keyword
https://read.qxmd.com/read/38681862/liver-specification-of-human-ipsc-derived-endothelial-cells-transplanted-into-mouse-liver
#1
JOURNAL ARTICLE
Kiryu K Yap, Jan Schröder, Yi-Wen Gerrand, Aleksandar Dobric, Anne M Kong, Adrian M Fox, Brett Knowles, Simon W Banting, Andrew G Elefanty, Eduoard G Stanley, George C Yeoh, Glen P Lockwood, Victoria C Cogger, Wayne A Morrison, Jose M Polo, Geraldine M Mitchell
BACKGROUND & AIMS: Liver sinusoidal endothelial cells (LSECs) are important in liver development, regeneration, and pathophysiology, but the differentiation process underlying their tissue-specific phenotype is poorly understood and difficult to study because primary human cells are scarce. The aim of this study was to use human induced pluripotent stem cell (hiPSC)-derived LSEC-like cells to investigate the differentiation process of LSECs. METHODS: hiPSC-derived endothelial cells (iECs) were transplanted into the livers of Fah -/- / Rag2 -/- / Il2rg -/- mice and assessed over a 12-week period...
May 2024: JHEP reports: innovation in hepatology
https://read.qxmd.com/read/38679694/temporal-dynamics-of-apoptosis-induced-proliferation-in-pupal-wing-development-implications-for-regenerative-ability
#2
JOURNAL ARTICLE
Sara Ahmed-de-Prado, Carlos Estella, Antonio Baonza
BACKGROUND: The ability of animals to regenerate damaged tissue is a complex process that involves various cellular mechanisms. As animals age, they lose their regenerative abilities, making it essential to understand the underlying mechanisms that limit regenerative ability during aging. Drosophila melanogaster wing imaginal discs are epithelial structures that can regenerate after tissue injury. While significant research has focused on investigating regenerative responses during larval stages our comprehension of the regenerative potential of pupal wings and the underlying mechanisms contributing to the decline of regenerative responses remains limited...
April 29, 2024: BMC Biology
https://read.qxmd.com/read/38672150/the-role-of-sox2-and-sox9-transcription-factors-in-the-reactivation-related-functional-properties-of-nt2-d1-derived-astrocytes
#3
JOURNAL ARTICLE
Vanda Balint, Mina Peric, Sanja Dacic, Danijela Stanisavljevic Ninkovic, Jelena Marjanovic, Jelena Popovic, Milena Stevanovic, Andrijana Lazic
Astrocytes are the main homeostatic cells in the central nervous system, with the unique ability to transform from quiescent into a reactive state in response to pathological conditions by reacquiring some precursor properties. This process is known as reactive astrogliosis, a compensatory response that mediates tissue damage and recovery. Although it is well known that SOX transcription factors drive the expression of phenotype-specific genetic programs during neurodevelopment, their roles in mature astrocytes have not been studied extensively...
April 3, 2024: Biomedicines
https://read.qxmd.com/read/38670714/3d-organization-of-enhancers-in-muscs
#4
REVIEW
Liangqiang He, Hao Sun, Huating Wang
Skeletal muscle stem cells (MuSCs), also known as satellite cells, are essential for muscle growth and injury induced regeneration. In healthy adult muscle, MuSCs remain in a quiescent state located in a specialized niche beneath the basal lamina. Upon injury, these dormant MuSCs can quickly activate to re-enter the cell cycle and differentiate into new myofibers, while a subset undergoes self-renewal and returns to quiescence to restore the stem cell pool. The myogenic lineage progression is intricately controlled by complex intrinsic and extrinsic cues and coupled with dynamic transcriptional programs...
2024: Current Topics in Developmental Biology
https://read.qxmd.com/read/38670701/satellite-cells-in-the-growth-and-maintenance-of-muscle
#5
REVIEW
John F Bachman, Joe V Chakkalakal
Embryonic skeletal muscle growth is contingent upon a population of somite derived satellite cells, however, the contribution of these cells to early postnatal skeletal muscle growth remains relatively high. As prepubertal postnatal development proceeds, the activity and contribution of satellite cells to skeletal muscle growth diminishes. Eventually, at around puberty, a population of satellite cells escapes terminal commitment, continues to express the paired box transcription factor Pax7, and reside in a quiescent state orbiting the myofiber periphery adjacent to the basal lamina...
