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* These authors contributed equally
To date, the development of parathyroid gland (PG) identification methods is limited by the lack of animal models in preclinical research. Here, we establish a simple and effective rat model for intraoperative PG imaging and evaluate its effectiveness by using iron oxide nanoparticles as a novel PG contrast agent.
Parathyroid gland (PG) identification is a critical unmet need in thyroidectomy. The identification of the PG is challenging in thyroid surgery as it is similar in color to the thyroid gland. The lack of effective animal models in preclinical research is a severe limitation for the development of PG identification techniques. This protocol allows for the establishment of a simple and effective rat model for PG identification. In this model, black iron oxide nanoparticles (IONPs) are injected locally in the thyroid gland and rapidly diffuse within the thyroid gland but not the PG. A negatively stained PG and a positively stained thyroid gland can be easily identified by the naked eye without requiring external microscopes. The position of the PG can be identified by increasing the color contrast between the thyroid gland and the PG, based on the color of the black IONPs. This rat model is low-cost and convenient for PG identification, and the IONPs are a novel PG contrast agent.
Parathyroid gland (PG) is small, oval-shaped endocrine glands located in the neck of humans and other vertebrates, which produce and secrete parathyroid hormones to regulate and balance calcium and phosphorus levels in the blood and in bones1. Humans usually have two pairs of PG located behind the thyroid gland lobes in variable locations; the size of human PG typically measures 6 mm x 4 mm x 2 mm, with a weight of approximately 35-40 mg2. Removal or damage of the PG causes hypoparathyroidism (HP), an endocrine disorder characterized by hypocalcemia and low or undetectable levels of parathyroid hormon....
All animal studies have been approved by the Institutional Animal Care and Use Committee (IACUC) of the Institute of Basic Medicine and Cancer, Chinese Academy of Sciences. This is a non-survival surgery.
1. Animal
2. Anesthesia
In this animal model, we surgically incised the neck of a SD rat to expose the trachea, larynx, and surrounding tissues. Then, the thyroid gland was visually located on both sides of the trachea; it is butterfly-shaped and approximately 3 mm x 5 mm in size. A pair of PG are usually located in the upper part of the thyroid gland, and their color is very similar to that of the thyroid gland lobes, making it extremely difficult to distinguish them with the naked eye (Figure 1).
<.......We demonstrate an IONPs-guided negative imaging technique of rat PG using black IONPs, which were injected locally in the center of the thyroid gland and diffused within the thyroid gland but not the PG. It enables clear identification of the PG with naked eyes without the aid of any microscope. Although transgenic mice with green fluorescent protein selectively expressed in the PG have been reported13, the model described in this paper is more straightforward to perform. It only ta.......
P.G. and W.Z. are co-inventors of a patent application filed by the Cancer Hospital of the University of Chinese Academy of Sciences (Zhejiang Cancer Hospital) based on the project. The other authors declare no conflicts of interest.
This study was supported by the National Natural Science Foundation of China (NSFC) (82172598), the Natural Science Foundation of Zhejiang Province, China (LZ22H310001), the 551 Health Talent Training Project of Health Commission of Zhejiang Province, China, and the Medical and Health Science and Technology Project of Zhejiang Province, China (2021KY110).
....Name | Company | Catalog Number | Comments |
alcohol | Li feng | 9400820067 | |
anesthesia machine | RWD Company | R520IE | Machine number |
blade | Daopian | TB-JZ-10# | |
cylindrical pillow | made by ourselves | ||
depilatory cream | Nair | TMG-001 | |
electronic scale | Hong xingda | CN-HXD2 | |
eosin | Thermo Fisher (Waltham, USA). | C0105S-2 | |
erythromycin | Shuang ji (Beijing, China) | 200409 | |
gauze | Fulanns | YY0331-2006 | |
heating pad | Johon (ShenZhen,China) | JH-36-2006 | |
hematoxylin | Thermo Fisher (Waltham, USA). | C0105S-1 | |
insulin injection needle | Jiangyin NanquanMacromolecule | 20170702 | |
iodophor cotton ball | HOYON | 19-6007 | |
iron oxide nanoparticle solution | Zhongke Leiming Technology (Beijing, China) | Mag9110-05 | |
isoflurane | Sigma Aldrich (St Louis USA). | 21112801 | |
needle holder | Meijun | MH0587 | |
operation table | BioJane | BJ-P-M | |
paraformaldehyde solution | Biosharp | 21269333 | |
rubber | G-CLONE | XT41050 | |
scanning machine | Olympus | Slideview VS200 | |
surgical forceps | Suping | SPHC-0676 | |
surgical knife handle | Aladdin | S3052-06-1EA | |
surgical retractor | TOCYTO | 18-4010 | |
surgical scissors | Suping | SPHC-0795 | |
surgical towel | Along technology | YCKJ-RJ-036205 | |
suture | Ethicon | SA84G | |
suture with needle | Jinhuan (Shanghai,China) | F301 | |
vascular forceps | Along technology | YCKJ-RJ-016218 | |
Water Bath-Slide Drier | Hua su (Jinhua, China) | HS-1145 |
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