Type of Material: | Thesis |
Title: | Morinda Citrifolia Enhances Bone Marrow Mesenchymal Stem Cell Proliferation and Facilitates Osteogenesis in Vitro and in VIVO Study |
Researcher: | Sharmila Hussain |
Guide: | Julius, A |
Department: | Faculty of Dental Sciences |
Publisher: | Bharath University, Chennai |
Place: | Chennai |
Year: | 2017 |
Language: | English |
Subject: | Clinical Medicine | Clinical Pre Clinical and Health | Dentistry Oral Surgery and Medicine | Medical Sciences | Medical and Health Sciences |
Dissertation/Thesis Note: | PhD; Faculty of Dental Sciences, Bharath University, Chennai, Chennai; 2017; D09DS002 |
Fulltext: | Shodhganga |
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035 | __ | |a(IN-AhILN)th_454783 |
040 | __ | |aBHAU_600073|dIN-AhILN |
041 | __ | |aeng |
100 | __ | |aSharmila Hussain|eResearcher |
110 | __ | |aFaculty of Dental Sciences|bBharath University, Chennai|dChennai|ein|0U-0446 |
245 | __ | |aMorinda Citrifolia Enhances Bone Marrow Mesenchymal Stem Cell Proliferation and Facilitates Osteogenesis in Vitro and in VIVO Study |
260 | __ | |aChennai|bBharath University, Chennai|c2017 |
300 | __ | |dDVD |
502 | __ | |bPhD|cFaculty of Dental Sciences, Bharath University, Chennai, Chennai|d2017|oD09DS002 |
520 | __ | |aIn search of novel agents promoting bone regeneration, it is surprising to learn about Morinda citrifolia (Noni), an important traditional medicinal plant still used in patients with bone fractures or dislocation to promote connective tissue repair and to reduce inflammation. However, the effects of Noni on bone metabolism and whether it influences the osteogenic differentiation is yet to be clarified. In this study, we investigated the effect of Morinda citrifolia (Noni) juice on the proliferation rate of rat bone marrow derived mesenchymal stem cells (BMSC) and the osteoblastic differentiation as shown by alkaline phosphatase (ALP), Runt-related transcription factor 2 (RUNX2) and osteocalcin (OCN) mRNA expression in vitro. Treatment with 200 and#956;g/mL Noni juice enhanced the proliferation rate of the BMSC and also upregulated the osteogenic differentiation marker genes ALP and OCN, and RUNX2. Consistent with these results collagen scaffolds implanted in vivo, which were loaded with BMSC pre-exposed to |
650 | __ | |aMedical Sciences|2UGC |
650 | __ | |aMedical and Health Sciences|2AIU |
653 | __ | |aClinical Medicine |
653 | __ | |aClinical Pre Clinical and Health |
653 | __ | |aDentistry Oral Surgery and Medicine |
700 | __ | |aJulius, A|eGuide |
856 | __ | |uhttp://shodhganga.inflibnet.ac.in/handle/10603/317051|yShodhganga |
905 | __ | |afromsg |
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