ± 5% | ||
| 100 ± 7% | 98 ± 6% | ||
| 103 ± 7% | 102 ± 5% | ||
| 100 ± 5% | 100 ± 6% | ||
| 97 ± 6% | 100 ± 4% | ||
| 102 ± 6% | 99 ± 6% | ||
| 96 ± 6% | 99 ± 6% |