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2.
Nanotheranostics ; 6(2): 175-183, 2022.
Article in English | MEDLINE | ID: mdl-34976592

ABSTRACT

Flavin adenine dinucleotide (FAD) plays a key role in an extensive range of cellular oxidation-reduction reactions, which is engaged in metabolic pathways. The purpose of this study was to realize pegylated flavins formulation, named FAD and FAD-PEG diacid complex as theranostic tool in cancer therapy. For this objective, a murine breast cancer model, which was induced by mouse-derived4T1 breast cancer cells was studied to assess the therapeutic efficacy of FAD (named NP1) and FAD-PEG diacid complex (named NP2). The cytokines were monitored to evaluate the serum inflammatory factors to develop the blood cell content of different groups of nude mice. The experimental model shows that an intravenous injection of FAD (NP1) can significantly reduce tumour volume, tumour index and thymus index, and decrease neutrophils (NE), monocytes (MO), eosinophils (EO), and basophils (BA). At the same time, the content of IL-1α, IL-12P70, TNF α, IL-1ß and IL-6 was significantly reduced, and the content of IL-10 was significantly increased. These results provide the proof-of-concept for FAD as a smart adjuvant for cancer therapy and encourages their further development in the field of Nanomedicine.


Subject(s)
Breast Neoplasms , Flavin-Adenine Dinucleotide , Animals , Breast Neoplasms/drug therapy , Female , Humans , Mice , Mice, Nude , Polyethylene Glycols , Precision Medicine
3.
Nanotheranostics ; 5(4): 405-416, 2021.
Article in English | MEDLINE | ID: mdl-33912380

ABSTRACT

Flavin adenine dinucleotide (FAD) is engaged in several metabolic diseases. Its main role is being a cofactor essential for the activity of many flavoproteins, which play a crucial role in electron transport pathways in living systems. The aim of this study was to apply a pegylated flavins formulation named FAD-PEG diacide complex as theranostic pathway in cancer therapy. For this purpose, a mouse liver cancer model induced by Hepa1-6 cells was used to evaluate the therapeutic efficacy of FAD (named NP1) and FAD-PEG diacide complex (named NP2). The cytokines were applied to screen the serum inflammatory factors, to establish the blood cell content of different groups of nude mice. The highlights follows that FAD formulations (NP1; NP2) significantly suppressed the tumor growth and reduced the tumor index without effects on the body weight of mice. Furthermore, NP2 significantly reduced the serum levels of cytokines IL-6, TNF-α and IL-12 (P70). The reported results provide the proof-of-concept for the synthesis of a smart adjuvant for liver cancer therapy and support their further development in the field of nanomedicine.


Subject(s)
Flavin-Adenine Dinucleotide , Liver Neoplasms/metabolism , Polyethylene Glycols , Animals , Antioxidants/chemistry , Antioxidants/pharmacology , Body Weight/drug effects , Cell Line, Tumor , Cytokines/blood , Flavin-Adenine Dinucleotide/chemistry , Flavin-Adenine Dinucleotide/pharmacology , Liver/metabolism , Male , Mice , Mice, Nude , Polyethylene Glycols/chemistry , Polyethylene Glycols/pharmacology
4.
Nanoscale Adv ; 3(21): 6144-6156, 2021 Oct 27.
Article in English | MEDLINE | ID: mdl-36133939

ABSTRACT

Flavoproteins play an important role in the regulatory process of cell life, and they are involved in several redox reactions that regulate the metabolism of carbohydrates, amino acids, and lipids. The development of effective drug delivery systems is one of the major challenges in the fight against cancer. This study involves a nanomedicine pathway to encapsulate the cofactor flavin adenine dinucleotide (FAD) using polymeric gold nanoparticles (PEG-AuNPs) through two chemical methods of functionalization (chelation (IN); carbodiimide chemistry (ON)). These hybrid gold nanoparticles and their precursors were characterized by analytical techniques (Raman, UV-Vis, and H1-NMR spectroscopy and transmission electron microscopy (TEM)) which confirmed the grafting of the cofactor agent. The results of the computational studies (Density Functional Theory (DFT)) were in agreement with the experimental observations. We also monitored the interaction of our hybrid nanoparticle systems with small aptamers (APT) in order to validate the hypotheses on the biomolecular mechanisms and also investigate their biological efficiency on pancreatic cancer cells (MIAPaCa-2 cells).

5.
Anticancer Res ; 38(5): 2659-2667, 2018 05.
Article in English | MEDLINE | ID: mdl-29715086

ABSTRACT

BACKGROUND/AIM: Riboflavin transport in enterocytes is mediated by three translocators: RFVT3 located on the apical membrane, and RFVT1 and RFVT2 on the basolateral membrane. The aim of this study was to investigate whether the expression levels of RFVTs are altered in human colorectal cancer (CRC). MATERIALS AND METHODS: In human colon adenocarcinoma cell lines (CaCo2, DLD-1, HT-29) and in tissues of patients with CRC, gene and protein expression levels were evaluated by real time-polymerase chain reaction and western blotting. Intracellular flavin content was determined by high-performance liquid chromatography. RESULTS: RFVT3 and RFVT2 gene and protein expression levels were higher in DLD-1 and HT-29 compared to Caco2 cells. In HT-29 cells, the RFVT1 protein level was drastically lower. These differences are presumably responsible for the higher total flavin content in DLD-1 and HT-29 cells. In tumor tissues of patients with CRC, RFVT1 content was reduced at both protein and mRNA levels compared to normal mucosa. RFVT3 and RFVT2 gene expression levels were increased, while protein expression was reduced, with a small reduction in riboflavin amount. CONCLUSION: This study provides first evidence that transcription/translation of RFVTs are profoundly altered in CRC.


Subject(s)
Adenocarcinoma/metabolism , Colorectal Neoplasms/metabolism , Enterocytes/metabolism , Gene Expression Regulation, Neoplastic , Membrane Transport Proteins/biosynthesis , Neoplasm Proteins/biosynthesis , Riboflavin/metabolism , Adenocarcinoma/pathology , Aged , Cell Differentiation , Cell Line, Tumor , Cell Membrane/metabolism , Colorectal Neoplasms/pathology , Female , Humans , Intestinal Mucosa/metabolism , Male , Membrane Transport Proteins/genetics , Middle Aged , Neoplasm Proteins/genetics , RNA, Messenger/biosynthesis , RNA, Messenger/genetics , RNA, Neoplasm/biosynthesis , RNA, Neoplasm/genetics
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