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Assessing the potential use of chitosan scaffolds for the sustained localized delivery of vitamin D
Authors:Archana A Gupta  Supriya Kheur  Ravindra V Badhe  A Thirumal Raj  Ramesh Bhonde  Amit Jaisinghani  Nishant Vyas  Vikrant R Patil  Yaser Ali Alhazmi  Sameena Parveen  Hosam Ali Baeshen  Shankargouda Patil
Institution:1. Department of Oral Pathology and Microbiology, Dr. D. Y. Patil Dental College and Hospital, Dr. D. Y. Patil Vidyapeeth, Pune, India;2. Department of Pharmaceutical Sciences and Research, Dr. D.Y. Patil College of Pharmacy, Dr. D. Y. Patil Vidyapeeth, Pune;3. Department of Oral Pathology and Microbiology, Sri Venkateswara Dental College and Hospital, Chennai, India;4. Dr. D. Y. Patil Vidyapeeth, Pimpri, Pune, India;5. Private Dental Practice, Pune, India;6. Logical Life Sciences Private Limited, Pune, India;7. Department of Maxillofacial Surgery and Diagnostic Sciences, College of Dentistry, Jazan University, Jazan, Saudi Arabia;8. Department of Orthodontics, College of Dentistry, King Abdulaziz University, Jeddah, Saudi Arabia
Abstract:Vitamin D is a commonly used bone modulator in regenerative medicine. Several modalities have been explored for the delivery of vitamin D including nanoparticles and scaffold. The present study aimed to assess the potential use of a bio-degradable chitosan scaffold for the delivery of vitamin D. The objectives included fabrication of a bio-degradable chitosan scaffold, integration of vitamin D into the scaffold, characterization of the vitamin D integrated scaffold. Characterization was carried out using, X-ray diffraction, Fourier transform infrared spectroscopy, and differential scanning calorimetry. The structure of the scaffold was assessed by scanning electron microscopy. The scaffold was placed in phosphate buffer saline and the release duration of vitamin D was observed using UV spectrophotometry. Dental pulp mesenchymal stem cells were added to the scaffold to study the scaffold associated toxicity and the functionality of the scaffold released vitamin D. The vitamin D release period from the scaffold was estimated to be for 80 hrs. MTT assay of the stem cells was comparable to that of the control group (stem cells cultured in media) inferring that the scaffold is not toxic towards the stem cells. The positive alizarin red S staining, a higher expression of alkaline phosphatase, osteocalcin, and RunX2 confirmed the functional capability (osteogenic differentiation of the stem cells) of the released vitamin D. Based on the data from the present study, it can be inferred that chitosan scaffold can be used for the sustained delivery of functional vitamin D for 3–5 days.
Keywords:Chitosan  Dental pulp mesenchymal stem cells  Scaffold  vitamin D
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