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1.
BMC Oral Health ; 22(1): 461, 2022 11 02.
Article in English | MEDLINE | ID: mdl-36324127

ABSTRACT

BACKGROUND: This single-center, randomized controlled trial aimed to determine the effectiveness of a novel, biofilm-disrupting, mouth rinse that combines Cetylpyridinium chloride (CPC) and essential oils in preventing re-accumulation of supragingival plaque and supragingival microbiome in patients with gingivitis after dental prophylaxis. METHODS: One hundred eighteen participants were randomly assigned in a 1:1 ratio to receive twice-daily test mouth rinse (59) or carrier rinse control (59) for 12 weeks after dental prophylaxis. RESULTS: In a per-protocol analysis that included patients who completed the intervention, the treatment group (39) had significantly lower supragingival plaque scores at 6 and 12 weeks compared to the control group (41; p = 0.022). Both groups showed similar improvement in gingivitis score, but neither group had improvement in bleeding score or probing depth. Thirty-eight (29%) patients did not complete the study due to loss of follow-up (17) or early discontinuation of the assigned intervention (21). Microbiome sequencing showed that the treatment rinse significantly depleted abundant and prevalent members of the supragingival plaque microbiome consortium. CONCLUSIONS: Among patients with gingivitis, the novel mouth rinse significantly reduced re-accumulation of supragingival plaque following dental prophylaxis by depleting supragingival plaque microbiome. However, long-term adherence to the rinse may be limited by adverse effects ( ClinicalTrials.gov number, NCT03154021).


Subject(s)
Anti-Infective Agents, Local , Dental Plaque , Gingivitis , Humans , Mouthwashes/therapeutic use , Dental Plaque/prevention & control , Dental Plaque/drug therapy , Anti-Infective Agents, Local/therapeutic use , Double-Blind Method , Gingivitis/prevention & control , Gingivitis/drug therapy , Dental Plaque Index
2.
J Struct Biol ; 203(3): 236-241, 2018 09.
Article in English | MEDLINE | ID: mdl-29775653

ABSTRACT

AAV2.5 represents the first structure-guided in-silico designed Adeno-associated virus (AAV) gene delivery vector. This engineered vector combined the receptor attachment properties of AAV serotype 2 (AAV2) with the muscle tropic properties of AAV1, and exhibited an antibody escape phenotype because of a modified antigenic epitope. To confirm the design, the structure of the vector was determined to a resolution of 2.78 Šusing cryo-electron microscopy and image reconstruction. The structure of the major viral protein (VP), VP3, was ordered from residue 219 to 736, as reported for other AAV structures, and the five AAV2.5 residues exchanged from AAV2 to AAV1, Q263A, T265 (insertion), N706A, V709A, and T717N, were readily interpretable. Significantly, the surface loops containing these residues adopt the AAV1 conformation indicating the importance of amino acid residues in dictating VP structure.


Subject(s)
Cryoelectron Microscopy/methods , Gene Transfer Techniques , Genetic Vectors/ultrastructure , Parvovirinae/ultrastructure , Capsid/chemistry , Capsid/ultrastructure , Capsid Proteins/chemistry , Capsid Proteins/ultrastructure , Dependovirus , Epitopes/chemistry , Epitopes/ultrastructure , Genetic Therapy , Genetic Vectors/chemistry , Genetic Vectors/genetics , Humans , Parvovirinae/chemistry , Parvovirinae/genetics , Protein Binding
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