Pt(II)-Thiocarbohydrazone Complex as Cytotoxic Agent and Apoptosis Inducer in Caov-3 and HT-29 Cells through the P53 and Caspase-8 Pathways DOI Creative Commons
Abeer Ibrahim, Mohanad Mousa Kareem, Taghreed H. Al‐Noor

et al.

Pharmaceuticals, Journal Year: 2021, Volume and Issue: 14(6), P. 509 - 509

Published: May 26, 2021

In this study, a platinum(II) complex ([Pt(H2L)(PPh3)] complex) containing thiocarbohydrazone as the ligand was tested an anti-proliferative agent against ovarian adenocarcinoma (Caov-3) and human colorectal (HT-29) through MTT assays. Apoptotic markers were by AO/PI double staining assay DNA fragmentation test. Flow cytometry conducted to measure cell cycle distribution, while p53 caspase-8 pathways via immunofluorescence assay. Results demonstrated that cytotoxic effect of Pt(II)-thiocarbohydrazone complexes Caov-3 HT-29 cells highly significant, triggered activation pathways. Besides, apoptosis stimulated associated with arrest at G0/G1 phase. These findings suggest target inhibited proliferation cells, resulting in induction stimulation The present data suggests could also be promising chemotherapeutic for other types cancer cells.

Language: Английский

Biocompatibility of gold nanoparticles: In-vitro and In-vivo study DOI

Rua J. Kadhim,

Esraa H. Karsh,

Zainab J. Taqi

et al.

Materials Today Proceedings, Journal Year: 2021, Volume and Issue: 42, P. 3041 - 3045

Published: Jan. 1, 2021

Language: Английский

Citations

76

Laser-synthesized TiN nanoparticles for biomedical applications: Evaluation of safety, biodistribution and pharmacokinetics DOI Creative Commons
Ivan V. Zelepukin, Anton A. Popov, Victoria O. Shipunova

et al.

Materials Science and Engineering C, Journal Year: 2020, Volume and Issue: 120, P. 111717 - 111717

Published: Nov. 27, 2020

Language: Английский

Citations

71

Drug Delivery of Natural Products Through Nanocarriers for Effective Breast Cancer Therapy: A Comprehensive Review of Literature DOI Creative Commons
Kah Min Yap, Mahendran Sekar, Shivkanya Fuloria

et al.

International Journal of Nanomedicine, Journal Year: 2021, Volume and Issue: Volume 16, P. 7891 - 7941

Published: Dec. 1, 2021

Abstract: Despite recent advances in the diagnosis and treatment of breast cancer (BC), it remains a global health issue affecting millions women annually. Poor prognosis BC patients is often linked to drug resistance as well lack effective therapeutic options for metastatic triple-negative BC. In response these unmet needs, extensive research efforts have been devoted exploring anti-BC potentials natural products owing their multi-target mechanisms action good safety profiles. Various medicinal plant extracts/essential oils bioactive compounds demonstrated anti-cancer activities preclinical models. promising results, however, clinical translation has hindered by poor stability, aqueous solubility bioavailability. There attempts overcome limitations, particularly via use nano-based delivery systems (NDDSs). This review highlights tumour targeting NDDSs, advantages disadvantages major classes NDDSs current status treatment. Besides, also discusses proposed nanoformulations nine plants' compounds; selected screening various scientific databases, including PubMed, Scopus Google Scholar, based on following keywords: "Natural Product AND Nanoparticle Breast Cancer". Overall, exhibit improved efficacy against models, with some demonstrating biocompatibility normal cell lines mouse Further studies are, warranted ascertain humans. Keywords: cancer, delivery, molecular mechanisms, nanoparticles, products, phytomedicine

Language: Английский

Citations

71

Bimetallic Au–Ag Nanoparticles: Advanced Nanotechnology for Tackling Antimicrobial Resistance DOI Creative Commons
Chandrashekhar Singh, Abhishesh Kumar Mehata, Vishnu Priya

et al.

Molecules, Journal Year: 2022, Volume and Issue: 27(20), P. 7059 - 7059

Published: Oct. 19, 2022

To date, there are no antimicrobial agents available in the market that have absolute control over growing threat of bacterial strains. The increase production capacity antibiotics and antibacterial resistance bacteria majorly affected a variety businesses public health. Bimetallic nanoparticles (NPs) with two separate metals been found to stronger potential than their monometallic versions. This enhanced efficiency bimetallic is due synergistic effect participating counterparts. distinguish between mammals, existence diverse metal transport systems metalloproteins necessary for use Au–Ag NPs, just like any other NPs. Due very low toxicity toward human cells, these particularly gold–silver might prove be an effective weapon arsenal beat emerging drug-resistant bacteria. cellular mechanism activity consists cell membrane degradation, disturbance homeostasis, oxidative stress, reactive oxygen species. synthesis can performed by bottom-up top-down strategy. technique generally includes sol-gel, chemical vapor deposition, green synthesis, co-precipitation methods, whereas laser ablation method. review highlights key prospects mechanism, process, capabilities against wide range Additionally, we also discussed role NPs treatment multidrug-resistant infection wound healing.

Language: Английский

Citations

69

Pt(II)-Thiocarbohydrazone Complex as Cytotoxic Agent and Apoptosis Inducer in Caov-3 and HT-29 Cells through the P53 and Caspase-8 Pathways DOI Creative Commons
Abeer Ibrahim, Mohanad Mousa Kareem, Taghreed H. Al‐Noor

et al.

Pharmaceuticals, Journal Year: 2021, Volume and Issue: 14(6), P. 509 - 509

Published: May 26, 2021

In this study, a platinum(II) complex ([Pt(H2L)(PPh3)] complex) containing thiocarbohydrazone as the ligand was tested an anti-proliferative agent against ovarian adenocarcinoma (Caov-3) and human colorectal (HT-29) through MTT assays. Apoptotic markers were by AO/PI double staining assay DNA fragmentation test. Flow cytometry conducted to measure cell cycle distribution, while p53 caspase-8 pathways via immunofluorescence assay. Results demonstrated that cytotoxic effect of Pt(II)-thiocarbohydrazone complexes Caov-3 HT-29 cells highly significant, triggered activation pathways. Besides, apoptosis stimulated associated with arrest at G0/G1 phase. These findings suggest target inhibited proliferation cells, resulting in induction stimulation The present data suggests could also be promising chemotherapeutic for other types cancer cells.

Language: Английский

Citations

67