Hydrogel microcarrier and preparation method and application thereof
A hydrogel and microcarrier technology, applied in the field of biomedical detection, can solve problems such as complex detection steps, and achieve the effects of low detection cost, simple decoding, and high detection sensitivity
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Embodiment 1
[0075] A kind of hydrogel microcarrier of the present invention, its preparation method comprises the following steps:
[0076] (1) Preparation of water phase precursor solution and oil phase precursor solution:
[0077] 1.1. Preparation of aqueous precursor solution:
[0078] PEGDA monomer (20%, w / v), APS (0.3%, w / v) and MAA (0%, w / v) were mixed to obtain aqueous phase precursor solution A1.
[0079] Mix PEGDA monomer (20%, w / v), APS (0.3%, w / v) and MAA (10%, w / v) to obtain aqueous phase precursor solution A2;
[0080] Mix PEGDA monomer (20%, w / v), APS (0.3%, w / v) and MAA (20%, w / v) to obtain aqueous phase precursor solution A3;
[0081] PEGDA monomer (20%, w / v), APS (0.3%, w / v) and MAA (30%, w / v) were mixed to obtain aqueous phase precursor solution A4.
[0082] 1.2. Preparation of oil phase precursor solution: 2% (w / w) FSL surfactant and 0.4% (v / v) TEMED were dissolved in HFE-7500 oil.
[0083] (2) Preparation of hydrogel beads: Mix 0.25 mL of aqueous phase precursor so...
Embodiment 2
[0088] A kind of hydrogel microcarrier of the present invention, its preparation method comprises the following steps:
[0089] (1) Preparation of water phase precursor solution and oil phase precursor solution:
[0090] 1.1. Preparation of aqueous precursor solution:
[0091] PEGDA monomer (20%, w / v), APS (0.3%, w / v) and gelatin (0%, w / v) were mixed to obtain aqueous phase precursor solution B1.
[0092] PEGDA monomer (20%, w / v), APS (0.3%, w / v) and gelatin (2%, w / v) were mixed to obtain aqueous phase precursor solution B2.
[0093] PEGDA monomer (20%, w / v), APS (0.3%, w / v) and gelatin (4%, w / v) were mixed to obtain aqueous phase precursor solution B3.
[0094] 1.2. Preparation of oil phase precursor solution: 2% (w / w) FSL surfactant and 0.4% (v / v) TEMED were dissolved in HFE-7500 oil.
[0095] (2) Preparation of hydrogel beads: 0.25 mL of aqueous phase precursor solutions B1, B2, B3 and 0.5 mL of oil phase precursor solution were mixed and stirred at room temperature at 8...
Embodiment 3
[0100] A kind of hydrogel microcarrier of the present invention, its preparation method comprises the following steps:
[0101] (1) Preparation of water phase precursor solution and oil phase precursor solution:
[0102] 1.1. Preparation of aqueous precursor solution:
[0103] Silk fibroin (20%, w / v), APS (0.3%, w / v) and gelatin (0%, w / v) were mixed to obtain aqueous phase precursor solution C1.
[0104] Silk fibroin monomer (20%, w / v), APS (0.3%, w / v) and gelatin (2%, w / v) were mixed to obtain aqueous phase precursor solution C2.
[0105] 1.2. Preparation of oil phase precursor solution: 2% (w / w) FSL surfactant and 0.4% (v / v) TEMED were dissolved in HFE-7500 oil.
[0106] (2) Preparation of hydrogel beads: 0.25 mL of aqueous phase precursor solutions C1 and C2 and 0.5 mL of oil phase precursor solution were mixed, and stirred at room temperature at 800 rpm for 5 minutes to form a reverse phase suspension.
[0107] (3) Continue to polymerize the reverse phase suspension at ...
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