Tianjin Medical Journal ›› 2023, Vol. 51 ›› Issue (8): 830-833.doi: 10.11958/20221341
• Experimental Research • Previous Articles Next Articles
WANG Juan(), ZHAO Yuxia, RU Yawei, WANG Zihan, FU Ting, LI Guang△(
)
Received:
2022-09-01
Revised:
2023-02-28
Published:
2023-08-15
Online:
2023-08-10
Contact:
△E-mail: WANG Juan, ZHAO Yuxia, RU Yawei, WANG Zihan, FU Ting, LI Guang. Study of effects of metformin on osteogenic differentiation of mesenchymal stem cells and bone tissue regeneration in type I osteogenesis imperfecta mice[J]. Tianjin Medical Journal, 2023, 51(8): 830-833.
CLC Number:
基因 名称 | 引物序列(5′→3′) | 产物大小 (bp) |
---|---|---|
Bglap | 上游:CTGACCTCACAGATGCCAAGCC | 191 |
下游:CATACTGGTCTGATAGCTCGTCACAAG | ||
Col1a1 | 上游:GACAGGCGAACAAGGTGACAGAG | 85 |
下游:CAGGAGAACCAGGAGAACCAGGAG | ||
Runx2 | 上游:GCAGCAGCAGCAGCAGGAG | 181 |
下游:GCACGGAGCACAGGAAGTTGG | ||
BMP2 | 上游:AACACCGTGCGCAGCTTCCATC | 142 |
下游:CGGAAGATCTGGAGTTCTGCAG | ||
GAPDH | 上游:CATCACTGCCACCCAGAAGACTG | 152 |
下游:ATGCCAGTGAGCTTCCCGTTCAG |
Tab.1 Primer sequence for qPCR
基因 名称 | 引物序列(5′→3′) | 产物大小 (bp) |
---|---|---|
Bglap | 上游:CTGACCTCACAGATGCCAAGCC | 191 |
下游:CATACTGGTCTGATAGCTCGTCACAAG | ||
Col1a1 | 上游:GACAGGCGAACAAGGTGACAGAG | 85 |
下游:CAGGAGAACCAGGAGAACCAGGAG | ||
Runx2 | 上游:GCAGCAGCAGCAGCAGGAG | 181 |
下游:GCACGGAGCACAGGAAGTTGG | ||
BMP2 | 上游:AACACCGTGCGCAGCTTCCATC | 142 |
下游:CGGAAGATCTGGAGTTCTGCAG | ||
GAPDH | 上游:CATCACTGCCACCCAGAAGACTG | 152 |
下游:ATGCCAGTGAGCTTCCCGTTCAG |
组别 | BMP2 | Runx2 | Col1a1 | Bglap |
---|---|---|---|---|
成骨诱导组 | 1.10±0.10 | 0.93±0.12 | 1.10±0.10 | 1.06±0.05 |
实验组 | 2.53±0.42 | 1.68±0.04 | 1.82±0.11 | 2.01±0.36 |
t | 5.798** | 10.583** | 8.519** | 4.531** |
Tab.2 Comparison of expression levels of osteoblast-associated genes in oimADSCs between the two groups
组别 | BMP2 | Runx2 | Col1a1 | Bglap |
---|---|---|---|---|
成骨诱导组 | 1.10±0.10 | 0.93±0.12 | 1.10±0.10 | 1.06±0.05 |
实验组 | 2.53±0.42 | 1.68±0.04 | 1.82±0.11 | 2.01±0.36 |
t | 5.798** | 10.583** | 8.519** | 4.531** |
组别 | BV/TV | Tb. N/mm-1 | Tb. Th/mm |
---|---|---|---|
对照组 | 2.06±0.31 | 0.55±0.05 | 0.042±0.003 |
二甲双胍组 | 6.17±1.00 | 1.48±0.15 | 0.051±0.002 |
t | 9.595** | 14.461** | 6.320** |
Tab.3 Comparison of trabecular bone parameters between the two groups
组别 | BV/TV | Tb. N/mm-1 | Tb. Th/mm |
---|---|---|---|
对照组 | 2.06±0.31 | 0.55±0.05 | 0.042±0.003 |
二甲双胍组 | 6.17±1.00 | 1.48±0.15 | 0.051±0.002 |
t | 9.595** | 14.461** | 6.320** |
[1] | FORLINO A, MARINI J C. Osteogenesis imperfecta[J]. Lancet, 2016, 387(10028):1657-1671. doi:10.1016/S0140-6736(15)00728-X. |
[2] | MARINI J C, FORLINO A, BACHINGER H P, et al. Osteogenesis imperfecta[J]. Nat Rev Dis Primers, 2017, 3:17052. doi:10.1038/nrdp.2017.52. |
[3] | SILLENCE D O, RIMOIN D L. Classification of osteogenesis imperfect[J]. Lancet, 1978, 1(8072):1041-1042. doi:10.1016/s0140-6736(78)90763-8. |
[4] | BOTOR M, FUS-KUJAWA A, UROCZYNSKAR M, et al. Osteogenesis imperfecta:current and prospective therapies[J]. Biomolecules, 2021, 11(10):1493. doi:10.3390/biom11101493. |
[5] | NIJHUIS W, VERHOEF M, VAN B C, et al. Fractures in osteogenesis imperfecta:pathogenesis,treatment,rehabilitation and prevention[J]. Children (Basel), 2022, 9(2):268. doi:10.3390/children9020268. |
[6] | ZHAO X, PATHAK J L, HUANG W, et al. Metformin enhances osteogenic differentiation of stem cells from human exfoliated deciduous teeth through AMPK pathway[J]. J Tissue Eng Regen Med, 2020, 14(12):1869-1879. doi:10.1002/term.3142. |