2024: Current Topics in Developmental Biology
https://read.qxmd.com/read/38666909/serine-metabolism-regulates-the-replicative-senescence-of-human-dental-pulp-cells-through-histone-methylation
#6
JOURNAL ARTICLE
Shuhan Zhou, Jingyao Cui, Yu Shi
Tissue regeneration therapy based on human dental pulp cells (hDPCs) faces the distinct challenge of cellular senescence during massive expansion in vitro. To further explore the regulatory mechanism of cellular senescence in hDPCs, we conduct experiments on young cells (Passage 5, P5) and replicative senescent (Passage 12, P12) hDPCs. The results confirm that hDPCs undergo replicative senescence with passaging, during which their ability to proliferate and osteogenic differentiation decreases. Notably, during replicative senescence, phosphoglycerate dehydrogenase (PHGDH), the key enzyme of the serine synthesis pathway (SSP), is significantly downregulated, as well as S-adenosylmethionine (SAM) levels, resulting in reduced H3K36me3 modification on Sirtuin 1 ( SIRT1 )and Runt-related transcription factor 2 ( RUNX2 ) promoters...
March 24, 2024: Current Issues in Molecular Biology
https://read.qxmd.com/read/38664711/msc-derived-mitochondria-promote-axonal-regeneration-via-atf3-gene-up-regulation-by-ros-induced-dna-double-strand-breaks-at-transcription-initiation-region
#7
JOURNAL ARTICLE
Yingchi Zhang, Tao Xu, Jie Xie, Hua Wu, Weihua Hu, Xuefeng Yuan
BACKGROUND: The repair of peripheral nerve injury poses a clinical challenge, necessitating further investigation into novel therapeutic approaches. In recent years, bone marrow mesenchymal stromal cell (MSC)-derived mitochondrial transfer has emerged as a promising therapy for cellular injury, with reported applications in central nerve injury. However, its potential therapeutic effect on peripheral nerve injury remains unclear. METHODS: We established a mouse sciatic nerve crush injury model...
April 25, 2024: Cell Communication and Signaling: CCS
https://read.qxmd.com/read/38664194/aav6-mediated-gsx1-expression-in-neural-stem-progenitor-cells-promotes-neurogenesis-and-restores-locomotor-function-after-contusion-spinal-cord-injury
#8
JOURNAL ARTICLE
Zachary Finkel, Fatima Esteban, Brianna Rodriguez, Tanner Clifford, Adelina Joseph, Hani Alostaz, Mridul Dalmia, Juan Gutierrez, Matthew J Tamasi, Samuel Ming Zhang, Jonah Simone, Hafize Petekci, Susmita Nath, Miriam Escott, Shivam Kumar Garg, Adam J Gormley, Suneel Kumar, Sonia Gulati, Li Cai
Genomic screened homeobox 1 (Gsx1 or Gsh1) is a neurogenic transcription factor required for the generation of excitatory and inhibitory interneurons during spinal cord development. In the adult, lentivirus (LV) mediated Gsx1 expression promotes neural regeneration and functional locomotor recovery in a mouse model of lateral hemisection spinal cord injury (SCI). The LV delivery method is clinically unsafe due to insertional mutations to the host DNA. In addition, the most common clinical case of SCI is contusion/compression...
April 24, 2024: Neurotherapeutics: the Journal of the American Society for Experimental NeuroTherapeutics
https://read.qxmd.com/read/38661278/magnesium-ions-promote-the-induction-of-immunosuppressive-bone-microenvironment-and-bone-repair-through-hif-1%C3%AE-tgf-%C3%AE-axis-in-dendritic-cells
#9
JOURNAL ARTICLE
Yuya Dai, Jinhui Wu, Junyou Wang, Haoze Wang, Bingqing Guo, Tao Jiang, Zhuyun Cai, Junjie Han, Haoyu Zhang, Bangzhe Xu, Xuhui Zhou, Ce Wang
The effect of immunoinflammation on bone repair during the recovery process of bone defects needs to be further explored. It is reported that Mg2+ can promote bone repair with immunoregulatory effect, but the underlying mechanism on adaptive immunity is still unclear. Here, by using chitosan and hyaluronic acid-coated Mg2+ (CSHA-Mg) in bone-deficient mice, it is shown that Mg2+ can inhibit the activation of CD4+ T cells and increase regulatory T cell formation by inducing immunosuppressive dendritic cells (imDCs)...
April 25, 2024: Small
https://read.qxmd.com/read/38661167/tgif1-deficiency-impairs-cytoskeletal-architecture-in-osteoblasts-by-activating-pak3-signaling
#10
JOURNAL ARTICLE
Simona Bolamperti, Hiroaki Saito, Sarah Heerdmann, Eric Hesse, Hanna Taipaleenmäki
Osteoblast adherence to bone surfaces is important for remodeling bone tissue. This study demonstrates that deficiency of TG-interacting factor 1 (Tgif1) in osteoblasts results in altered cell morphology, reduced adherence to collagen type I-coated surfaces, and impaired migration capacity. Tgif1 is essential for osteoblasts to adapt a regular cell morphology and to efficiently adhere and migrate on collagen type I-rich matrices in vitro. Furthermore, Tgif1 acts as a transcriptional repressor of p21-activated kinase 3 ( Pak3 ), an important regulator of focal adhesion formation and osteoblast spreading...
