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primary human osteoblasts  (PromoCell)


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    PromoCell primary human osteoblasts
    Primary Human Osteoblasts, supplied by PromoCell, used in various techniques. Bioz Stars score: 96/100, based on 295 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/primary+human+osteoblasts/Human+Osteoblasts/pmc13115574-165-0-4
    Average 96 stars, based on 295 article reviews
    primary human osteoblasts - by Bioz Stars, 2026-09
    96/100 stars

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    Related Articles

    Cell Culture:

    Article Title: Cellular Crosstalk Within Magnetically Functionalised Hydrogel-Composite Scaffolds for Enhanced Vascularisation and Bone Repair
    Article Snippet: Primary human bone mesenchymal stem cells (hBMSCs, PromoCell, Heidelberg, Germany) were cultured in Dulbecco’s modified Eagle’s medium (DMEM, Sigma, St. Louis, MO, USA) supplemented with 10% fetal bovine serum (FBS, Sigma) and 1% penicillin-streptomycin (Sigma). .. Primary human osteoblasts (HOBs, PromoCell) were cultured in DMEM supplemented with 10% FBS, 1% penicillin-streptomycin, 2% 4-(2-hydroxyethyl)-1-piperazineethane sulfonic acid (HEPES, Sigma), 1% minimal essential medium, 20 mM L-glutamine, and 0.15 mg/mL L-ascorbic acid powder. .. Red fluorescent protein (RFP)-tagged human umbilical vein endothelial cells (HUVECs, 2Bscientific, Kirtlington, Oxfordshire, UK) were cultured in endothelial cell growth medium 2 with Supplement Mix (EGM2, PromoCell).

    Article Title: The prohibitin ligand IN44 decreases Porphyromonas gingivalis mediated inflammation.
    Article Snippet: Human oral epithelial cells (TERT-2 OKF-6) (BWH Cell Culture and Microscopy Core, Boston, MA, USA) were cultured in Keratinocyte-SFM medium (Life Technologies, Saint-Aubin, France). .. Primary human osteoblasts (Promocell, Heidelberg, Germany) were cultured in Osteoblast Growth Medium with Osteoblast Growth Medium Supplement Mix (Promocell, Heidelberg, Germany). .. Primary gingival fibroblasts were purchased from American Type Culture Collection (ATCC, Manassas, VA, USA) and cultured in DMEM GlutaMAXTM supplemented with 10% fetal bovine serum (Life Technologies, Saint-Aubin, France).

    Article Title: Polyelectrolytes Are Effective Cryoprotectants for Extracellular Vesicles.
    Article Snippet: Human umbilical cord mesenchymal stem cells (hUC-MSCs) were isolated with explants method according to the previously described protocol9 and expanded in DMEM/F12 (SigmaAldrich, Saint Louis, MO, USA) medium with 10% of fetal bovine serum (FBS; Sigma-Aldrich). .. Primary human osteoblasts (HOBs; PromoCell, Heidelberg, Germany) were cultured in dedicated Osteoblast Growth Medium (OGM; PromoCell). ..

    Article Title: Polyelectrolytes Are Effective Cryoprotectants for Extracellular Vesicles
    Article Snippet: Human umbilical cord mesenchymal stem cells (hUC-MSCs) were isolated with explants method according to the previously described protocol and expanded in DMEM/F12 (Sigma-Aldrich, Saint Louis, MO, USA) medium with 10% of fetal bovine serum (FBS; Sigma-Aldrich). .. Primary human osteoblasts (HOBs; PromoCell, Heidelberg, Germany) were cultured in dedicated Osteoblast Growth Medium (OGM; PromoCell). ..

    Article Title: Transgene-Free Direct Osteogenic Reprogramming Using Cell-Permeable Octamer-Binding Transcription Factor 4/Core-Binding Factor β Fusion Proteins
    Article Snippet: Osteogenic reprogramming was induced using osteogenic medium (OM), consisting of DMEM supplemented with 10 mM β-glycerol phosphate (Sigma-Aldrich, St. Louis, MO, USA), 50 μg/ml ascorbic acid (Sigma-Aldrich), and 100 nM dexamethasone (Sigma-Aldrich). .. Primary human osteoblasts (hOBs; PromoCell, Heidelberg, Germany) were cultured in Osteoblast Growth Medium (PromoCell) according to the manufacturer’s instructions. ..

