Orodispersible Films of Punicalagin from Pomegranate Peel-A Novel Drug Delivery System for Dental Caries Prevention

2016 ◽  
Vol 5 (1) ◽  
pp. 24-30 ◽  
Author(s):  
P. Shubha ◽  
K. Namratha ◽  
C. S. Vicas ◽  
K. Byrappa ◽  
I. Bharath Kumar ◽  
...  
Author(s):  
Youping Yi ◽  
Lujun Wang ◽  
Lin Chen ◽  
Yan Lin ◽  
Zhongling Luo ◽  
...  

Abstract Background: Farnesol is a sesquiterpene from propolis and citrus fruit that shows promising anti-bacterial activity for caries treatment and prevention, but its hydrophobicity limits the clinical application. We aimed to develop the novel polymeric micelles (PMs) containing a kind of derivative of farnesol and a ligand of pyrophosphate (PPi) that mediated PMs to adhere tightly with the tooth enamel.Results: Farnesal (Far) was derived from farnesol and successfully linked to PEG via an acid-labile hydrazone bond to form PEG-hyd-Far, which was then conjugated to PPi and loaded into PMs to form the aimed novel drug delivery system, PPi-Far-PMs. The in vitro test about the binding of PPi-Far-PMs to hydroxyapatite showed that PPi-Far-PMs could bind rapidly to hydroxyapatite and quickly release Far under the acidic conditions. Results from the mechanical testing and the micro-computed tomography indicated that PPi-Far-PMs could restore the microarchitecture of teeth with caries. Moreover, PPi-Far-PMs diminished the incidence and severity of smooth and sulcal surface caries in rats that were infected with Streptococcus mutans while being fed with a high-sucrose diet . The anti-caries efficacy of free Far can be improved significantly by PPi-Far-PMs through the effective binding of it with tooth enamel via PPi.Conclusions: This novel drug-delivery system may be useful for the treatment and prevention of dental caries as well as the targeting therapy of anti-bacterial drugs in the oral disease.


2020 ◽  
Author(s):  
youping yi ◽  
lujun wang ◽  
lin chen ◽  
yan lin ◽  
zhongling luo ◽  
...  

Abstract Background: Farnesol is a sesquiterpene from propolis and citrus fruit that shows promising anti-bacterial activity for caries treatment and prevention, but its hydrophobicity limits the clinical application. We aimed to develop the novel polymeric micelles (PMs) containing a kind of derivative of farnesol and a ligand of pyrophosphate (PPi) that mediated PMs to adhere tightly with the tooth enamel. Results: Farnesal (Far) was derived from farnesol and successfully linked to PEG via an acid-labile hydrazone bond to form PEG-hyd-Far, which was then conjugated to PPi and loaded into PMs to form the aimed novel drug delivery system, PPi-Far-PMs. The in vitro test about the binding of PPi-Far-PMs to hydroxyapatite showed that PPi-Far-PMs could bind rapidly to hydroxyapatite and quickly release Far under the acidic conditions. Results from the mechanical testing and the micro-computed tomography indicated that PPi-Far-PMs could restore the microarchitecture of teeth with caries. Moreover, PPi-Far-PMs diminished the incidence and severity of smooth and sulcal surface caries in rats that were infected with Streptococcus mutans while being fed with a high-sucrose diet . The anti-caries efficacy of free Far can be improved significantly by PPi-Far-PMs through the effective binding of it with tooth enamel via PPi. Conclusions: This novel drug-delivery system may be useful for the treatment and prevention of dental caries as well as the targeting therapy of anti-bacterial drugs in the oral disease.


2017 ◽  
Vol 14 (3) ◽  
pp. 386-393 ◽  
Author(s):  
Ulya Badilli ◽  
C. Tuba Sengel-Turk ◽  
Gulin Amasya ◽  
Nilufer Tarimci

2020 ◽  
Vol 6 (4) ◽  
pp. 620-622 ◽  
Author(s):  
Dominic C. Grimberg ◽  
Ankeet Shah ◽  
Brant A. Inman

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