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Differentiation Journal

@diffjournal.bsky.social
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Flagship journal of the International Society of Differentiation. Published by #Elsevier for 40+ years. All things relating to differentiation, development, stem cells, and regeneration. www.sciencedirect.com/journal/diffe…

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Differentiation Journal @diffjournal.bsky.social · 12/08/2026
Nazli Busra Acikgoz et al. demonstrate that a synonymous NPR2 variant can disrupt pre-mRNA splicing, leading to loss of receptor function and impaired skeletal development. Learn more: www.sciencedirect.com/science/artic…
Fig. 1. Clinical and radiological features of the proband with acromesomelic dysplasia, Maroteaux type (AMDM).
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Differentiation Journal @diffjournal.bsky.social · 05/08/2026
“Bioluminescence temporal signatures of monocyte differentiation reveals changes in phenotype due to GM-CSF, M-CSF, and PMA induction,” by Zachary James et al. Learn more: www.sciencedirect.com/science/artic…
Fig. 3. Image Analysis reveals proliferation differences based on differentiation stimuli. (A) Confluency seen within each well is graphed over the measurement period. (B) Representative images comparing macrophages at day 0 and day 18, with the differentiation agent concentration increasing down the image pairs.
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Differentiation Journal @diffjournal.bsky.social · 29/07/2026
Sakshi Nalkande et al. present a comprehensive review of evidence from contemporary literature establishing ovarian fibrosis as a critical and increasingly unrecognized pathological manifestation of polycystic ovary syndrome: www.sciencedirect.com/science/artic… #PCOS
graphical abstract
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Differentiation Journal @diffjournal.bsky.social · 22/07/2026
Tannaz Sakhavarz et al. provide the first comprehensive evidence that Palmatine functions as a potent, multi-level osteo-inductive molecule in human adipose-derived mesenchymal stem cells. Learn more: www.sciencedirect.com/science/artic…
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Differentiation Journal @diffjournal.bsky.social · 27/05/2026
It’s not too late! Submit your research on splicing in development and disease to the Differentiation special issue led by Guest Editors Natoya Peart and Karine Choquet by June 30, 2026: www.sciencedirect.com/special-issue…
Call for papers! Submit to the Splicing in Development and Disease special issue by June 30.
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Differentiation Journal @diffjournal.bsky.social · 20/05/2026
Article from the "Splicing in Development and Disease" special issue: Evan C. Brooks, Charles W. Griffin, and Katherine A. Fantauzzo review the roles of RNA-bidning protein SRSF3 in development and cellular differentiation across a range of organisms: doi.org/10.1016/j.diff.2026.100958
Fig. 2. Roles of SRSF3 in RNA metabolism. SRSF3 (magenta) contributes to alternative RNA splicing, binding to m6A modifications, transcription termination, polyadenylation, transcript stability, nuclear export and miRNA biogenesis. Pol II, RNA polymerase II; YTHDC1, YTH domain-containing protein 1; NEXT, nuclear exosome targeting complex; NXF1, nuclear RNA export factor 1.
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Differentiation Journal @diffjournal.bsky.social · 13/05/2026
“NNMT as a therapeutic target in fibrosis: Insights from the heart, liver, kidneys, and lungs,” by Shi-Yan Lai et al. Learn more: doi.org/10.1016/j.diff.2026.100959
Fig. 1. The core mechanisms of NNMT-mediated fibrosis: NAD depletion, methylation imbalance, inflammation, and oxidative stress

NAD+, Nicotinamide adenine dinucleotide; MAPK, Mitogen-activated protein kinase; SAH, S-adenosyl-L-homocysteine; SAA, Serum amyloid A; NAM, Nicotinamide; ROS, Reactive oxygen species; SAM, S-Adenosylmethionine; NNMT, Nicotinamide N-methyltransferase; MNA, 1-Methylnicotinamide; Hcy, Homocysteine; PARPs, Poly (ADP-ribose) polymerases.
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Differentiation Journal @diffjournal.bsky.social · 06/05/2026
Preethi Dharmendhran et al. provide a systemic review of current protocols for differentiating human pluripotent stem cells and human adipose-derived stem cells into brown adipocytes, assessing methodological consistency, differentiation outcomes, and key limitations: bit.ly/427qXHt
Fig. 3. Differentiation strategies employed for brown adipocyte induction from human stem cells. (A) Schematic representation of genetic factors and their mode of modulation (overexpression or knockdown) across different cell sources, indicating whether each manipulation enhanced or reduced brown adipocyte differentiation. (B) Diagrammatic summary of non-genetic factors applied to various human cell sources, depicting the range of stimuli such as growth factors, small molecules, hormones, phytochemicals, and physiological or developmental cues reported to promote brown adipocyte differentiation.
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Differentiation Journal @diffjournal.bsky.social · 22/04/2026
Findings from D. C. Andia et al. demonstrate that low and high osteogenic potential of periodontal ligament-derived mesenchymal stem cells correlates with RUNX2, SP7, EZH2 and KDM6B expression. Read the open access article to learn more: doi.org/10.1016/j.diff.2026.100944
Fig. 1. Basal characterization of the epigenetic mark H3K27me3, the epigenetic enzymes associated with H3K27me3 levels and key osteogenic genes.
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Differentiation Journal @diffjournal.bsky.social · 15/04/2026
Federica Quacquarelli et al. highlight the relevance of ex vivo human cellular models to examine paracrine interactions between osteoblasts and adipocytes and confirmed the role played by adipocyte-secreted factors in osteoblast transdifferentiation: doi.org/10.1016/j.diff.2026.100947
Fig. 2. Characterization of bone fragments A. Representative H&E stained section of bone fragment showing abundant adipocytes in the bone marrow next to mineralized bone with osteocytes. Bar = 100 μm. B. Representative histological slides of BGLAP (Bone Gamma-Carboxyglutamate Protein) immunoreactivity in human bone samples. The black arrows point out the presence of lining osteoblasts expressing BGLAP. Bar = 50 μm.
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Differentiation Journal @diffjournal.bsky.social · 08/04/2026
“Comprehensive defect detection in mouse embryos and the heart by combining automated phenotyping with novel population averages and atlases,” by Ella M. M. A. Martin et al. Read the open access article to learn more: doi.org/10.1016/j.diff.2026.100936
Fig. 1. Creation of three new embryonic mouse PTA-based population averages and matching atlases. (A) Sagittal view of E12.5 population average created from 11 wild type embryos at a voxel size of 7 μm3, (B) E15.5 population average created from 32 wild type embryos at voxel size of 14 μm3, (C) E17.5 population average created from 22 wild type embryos at voxel size of 14 μm3 which was resized to 28 μm3. (D–F) Corresponding atlases at (D) E12.5 with 43 labels, at (E) E15.5 with 47 labels and at (F) E17.5 with 46 labels. