1.LITTIP/Lgr6/HnRNPK complex regulates cementogenesis via Wnt signaling.
Tiancheng LI ; Han WANG ; Yukun JIANG ; Shuo CHEN ; Danyuan HUANG ; Zuping WU ; Xing YIN ; Chenchen ZHOU ; Yuyu LI ; Shujuan ZOU
International Journal of Oral Science 2023;15(1):33-33
Orthodontically induced tooth root resorption (OIRR) is a serious complication during orthodontic treatment. Stimulating cementum repair is the fundamental approach for the treatment of OIRR. Parathyroid hormone (PTH) might be a potential therapeutic agent for OIRR, but its effects still lack direct evidence, and the underlying mechanisms remain unclear. This study aims to explore the potential involvement of long noncoding RNAs (lncRNAs) in mediating the anabolic effects of intermittent PTH and contributing to cementum repair, as identifying lncRNA-disease associations can provide valuable insights for disease diagnosis and treatment. Here, we showed that intermittent PTH regulates cell proliferation and mineralization in immortalized murine cementoblast OCCM-30 via the regulation of the Wnt pathway. In vivo, daily administration of PTH is sufficient to accelerate root regeneration by locally inhibiting Wnt/β-catenin signaling. Through RNA microarray analysis, lncRNA LITTIP (LGR6 intergenic transcript under intermittent PTH) is identified as a key regulator of cementogenesis under intermittent PTH. Chromatin isolation by RNA purification (ChIRP) and RNA immunoprecipitation (RIP) assays revealed that LITTIP binds to mRNA of leucine-rich repeat-containing G-protein coupled receptor 6 (LGR6) and heterogeneous nuclear ribonucleoprotein K (HnRNPK) protein. Further co-transfection experiments confirmed that LITTIP plays a structural role in the formation of the LITTIP/Lgr6/HnRNPK complex. Moreover, LITTIP is able to promote the expression of LGR6 via the RNA-binding protein HnRNPK. Collectively, our results indicate that the intermittent PTH administration accelerates root regeneration via inhibiting Wnt pathway. The lncRNA LITTIP is identified to negatively regulate cementogenesis, which activates Wnt/β-catenin signaling via high expression of LGR6 promoted by HnRNPK.
Mice
;
Animals
;
Cementogenesis
;
Wnt Signaling Pathway
;
beta Catenin/metabolism*
;
Heterogeneous-Nuclear Ribonucleoprotein K/metabolism*
;
RNA, Long Noncoding/genetics*
;
Parathyroid Hormone
;
Receptors, G-Protein-Coupled/metabolism*
2.Cultivation and characterization of primary human parathyroid cells from patients with severe secondary hyperparathyroidism.
Pei Ting LI ; Gang LI ; Li Dan LIU ; Shan HUANG ; Jun LI ; Wei WU
Journal of Southern Medical University 2022;42(2):238-243
OBJECTIVE:
To establish an cell model of hyperparathyroidism by isolation, in vitro culture, and identification of parathyroid cells from patients with secondary hyperparathyroidism (SHPT).
METHODS:
The parathyroid gland tissues obtained from 10 patients with SHPT were dissociated by collagenase digestion for primary culture of the parathyroid cells. Morphological changes and growth characteristics of the cells were assessed by microscopic imaging and cell counting. The mRNA and protein expression levels of parathyroid hormone (PTH), calcium-sensing receptor (CaSR), and glial cells missing 2 (GCM2) in the primary and passaged cells were determined by immunofluorescence, qRT-PCR, and Western blotting.
RESULTS:
Primary cultures of parathyroid cells were successfully obtained. The cells exhibited a high expression of PTH shown by immunofluorescence assay and had a population doubling time of approximately 71.61 h. PTH secretion in the second-passage (P2) cells was significantly lower than that in the primary (P0) and first-passage (P1) cells (P < 0.001). Despite a significant downregulation of CaSR mRNA (P=0.017) and protein (P=0.006) in P1 cells as compared with P0 cells, no significant differences were found in mRNA and protein expressions of PTH or GCM2 between the two cell generations.
CONCLUSION
Primary cultures of parathyroid cells isolated from SHPT patients by collagenase digestion show similar biological properties to the cells in vivo.
Humans
;
Hyperparathyroidism, Secondary/metabolism*
;
Parathyroid Glands/metabolism*
;
Parathyroid Hormone
;
RNA, Messenger/metabolism*
;
Receptors, Calcium-Sensing/metabolism*
3.Identification of microRNAs targeting vitamin D receptor and their effect on parathyroid hormone secretion in secondary hyperparathyroidism.
Han JIANG ; Pei Ting LI ; Li Dan LIU ; Shan HUANG ; Jun LI ; Wei WU
Journal of Southern Medical University 2022;42(4):509-517
OBJECTIVE:
To identify the miRNAs targeting vitamin D receptor (VDR) gene and their effect on parathyroid hormone (PTH) secretion in secondary hyperparathyroidism.
METHODS:
Primary parathyroid cells with secondary hyperparathyroidism were isolated by collagenase digestion and cultured. The miRNAs targeting VDR were screened by bioinformatics methods and full transcriptome sequencing, and dual-luciferase reporter assay was used to verify the targeting relationship between VDR and the screened miRNA. The effects of overexpression or inhibition of the candidate miRNA on VDR mRNA and protein expressions and PTH secretion were evaluated using qRT-PCR and Western blotting. The expression levels of the candidate miRNAs and VDR mRNA in clinical specimens of parathyroid tissues were verified by qRT-PCR, and the expression of VDR protein was detected by immunohistochemistry.
RESULTS:
We successfully isolated primary parathyroid cells. Dual-luciferase reporter assay verified the targeting relationship of hsa-miR-149-5p, hsa-miR-221-5p, hsa-miR-222-3p, hsa-miR-29a-5p, hsa-miR-301a-5p, hsa-miR-873-5p, hsa-miR-93-3p with VDR, and among them, the overexpression of hsa-miR-149-5p and hsa-miR-301a-5p significantly increased PTH secretion in the parathyroid cells. In patients with secondary hyperparathyroidism, hsa-miR-149-5p was highly expressed in the parathyroid tissues (P=0.046), where the expressions of VDR mRNA (P=0.0267) and protein were both decreased.
CONCLUSION
The two miRNAs, hsa-miR-149-5p and hsa-miR-301a-5p, may promote the secretion of PTH in patients with secondary hyperparathyroidism by down-regulating the expression of VDR gene.
Humans
;
Hyperparathyroidism, Secondary/genetics*
;
MicroRNAs/metabolism*
;
Parathyroid Hormone
;
RNA, Messenger
;
Receptors, Calcitriol/genetics*
4.Cellular zinc deficiency inhibits the mineralized nodule formation and downregulates bone-specific gene expression in osteoblastic MC3T3-E1 cells.
Journal of Nutrition and Health 2018;51(5):379-385
PURPOSE: Zinc (Zn) is an essential trace element for bone mineralization and osteoblast function. We examined the effects of Zn deficiency on osteoblast differentiation and mineralization in MC3T3-E1 cells. METHODS: Osteoblastic MC3T3-E1 cells were cultured at concentration of 1 to 15 µM ZnCl2 (Zn− or Zn+) for 5, 15 and 25 days up to the calcification period. Extracellular matrix mineralization was detected by staining Ca and P deposits using Alizarin Red and von Kossa stain respectively, and alkaline phosphatase (ALP) activity was detected by ALP staining and colorimetric method. RESULTS: Extracellular matrix mineralization was decreased in Zn deficiency over 5, 15, and 25 days. Similarly, staining of ALP activity as the sign of an osteoblast differentiation, was also decreased by Zn deficiency over the same period. Interestingly, the gene expression of bone-related markers (ALP, PTHR; parathyroid hormone receptor, OPN; osteopontin, OC; osteocalcin and COLI; collagen type I), and bone-specific transcription factor Runx2 were downregulated by Zn deficiency for 5 or 15 days, however, this was restored at 25 days. CONCLUSION: Our data suggests that Zn deficiency inhibits osteoblast differentiation by retarding bone marker gene expression and also inhibits bone mineralization by decreasing Ca/P deposition as well as ALP activity.
Alkaline Phosphatase
;
Calcification, Physiologic
;
Collagen
;
Extracellular Matrix
;
Gene Expression*
;
Methods
;
Miners*
;
Osteoblasts*
;
Osteocalcin
;
Osteopontin
;
Receptor, Parathyroid Hormone, Type 1
;
Transcription Factors
;
Zinc*
5.Study on mechanism of Drynariae Rhizoma in treating osteoporosis with integrative pharmacology perspective.
Yi-Li ZHANG ; Bin TANG ; Jun-Jie JIANG ; Hao SHEN ; Yan-Ming XIE ; Xu WEI
China Journal of Chinese Materia Medica 2018;43(20):4125-4131
Drynariae Rhizoma has great significance in the clinical practice of osteoporosis treatment. Based on the perspective of integrative pharmacology, the study explored the mechanism of action of Drynariae Rhizoma in the treatment of osteoporosis. Six active components in Drynariae Rhizoma were obtained, mainly including glycosides and sterols. Taking the median of 2 times of "node connectivity" as the card value, the core node of the Chinese medicine target disease gene interaction network was selected. Based on this, three topological structural eigenvalues, such as "node connectivity" "node tightness" and "node connectivity" were calculated, thereby screening out four core targets of Drynariae Rhizoma treatment for osteoporosis, including thyroid parathyroid hormone 1 receptor (PTH1R), parathyroid hormone 2 receptor (PTH2R), calcitonin receptor gene (CALCR), and SPTBN1 gene (SPTBN1). Based on the gene ontology database GO and KEGG pathway database, the molecular function, intracellular localization, and biological reactions and pathways of proteins encoded by drug target genes were determined. Combined with enrichment calculation, it is predicted that osteoporosis may play a role in biosynthetic processes, such as circulatory system, nervous system, energy metabolism, prolactin signal pathway, GnRH signaling pathway, neurotrophic factor signaling pathway and other pathway. The conclusion of this study is certain with the existing research results, and the new target and new pathway could also be used as a theoretical basis for the further verification of osteoporosis.
Drugs, Chinese Herbal
;
pharmacology
;
Humans
;
Osteoporosis
;
drug therapy
;
Polypodiaceae
;
chemistry
;
Receptor, Parathyroid Hormone, Type 1
;
metabolism
;
Receptor, Parathyroid Hormone, Type 2
;
metabolism
;
Receptors, Calcitonin
;
metabolism
;
Rhizome
;
chemistry
;
Spectrin
;
metabolism
6.Effect of Ronghuang Granule on serum FGF23, FGFRs and Klotho in non-dialysis patients with CKD-MBD and kidney deficiency and damp-heat syndrome.
Shunjin HU ; Dong WANG ; Rui ZHANG ; Yuanru CAO ; Hua JIN ; Yanping MAO ; Ling WEI ; Kejun REN ; Xuelian ZHANG ; Yiping WANG
Journal of Southern Medical University 2018;38(12):1427-1432
OBJECTIVE:
To observe the effect of Ronghuang granule on serum fibroblast growth factor 23 (FGF23), fibroblast growth factor receptor (FGFRs) and Klotho protein levels in non-dialysis patients with chronic kidney disease-mineral and bone disorder (CKD-MBD) and kidney deficiency and damp heat syndrome.
METHODS:
Seventy non-dialysis CKD-MBD patients with kidney deficiency and dampness-heat syndrome were randomized into control group (=35) and treatment group (=35). All the patients were given routine treatment combined with traditional Chinese medicine retention enema, and the patients in the treatment group received additional Ronghuang granule treatment (3 times a day). After the 12-week treatments, the patients were examined for changes of TCM syndromes. Serum levels of Ca, P, parathyroid hormone (iPTH), FGF23, FGFRs and Klotho proteins were detected before and after treatment. These parameters were also examined in 20 healthy volunteers.
RESULTS:
Sixty-five patients completed the study, including 33 in the control group and 32 in the treatment group. The patients in the treatment group showed significantly better treatment responses than those in the control group ( < 0.05 or 0.01). At 4, 8, and 12 weeks of treatment, the patients in the treatment group had significantly lowered scores of TCM syndromes compared with the score before treatment ( < 0.05 or 0.01), while in the control group, significant reduction of the scores occurred only at 12 weeks ( < 0.05); at each of the time points, the treatment group had significantly greater reductions in the score than the control group ( < 0.01). Significant improvements in serum Ca, P and iPTH levels were observed at 4, 8, and 12 weeks in the treatment group ( < 0.05) but only at 12 weeks in the control group ( < 0.05). The patients in the control and treatment groups all showed elevated serum levels of FGF23, FGFRs and Klotho protein compared with the normal subjects ( < 0.01); FGF23, FGFRs and Klotho levels were significantly reduced in the treatment group ( < 0.05) but remained unchanged in the control group (>0.05), showing significant differences between the two groups.
CONCLUSIONS
Ronghuang granule improves the clinical symptoms of non-dialysis CKD-MBD patients with kidney deficiency and dampness heat syndrome by reducing serum levels of FGF23, FGFRs and Klotho, improving calcium and phosphorus metabolism disorder, and inhibiting secondary hyperparathyroidism.
Calcium
;
blood
;
Chronic Kidney Disease-Mineral and Bone Disorder
;
blood
;
therapy
;
Drugs, Chinese Herbal
;
pharmacology
;
Enema
;
Fibroblast Growth Factors
;
blood
;
Glucuronidase
;
blood
;
Humans
;
Parathyroid Hormone
;
blood
;
Phosphorus
;
blood
;
Receptors, Fibroblast Growth Factor
;
blood
;
Renal Insufficiency, Chronic
;
blood
;
therapy
;
Sweating Sickness
;
blood
;
therapy
;
Syndrome
7.Calcemic response to burns differs between adults and children: A review of the literature.
Gordon L KLEIN ; Debra A BENJAMIN ; David N HERNDON
Osteoporosis and Sarcopenia 2017;3(4):170-173
OBJECTIVES: The calcemic and parathyroid hormone (PTH) responses to severe burn injury appear to differ between children and adults. In our limited studies children exhibited hypocalcemic hypoparathyroidism consistent with up-regulation of the parathyroid calcium-sensing receptor (CaSR) while adults did not, suggesting a developmental cutoff in cytokine-mediated up-regulation of the CaSR. This difference may be clinically important as published studies indicate that extracellular calcium (Ca) may stimulate the inflammatory response. The aim of this study was to examine the existing literature on burns to see if the differences between pediatric and adult calcemic and PTH responses to burn supported our findings providing stronger evidence to support this developmental difference. METHODS: We reviewed the National Library of Medicine database using the terms burns, PTH and ionized calcium and found 9 articles from 8 different medical centers; one was eliminated due to mixing of adults and children. RESULTS: There were 245 burn patients reported from the literature, 178 pediatric and 67 adults. The data are mostly consistent with our reported findings. Of the 10 pediatric patients with severe burns that we studied, mean ionized Ca concentration was below the lower limit of normal of 1.10 mM. The 67 adult burn patients reported in the literature had a mean blood ionized Ca concentration that was within the adult normal range or was lower than normal but with secondary hyperparathyroidism. Moreover, serum PTH concentrations were uniformly low in the 178 children in the burn literature but normal or mildly elevated in the 67 adults. CONCLUSIONS: These results support the hypothesis that the difference between pediatric and adult victims is consistent with an age-related CaSR response to cytokine stimulation and may be consistent with a lower level of inflammation in children. Ionized Ca and PTH might serve as possible therapeutic targets to lower the inflammatory response in burn victims.
Adult*
;
Burns*
;
Calcium
;
Child*
;
Humans
;
Hyperparathyroidism, Secondary
;
Hypoparathyroidism
;
Inflammation
;
National Library of Medicine (U.S.)
;
Parathyroid Hormone
;
Receptors, Calcium-Sensing
;
Reference Values
;
Up-Regulation
8.The Role of Vitamin D in Menopausal Medicine.
Mijin KIM ; Tae Hee KIM ; Hae Hyeog LEE ; Heung Yeol KIM ; Min Jung OH
Kosin Medical Journal 2016;31(2):97-102
Menopause is the time at which menstruation stops in women. After menopause, women are more susceptible to some diseases, especially osteoporosis and cardiovascular disease. Vitamin D has a protective effect against osteoporosis by facilitating the absorption of calcium and affecting parathyroid hormone. Vitamin D also affects cardiovascular function by lowering the blood pressure, which affects the renin–angiotensin system and alters the low-density lipoprotein receptor activity. This paper discusses supplemental vitamin D in postmenopausal women with osteoporosis and cardiovascular disease.
