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Organometallic Folate Gold Nanoparticles Ameliorate Lipopolysaccharide-Induced Oxidative Damage and Inflammation in Zebrafish Brain.
Sadhukhan, Susanta; Moniruzzaman, Mahammed; Maity, Subhajit; Ghosh, Sudakshina; Pattanayak, Arup Kumar; Chakraborty, Suman Bhusan; Maity, Biswanath; Das, Madhusudan.
Afiliação
  • Sadhukhan S; Department of Zoology, Ballygunge Science College, University of Calcutta, 35 Ballygunge Circular Road, Kolkata, 700019, India.
  • Moniruzzaman M; Department of Zoology, Ballygunge Science College, University of Calcutta, 35 Ballygunge Circular Road, Kolkata, 700019, India.
  • Maity S; Department of Zoology, Ballygunge Science College, University of Calcutta, 35 Ballygunge Circular Road, Kolkata, 700019, India.
  • Ghosh S; Vidyasagar College for Women, 39 Sankar Ghosh Lane, Kolkata, West Bengal700006, India.
  • Pattanayak AK; Department of Zoology, Ballygunge Science College, University of Calcutta, 35 Ballygunge Circular Road, Kolkata, 700019, India.
  • Chakraborty SB; Department of Zoology, Ballygunge Science College, University of Calcutta, 35 Ballygunge Circular Road, Kolkata, 700019, India.
  • Maity B; Translational Cell Biology Unit, Centre of Biomedical Research, SGPGI Campus, Lucknow 226014, India.
  • Das M; Department of Zoology, Ballygunge Science College, University of Calcutta, 35 Ballygunge Circular Road, Kolkata, 700019, India.
ACS Omega ; 7(11): 9917-9928, 2022 Mar 22.
Article em En | MEDLINE | ID: mdl-35350341
ABSTRACT
Synthesized organometallic gold-based folate nanoparticles (FAuNPs) were characterized, and its defense against lipopolysaccharide (LPS)-induced brain inflammation in Zebra fish was proven. Vitamin entrapment efficiency of these particles was found to be nearly 70%. The in vitro pH-dependent drug release dialysis study of FAuNPs confirmed a slow, sustained, and gradual release of folate for a period of 24 h. Both AuNPs and FAuNPs did not cause any marked changes in food intake, body weight, color, behavioral pattern, blood parameters, and hepatotoxicity. Histology of liver showed no changes between treated and control groups of fishes. The ex vivo study showed significant uptake of FAuNPs to free folate in folate receptor negative Hek293 cells, confirming a strategy to overcome folate deficiency in the brain. Antioxidant status and activities of few crucial brain enzymes were also measured to assess the brain function and found to be returned to the basal level, following FAuNP treatment. The transcription factor NRF2-Keap 1 expression pattern was also noted, and a prominent modulation was observed in the LPS-treated and FAuNP-administered group. Decisive brain enzymes like AChE and Na+K+ATPase were decreased significantly after LPS treatment, which is restored with FAuNP treatment. Caspases increased sharply after LPS treatment and diminished following FAuNP treatment. We conclude that FAuNP due to its high physical stability and uptake could be utilized against severe brain inflammation, leading to brain injury and neurodegeneration.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: ACS Omega Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Índia

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: ACS Omega Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Índia