Novel preservation solution for microbial nucleic acid in cerebrospinal fluid
A technology for microorganisms and cerebrospinal fluid, applied in the field of molecular biology, can solve the problems of poor stability of microbial nucleic acids, inability to cryopreservation, and immediate inspection, and achieve the effects of avoiding cell lysis, preventing cell lysis and improving accuracy.
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Embodiment 1
[0019] A new preservation solution for microbial nucleic acid in cerebrospinal fluid, including 10mmol / L nuclease inhibitor ethylenediaminetetraacetic acid, 20mmol / L buffer solution guanidine hydrochloride buffer solution, 15mmol / L protein denaturation inhibitor sodium dodecylsulfonate, 10mmol / L trisodium citrate, 25mmol / L bacteriostatic agent potassium sorbate, 5mmol / L stabilizer sodium acetate; 10% isopropanol.
Embodiment 2
[0021] A new preservation solution for microbial nucleic acid in cerebrospinal fluid, including 5mmol / L nuclease inhibitor ethylenediaminetetraacetic acid, 30mmol / L buffer solution guanidine hydrochloride buffer solution, 20mmol / L protein denaturation inhibitor sodium dodecylsulfonate, 5mmol / L trisodium citrate, 20mmol / L bacteriostatic agent potassium sorbate, 10mmol / L stabilizer sodium acetate; 5% isopropanol.
Embodiment 3
[0023] A new preservation solution for microbial nucleic acid in cerebrospinal fluid, including 18mmol / L nuclease inhibitor ethylene glycol tetraacetic acid, 15mmol / L buffer solution guanidine hydrochloride buffer solution, 25mmol / L protein denaturation inhibitor sodium dodecylsulfonate, 8mmol / L trisodium citrate, 30mmol / L antibacterial agent potassium sorbate, 6mmol / L stabilizer glycine; 8% isopropanol.
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