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| 1 | Transcriptomic landscape regulated by the 14 types of bone morphogenetic proteins(BMPs)in lineage commitment and differentiation of mesenchymal stem cells(MSCs)显示文摘Mesenchymal stem cells(MSCs)are ubiquitously-existing multipotent progenitors that can self-renew and differentiate into multiple lineages including osteocytes,chondrocytes,adipocytes,tenocytes and myocytes.MSCs represent one of the most commonly-used adult progenitors and serve as excellent progenitor cell models for investigating lineagespecific differentiation regulated by various cellular signaling pathways,such as bone morphogenetic proteins(BMPs).As members of TGFb superfamily,BMPs play diverse and important roles in development and adult tissues.At least 14 BMPs have been identified in mammals.Different BMPs exert distinct but overlapping biological functions.Through a comprehensive analysis of 14 BMPs in MSCs,we demonstrated that BMP9 is one of the most potent BMPs in inducing osteogenic differentiation of MSCs.Nonetheless,a global mechanistic view of BMP signaling in regulating the proliferation and differentiation of MSCs remains to be fully elucidated.Here,we conducted a comprehensive transcriptomic profiling in the MSCs stimulated by 14 types of BMPs.Hierarchical clustering analysis classifies 14 BMPs into three subclusters:an osteo/chondrogenic/adipogenic cluster,a tenogenic cluster,and BMP3 cluster.We also demonstrate that six BMPs(e.g.,BMP2,BMP3,BMP4,BMP7,BMP8,and BMP9)can induce ISmads effectively,while BMP2,BMP3,BMP4,BMP7,and BMP11 up-regulate Smad-independent MAP kinase pathway.Furthermore,we show that many BMPs can upregulate the expression of the signal mediators of Wnt,Notch and PI3K/AKT/mTOR pathways.While the reported transcriptomic changes need to be further validated,our expression profiling represents the first-of-its-kind to interrogate a comprehensive transcriptomic landscape regulated by the 14 types of BMPs in MSCs. | Linghuan Zhang Qing Luo Yi Shu Zongyue Zeng Bo Huang Yixiao Feng Bo Zhang Xi Wang Yan Lei Zhenyu Ye Ling Zhao Daigui Cao Lijuan Yang Xian Chen Bin Liu William Wagstaff Russell R*Reid Hue H*Luu Rex C*Haydon Michael J*Lee Jennifer Moriatis Wolf Zhou Fu Tong-Chuan He Quan Kang | 2019 | Genes & Diseases2019,6,3: | 11 |
| 2 | Relationship between Th17 immune response and cancer显示文摘Cancer is the second leading cause of death worldwide and epidemiological projections predict growing cancer mortality rates in the next decades.Cancer has a close relationship with the immune system and,although Th17 cells are known to play roles in the immune response against microorganisms and in autoimmunity,studies have emphasized their roles in cancer pathogenesis.The Th17 immune response profile is involved in several types of cancer including urogenital,respiratory,gastrointestinal,and skin cancers.This type of immune response exerts pro and antitumor functions through several mechanisms,depending on the context of each tumor,including the protumor angiogenesis and exhaustion of T cells and the antitumor recruitment of T cells and neutrophils to the tumor microenvironment.Among other factors,the paradoxical behavior of Th17 cells in this setting has been attributed to its plasticity potential,which makes possible their conversion into other types of T cells such as Th17/Treg and Th17/Th1 cells.Interleukin(IL)-17 stands out among Th17-related cytokines since it modulates pathways and interacts with other cell profiles in the tumor microenvironment,which allow Th17 cells to prevail in tumors.Moreover,the IL-17 is able to mediate pro and antitumor processes that influence the development and progression of various cancers,being associated with variable clinical outcomes.The understanding of the relationship between the Th17 immune response and cancer as well as the singularities of carcinogenic processes in each type of tumor is crucial for the identification of new therapeutic targets. | Hanna Santos Marques Breno Bittencourt de Brito Filipe Antônio França da Silva Maria Luísa Cordeiro Santos Júlio César Braga de Souza Thiago Macêdo Lopes Correia Luana Weber Lopes Nayara Silva de Macêdo Neres Rafael Santos Dantas Miranda Dórea Anna Carolina Saúde Dantas Lorena Lôbo Brito Morbeck Iasmin Souza Lima Amanda Alves de Almeida Maiara Raulina de Jesus Dias Fabrício Freire de Melo | 2021 | World Journal of Clinical Oncology2021,12,10: | 5 |
