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1.
Photodiagnosis Photodyn Ther ; 39: 102914, 2022 Sep.
Article in English | MEDLINE | ID: mdl-35595186

ABSTRACT

Polyphenols are effective in eliminating amyloid-beta aggregations, the main hallmark of Alzheimer's disease. Various nano drugs and biomaterials based on polyphenolic compounds have been synthetized to treat or prevent Alzheimer's disease, and the main in-vitro approach to investigate the anti-Alzheimer's properties of materials, is the Thioflavin T assay. While useful it has drawbacks and in particular cannot always guarantee the accuracy of data, specifically in cases of polyphenolic compounds; thus, in this situation accurate results requires utilizing other assays along with Thioflavin T. In this experiment, we introduced the Z-scan technique as a complementary test for Thioflavin T assay. In this study, the anti-Alzheimer's properties of two polyphenols quercetin and fulvic acid were assessed in the presence and absences of silver nanoparticles at various concentrations, both via Z-scan technique and Thioflavin T assay, after which the two tests were aligned with each other. The polyphenols' non-linear refractive indices obtained by the Z-scan technique correlated well with their related fluorescence intensities from the Thioflavin T assay in such a way that, the smaller the magnitude of the non-linear refractive indices, the stronger the anti-amyloidogenic impact. Our work shows that Z-scan could be used along with Thioflavin T for enhanced investigation of polyphenols' anti-Alzheimer's properties.


Subject(s)
Alzheimer Disease , Metal Nanoparticles , Photochemotherapy , Alzheimer Disease/drug therapy , Benzothiazoles , Humans , Photochemotherapy/methods , Polyphenols/pharmacology , Polyphenols/therapeutic use , Silver
2.
Lasers Med Sci ; 34(8): 1627-1635, 2019 Oct.
Article in English | MEDLINE | ID: mdl-30859420

ABSTRACT

Hyperthermia treatment can induce component changes on cell. This study explored the potential of Z-scan to improve accuracy in the identification of subtle differences in mouse colon cancer cell line CT26 during hyperthermia treatment. Twenty-one samples were subjected individually to treatment of hyperthermia at 41, 43, and 45 °C. Each hyperthermia treatment was done in six different time (15, 30, 45, 60, 75, and 90 min). Two optical setups were used to investigate the linear and nonlinear optical behavior of samples. Prior to the Z-scan technique, all samples were fixed with 1 mL of 5% paraformaldehyde. The linear optical setup indicated that extinction coefficient cannot monitor cell changes at different treatment regimes. But the nonlinear behavior of CT26 in all hyperthermia treatment regimens was different. By increasing the time and/or temperature of hyperthermia treatments, change in the sign of nonlinear refractive index from negative to positive occurred in earlier time intervals. This phenomenon was seen for 41, 43, and 45 °C in 75, 60, and 45 min, respectively. The results showed that the Z-scan technique is a reliable method with the potential to characterize cell changes during hyperthermia treatment regimes. Nonlinear refractive index can be used as a new index for evaluation of cell damage.


Subject(s)
Colonic Neoplasms/pathology , Hyperthermia, Induced , Nonlinear Dynamics , Optical Phenomena , Animals , Cell Line, Tumor , Mice , Refractometry
3.
Photodiagnosis Photodyn Ther ; 23: 171-175, 2018 Sep.
Article in English | MEDLINE | ID: mdl-29933083

ABSTRACT

BACKGROUND: This study aimed to explore the potential of the Z-scan technique to improve accuracy in identifying SK-BR-3 and MCF-7 breast cancer cell lines. METHODS: Three in vitro samples were prepared for each breast cancer cell line. A closed-aperture Z-scan technique was used to measure the sign and magnitude of the nonlinear refractive index of each sample. Prior to the Z-scan, all samples were fixed with 1 mL of 5% paraformaldehyde. RESULTS: The sign of the nonlinear refractive indices of MCF-7 and SK-BR-3 breast cancer cell lines were negative and positive, respectively. The repeated Z-scan measurements for all samples of each cell line were similar. CONCLUSION: The results indicated that the proposed bio-optical method is a reliable method for characterizing differences in various breast cancer cell types. It is suggested that the nonlinear refractive index of cells be considered as an indicator for differentiating various breast cell lines from each other.


Subject(s)
Breast Neoplasms/diagnostic imaging , Refractometry/methods , Breast Neoplasms/diagnosis , Cell Culture Techniques , Cell Line, Tumor , Diagnosis, Differential , Female , Humans , MCF-7 Cells , Receptor, ErbB-2/biosynthesis , Receptors, Estrogen/biosynthesis , Receptors, Progesterone/biosynthesis
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