Absorption
;
Blood Pressure
;
Calcium
;
Cardiovascular Diseases
;
Female
;
Humans
;
Menopause
;
Menstruation
;
Osteoporosis
;
Parathyroid Hormone
;
Receptors, Lipoprotein
;
Vitamin D*
;
Vitamins*
9.Autosomal dominant hypocalcemia with Bartter syndrome due to a novel activating mutation of calcium sensing receptor, Y829C.
Keun Hee CHOI ; Choong Ho SHIN ; Sei Won YANG ; Hae Il CHEONG
Korean Journal of Pediatrics 2015;58(4):148-153
The calcium sensing receptor (CaSR) plays an important role in calcium homeostasis. Activating mutations of CaSR cause autosomal dominant hypocalcemia by affecting parathyroid hormone secretion in parathyroid gland and calcium resorption in kidney. They can also cause a type 5 Bartter syndrome by inhibiting the apical potassium channel in the thick ascending limb of the loop of Henle in the kidney. This study presents a patient who had autosomal dominant hypocalcemia with Bartter syndrome due to an activating mutation Y829C in the transmembrane domain of the CaSR. Symptoms of hypocalcemia occurred 12 days after birth and medication was started immediately. Medullary nephrocalcinosis and basal ganglia calcification were found at 7 years old and at 17 years old. Three hypercalcemic episodes occurred, one at 14 years old and two at 17 years old. The Bartter syndrome was not severe while the serum calcium concentration was controlled, but during hypercalcemic periods, the symptoms of Bartter syndrome were aggravated.
Bartter Syndrome*
;
Basal Ganglia
;
Calcium
;
Extremities
;
Homeostasis
;
Humans
;
Hypocalcemia*
;
Kidney
;
Loop of Henle
;
Nephrocalcinosis
;
Parathyroid Glands
;
Parathyroid Hormone
;
Parturition
;
Potassium Channels
;
Receptors, Calcium-Sensing*
10.Effects of experimentally created unilateral anterior crossbite prosthesis on the expression of parathyroid hormone-related peptide and parathyroid hormone receptor-1 in mandibular condylar cartilage of rat.
Min GUO ; Jing ZHANG ; Lei LU ; Yanli WANG ; Mian ZHANG ; Meiqing WANG
West China Journal of Stomatology 2013;31(2):122-126
OBJECTIVETo study the effects of experimentally created unilateral anterior crossbite prosthesis on the expression of parathyroid hormone-related peptide (PTHrP) and parathyroid hormone receptor-1 (PTH1R) in mandibular condylar cartilage of SD rat.
METHODSIn experimental groups, the unilateral anterior crossbite metal prosthesis was cemented to the left incisors of the maxilla and mandible of 6-week-old SD rats, respectively. Animals were sacrificed at 2, 4, 8 weeks. Hematoxylin-eosin (HE) staining were carried out for studying the morphological changes of the condylar cartilage. Immunohistochemical staining and real-time polymerase chain reaction (PCR) analysis were performed to detect the levels of expression of PTHrP and PTH1R in the condylar cartilages.
RESULTSThe obvious degenerative changes were found in the condylar cartilages in experimental group at 8 weeks. Comparing to the control group, the expression of PTHrP mRNA (P < 0.01) and protein(P < 0.01) in the experimental group were increased, whereas PTH1R mRNA (P < 0.01) and protein (P < 0.01) levels were decreased.
CONCLUSIONThe expression of PTHrP was increased in the condylar cartilage of rat with unilateral anterior crossbite metal prosthesis but its effects might be limited because of decreased expression of PTH1R in the condylar cartilage. The low level expression of PTH1R should be a part of the constitution of the molecular pathomechanism of temporomandibular joint osteoarthritis (TMJOA)-like lesion.
Animals ; Cartilage ; Cartilage, Articular ; Incisor ; Malocclusion ; Mandible ; Mandibular Condyle ; Osteoarthritis ; Parathyroid Hormone-Related Protein ; Prostheses and Implants ; Rats ; Rats, Sprague-Dawley ; Receptor, Parathyroid Hormone, Type 1 ; Temporomandibular Joint

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