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Tinospora cordifolia Leaves Derived Carbon dots for Cancer Cell Bioimaging, Free radical Scavenging, and Fe3+ Sensing Applications.
Mohapatra, Debadatta; Pratap, Ravi; Pandey, Vivek; Dubey, Pawan K; Agrawal, Ashish K; Parmar, Avanish S; Sahu, Alakh N.
Afiliación
  • Mohapatra D; Phytomedicine Research Lab., Department of Pharmaceutical Engineering & Technology, IIT (BHU), Uttar Pradesh, Varanasi, 221005, India.
  • Pratap R; Department of Physics, IIT (BHU), Uttar Pradesh, Varanasi, 221005, India.
  • Pandey V; Centre for Genetics Disorders, Institute of Science, Banaras Hindu University, Uttar Pradesh, Varanasi, 221005, India.
  • Dubey PK; Centre for Genetics Disorders, Institute of Science, Banaras Hindu University, Uttar Pradesh, Varanasi, 221005, India.
  • Agrawal AK; Phytomedicine Research Lab., Department of Pharmaceutical Engineering & Technology, IIT (BHU), Uttar Pradesh, Varanasi, 221005, India.
  • Parmar AS; Department of Physics, IIT (BHU), Uttar Pradesh, Varanasi, 221005, India.
  • Sahu AN; Phytomedicine Research Lab., Department of Pharmaceutical Engineering & Technology, IIT (BHU), Uttar Pradesh, Varanasi, 221005, India. ansahu.phe@iitbhu.ac.in.
J Fluoresc ; 32(1): 275-292, 2022 Jan.
Article en En | MEDLINE | ID: mdl-34773523
Herein, we report the fabrication of Tinospora cordifolia leaves-derived carbon dots (TCLCDs) from aqueous extract of leaves as carbon source via simple, environmentally friendly, hydrothermal carbonization (HTC) technique. The synthesized TCLCDs were characterized for their physicochemical properties and further explored for in-vitro cancer cell bioimaging, radical scavenging, and metal ion sensing. The synthesized TCLCDs showed excitation-dependent emission property with maximum emission at 435 nm under the excitation of 350 nm. The High-Resolution Transmission Electron Microscopy (HRTEM) results revealed a roughly spherical shape with an average diameter of 5.47 nm. The diffused ring pattern of Selected Area Electron Diffraction (SAED) and halo diffraction pattern of X-ray diffraction (XRD) disclosed their amorphous nature. The Energy Dispersive X-ray (EDX) showed the existence of C, N, and O. The Fourier-transform infrared spectroscopy (FTIR) revealed the presence of -OH, -NH, -CN, and -CH groups. The TCLCDs showed excellent cellular biocompatibility with dose-dependent bioimaging results in melanoma (B16F10) and cervical cancer (SiHa) cell lines. Also, they exhibited excellent scavenging of free radicals with an IC50 value of 0.524 mg/mL & selective Fe3+ ion sensing with a detection limit of 0.414 µM. Further, they exerted excellent bacterial biocompatibility, photostability, and thermal stability. The overall results reflected their potential for in-vitro cancer cell bioimaging, free radical scavenging, and selective Fe3+ ion sensing.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Carbono / Técnicas Biosensibles / Neoplasias del Cuello Uterino / Hojas de la Planta / Tinospora / Imagen Molecular / Hierro / Melanoma / Neoplasias Límite: Female / Humans Idioma: En Revista: J Fluoresc Asunto de la revista: BIOFISICA Año: 2022 Tipo del documento: Article País de afiliación: India Pais de publicación: Países Bajos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Carbono / Técnicas Biosensibles / Neoplasias del Cuello Uterino / Hojas de la Planta / Tinospora / Imagen Molecular / Hierro / Melanoma / Neoplasias Límite: Female / Humans Idioma: En Revista: J Fluoresc Asunto de la revista: BIOFISICA Año: 2022 Tipo del documento: Article País de afiliación: India Pais de publicación: Países Bajos