    Article Title: The prohibitin ligand IN44 decreases Porphyromonas gingivalis mediated inflammation
    Article Snippet: Human oral epithelial cells (TERT-2 OKF-6) (BWH Cell Culture and Microscopy Core, Boston, MA, USA) were cultured in Keratinocyte-SFM medium (Life Technologies, Saint-Aubin, France). .. Primary human osteoblasts (Promocell, Heidelberg, Germany) were cultured in Osteoblast Growth Medium with Osteoblast Growth Medium Supplement Mix (Promocell, Heidelberg, Germany). .. Primary gingival fibroblasts were purchased from American Type Culture Collection (ATCC, Manassas, VA, USA) and cultured in DMEM GlutaMAXTM supplemented with 10% fetal bovine serum (Life Technologies, Saint-Aubin, France).

    other:

    Article Title: Microfluidic Osteoarthritis-on-a-Chip: Modeling Human Joint Inflammation
    Article Snippet: Primary human osteoblasts, chondrocytes, fibroblasts, and macrophages used in this study were obtained from commercial sources (PromoCell and ATCC).

    Proximity Ligation Assay:

    Article Title: Osteogenic and Biocompatibility Potential of Polylactic Acid-Based Materials: A Systematic Review of Human Primary Cells Studies
    Article Snippet: Terriza, A. et al. (2014) [ ] , Normal Human Osteoblasts (HOB ® ). Origin: Promocell (commercial) , PLA Type: PLGA Modification: Coated with a TiO2 nanolayer (10–100 nm) by PECVD , Control Group(s): Uncoated PLGA , Adhesion/Morphology (Phase contrast, Immunofluorescence): The TiO 2 coating significantly improved cell spreading, elongation, and the development of focal adhesions ( p < 0.001), in a layer thickness-dependent manner , The deposition of TiO 2 by PECVD is a valuable tool to increase the bioactivity of PLGA membranes, enhancing the osteoblastic response , The authors declare no conflict of interest.. .. Terriza, A. et al. (2014) [ ] , Primary Human Osteoblasts (HOB). Origin: Promocell (commercial) , PLA Type: PLGA Modification: Coated with a thin film (15 nm) of SiO 2 by PECVD , Control Group(s): Uncoated PLGA , Adhesion/Morphology (Phase contrast, Immunofluorescence): Improved cell spreading, elongation, and intercellular contacts on SiO 2 -coated membranes. Significant increase in focal adhesions ( p < 0.001) , The SiO 2 coating by PECVD is a biocompatible method that elicits a significant osteoblastic response on PLGA membranes , The authors declare that there is no conflict of interests.. .. Raghavendran, H.R.B. et al. (2016) [ ] , Primary human mesenchymal stromal cells (hMSCs). Origin: Bone marrow of healthy donors , PLA Type: PLLA Modification: PLLA/Col/HA, PLLA/HA, PLLA/Col scaffolds, treated with PDGF , Control Group(s): Scaffolds not treated with PDGF , Differentiation (Alizarin Red, qPCR): PDGF treatment of the PLLA-based scaffolds produced rapid and enhanced osteogenic differentiation, with greater mineralization and OCN expression ( p < 0.05) , PDGF interacts synergistically with the surface of PLLA-based scaffolds to produce rapid osteogenic differentiation of hMSCs , The authors declare no competing financial interest..

    Modification:

