A jugular vein intubation drug delivery device for cerebral infarction
A drug delivery device and jugular vein technology, applied in the field of medical devices, can solve problems such as lack of elasticity of the skull, inaccurate drug delivery sites, and biased experimental results, achieving long drug delivery duration, increasing the success rate of experiments, and reducing adverse events The effect of the reaction
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Embodiment 1
[0045] Such as figure 1 As shown, the present invention provides a jugular vein intubation drug delivery device for cerebral infarction, which includes an inner membrane 3 and a semipermeable body 1 for forming a closed first accommodation space for accommodating medicines. The inner membrane 3 is tightly connected to the semi-permeable body 1 in such a way that it can form a second accommodation space for the osmotic agent 2 . The first accommodation space and the second accommodation space are separated by the inner membrane 3 . The osmotic agent 2 is installed in the storage space so as to allow moisture in the external environment to flow into the storage space based on the osmotic pressure. The semi-permeable body 1 is set so that only water can pass through it. The inner membrane 3 is set as a water-impermeable membrane layer in such a way that it can prevent the moisture that is formed by the osmotic pressure formed by the osmotic agent 2 from entering the second acco...
Embodiment 2
[0052] The drug delivery device of the present invention is applied to the jugular vein drug delivery of cerebral infarction rats, and the specific implementation method is as follows.
[0053] First make the cerebral infarction rat model, the rat cerebral infarction model making method of the present invention is as follows:
[0054] Before the operation, the rats need to fast overnight, and the rats are weighed, and the weight of the rats is 180g-220g.
[0055] a. Use a marker pen to mark the tie line at a distance of 1.8cm from the head;
[0056] b. Intraperitoneal injection of 10mg / kg Shutai anesthesia into the rat, fixed in supine position, cut off neck hair, and operated under iodophor disinfection skin surgery microscope;
[0057] c. An incision of 1.5 cm in the middle of the neck; the right sternocleidomastoid muscle was exposed after the fascia lata was cut open, and the carotid sheath was exposed after the deep separation between the sternocleidomastoid muscle and t...
Embodiment 3
[0075] The device is used to carry out the jugular vein administration experiment on rats.
[0076] The improved nerve injury severity score was performed on 25 rats 24 hours after the model was made, and the improved nerve injury severity score of 15 rats was between 10 and 13 points, and they were randomly divided into 3 groups: drug delivery device group, Routine administration group and control group, 5 rats in each group. The drug delivery device implanted the drug delivery device with the above-mentioned operation for drug delivery, and the conventional drug delivery group used a micro-injector for jugular vein drug administration, 60 μl VEGF solution, VEGF content was 4 μg, and the drug delivery rate was 4 μl / min. Rats in the control group were microinjected with 60 μl of normal saline at an injection speed of 4 μl / min. After the experiment, 24 hours after the model was made, the improved nerve injury severity scores of the three groups of rats were stable at 10-13 poi...
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