| 3 | Integrative taxonomy of the Russet Bush Warbler Locustella mandelli complex reveals a new species from central China显示文摘Background: The Russet Bush Warbler Locustella(previously Bradypterus) mandelli complex occurs in mountains in the eastern Himalayas, southern China, Vietnam, the Philippines, and Indonesia. The taxonomy has been debated,with one(L. seebohmi) to four(L. seebohmi, L. mandelli, L. montis and L. timorensis) species having been recognised.Methods: We used an integrative approach, incorporating analyses of morphology, vocalizations and a molecular marker, to re-evaluate species limits in the L. mandelli complex.Results: We found that central Chinese L. mandelli differed from those from India through northern Southeast Asia to southeast China in plumage, morphometrics and song. All were easily classified by song, and(wing + culmen)/tail ratio overlapped only marginally. Both groups were reciprocally monophyletic in a mitochondrial cytochrome b(cytb) gene tree, with a mean divergence of 1.0 ± 0.2%. They were sympatric and mostly altitudinally segregated in the breeding season in southern Sichuan province. We found that the Mt Victoria(western Myanmar) population differed vocally from other L. mandelli, but no specimens are available. Taiwan Bush Warbler L. alishanensis was sister to the L. mandelli complex, with the most divergent song. Plumage, vocal and cytb evidence supported the distinctness of the south Vietnamese L. mandelli idonea. The Timor Bush Warbler L. timorensis, Javan Bush Warbler L.montis and Benguet Bush Warbler L. seebohmi differed distinctly in plumage, but among-population song variation in L. montis exceeded the differences between some populations of these taxa, and mean pairwise cytb divergences were only 0.5–0.9%. We also found that some L. montis populations differed morphologically.Conclusions: We conclude that the central Chinese population of Russet Bush Warbler represents a new species,which we describe herein, breeding at mid elevations in Sichuan, Shaanxi, Hubei, Hunan and Guizhou provinces.The taxonomic status of the other allopatric populations is less clear. However, as they differ to a degree comparable with that of the sympatric L. mandelli and the new species, we elevate L. idonea to species status, and retain L. seebohmi and L. montis as separate species, the latter with timorensis as a subspecies. Further research should focus on different populations of L. montis and the Mt Victoria population of L. mandelli. | Per Alstrom Canwei Xia Pamela C Rasmussen Urban Olsson Bo Dai Jian Zhao Paul J Leader Geoff J Carey Lu Dong Tianlong Cai Paul I Holt Hung Le Manh Gang Song Yang Liu Yanyun Zhang Fumin Lei | 2015 | Chinese Birds2015,,2: | 4 |
| 4 | Influence of Eutrophication on the Distribution of Total Mercury and Methylmercury in Hydroelectric Reservoirs显示文摘 | Meng Bo Feng X B Chen C X Qiu G L Sommar J Guo Y N Liang P Wan Q | 2010 | EN2010,,5: | 2 |
| 5 | Support vector machines with genetic fuzzy feature transformation for biomedical data classification显示文摘 | Bo J Tang Y C Zhang Y Q | 2007 | Information Sciences2007,177,2: | 1 |
| 6 | Possible mechanism of referred pain in the perineum and pelvis associcated with the prostate in rats 显示文摘 | Yong C Bo S Xi-yu J | 2005 | J Urol2005,174,: | 1 |
| 7 | Re- cent developments in photocatalytic water treatment technology 显示文摘 | Meng N C Bo J Christopher W K C | 2010 | Water Research2010,44,: | 1 |
| 8 | Optimum design and analysis based on independent reaction amount for distillation column with side reactors: production of benzyl chloride 显示文摘 | Ding L H Tang J H Cui M F Bo C M Chen X Qiao X | 2011 | Industrial & Engineering Chemistry Research2011,50,11: | 1 |
| 9 | Blood-retinal barrier 显示文摘 | Cunha-Vaz J Bernardes R l~bo C | 2011 | Eur J Ophthalmol2011,21,6: | 1 |
| 10 | Screening the response genes to HBV infection for discovering the potential targets of anti-HBV drugs显示文摘 | Yang J Bo X C Yao J | 2004 | J Viral Hepatitis2004,20,3: | 1 |
| 11 | Anisotropy in the wetting of rough surfaces 显示文摘 | Yong C Bo H Lee J H | 2005 | J Colloid Interf Sci2005,281,: | 1 |
| 12 | Two new Loci for body-weight regulation identified in a joint analysis of genome-wide association studies for early-onset extreme obesity in French and german study groups显示文摘 | Scherag A Dina C Hinney A Vatin V Scherag S Vogel C I Muller T D Grallert H Wichmann H E Balkau B Heude B Jarvelin M R Hartikainen A L Levy-Marchal C Weill J Delplanque J Korner A Kiess W Kovacs P Rayner N W Prokopenko I McCarthy M I Schafer H Jarick I Bo | | 0,,04: | 1 |
| 13 | Physical activity levels and patterns of 9- and 15-yr-old Europe- an children 显示文摘 | RIDDOCH C J BO ANDERSEN L WEDDERKOPP N et a l | 2004 | Med Sci Sport Exe2004,36,1: | 1 |
| 14 | Effect of the drawing process on the wet spinning of polyacrylonitrile fibers in a system of dimethyl sulfoxide and water显示文摘 | Wang Y X Wang C G Bai Y J Bo Z | 2007 | Journal of Applied Polymer Science2007,104,2: | 1 |
| 15 | Pelvic floor muscle training for urinary incontinence in women显示文摘 | Hay-Smith E J Bo Berghmans L C Hendriks H J | 2001 | Cochrane Database Syst Rev2001,20,00: | 1 |
| 16 | 显示文摘 | Ye S H Bo J K Li C Z | 2010 | Electrochimica Acta2010,55,: | 1 |
| 17 | On-chip natural assembly of silicon photonic bandgap structures显示文摘 | VIASOV Y A BO X Z STURM J C | 2001 | Nature2001,414,: | 1 |
| 18 | General rule for the stabilization of fullerene cages encapsulating trimetallie nitrlde templates 显示文摘 | Campanera J M Bo C Poblet J M | 2005 | Angew Chem Int Ed2005,44,44: | 1 |
| 19 | An assessment of a daily rainfall erosivity model for New South Wales显示文摘 | Yu Bo Rosewell C J | 1996 | Australian Journal of Soil Research1996,34,1: | 1 |
| 20 | Supramolecular self-assembly of polypseudorotaxanes in ionic liquid显示文摘 | Bo J Xiao C Qiu H Y | 2007 | Colloids and Surfaces A:2007,292,: | 1 |