    Article Title: Osteogenic and Biocompatibility Potential of Polylactic Acid-Based Materials: A Systematic Review of Human Primary Cells Studies
    Article Snippet: Terriza, A. et al. (2014) [ ] , Normal Human Osteoblasts (HOB ® ). Origin: Promocell (commercial) , PLA Type: PLGA Modification: Coated with a TiO2 nanolayer (10–100 nm) by PECVD , Control Group(s): Uncoated PLGA , Adhesion/Morphology (Phase contrast, Immunofluorescence): The TiO 2 coating significantly improved cell spreading, elongation, and the development of focal adhesions ( p < 0.001), in a layer thickness-dependent manner , The deposition of TiO 2 by PECVD is a valuable tool to increase the bioactivity of PLGA membranes, enhancing the osteoblastic response , The authors declare no conflict of interest.. .. Terriza, A. et al. (2014) [ ] , Primary Human Osteoblasts (HOB). Origin: Promocell (commercial) , PLA Type: PLGA Modification: Coated with a thin film (15 nm) of SiO 2 by PECVD , Control Group(s): Uncoated PLGA , Adhesion/Morphology (Phase contrast, Immunofluorescence): Improved cell spreading, elongation, and intercellular contacts on SiO 2 -coated membranes. Significant increase in focal adhesions ( p < 0.001) , The SiO 2 coating by PECVD is a biocompatible method that elicits a significant osteoblastic response on PLGA membranes , The authors declare that there is no conflict of interests.. .. Raghavendran, H.R.B. et al. (2016) [ ] , Primary human mesenchymal stromal cells (hMSCs). Origin: Bone marrow of healthy donors , PLA Type: PLLA Modification: PLLA/Col/HA, PLLA/HA, PLLA/Col scaffolds, treated with PDGF , Control Group(s): Scaffolds not treated with PDGF , Differentiation (Alizarin Red, qPCR): PDGF treatment of the PLLA-based scaffolds produced rapid and enhanced osteogenic differentiation, with greater mineralization and OCN expression ( p < 0.05) , PDGF interacts synergistically with the surface of PLLA-based scaffolds to produce rapid osteogenic differentiation of hMSCs , The authors declare no competing financial interest..

    Control:

    Article Title: Osteogenic and Biocompatibility Potential of Polylactic Acid-Based Materials: A Systematic Review of Human Primary Cells Studies
    Article Snippet: Terriza, A. et al. (2014) [ ] , Normal Human Osteoblasts (HOB ® ). Origin: Promocell (commercial) , PLA Type: PLGA Modification: Coated with a TiO2 nanolayer (10–100 nm) by PECVD , Control Group(s): Uncoated PLGA , Adhesion/Morphology (Phase contrast, Immunofluorescence): The TiO 2 coating significantly improved cell spreading, elongation, and the development of focal adhesions ( p < 0.001), in a layer thickness-dependent manner , The deposition of TiO 2 by PECVD is a valuable tool to increase the bioactivity of PLGA membranes, enhancing the osteoblastic response , The authors declare no conflict of interest.. .. Terriza, A. et al. (2014) [ ] , Primary Human Osteoblasts (HOB). Origin: Promocell (commercial) , PLA Type: PLGA Modification: Coated with a thin film (15 nm) of SiO 2 by PECVD , Control Group(s): Uncoated PLGA , Adhesion/Morphology (Phase contrast, Immunofluorescence): Improved cell spreading, elongation, and intercellular contacts on SiO 2 -coated membranes. Significant increase in focal adhesions ( p < 0.001) , The SiO 2 coating by PECVD is a biocompatible method that elicits a significant osteoblastic response on PLGA membranes , The authors declare that there is no conflict of interests.. .. Raghavendran, H.R.B. et al. (2016) [ ] , Primary human mesenchymal stromal cells (hMSCs). Origin: Bone marrow of healthy donors , PLA Type: PLLA Modification: PLLA/Col/HA, PLLA/HA, PLLA/Col scaffolds, treated with PDGF , Control Group(s): Scaffolds not treated with PDGF , Differentiation (Alizarin Red, qPCR): PDGF treatment of the PLLA-based scaffolds produced rapid and enhanced osteogenic differentiation, with greater mineralization and OCN expression ( p < 0.05) , PDGF interacts synergistically with the surface of PLLA-based scaffolds to produce rapid osteogenic differentiation of hMSCs , The authors declare no competing financial interest..

    Immunofluorescence:

