Here, we introduce a method to evaluate transpedicular screws by using an in vivo porcine lumbar spine model.
Method Article
Here, we introduce a method to evaluate transpedicular screws by using an in vivo porcine lumbar spine model.
Pedicle screw fixation is the gold standard for the treatment of spinal diseases. However, many studies have reported the issue of loosening pedicle screws after spinal surgery, which is a serious concern. To address this problem, diverse types of pedicle screws have been examined to identify those with good fixation strength and osseointegration in spine bone. The porcine spine is a good alternative for the human spine in the evaluation of pedicle screws due to the anatomical size, mechanical characteristics, and cost. Although several studies have reported that pedicle screws are efficient in the porcine model, no study has described detailed protocols for the evaluation of a pedicle screw using the porcine model. Here, we describe a detailed method for evaluating transpedicular screws using an in vivo porcine lumbar spine model. The technical details for anesthesia, spine surgery, and harvest provided here will facilitate with the evaluation of the transpedicular screw fixation model.
Transpedicular screw fixation is a gold-standard treatment for degenerative lumbar spine and bursting fracture because it involves three columns of the spine and achieves stabilization1,2. However, most patients who undergo such surgery also have osteoporosis3,4. Many studies have evaluated the fixation strength and the osseointegration status of transpedicular screws, because the loosening of pedicle screws currently in use has been reported in patients with osteoporosis5,6.
The porcine spine is similar to the human spine in terms of size. It is less expensive compared to a primate model7. Furthermore, an in vivo mechanical study has demonstrated that the quadruped porcine spine is essentially loaded in the same way as that of the human spine8, which is why many researchers use porcine spines for studies on the prevention of pedicle screw loosening. However, it takes several months to study pedicle screws in the porcine spine because identifying the long-term stability of pedicle screws takes times. In order to compare different types of screws in the vertebral body, it is necessary to insert the screws in similar positions. Therefore, researchers should be well-acquainted with proper anesthesia techniques, standardized surgical protocols, and harvest procedures before performing any experiments. Here, we describe a detailed method for anesthesia, surgery, and harvest for the evaluation of pedicle screw fixation using a porcine spine model, including ex vivo imaging, histology, and strength testing.
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The Institutional Animal Care and Use Committee of Chonbuk National University approved this study. The treatment, use, and handling of animals followed all guidelines and policies. Maintain the operating room at 24 °C.
1. Anesthesia
2. Spine Surgery
3. Harvest Procedure
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A detailed protocol for anesthesia, surgery, and harvest for the evaluation of transpedicular screws using an in vivo porcine lumbar spine model is described here. This protocol is suitable for a number of downstream analyses, including mechanical testing (Figure 1), quantitative micro-CT evaluation (Figure 2), and histology (Figure 3). Representative mechanical testing (Figure 1) shows the mean extraction torsio...
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The evaluation of transpedicular screws in the porcine spine requires much time and effort. First, the miniature pig is a large animal. For animal care and anesthesia, the researcher needs a specialized protocol. Second, surgery should maintain an environment similar to that of human surgery. The purpose of evaluating pedicle screws in the porcine spine is to develop an efficient screw that can be applied to humans. Third, evaluating the long-term stability of transpedicular screws requires about three months after the s...
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The authors have nothing related to this paper to disclose.
This study was supported by a grant (CNUH-BRI-2012-02-005) funded by the Biomedical Research Institute of Chonbuk National University Hospital (CNUH-BRI), Republic of Korea.
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| Name | Company | Catalog Number | Comments |
|---|---|---|---|
| Miniature pig | OrientBio | ||
| Atropine | Jeil pharmaceutical | A04900241 | Anesthesia |
| Over-the needle plastic catheter | BD | REF382412 | Maintenance of IV line |
| Ketamine | Yuhan | A04502441 | Anesthesia |
| Xylazine | Bayer Korea | A00800071 | Anesthesia |
| Laryngoscope | Karl storz | Intubation | |
| Endotracheal tube | Covidien | Intubation | |
| Isoflurane | JW pharmaceutical Co | A02104781 | Anesthesia |
| Eye ointment | Hanlim pharma | A37851721 | Protection of pig's eye |
| Cefazolin | Donga pharma | A01503951 | Antibiotics |
| Saline | JW pharmaceutical Co | A02151392 | Maintenance of fluid homeostasis |
| Fentanyl | Hana pharm | C03200032 | Pain control |
| Enrofloxacin | Bayer | 93106-60-6 | Antibiotics |
| Morphine | Myungmoon pharma | C03700091 | Pain control |
| Meloxicam | Boehringer Ingelheim | A07600711 | Antibiotics |
| Povidone-iodine | Hyundai pharma | Wound dressing | |
| Scalpel blade size 15 | Braun | I1 BB515 | Skin incision |
| Cobb elevator | Codman | 65-2546 | Dissection of muscle |
| Burr | Medtronic | Making of starting point of screw | |
| Rongeur | Aesculap | FO515R | Making of starting point of screw |
| Guide pin (K-wire) | CE | 01067803 | Guidance of screw trajectory |
| C-arm | GE | OEC 9800 plus | Guidance of screw trajectory |
| Portable X-ray | Siemens | Mobile XP hybrid | Guidance of screw trajectory |
| Pedicle probe | OtisBiotech | SPI-02-01 | Guidance of screw trajectory |
| Pedicle sounding device | OtisBiotech | SPI-03-01 | Guidance of screw trajectory |
| Pedicle screw | OtisBiotech | MS-40025 | |
| Posterior fixator systems | OtisBiotech | ||
| Rod | OtisBiotech | ROD-60140 | Rigid fixation between screws |
| Universal handle | OtisBiotech | SPI-08-01 | To fix the screws to the rod |
| Straight socket wrench | OtisBiotech | SPI-06-01 | To fix the screws to the rod |
| counter torque wrench | OtisBiotech | SPI-07-01 | To fix the screws to the rod |
| Bulb irrigation syringe | Hyupsug medical | HS-IR-140 | Irrigation |
| Silicone drain | Sewon medical | 2205-006 | To drain the fluid at the surgical site |
| 3.0 metric absorbable suture | Ethicon | BA1673H | Muscle suture |
| 2.0 metric nonabsorbable nylon suture | Ethicon | W1626T | Skin suture |
| Gauze | Kingphar Korea | KP120-06 | |
| Pentobarbital | Hanlim pharma | 645301221 | Euthanasia |
| Oscillating saw | Zimmer | Harvest spine | |
| Tower forceps | Aesculap | BF461R | Harvest spine |
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