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Raghavendra C Mundargi

Explore the profile of Raghavendra C Mundargi including associated specialties, affiliations and a list of published articles. Areas
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Articles 13
Citations 377
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Recent Articles
1.
Fan T, Park J, Pham Q, Tan E, Mundargi R, Potroz M, et al.
Sci Rep . 2018 Apr; 8(1):6565. PMID: 29700313
Pollen-based microcapsules such as hollow sporopollenin exine capsules (SECs) have emerged as excellent drug delivery and microencapsulation vehicles. To date, SECs have been extracted primarily from a wide range of...
2.
Potroz M, Mundargi R, Park J, Tan E, Cho N
J Vis Exp . 2016 Dec; (117). PMID: 27911415
Microcapsules derived from plant-based spores or pollen provide a robust platform for a diverse range of microencapsulation applications. Sporopollenin exine capsules (SECs) are obtained when spores or pollen are processed...
3.
Mundargi R, Potroz M, Park J, Seo J, Tan E, Lee J, et al.
Sci Rep . 2016 Jan; 6:19960. PMID: 26818918
Sporopollenin exine capsules (SECs) extracted from Lycopodium clavatum spores are an attractive biomaterial possessing a highly robust structure suitable for microencapsulation strategies. Despite several decades of research into SEC extraction...
4.
Mundargi R, Potroz M, Park S, Shirahama H, Lee J, Seo J, et al.
Small . 2015 Oct; 12(9):1167-73. PMID: 26516033
In nature, pollen grains play a vital role for encapsulation. Many pollen species exist which are often used as human food supplements. Dynamic image particle analysis, scanning electron microscopy, and...
5.
Tan Y, Mundargi R, Chen M, Lessig J, Neu B, Venkatraman S, et al.
Small . 2014 Feb; 10(9):1790-8. PMID: 24510544
Efficient and safe delivery systems for siRNA therapeutics remain a challenge. Elevated secreted protein, acidic, and rich in cysteine (SPARC) protein expression is associated with tissue scarring and fibrosis. Here...
6.
Mundargi R, Rangaswamy V, Aminabhavi T
J Microencapsul . 2011 Jul; 28(5):384-94. PMID: 21736523
pH-sensitive copolymeric hydrogels prepared from N-vinylcaprolactam and methacrylic acid monomers by free radical polymerization offered 52% encapsulation efficiency and evaluated for oral delivery of human insulin. The in vitro experiments...
7.
Mundargi R, Rangaswamy V, Aminabhavi T
Drug Dev Ind Pharm . 2011 Mar; 37(8):977-85. PMID: 21417605
In this paper, we present in vitro and in vivo release data on pH-sensitive microspheres of Eudragit L100, Eudragit RS100 and their blend systems prepared by double emulsion-solvent evaporation technique...
8.
Srirangarajan S, Mundargi R, Ravindra S, Setty S, Aminabhavi T, Thakur S
J Periodontol . 2010 Aug; 82(1):114-21. PMID: 20681818
Background: The aim of this randomized, split-mouth, single-masked study is to compare the efficacy of a gel and microspheres as drug-delivery systems in the treatment of periodontal disease. Methods: Microspheres...
9.
Babu V, Patel P, Mundargi R, Rangaswamy V, Aminabhavi T
Expert Opin Drug Deliv . 2008 Apr; 5(4):403-15. PMID: 18426382
Background: Development of improved oral insulin administration is necessary for the treatment of diabetes mellitus, to overcome the problem of daily subcutaneous injections. The vast amount of literature data on...
10.
Mundargi R, Babu V, Rangaswamy V, Patel P, Aminabhavi T
J Control Release . 2007 Dec; 125(3):193-209. PMID: 18083265
Biodegradable nano/microparticles of poly(D,L-lactide-co-glycolide) (PLGA) and PLGA-based polymers are widely explored as carriers for controlled delivery of macromolecular therapeutics such as proteins, peptides, vaccines, genes, antigens, growth factors, etc. These...