    Article Title: Osteogenic and Biocompatibility Potential of Polylactic Acid-Based Materials: A Systematic Review of Human Primary Cells Studies
    Article Snippet: Terriza, A. et al. (2014) [ ] , Normal Human Osteoblasts (HOB ® ). Origin: Promocell (commercial) , PLA Type: PLGA Modification: Coated with a TiO2 nanolayer (10–100 nm) by PECVD , Control Group(s): Uncoated PLGA , Adhesion/Morphology (Phase contrast, Immunofluorescence): The TiO 2 coating significantly improved cell spreading, elongation, and the development of focal adhesions ( p < 0.001), in a layer thickness-dependent manner , The deposition of TiO 2 by PECVD is a valuable tool to increase the bioactivity of PLGA membranes, enhancing the osteoblastic response , The authors declare no conflict of interest.. .. Terriza, A. et al. (2014) [ ] , Primary Human Osteoblasts (HOB). Origin: Promocell (commercial) , PLA Type: PLGA Modification: Coated with a thin film (15 nm) of SiO 2 by PECVD , Control Group(s): Uncoated PLGA , Adhesion/Morphology (Phase contrast, Immunofluorescence): Improved cell spreading, elongation, and intercellular contacts on SiO 2 -coated membranes. Significant increase in focal adhesions ( p < 0.001) , The SiO 2 coating by PECVD is a biocompatible method that elicits a significant osteoblastic response on PLGA membranes , The authors declare that there is no conflict of interests.. .. Raghavendran, H.R.B. et al. (2016) [ ] , Primary human mesenchymal stromal cells (hMSCs). Origin: Bone marrow of healthy donors , PLA Type: PLLA Modification: PLLA/Col/HA, PLLA/HA, PLLA/Col scaffolds, treated with PDGF , Control Group(s): Scaffolds not treated with PDGF , Differentiation (Alizarin Red, qPCR): PDGF treatment of the PLLA-based scaffolds produced rapid and enhanced osteogenic differentiation, with greater mineralization and OCN expression ( p < 0.05) , PDGF interacts synergistically with the surface of PLLA-based scaffolds to produce rapid osteogenic differentiation of hMSCs , The authors declare no competing financial interest..



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    Osteoblast function is closely correlated with LINC00339 expression. A. The expression of total LINC00339 in the bone tissue of healthy controls (n = 15) and patients with osteoporosis (n = 18). B. Correlation analysis between LINC00339 and T score in bone specimens. C. Analysis of the expression of the osteogenic marker genes OCN after LINC00339 knockdown in primary human <t>osteoblasts.</t> D, E. Analysis of the expression of the osteogenic marker genes RUNX2, ALP and OCN after LINC00339 knockdown and overexpression in U2OS cells. Representative results of three independent experiments are shown. F. ALP staining images and representative Alizarin red staining images of the sh-NC and sh-LINC00339 osteoblasts induced with osteogenic medium for 7 days. Scale bar, 5 mm. G . Quantification of ALP staining areas (Left) and ARS staining areas (Right). H . ALP staining images and representative ARS images of the OE-NC and OE-LINC00339 osteoblasts induced with osteogenic medium for 7 days. Scale bar, 5 mm. I . Quantification of ALP staining areas (Left) and ARS staining areas (Right). n = 3 for each group. Data are represented as mean ± standard deviation. Two-way ANOVA was performed to study the interaction between two independent variables. Significances were determined using two-tailed paired student's t -test between two groups. ∗ P < 0.05, ∗∗ P < 0.01, ∗∗∗ P < 0.001.
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    Image Search Results


    Osteoblast function is closely correlated with LINC00339 expression. A. The expression of total LINC00339 in the bone tissue of healthy controls (n = 15) and patients with osteoporosis (n = 18). B. Correlation analysis between LINC00339 and T score in bone specimens. C. Analysis of the expression of the osteogenic marker genes OCN after LINC00339 knockdown in primary human osteoblasts. D, E. Analysis of the expression of the osteogenic marker genes RUNX2, ALP and OCN after LINC00339 knockdown and overexpression in U2OS cells. Representative results of three independent experiments are shown. F. ALP staining images and representative Alizarin red staining images of the sh-NC and sh-LINC00339 osteoblasts induced with osteogenic medium for 7 days. Scale bar, 5 mm. G . Quantification of ALP staining areas (Left) and ARS staining areas (Right). H . ALP staining images and representative ARS images of the OE-NC and OE-LINC00339 osteoblasts induced with osteogenic medium for 7 days. Scale bar, 5 mm. I . Quantification of ALP staining areas (Left) and ARS staining areas (Right). n = 3 for each group. Data are represented as mean ± standard deviation. Two-way ANOVA was performed to study the interaction between two independent variables. Significances were determined using two-tailed paired student's t -test between two groups. ∗ P < 0.05, ∗∗ P < 0.01, ∗∗∗ P < 0.001.