[7] | SUN J, LIU Q, HE H, et al. Metformin treatment is associated with an increase in bone mineral density in type 2 diabetes mellitus patients in China:a retrospective single center study[J]. Diabetes Metab, 2022, 48(5):101350. doi:10.1016/j.diabet.2022.101350. |
[8] | BAHRAMBEIGI S, YOUSEFI B, RAHIMI M, et al. Metformin:an old antidiabetic drug with new potentials in bone disorders[J]. Biomed Pharmacother, 2019, 109:1593-1601. doi:10.1016/j.biopha.2018.11.032. |
[9] | SMIESZEK A, TOMASZEWSKI K A, KORNICKA K, et al. Metformin promotes osteogenic differentiation of adipose-derived stromal cells and exerts pro-osteogenic effect stimulating bone regeneration[J]. J Clin Med, 2018, 7(12):482. doi:10.3390/jcm7120482. |
[10] | LIU Y, WANG J H, LIU S, et al. A novel transgenic murine model with persistently brittle bones simulating osteogenesis imperfecta type I[J]. Bone, 2019, 127:646-655. doi:10.1016/j.bone.2019.07.021. |
[11] | 程胜承, 刘义, 景亚青, 等. 羟基磷灰石诱导脂肪间充质干细胞成骨分化的实验研究[J]. 天津医药, 2018, 46(7):687-691. |
CHENG S C, LIU Y, JING Y Q, et al. Experimental study on osteogenic differentiation of adipose-derived mesenchymal stem cells induced by hydroxyapatite[J]. Tianjin Med J, 2018, 46(7):687-691. doi:10.11958/20180604. | |
[12] | GLORIEUX F H, BISHOP N J, PLOTKIN H, et al. Cyclic administration of pamidronate in children with severe osteogenesis imperfecta[J]. N Engl J Med, 1998, 339(14):947-952. doi:10.1056/NEJM199810013391402. |
[13] | SCHINDELER A, LEE L R, O'DONOHUE A K, et al. Curative cell and gene therapy for osteogenesis imperfecta[J]. J Bone Miner Res, 2022, 37(5):826-836. doi:10.1002/jbmr.4549. |
[14] | CLAEYS L, STORONI S, EEKHOFF M, et al. Collagen transport and related pathways in osteogenesis imperfecta[J]. Hum Genet, 2021, 140(8):1121-1141. doi:10.1007/s00439-021-02302-2. |
[15] | CHEN Y, YANG S, LOVISA S, et al. Type-Ⅰ collagen produced by distinct fibroblast lineages reveals specific function during embryogenesis and osteogenesis imperfecta[J]. Nat Commun, 2021, 12(1):7199. doi:10.1038/s41467-021-27563-3. |
[16] | FLORY J, LIPSKA K. Metformin in 2019[J]. JAMA, 2019, 321(19):1926-1927. doi:10.1001/jama.2019.3805. |
[17] | CHAI M, JIANG M, VERGNES L, et al. Stimulation of hair growth by small molecules that activate autophagy[J]. Cell Rep, 2019, 27:3413-3421. doi:10.1016/j.celrep.2019.05.070. |
[18] | NEUMANN B, BAROR R, ZHAO C, et al. Metformin restores CNS remyelination capacity by rejuvenating aged stem cells[J]. Cell Stem Cell, 2019, 25:473-485. doi:10.1016/j.stem.2019.08.015. |
[19] | STUNES A K, ERBEN R G, SCHULER C, et al. Skeletal effects of plyometric exercise and metformin in ovariectomized rats[J]. Bone, 2020, 132:115193. doi:10.1016/j.bone.2019.115193. |
[20] | LOH D K W, KADIRVELU A, PAMIDI N. Effects of metformin on bone mineral density and adiposity-associated pathways in animal models with type 2 diabetes mellitus:a systematic review[J]. J Clin Med, 2022, 11(14):4193-4212. doi:10.3390/jcm11144193. |
[21] | KANAZAWA I, YAMAGUCHI T, YANO S, et al. Metformin enhances the differentiation and mineralization of osteoblastic MC3T3-E1 cells via AMP kinase activation as well as eNOS and BMP-2 expression[J]. J Bioehem Biophys Res Commun, 2008, 375:414-419. doi:10.1016/j.bbrc.2008.08.034. |
[22] | MALTA F S, GARCIA R P, AZARIAS J S, et al. Impact of hyperglycemia and treatment with metformin on ligature-induced bone loss,bone repair and expression of bone metabolism transcription factors[J]. PLoS One, 2020, 15(8):e0237660. doi:10.1371/journal.pone.0237660. |
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