1.Low-power laser irradiation promotes the proliferation and osteogenic differentiation of human periodontal ligament cells via cyclic adenosine monophosphate.
Jyun-Yi WU ; Chia-Hsin CHEN ; Li-Yin YEH ; Ming-Long YEH ; Chun-Chan TING ; Yan-Hsiung WANG
International Journal of Oral Science 2013;5(2):85-91
Retaining or improving periodontal ligament (PDL) function is crucial for restoring periodontal defects. The aim of this study was to evaluate the physiological effects of low-power laser irradiation (LPLI) on the proliferation and osteogenic differentiation of human PDL (hPDL) cells. Cultured hPDL cells were irradiated (660 nm) daily with doses of 0, 1, 2 or 4 J⋅cm(-2). Cell proliferation was evaluated by the 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide (MTT) assay, and the effect of LPLI on osteogenic differentiation was assessed by Alizarin Red S staining and alkaline phosphatase (ALP) activity. Additionally, osteogenic marker gene expression was confirmed by real-time reverse transcription-polymerase chain reaction (RT-PCR). Our data showed that LPLI at a dose of 2 J⋅cm(-2) significantly promoted hPDL cell proliferation at days 3 and 5. In addition, LPLI at energy doses of 2 and 4 J⋅cm(-2) showed potential osteogenic capacity, as it stimulated ALP activity, calcium deposition, and osteogenic gene expression. We also showed that cyclic adenosine monophosphate (cAMP) is a critical regulator of the LPLI-mediated effects on hPDL cells. This study shows that LPLI can promote the proliferation and osteogenic differentiation of hPDL cells. These results suggest the potential use of LPLI in clinical applications for periodontal tissue regeneration.
Adenine
;
analogs & derivatives
;
pharmacology
;
Adenylyl Cyclase Inhibitors
;
Alkaline Phosphatase
;
analysis
;
genetics
;
radiation effects
;
Anthraquinones
;
Bone Morphogenetic Protein 2
;
genetics
;
Calcium
;
metabolism
;
radiation effects
;
Cell Culture Techniques
;
Cell Differentiation
;
radiation effects
;
Cell Line
;
Cell Proliferation
;
radiation effects
;
Coloring Agents
;
Core Binding Factor Alpha 1 Subunit
;
genetics
;
Cyclic AMP
;
antagonists & inhibitors
;
radiation effects
;
Gene Expression
;
radiation effects
;
Humans
;
L-Lactate Dehydrogenase
;
analysis
;
Lasers, Semiconductor
;
Low-Level Light Therapy
;
instrumentation
;
Osteocalcin
;
genetics
;
Osteogenesis
;
genetics
;
radiation effects
;
Periodontal Ligament
;
cytology
;
radiation effects
;
Radiation Dosage
;
Real-Time Polymerase Chain Reaction
;
Reverse Transcriptase Polymerase Chain Reaction
;
Tetrazolium Salts
;
Thiazoles
2.Addressing the challenges of missed parathyroid glands in ultrasonography for secondary hyperparathyroidism:a retrospective observational study
Shen-En CHOU ; Cheng-Hsi YEH ; Shun-Yu CHI ; Fong-Fu CHOU ; Yi-Ju WU ; Yen-Hsiang CHANG ; Yi-Chia CHAN
Annals of Surgical Treatment and Research 2024;107(3):136-143
Purpose:
Preoperative localization plays an important role in secondary hyperparathyroidism (SHPT) surgery. The advantages of neck ultrasound (US) include high availability and low cost. However, the reported sensitivity of US is 54%– 76%, and the reason for missed parathyroid glands (PGs) on US has been rarely addressed.
Methods:
Fifty-four patients who were diagnosed with renal SHPT from September 2020 to March 2022 were included in this retrospective study. Preoperative localization included surgeon-oriented US and technetium 99m-sestamibi singlephoton emission CT (SPECT)/CT.
Results:
A total of 212 PGs were pathologically confirmed, resulting in a success rate of 96.2% (52 of 54). Using echo, 193 PGs (91.0%) were accurately localized, while 19 glands (9.0%) were not identified, including those in ectopic positions (n = 12, at thymus or intrathyroid or others), of small size (<1 cm, n = 6), or overlapping with an ipsilateral PG (n = 1). US accurately detected 4 PGs in 36 (66.7%) patients, while SPECT/CT localized 4 glands in 19 patients (35.2%). Although the number of US-detectable PGs was not associated with success rate, it showed a significant negative correlation with surgical time (rs = –0.459, P = 0.002).
Conclusion
US detected 4 glands in 66% of SHPT patients with a sensitivity of 90% for localization. Ectopic position and small size were the most common reasons for the failure to detect PG on US. Complete preoperative echo localization might shorten operating time.
3.Addressing the challenges of missed parathyroid glands in ultrasonography for secondary hyperparathyroidism:a retrospective observational study
Shen-En CHOU ; Cheng-Hsi YEH ; Shun-Yu CHI ; Fong-Fu CHOU ; Yi-Ju WU ; Yen-Hsiang CHANG ; Yi-Chia CHAN
Annals of Surgical Treatment and Research 2024;107(3):136-143
Purpose:
Preoperative localization plays an important role in secondary hyperparathyroidism (SHPT) surgery. The advantages of neck ultrasound (US) include high availability and low cost. However, the reported sensitivity of US is 54%– 76%, and the reason for missed parathyroid glands (PGs) on US has been rarely addressed.
