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Carbon quantum dot-nanocomposite hydrogel as Denovo Nexus in rapid chondrogenesis.
Majood, Misba; Agrawal, Omnarayan; Garg, Piyush; Selvam, Abhyavartin; Yadav, Sunil Kumar; Singh, Sonu; Kalyansundaram, Dinesh; Verma, Yogesh Kumar; Nayak, Ranu; Mohanty, Sujata; Mukherjee, Monalisa.
Affiliation
  • Majood M; Amity Institute of Click Chemistry Research and Studies, Amity University Uttar Pradesh, Noida 201313, India.
  • Agrawal O; Amity Institute of Click Chemistry Research and Studies, Amity University Uttar Pradesh, Noida 201313, India.
  • Garg P; Amity Institute of Click Chemistry Research and Studies, Amity University Uttar Pradesh, Noida 201313, India.
  • Selvam A; Amity Institute of Click Chemistry Research and Studies, Amity University Uttar Pradesh, Noida 201313, India; Amity Institute of Nanotechnology, Amity University Uttar Pradesh, Noida 201313, India.
  • Yadav SK; Center of Biomedical Engineering, Indian Institute of Technology, New Delhi 110016, India.
  • Singh S; Center of Biomedical Engineering, Indian Institute of Technology, New Delhi 110016, India.
  • Kalyansundaram D; Center of Biomedical Engineering, Indian Institute of Technology, New Delhi 110016, India.
  • Verma YK; Division of Stem Cell & Gene Therapy Research, Institute of Nuclear Medicine & Allied Sciences, Delhi 110054, India.
  • Nayak R; Amity Institute of Nanotechnology, Amity University Uttar Pradesh, Noida 201313, India.
  • Mohanty S; Stem Cell Facility, DBT center of Excellence, All India Institute of Medical Sciences, New Delhi 110029, India. Electronic address: drmohantysujata@gmail.com.
  • Mukherjee M; Amity Institute of Click Chemistry Research and Studies, Amity University Uttar Pradesh, Noida 201313, India. Electronic address: mmukherjee@amity.edu.
Biomater Adv ; 157: 213730, 2024 Feb.
Article in En | MEDLINE | ID: mdl-38101066
ABSTRACT
The incapability of cartilage to naturally regenerate and repair chronic muscular injuries urges the development of competent bionic rostrums. There is a need to explore faster strategies for chondrogenic engineering using mesenchymal stem cells (MSCs). Along these lines, rapid chondrocyte differentiation would benefit the transplantation demand affecting osteoarthritis (OA) and rheumatoid arthritis (RA) patients. In this report, a de novo nanocomposite was constructed by integrating biogenic carbon quantum dot (CQD) filler into synthetic hydrogel prepared from dimethylaminoethyl methacrylate (DMAEMA) and acrylic acid (AAc). The dominant structural integrity of synthetic hydrogel along with the chondrogenic differentiation potential of garlic peel derived CQDs led to faster chondrogenesis within 14 days. By means of extensive chemical and morphological characterization techniques, we illustrate that the hydrogel nanocomposite possesses lucrative features to influence rapid chondrogenesis. These results were further corroborated by bright field imaging, Alcian blue staining and Masson trichome staining. Thus, this stratagem of chondrogenic engineering conceptualizes to be a paragon in clinical wound care for the rapid manufacturing of chondrocytes.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Quantum Dots Limits: Humans Language: En Journal: Biomater Adv Year: 2024 Type: Article Affiliation country: India

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Quantum Dots Limits: Humans Language: En Journal: Biomater Adv Year: 2024 Type: Article Affiliation country: India