1.Identification of invasive subpopulations using spatial transcriptome analysis in thyroid follicular tumors
Ayana SUZUKI ; Satoshi NOJIMA ; Shinichiro TAHARA ; Daisuke MOTOOKA ; Masaharu KOHARA ; Daisuke OKUZAKI ; Mitsuyoshi HIROKAWA ; Eiichi MORII
Journal of Pathology and Translational Medicine 2024;58(1):22-28
Background:
Follicular tumors include follicular thyroid adenomas and carcinomas; however, it is difficult to distinguish between the two when the cytology or biopsy material is obtained from a portion of the tumor. The presence or absence of invasion in the resected material is used to differentiate between adenomas and carcinomas, which often results in the unnecessary removal of the adenomas. If nodules that may be follicular thyroid carcinomas are identified preoperatively, active surveillance of other nodules as adenomas is possible, which reduces the risk of surgical complications and the expenses incurred during medical treatment. Therefore, we aimed to identify biomarkers in the invasive subpopulation of follicular tumor cells.
Methods:
We performed a spatial transcriptome analysis of a case of follicular thyroid carcinoma and examined the dynamics of CD74 expression in 36 cases.
Results:
We identified a subpopulation in a region close to the invasive area, and this subpopulation expressed high levels of CD74. Immunohistochemically, CD74 was highly expressed in the invasive and peripheral areas of the tumor.
Conclusions
Although high CD74 expression has been reported in papillary and anaplastic thyroid carcinomas, it has not been analyzed in follicular thyroid carcinomas. Furthermore, the heterogeneity of CD74 expression in thyroid tumors has not yet been reported. The CD74-positive subpopulation identified in this study may be useful in predicting invasion of follicular thyroid carcinomas.
2.Efficacy of Anti-NaV1.7 Antibody on the Sensory Nervous System in a Rat Model of Lumbar Intervertebral Disc Injury.
Daisuke NOJIMA ; Kazuhide INAGE ; Yoshihiro SAKUMA ; Jun SATO ; Sumihisa ORITA ; Kazuyo YAMAUCHI ; Yawara EGUCHI ; Nobuyasu OCHIAI ; Kazuki KUNIYOSHI ; Yasuchika AOKI ; Junichi NAKAMURA ; Masayuki MIYAGI ; Miyako SUZUKI ; Gou KUBOTA ; Takeshi SAINOH ; Kazuki FUJIMOTO ; Yasuhiro SHIGA ; Koki ABE ; Hirohito KANAMOTO ; Gen INOUE ; Kazuhisa TAKAHASHI ; Seiji OHTORI
Yonsei Medical Journal 2016;57(3):748-753
PURPOSE: The pathophysiology of discogenic low back pain is not fully understood. Tetrodotoxin-sensitive voltage-gated sodium (NaV) channels are associated with primary sensory nerve transmission, and the NaV1.7 channel has emerged as an analgesic target. Previously, we found increased NaV1.7 expression in dorsal root ganglion (DRG) neurons innervating injured discs. This study aimed to examine the effect of blocking NaV1.7 on sensory nerves after disc injury. MATERIALS AND METHODS: Rat DRG neurons innervating the L5/6 disc were labeled with Fluoro-Gold (FG) neurotracer. Twenty-four rats underwent intervertebral disc puncture (puncture group) and 12 rats underwent sham surgery (non-puncture group). The injury group was divided into a saline infusion group (puncture+saline group) and a NaV1.7 inhibition group, injected with anti-NaV1.7 antibody (puncture+anti-NaV1.7 group); n=12 per group. Seven and 14 days post-surgery, L1 to L6 DRGs were harvested and immunostained for calcitonin gene-related peptide (CGRP) (an inflammatory pain marker), and the proportion of CGRP-immunoreactive (IR) DRG neurons of all FG-positive neurons was evaluated. RESULTS: The ratio of CGRP-IR DRG neurons to total FG-labeled neurons in the puncture+saline group significantly increased at 7 and 14 days, compared with the non-puncture group, respectively (p<0.05). Application of anti-NaV1.7 into the disc significantly decreased the ratio of CGRP-IR DRG neurons to total FG-labeled neurons after disc puncture at 7 and 14 days (40% and 37%, respectively; p<0.05). CONCLUSION: NaV1.7 antibody suppressed CGRP expression in disc DRG neurons. Anti-NaV1.7 antibody is a potential therapeutic target for pain control in patients with lumbar disc degeneration.
Animals
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Antibodies
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Calcitonin Gene-Related Peptide/metabolism
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Disease Models, Animal
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Ganglia, Spinal/*metabolism
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Intervertebral Disc/*drug effects/*injuries
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Intervertebral Disc Degeneration/metabolism
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Low Back Pain/*physiopathology
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Lumbar Vertebrae/injuries
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Male
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NAV1.7 Voltage-Gated Sodium Channel/*metabolism
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Neurons/*metabolism
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Pain/metabolism
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Rats
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Rats, Sprague-Dawley
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Stilbamidines