April 25, 2024: ELife
https://read.qxmd.com/read/38659824/-foxg1a-is-required-for-hair-cell-development-and-regeneration-in-the-zebrafish-lateral-line
#11
Jon M Bell, Cole Biesemeyer, Emily M Turner, Maddie M Vanderbeck, Hillary F McGraw
UNLABELLED: Mechanosensory hair cells located in the inner ear mediate the sensations of hearing and balance. If damaged, mammalian inner ear hair cells are unable to regenerate, resulting in permanent sensory deficits. Aquatic vertebrates like zebrafish (Danio rerio) have a specialized class of mechanosensory hair cells found in the lateral line system, allowing them to sense changes in water current. Unlike mammalian inner ear hair cells, lateral line hair cells can robustly regenerate following damage...
April 15, 2024: bioRxiv
https://read.qxmd.com/read/38657207/delivery-of-mirnas-using-porous-silicon-nanoparticles-incorporated-into-3d-hydrogels-enhances-msc-osteogenesis-by-modulation-of-fatty-acid-signalling-and-silicon-degradation
#12
JOURNAL ARTICLE
Surakshya Shrestha, Terence Tieu, Marcin Wojnilowicz, Nicolas H Voelcker, John S Forsythe, Jessica E Frith
Bone tissue engineering strategies incorporating mesenchymal stromal cells (MSC), hydrogels and osteoinductive signals offer great promise for bone repair and regeneration. Commonly used osteoinductive signals such as growth factors face challenges in clinical translation due to their high cost, low stability and potential immunogenicity. Therefore, interest is growing in the delivery of microRNAs as a simple, inexpensive and powerful alternative to modulate MSC osteogenesis. Nevertheless, challenges associated with the selection of appropriate miRNA candidates and their efficient delivery must be overcome to make this a reality...
April 24, 2024: Advanced Healthcare Materials
https://read.qxmd.com/read/38652806/conserved-genes-in-highly-regenerative-metazoans-are-associated-with-planarian-regeneration
#13
JOURNAL ARTICLE
Shankar C R R Chereddy, Takashi Makino
Metazoan species depict a wide spectrum of regeneration ability which calls into question the evolutionary origins of the underlying processes. Since species with high regeneration ability are widely distributed throughout metazoans, there is a possibility that the metazoan ancestor had an underlying common molecular mechanism. Early metazoans like sponges possess high regenerative ability, but, due to the large differences they have with Cnidaria and Bilateria regarding symmetry and neuronal systems it can be inferred that this regenerative ability is different...
April 23, 2024: Genome Biology and Evolution
https://read.qxmd.com/read/38650352/genome-wide-association-study-and-network-analysis-of-in-vitro-transformation-in-populus-trichocarpa-support-key-roles-of-diverse-phytohormone-pathways-and-cross-talk
#14
JOURNAL ARTICLE
Michael F Nagle, Jialin Yuan, Damanpreet Kaur, Cathleen Ma, Ekaterina Peremyslova, Yuan Jiang, Greg S Goralogia, Anna Magnuson, Jia Yi Li, Wellington Muchero, Li Fuxin, Steven H Strauss
Wide variation in amenability to transformation and regeneration (TR) among many plant species and genotypes presents a challenge to the use of genetic engineering in research and breeding. To help understand the causes of this variation, we performed association mapping and network analysis using a population of 1204 wild trees of Populus trichocarpa (black cottonwood). To enable precise and high-throughput phenotyping of callus and shoot TR, we developed a computer vision system that cross-referenced complementary red, green, and blue (RGB) and fluorescent-hyperspectral images...
April 22, 2024: New Phytologist
https://read.qxmd.com/read/38650003/interleukin-4-protects-retinal-ganglion-cells-and-promotes-axon-regeneration
#15
JOURNAL ARTICLE
Zhaoyang Zuo, Bin Fan, Ziyuan Zhang, Yang Liang, Jing Chi, Guangyu Li
BACKGROUND: The preservation of retinal ganglion cells (RGCs) and the facilitation of axon regeneration are crucial considerations in the management of various vision-threatening disorders. Therefore, we investigate the efficacy of interleukin-4 (IL-4), a potential therapeutic agent, in promoting neuroprotection and axon regeneration of retinal ganglion cells (RGCs) as identified through whole transcriptome sequencing in an in vitro axon growth model. METHODS: A low concentration of staurosporine (STS) was employed to induce in vitro axon growth...