Methods:
Fifty-four patients who were diagnosed with renal SHPT from September 2020 to March 2022 were included in this retrospective study. Preoperative localization included surgeon-oriented US and technetium 99m-sestamibi singlephoton emission CT (SPECT)/CT.
Results:
A total of 212 PGs were pathologically confirmed, resulting in a success rate of 96.2% (52 of 54). Using echo, 193 PGs (91.0%) were accurately localized, while 19 glands (9.0%) were not identified, including those in ectopic positions (n = 12, at thymus or intrathyroid or others), of small size (<1 cm, n = 6), or overlapping with an ipsilateral PG (n = 1). US accurately detected 4 PGs in 36 (66.7%) patients, while SPECT/CT localized 4 glands in 19 patients (35.2%). Although the number of US-detectable PGs was not associated with success rate, it showed a significant negative correlation with surgical time (rs = –0.459, P = 0.002).
Conclusion
US detected 4 glands in 66% of SHPT patients with a sensitivity of 90% for localization. Ectopic position and small size were the most common reasons for the failure to detect PG on US. Complete preoperative echo localization might shorten operating time.
4.Addressing the challenges of missed parathyroid glands in ultrasonography for secondary hyperparathyroidism:a retrospective observational study
Shen-En CHOU ; Cheng-Hsi YEH ; Shun-Yu CHI ; Fong-Fu CHOU ; Yi-Ju WU ; Yen-Hsiang CHANG ; Yi-Chia CHAN
Annals of Surgical Treatment and Research 2024;107(3):136-143
Purpose:
Preoperative localization plays an important role in secondary hyperparathyroidism (SHPT) surgery. The advantages of neck ultrasound (US) include high availability and low cost. However, the reported sensitivity of US is 54%– 76%, and the reason for missed parathyroid glands (PGs) on US has been rarely addressed.
Methods:
Fifty-four patients who were diagnosed with renal SHPT from September 2020 to March 2022 were included in this retrospective study. Preoperative localization included surgeon-oriented US and technetium 99m-sestamibi singlephoton emission CT (SPECT)/CT.
Results:
A total of 212 PGs were pathologically confirmed, resulting in a success rate of 96.2% (52 of 54). Using echo, 193 PGs (91.0%) were accurately localized, while 19 glands (9.0%) were not identified, including those in ectopic positions (n = 12, at thymus or intrathyroid or others), of small size (<1 cm, n = 6), or overlapping with an ipsilateral PG (n = 1). US accurately detected 4 PGs in 36 (66.7%) patients, while SPECT/CT localized 4 glands in 19 patients (35.2%). Although the number of US-detectable PGs was not associated with success rate, it showed a significant negative correlation with surgical time (rs = –0.459, P = 0.002).
Conclusion
US detected 4 glands in 66% of SHPT patients with a sensitivity of 90% for localization. Ectopic position and small size were the most common reasons for the failure to detect PG on US. Complete preoperative echo localization might shorten operating time.
5.Addressing the challenges of missed parathyroid glands in ultrasonography for secondary hyperparathyroidism:a retrospective observational study
Shen-En CHOU ; Cheng-Hsi YEH ; Shun-Yu CHI ; Fong-Fu CHOU ; Yi-Ju WU ; Yen-Hsiang CHANG ; Yi-Chia CHAN
Annals of Surgical Treatment and Research 2024;107(3):136-143
Purpose:
Preoperative localization plays an important role in secondary hyperparathyroidism (SHPT) surgery. The advantages of neck ultrasound (US) include high availability and low cost. However, the reported sensitivity of US is 54%– 76%, and the reason for missed parathyroid glands (PGs) on US has been rarely addressed.
Methods:
Fifty-four patients who were diagnosed with renal SHPT from September 2020 to March 2022 were included in this retrospective study. Preoperative localization included surgeon-oriented US and technetium 99m-sestamibi singlephoton emission CT (SPECT)/CT.
Results:
A total of 212 PGs were pathologically confirmed, resulting in a success rate of 96.2% (52 of 54). Using echo, 193 PGs (91.0%) were accurately localized, while 19 glands (9.0%) were not identified, including those in ectopic positions (n = 12, at thymus or intrathyroid or others), of small size (<1 cm, n = 6), or overlapping with an ipsilateral PG (n = 1). US accurately detected 4 PGs in 36 (66.7%) patients, while SPECT/CT localized 4 glands in 19 patients (35.2%). Although the number of US-detectable PGs was not associated with success rate, it showed a significant negative correlation with surgical time (rs = –0.459, P = 0.002).
Conclusion
US detected 4 glands in 66% of SHPT patients with a sensitivity of 90% for localization. Ectopic position and small size were the most common reasons for the failure to detect PG on US. Complete preoperative echo localization might shorten operating time.