    Journal: Non-coding RNA Research

    Article Title: Long noncoding RNA LINC00339 promotes osteoporosis development via modulating of regulator CDC42 by binding PARP1

    doi: 10.1016/j.ncrna.2025.06.004

    Figure Lengend Snippet: Osteoblast function is closely correlated with LINC00339 expression. A. The expression of total LINC00339 in the bone tissue of healthy controls (n = 15) and patients with osteoporosis (n = 18). B. Correlation analysis between LINC00339 and T score in bone specimens. C. Analysis of the expression of the osteogenic marker genes OCN after LINC00339 knockdown in primary human osteoblasts. D, E. Analysis of the expression of the osteogenic marker genes RUNX2, ALP and OCN after LINC00339 knockdown and overexpression in U2OS cells. Representative results of three independent experiments are shown. F. ALP staining images and representative Alizarin red staining images of the sh-NC and sh-LINC00339 osteoblasts induced with osteogenic medium for 7 days. Scale bar, 5 mm. G . Quantification of ALP staining areas (Left) and ARS staining areas (Right). H . ALP staining images and representative ARS images of the OE-NC and OE-LINC00339 osteoblasts induced with osteogenic medium for 7 days. Scale bar, 5 mm. I . Quantification of ALP staining areas (Left) and ARS staining areas (Right). n = 3 for each group. Data are represented as mean ± standard deviation. Two-way ANOVA was performed to study the interaction between two independent variables. Significances were determined using two-tailed paired student's t -test between two groups. ∗ P < 0.05, ∗∗ P < 0.01, ∗∗∗ P < 0.001.

    Article Snippet: The lentiviruses generated and released into the supernatant of the cultured HEK293T cells, these were subsequently collected and concentrated, then add condensed lentiviruses into U2OS and human primary osteoblasts cells in the presence of polybrene (Solarbio, China).

    Techniques: Expressing, Marker, Knockdown, Over Expression, Staining, Standard Deviation, Two Tailed Test

    LINC00339 functions by interacting with PARP1. A. RNA FISH showed that LINC00339 was predominantly localized in the cytoplasm. Scale bar, 50 μm. B. Schematic diagram of RNA pull-down experiment. The antisense and sense of LIN00339 were synthesized in vitro. C. Silver staining of biotinylated LIN00339-associated proteins. LC-MS identified the differential RBPs binding to AS-LINC00339 and S-LINC00339. D. Western blot of protein from LINC00339-pulldown assays. Western blot with PARP1 antibody shows only the sense of LINC00339 enrichment PARP1. E. PARP1 RIP assay to analyze interactions between PARP1 and LINC00339 in U2OS osteoblast-like cells. WB shows the PARP1 antibody efficiency of immunoprecipitation. F. RT-qPCR to analyze the enrichment of LINC00339 in RNA-protein complexes. The LINC00339 abundance in anti-PARP1 group was much more than the IgG group. Values were normalized by the input group. ∗∗∗ P < 0.001 versus IgG, by Student's t -test. (AS-LINC00339: Anti-sense of LINC00339, S-LINC00339: Sense LINC00339). G . IF-RNA FISH experiment was performed in U2OS cells to detect the co-localization of LINC00339 and PARP1. Bar: 10 μm. Data are expressed as the mean ± standard deviation of 3 independent experiments. ∗ P < 0.05, ∗∗ P < 0.01 and ∗∗∗ P < 0.001, two-tailed paired student's t -test.

    Journal: Non-coding RNA Research

    Article Title: Long noncoding RNA LINC00339 promotes osteoporosis development via modulating of regulator CDC42 by binding PARP1