April 22, 2024: Cell Communication and Signaling: CCS
https://read.qxmd.com/read/38648494/repair-and-regeneration-of-the-alveolar-epithelium-in-lung-injury
#16
REVIEW
Yaxuan Wang, Lan Wang, Shuaichen Ma, Lianhui Cheng, Guoying Yu
Considerable progress has been made in understanding the function of alveolar epithelial cells in a quiescent state and regeneration mechanism after lung injury. Lung injury occurs commonly from severe viral and bacterial infections, inhalation lung injury, and indirect injury sepsis. A series of pathological mechanisms caused by excessive injury, such as apoptosis, autophagy, senescence, and ferroptosis, have been studied. Recovery from lung injury requires the integrity of the alveolar epithelial cell barrier and the realization of gas exchange function...
April 30, 2024: FASEB Journal: Official Publication of the Federation of American Societies for Experimental Biology
https://read.qxmd.com/read/38645155/cut-amp-tag-applied-to-zebrafish-adult-tail-fins-reveals-a-return-of-embryonic-h3k4me3-patterns-during-regeneration
#17
Phu Duong, Anjelica Rodriguez-Parks, Junsu Kang, Patrick J Murphy
Regenerative potential is governed by a complex process of transcriptional reprogramming, involving chromatin reorganization and dynamics in transcription factor binding patterns throughout the genome. The degree to which chromatin and epigenetic changes contribute to this process remains partially understood. Here we provide a modified CUT&Tag protocol suitable for improved characterization and interrogation of epigenetic changes during adult fin regeneration in zebrafish. Our protocol generates data that recapitulates results from previously published ChIP-Seq methods, requires far fewer cells as input, and significantly improves signal to noise ratios...
April 3, 2024: Research Square
https://read.qxmd.com/read/38643416/absence-of-e2f1-negates-pro-osteogenic-impacts-of-p21-absence
#18
JOURNAL ARTICLE
Priyatha Premnath, Theodore Lun, Humza Siddiqui, Alana Ruth Stahl, Aria Ahadzadeh Ardebili, Alexandra Olsen, Roman Krawetz
Loss of p21 leads to increased bone formation post-injury; however, the mechanism(s) by which this occurs remains undetermined. E2f1 is downstream of p21 and as a transcription factor can act directly on gene expression; yet it is unknown if E2f1 plays a role in the osteogenic effects observed when p21 is differentially regulated. In this study we aimed to investigate the interplay between p21 and E2f1 and determine if the pro-regenerative osteogenic effects observed with the loss of p21 are E2f1 dependent...
April 21, 2024: Calcified Tissue International
https://read.qxmd.com/read/38642480/new-insights-into-the-regulation-of-bile-acids-synthesis-during-the-early-stages-of-liver-regeneration-a-human-and-experimental-study
#19
JOURNAL ARTICLE
Iker Uriarte, Eva Santamaria, Amaya López-Pascual, María J Monte, Josepmaria Argemí, M Ujue Latasa, Elena Adán-Villaescusa, Ainara Irigaray, Jose M Herranz, María Arechederra, Jorge Basualdo, Felipe Lucena, Fernando J Corrales, Fernando Rotellar, Fernando Pardo, Gregory Merlen, Dominique Rainteau, Bruno Sangro, Thierry Tordjmann, Carmen Berasain, Jose J G Marín, Maite G Fernández-Barrena, Ignacio Herrero, Matias A Avila
BACKGROUND AND AIMS: Liver regeneration is essential for the preservation of homeostasis and survival. Bile acids (BAs)-mediated signaling is necessary for liver regeneration, but BAs levels need to be carefully controlled to avoid hepatotoxicity. We studied the early response of the BAs-fibroblast growth factor 19 (FGF19) axis in healthy individuals undergoing hepatectomy for living donor liver transplant. We also evaluated BAs synthesis in mice upon partial hepatectomy (PH) and acute inflammation, focusing on the regulation of cytochrome-7A1 (CYP7A1), a key enzyme in BAs synthesis from cholesterol...
April 19, 2024: Biochimica et Biophysica Acta. Molecular Basis of Disease
https://read.qxmd.com/read/38639863/nfatc4-knockout-promotes-neuroprotection-and-retinal-ganglion-cell-regeneration-after-optic-nerve-injury
#20
JOURNAL ARTICLE
Joanna Mackiewicz, Julia Tomczak, Malwina Lisek, Agata Sakowicz, Feng Guo, Tomasz Boczek
Retinal ganglion cells (RGCs), neurons transmitting visual information via the optic nerve, fail to regenerate their axons after injury. The progressive loss of RGC function underlies the pathophysiology of glaucoma and other optic neuropathies, often leading to irreversible blindness. Therefore, there is an urgent need to identify the regulators of RGC survival and the regenerative program. In this study, we investigated the role of the family of transcription factors known as nuclear factor of activated T cells (NFAT), which are expressed in the retina; however, their role in RGC survival after injury is unknown...
April 19, 2024: Molecular Neurobiology
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