| Literature DB >> 24706136 |
Marta A Cooperstein1, Heather E Canavan.
Abstract
Poly(N-isopropyl acrylamide) (Entities:
Mesh:
Substances:
Year: 2013 PMID: 24706136 PMCID: PMC3979476 DOI: 10.1186/1559-4106-8-19
Source DB: PubMed Journal: Biointerphases ISSN: 1559-4106 Impact factor: 2.456
Figure 1NMR spectrum for frpNIPAM and NIPAM. Inset shows chemical structure of the NIPAM monomer. Hydrogens bound to alkenes are indicated as “a”, “b”, and “c” in the inset and spectrum.
Figure 2Overview of polymerization and surface preparation techniques used in this manuscript.
Figure 3XPS and contact angle results.a) Elemental composition of pNIPAM-coated surfaces from XPS data analysis; b) Contact angles of pNIPAM-coated surfaces measured at room and body temperature. N=9 with a standard deviation of ±1, except for spNIPAM with standard deviation of ±7.
MTS assay results of the cytotoxicity experiments for all four cell types after 24 and 48 hours of exposure to the NIPAM monomer
| % Viability | ||||
|---|---|---|---|---|
| 24 hours of exposure | 48 hours of exposure | |||
| Average | Standard deviation | Average | Standard deviation | |
| BAECS | 38 | 3 | 18 | 2 |
| Veros | 32 | 3 | 16 | 9 |
| SMCs | 59 | 16 | 36 | 13 |
| 3T3s | 6 | 48 | 4 | |
Bold indicates viability above 70%.
Plating efficiency results for BAEC, Vero, SMC, and 3T3 cells exposed to the NIPAM monomer and extracts from ppNIPAM, spNIPAM, cpNIPAM, and frpNIPAM
| Type of extracts | Plating efficiency | |||
|---|---|---|---|---|
| BAECs | Veros | SMCs | 3T3s | |
| NIPAM | 0 | 0 | 0 | 0 |
| ppNIPAM (20°C) | 98 | 94 | 95 | 96 |
| PPNIPAM (37°C) | 103 | 93 | 89 | 91 |
| spNIPAM (20°C) | 100 | 96 | 100 | 101 |
| spNIPAM (37°C) | 105 | 91 | 93 | |
| cpNIPAM (20°C) | 102 | 94 | 88 | 97 |
| CPNIPAM (37°C) | 102 | 90 | 91 | |
| frpNIPAM (20°C0) | 97 | 91 | 93 | 91 |
| frpNIPAM (37°C) | 108 | 90 | 98 | |
Bold indicates extracts with decreased viability at 37°C.
Figure 4Direct contact test results. MTS assay results (first column) for all four cell types after cell culture for 48 and 96 hours on (a) ppNIPAM surfaces, (b) spNIPAM surfaces, (c) frpNIPAM surfaces, and (d) cpNIPAM surfaces. Light microscopy (second column) and LIVE/DEAD assay results (third column) for (a) SMCs after 96 hours of culture on ppNIPAM surfaces, (b) 3T3s after 96 hours of culture on spNIPAM surfaces, (c) BAECs after 96 hours of culture on frpNIPAM surfaces, and (d) Veros after 96 hours of culture on cpNIPAM surfaces. Red line indicates the viability of 70%, below which a compound is considered to be cytotoxic. Asterisks point to the exposed surfaces from which cells have detached (in black). The arrow points to a sheet of detached, live cells.
Figure 5MTS assay results for culture of BAECs in the presence of pNIPAM extracts. Red line indicates viability of 70%, below which a compound is considered to be cytotoxic. Red box indicates the only time and concentration for which the viability of BAECs was lowered to ≤ 70% across all pNIPAM coated surfaces. Corresponding figures for Veros, SMCs, and 3T3s can be found in supplemental information.
Figure 6MTS assay results for concentration gradient experiments with BAECs (a) on cpNIPAM/IPA surfaces, and (b) on frpNIPAM/IPA surfaces. Red line indicates viability of 70%, below which a compound is considered to be cytotoxic. Corresponding figures for Veros, SMCs, and 3T3s can be found in supplemental information.