    doi: 10.1016/j.ncrna.2025.06.004

    Figure Lengend Snippet: LINC00339 functions by interacting with PARP1. A. RNA FISH showed that LINC00339 was predominantly localized in the cytoplasm. Scale bar, 50 μm. B. Schematic diagram of RNA pull-down experiment. The antisense and sense of LIN00339 were synthesized in vitro. C. Silver staining of biotinylated LIN00339-associated proteins. LC-MS identified the differential RBPs binding to AS-LINC00339 and S-LINC00339. D. Western blot of protein from LINC00339-pulldown assays. Western blot with PARP1 antibody shows only the sense of LINC00339 enrichment PARP1. E. PARP1 RIP assay to analyze interactions between PARP1 and LINC00339 in U2OS osteoblast-like cells. WB shows the PARP1 antibody efficiency of immunoprecipitation. F. RT-qPCR to analyze the enrichment of LINC00339 in RNA-protein complexes. The LINC00339 abundance in anti-PARP1 group was much more than the IgG group. Values were normalized by the input group. ∗∗∗ P < 0.001 versus IgG, by Student's t -test. (AS-LINC00339: Anti-sense of LINC00339, S-LINC00339: Sense LINC00339). G . IF-RNA FISH experiment was performed in U2OS cells to detect the co-localization of LINC00339 and PARP1. Bar: 10 μm. Data are expressed as the mean ± standard deviation of 3 independent experiments. ∗ P < 0.05, ∗∗ P < 0.01 and ∗∗∗ P < 0.001, two-tailed paired student's t -test.

    Article Snippet: The lentiviruses generated and released into the supernatant of the cultured HEK293T cells, these were subsequently collected and concentrated, then add condensed lentiviruses into U2OS and human primary osteoblasts cells in the presence of polybrene (Solarbio, China).

    Techniques: Synthesized, In Vitro, Silver Staining, Liquid Chromatography with Mass Spectroscopy, Binding Assay, Western Blot, Immunoprecipitation, Quantitative RT-PCR, Standard Deviation, Two Tailed Test

    LINC00339–PARP1 complex co-regulates the expression of CDC42. A. The effects of LINC00339 knockdown on PARP1 mRNA expression were detected in primary human osteoblasts. B. Effect of LINC00339 overexpression on mRNA and protein expression of PARP1 in U2OS cells. C. Effect of PARP1 knockdown on LINC00339 overexpression-induced mRNA expression of CDC42. D. Effect of PARP1 knockdown on LINC00339 overexpression-induced protein expression of CDC42. E, F. Effect of PARP1 overexpression on LINC00339 knockdown-induced mRNA and protein expressions of CDC42. Data are expressed as the mean ± standard deviation of 3 independent experiments. ∗ P < 0.05, ∗∗ P < 0.01, and ∗∗∗ P < 0.001 versus vector, by Student's t -test.

    Journal: Non-coding RNA Research

    Article Title: Long noncoding RNA LINC00339 promotes osteoporosis development via modulating of regulator CDC42 by binding PARP1

    doi: 10.1016/j.ncrna.2025.06.004

    Figure Lengend Snippet: LINC00339–PARP1 complex co-regulates the expression of CDC42. A. The effects of LINC00339 knockdown on PARP1 mRNA expression were detected in primary human osteoblasts. B. Effect of LINC00339 overexpression on mRNA and protein expression of PARP1 in U2OS cells. C. Effect of PARP1 knockdown on LINC00339 overexpression-induced mRNA expression of CDC42. D. Effect of PARP1 knockdown on LINC00339 overexpression-induced protein expression of CDC42. E, F. Effect of PARP1 overexpression on LINC00339 knockdown-induced mRNA and protein expressions of CDC42. Data are expressed as the mean ± standard deviation of 3 independent experiments. ∗ P < 0.05, ∗∗ P < 0.01, and ∗∗∗ P < 0.001 versus vector, by Student's t -test.

    Article Snippet: The lentiviruses generated and released into the supernatant of the cultured HEK293T cells, these were subsequently collected and concentrated, then add condensed lentiviruses into U2OS and human primary osteoblasts cells in the presence of polybrene (Solarbio, China).

    Techniques: Expressing, Knockdown, Over Expression, Standard Deviation, Plasmid Preparation

    Proposed model for LINC00339-mediated regulation of the differentiation in osteoblast.

    Journal: Non-coding RNA Research

    Article Title: Long noncoding RNA LINC00339 promotes osteoporosis development via modulating of regulator CDC42 by binding PARP1

    doi: 10.1016/j.ncrna.2025.06.004

    Figure Lengend Snippet: Proposed model for LINC00339-mediated regulation of the differentiation in osteoblast.

    Article Snippet: The lentiviruses generated and released into the supernatant of the cultured HEK293T cells, these were subsequently collected and concentrated, then add condensed lentiviruses into U2OS and human primary osteoblasts cells in the presence of polybrene (Solarbio, China).

    Techniques: