2019
DOI: 10.1016/j.matpr.2019.04.192
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Synthetic Osteogenic Matrix using Polymeric Dendritic Peptides for treating Human Periodontal defects – design and in vitro evaluation

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Cited by 3 publications
(2 citation statements)
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“…Different polymer matrices and scaffolds have been employed for periodontal regeneration of intraosseous abnormalities since the 1980s, as shown in Table 7. [231][232][233][234][235][236][237][238][239][240][241][242][243][244][245][246] Likewise, 3D-printed scaffolds have recently been designed to improve on current supporting matrices. In contrast to traditional grafts' brittleness, poorly processed porosities, and generic shapes, 3D scaffolds may be adapted to the unique demands of patients.…”
Section: Periodontal Tissue Regeneration and Engineeringmentioning
confidence: 99%
See 1 more Smart Citation
“…Different polymer matrices and scaffolds have been employed for periodontal regeneration of intraosseous abnormalities since the 1980s, as shown in Table 7. [231][232][233][234][235][236][237][238][239][240][241][242][243][244][245][246] Likewise, 3D-printed scaffolds have recently been designed to improve on current supporting matrices. In contrast to traditional grafts' brittleness, poorly processed porosities, and generic shapes, 3D scaffolds may be adapted to the unique demands of patients.…”
Section: Periodontal Tissue Regeneration and Engineeringmentioning
confidence: 99%
“…In vitro osteogenic differentiation [231] PCL fibers Over 21 days, increased transcription of osteogenic marker (Runx2) overexpression of M1 signals [232] Cellulose acetate (CA) and hydroxyapatite (HA) films…”
Section: Guanidine Appended Polydiacetylene (G-pda)mentioning
confidence: 99%