Description
3Dresyn Pharma HydroGel SLA1, is a Photocurable hydrogel resin for pharmaceutical SLA/DLP & LCD printing (research use)
Application:
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vat photopolymerization (SLA/DLP & LCD) of pre-hydrated, drug-loadable hydrogels for R&D
Chemistry:
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proprietary hydrogel system with two alternative photoinitiation routes (water-compatible or high-speed)
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(formulation details intentionally withheld)
Wavelength:
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optimized for 365, 385, 405 nm, and visible light
Key Features & Benefits:
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pre-hydrated printing to tune swelling and release
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two kinetic routes (no disclosure): water-compatible (safe for aqueous systems) and high-speed (fast cure, near-colorless)
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low-temperature process suitable for thermolabile actives (research context).
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dimensional fidelity with smooth surfaces at 25–200 µm layers
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tunable release via hydration level, humectant, and post-print equilibration
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streamlined adoption with a practical printing window and troubleshooting guide
Recommended Uses (R&D):
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hydrogel printlets/inserts for in-vitro drug-release studies
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biomedical test components for swelling, permeability, and mechanical screening
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education and method development in pharmaceutical 3D printing
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important: research use only; end-use biomedical applications require customer biocompatibility, E/L, sterilization validation, toxicology, and regulatory clearance
Product Variants:
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base — water-compatible route (anhydrous)
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hydrated 10 / 20 / 30 — pre-hydrated options with increasing water content
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speed — high-speed route (anhydrous, near-colorless)
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(variants differ by hydration level, rheology, and photo-package; exact composition is not disclosed)
Processing Guidelines — Handling & Mixing:
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work under amber/low-blue light; use clean, dry glassware
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gentle magnetic stirring; avoid bubble entrapment and strong UV exposure
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allow temperature equilibration before printing for hydrated variants
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degas gently (rest or brief low vacuum)
Processing Guidelines — Printing (Starting Window):
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layer height: 50–100 µm (25 µm for fine features)
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environment: clean vat and platform; verify leveling and FEP integrity
Processing Guidelines — Post-Processing:
- rinse: brief wash in a matching aqueous/humectant bath; avoid aggressive solvents
- post-cure: 405 nm flood/chamber until tack-free; keep surface <40 °C for hydrated parts
- equilibration: condition in the target medium before testing release, swelling, or mechanics
Drug Incorporation Protocol (R&D Use) (composition and photoactive details intentionally omitted):
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pre-formulation checks:confirm API (Active Pharmaceutical Ingredient) identity (≥98%) and dryness (LOD/KF); solubility screen in resin base, humectant (if applicable), and water (for hydrated variants); assess photostability/pH sensitivity; target D90 ≤ 10–20 µm (≤5–10 µm for microfeatures); avoid chemistries that may inhibit cure; if unsure, run gel-time/spot-cure test
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dosing ranges: dissolved API typically 1–10% w/w; suspended API typically 5–20% w/w
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route A — dissolved API: work under amber light; add API slowly to resin base with gentle stirring (300–600 rpm, 15–30 min); mild warming ≤40 °C if needed; de-bubble; if opalescent, switch to Route B or add ≤5% compatible co-solvent and validate
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route B — suspended API: disperse micronized API (propeller/overhead 500–1000 rpm); shear-refine if available; adjust anti-settling (target 100–1000 mPa·s at relevant shear rate); sieve 50–100 µm; de-bubble; check homogeneity (RSD ≤5%)
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printability & cure verification: confirm viscosity @25 °C; spot-cure a 10–20 µL droplet; print 5×5×2 mm coupons at 50–100 µm; stepwise increase exposure for light-absorbing APIs; verify adhesion/green strength; dimensional accuracy ±2–5% vs CAD
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washing & post-cure (API-friendly): brief rinse in matching polarity bath; avoid hot air on hydrated parts; 405 nm post-cure to tack-free with surface <40 °C; pre-condition parts in target medium before dissolution testing
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content uniformity & assay: prepare n ≥ 10 units; HPLC/UV-Vis after quantitative extraction (target AV ≤15 per USP <905>); compare pre-print top/middle/bottom draws vs finished parts
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in-vitro release (minimum viable method): appropriate buffer (pH 1.2/4.5/6.8) or sink conditions; orbital shaker 100–150 rpm or USP II; timepoints e.g., 0.5, 1, 2, 4, 8, 24 h with volume replacement; assay at API λmax; report % released vs label claim and T50
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sedimentation control: gently pre-stir vat; pause & stir on long prints (if supported) or split batches; consider thixotropic adjustment
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sterility & bioburden (as needed): maintain clean bench practice; for sterile prototypes evaluate aseptic processing or ETO and validate impact on API potency/release
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storage & stability: filled resin with API in amber bottle at 5–25 °C, dry, tightly closed; re-check viscosity & cure after 2–4 weeks; store prints light-shielded (sealed pouches for hydrated parts); periodic assay and visual inspection
Material Properties (Indicative Trends):
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swelling/permeability increase with hydration and decrease with crosslink density
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hydrated variants are softer/more elastic; anhydrous variants are stiffer (within hydrogel range
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water-compatible route may show light yellow tint; high-speed route is near-colorless
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hydration state influences thermal dimensional change
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exact values depend on printer, exposure, geometry, and hydration level
Sterilization & Stability (Customer to Validate):
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recommended ETO or aseptic processing
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assess dimensional change, mass loss, and release kinetics after sterilization
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shelf-life (unopened) 6 months at 5–25 °C, dark and dry; re-evaluate viscosity and cure before use
Safety:
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for professional users in controlled labs; wear gloves, goggles, lab coat
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avoid skin/eye contact and direct blue/UV light exposure
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fully cure residues before disposal; treat uncured waste as chemical waste per local regulations