| Literature DB >> 33167509 |
Linying Li1, Leah M Johnson1, Sai Archana Krovi1, Zach R Demkovich2, Ariane van der Straten2.
Abstract
A critical need exists to develop diverse biomedical strategies for the widespread use of HIV Pre-Exposure Prophylaxis (HIV PrEP). This manuscript describes a subcutaneous reservoir-style implant for long-acting delivery of tenofovir alafenamide (Entities:
Keywords: HIV pre-exposure prophylaxis; biodegradable polymer; implant; long-acting drug delivery; poly(ε-caprolactone) (PCL); tenofovir alafenamide
Year: 2020 PMID: 33167509 PMCID: PMC7694512 DOI: 10.3390/pharmaceutics12111057
Source DB: PubMed Journal: Pharmaceutics ISSN: 1999-4923 Impact factor: 6.321
Figure 1(Left) A digital camera image of the biodegradable implant. (Right) A schematic of a poly(ε-caprolactone) (PCL) reservoir-style implant for sustained delivery of tenofovir alafenamide (TAF) formulations.
The solubility and chromatographic impurity of TAFFB and TAFHF within various pharmaceutical grade excipients identified in the FDA’s inactive ingredient list.
| Excipients | TAFHF Solubility (mg/mL) | TAFHF % Impurities at Day-9 | TAFFB Solubility (mg/mL) | TAFFB % Impurities at Day-9 |
|---|---|---|---|---|
| Castor Oil | 12.4 | 1.1 | 16.5 | 2.3 |
| Sesame Oil | 0.34 | 8.2 | 0.06 | 2.1 |
| PEG600 | 57.6 | 18.5 | 56.8 | 7.2 |
| API only | ---- | 4.4 | ---- | 1.9 |
| API exposed to 37 °C | ---- | 4.4 | ---- | 2.0 |
The formulation and PCL membrane configuration for tested implants.
| Formulations | API | Excipient | Wall Thickness (µm) | Length of Implant (mm) | PCL | Approximate TAF Payload (mg) |
|---|---|---|---|---|---|---|
| TAFHF-CO | TAFHF | Castor oil | 100 | 40 | 145 | 120 |
| TAFHF-PEG600 | TAFHF | PEG600 | 122 | |||
| TAFFB-CO | TAFFB | Castor oil | 118 | |||
| TAFFB-SO | TAFFB | Sesame oil | 113 |
Figure 2Cumulative release profiles of various TAFHF (a) and TAFFB (b) formulations.
Figure 3Degradation profiles of TAFHF (a,b) and TAFFB (c,d) formulations within implants with a wall thickness of 100 μm after exposure to simulated physiological conditions (37 °C, PBS). The fits (black lines) correspond to a two-line model for each formulation.
Figure 4Water ingress profiles of TAFHF-CO (a), TAFHF-PEG600 (b), TAFFB-CO (c), and TAFFB-SO (d) formulations within PCL implants exposed to simulated physiological conditions (37 °C, PBS). Two-line model (depicted in black lines) has been applied to TAFHF-CO, TAFFB-CO and TAFFB-SO formulations in mass ratios of 2:1.
The inflection points determined by fitting the degradation profiles of various TAF formulations to the two-line models. Mass quantities of drug remaining and TAF stability at the inflection points are included.
| Formulation | Inflection Point (Day) | Drug Remaining at the Inflection Point | Stability Near the Inflection Point | Water Content (mg) Near the Inflection Point | % of Water Ingress Near the Inflection Point |
|---|---|---|---|---|---|
| TAFHF-CO | 78 | 91.8 mg/75.6% | 93.9% | 4.0 | 4.8% |
| TAFHF-PEG600 | 38 | 97.7 mg/79.3% | 91.3% | 8.4 | 10.1% |
| TAFFB-CO | 130 | 82.5 mg/71.2% | 96.3% | 19.6 | 8.4% |
| TAFFB-SO | 132 | 86.7 mg/78.7% | 97.6% | 10.0 | 4.6% |
Figure 5TAF purity and water uptake for the TAFHF implants (a) and TAFFB implants (b) as a function of time.
Figure 6Chromatographic impurity profile of TAFHF-CO (a), TAFHF-PEG600 (b), TAFFB-CO (c), and TAFFB-SO (d) formulations.
Figure 7Postulated predominant TAF degradation pathway inside the implant reservoir.
Figure 8High-performance liquid chromatography (HPLC) chromatographic purity profile of 2:1 TAFHF-CO (a) and 2:1 TAFFB-SO (b) implants stored in open and closed foil pouches at 22 °C/50% RH and 40 °C/75% RH over 6-months.
Figure 9Chromatographic impurity of TAFHF-CO (a) and TAFFB-SO (b) formulations within the implant at 180 days under various storage conditions.
Figure 10Cumulative release profiles of TAFFB-CO (a) and TAFFB-SO (b) formulations from implants of differing wall thicknesses. All samples were performed in triplicate.
The chromatographic purities of TAFFB-SO and TAFFB-CO formulations within implants of differing wall thicknesses at 210 and 240 days.
| Implants | Release Rate (mg/day) | Purity at 210 Days (%) | Purity at 240 Days (%) |
|---|---|---|---|
| TAFFB-SO 150 µm | 0.18 ± 0.03 | 94.3 | 88.8 |
| TAFFB-SO 200 µm | 0.11 ± 0.04 | 91.8 | 86.7 |
| TAFFB-SO 300 µm | 0.07 ± 0.02 | 96.1 | 93.2 |
| TAFFB-CO 150 µm | 0.31 ± 0.06 | 80.0 | 63.5 |
| TAFFB-CO 200 µm | 0.17 ± 0.07 | 81.2 | 67.9 |
| TAFFB-CO 300 µm | 0.10 ± 0.02 | 90.3 | 79.0 |