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Affordable oral health care: dental biofilm disruption using chloroplast made enzymes with chewing gum delivery

Plant Biotechnol J. 2021-06; 
Rahul Singh, Zhi Ren, Yao Shi, Shina Lin, Kwang-Chul Kwon, Shanmugaraj Balamurugan, Vineeta Rai, Francis Mante, Hyun Koo, Henry Daniell
Products/Services Used Details Operation
Gene Synthesis … encoding) at downstream and codon optimized mut gene were synthesized (GenScript Biotech, Piscataway Township, NJ) (Liu et al., 2016). The PG1-Smdex and synthesized mut (co) genes were cloned into pLsLF-marker-free vector using NdeI and PshAI restriction sites and … Get A Quote

摘要

Current approaches for oral health care rely on procedures that are unaffordable to impoverished populations, whereas aerosolized droplets in the dental clinic and poor oral hygiene may contribute to spread of several infectious diseases including COVID-19, requiring new solutions for dental biofilm/plaque treatment at home. Plant cells have been used to produce monoclonal antibodies or antimicrobial peptides for topical applications to decrease colonization of pathogenic microbes on dental surface. Therefore, we investigated an affordable method for dental biofilm disruption by expressing lipase, dextranase or mutanase in plant cells via the chloroplast genome. Antibiotic resistance gene used to engineer forei... More

关键词

dental biofilm control, plant-derived biopharmaceuticals, therapeutic enzymes, topical drug delivery