| Literature DB >> 30029476 |
Delia Mandracchia1, Adriana Trapani2, Sara Perteghella3, Cinzia Di Franco4, Maria Luisa Torre5, Enrica Calleri6, Giuseppe Tripodo7.
Abstract
Hydrogels are among the most common materials used in drug delivery, as polymeric micelles are too. They, preferentially, load hydrophilic and hydrophobic drugs, respectively. In this paper, we thought to combine the favorable behaviors of both hydrogels and polymeric micelles with the specific aim of delivering hydrophilic and hydrophobic drugs for dual delivery in combination therapy, in particular for colon drug delivery. Thus, we developed a hydrogel by UV crosslinking of a methacrylated (MA) amphiphilic derivative from inulin (INU) (as known INU is specifically degraded into the colon) and vitamin E (VITE), called INVITEMA. The methacrylated micelles were physicochemically characterized and subjected to UV irradiation to form what we called the "nanogrids". The INVITEMA nanogrids were characterized by DSC, SEM, TEM, water uptake and beclomethasone dipropionate (BDP) release. In particular, the release of the hydrophobic drug was specifically assessed to verify that it can spread along the hydrophilic portions and, therefore, effectively released. These systems can open new pharmaceutical applications for known hydrogels or micelle systems, considering that in literature only few examples are present.Entities:
Keywords: beclometasone; colon delivery; combination therapy; curcumin; drug delivery; dual delivery; hydrogel; inulin; micelle; vitamin E
Year: 2018 PMID: 30029476 PMCID: PMC6161022 DOI: 10.3390/pharmaceutics10030097
Source DB: PubMed Journal: Pharmaceutics ISSN: 1999-4923 Impact factor: 6.321
Figure 1Scheme of reaction between inulin-vitamin E (INVITE) and methacrylic anhydride (MA) leading to INVITEMA conjugate.
Reaction conditions for the synthesis of INVITEMA conjugates, their nomenclature, molar amount used for the reaction, actual derivatization degree DD % (mol/mol) and yield % (w/w), n = 3.
| Sample | Molar Amount of Methacrylic Anhydride (MA) | DD % mol/mol | Yield % ( |
|---|---|---|---|
| INVITEMA1 | 0.20 | 18 ± 0.9 | 86 |
| INVITEMA2 | 0.35 | 33 ± 1.4 | 93 |
| INVITEMA3 | 0.50 | 49 ± 1.2 | 88 |
Figure 2FTIR spectra of: (a) INVITEMA micelles; (b) crosslinked INVITEMA after 30 min UV irradiation still showing the presence of the acrylic double bond; (c) crosslinked INVITEMA system after 1 h UV irradiation still showing the presence of the acrylic double bond and (d) crosslinked INVITEMA system, spectra were acquired in transmittance. To improve the spectra readability only the acrylic bands at 815–816 cm−1 for samples irradiated at 30 min or 1 h are inserted.
Figure 31H-NMR Spectra of INVITEMA conjugate in DMSO-d6, in the insert the INVITE spectrum before MA functionalization.
Thermal behaviors of INVITEMA micelles, nanogrids (30 min, 1 and 2 h represent the different UV irradiation time), drug loaded micelles or nanogrids, beclomethasone dipropionate (BDP) and INVITEMA3/BDP physical mixture, n = 3.
| Sample | Melting Point °C | Glass Transition (Tg) Midpoint °C |
|---|---|---|
| INVITEMA3 micelles | 51.4 ± 0.8 | |
| INVITEMA3 30 min nanogrid | 40.1 ± 0.9 | |
| INVITEMA3 1 h nanogrid | 64.6 ± 1.1 | |
| INVITEMA3 2 h nanogrid | ||
| BDP | 212 ± 0.9 | |
| INVITEMA3 2 h/BDP physical mixture | 200 ± 1.4 (BDP) | |
| INVITEMA3 2 h/BDP drug loaded |
Found critical aggregation concentration (CAC) values, by pyrene method, for INVITEMA bioconjugates.
| Sample | CAC (mM) |
|---|---|
| INVITEMA1 | 1.3 × 10−2 |
| INVITEMA2 | 1.2 × 10−2 |
| INVITEMA3 | 1.4 × 10−2 |
Figure 4Size distribution and stability studies of INVITEMA 1, 2 and 3 micelles up to 30 days in ultrapure water by DLS.
Figure 5TEM image of crosslinked INVITEMA3/2 h nanogrid.
Figure 6SEM images of crosslinked INVITEMA nanogrids, (a) INVITEMA3/30 min; (b) INVITEMA3/1 h; (c) INVITEMA3/2 h 16,000× and (d) INVITEMA3/2 h 30,000×.
Figure 7Water uptake studies on INVITEMA3 after UV irradiation for 30 min, 1 or 2 h up to 24 h in water.
Figure 8Drug release studies from INVITEMA3/2 h nanogrids, BPD dissolution curve is shown (sink conditions).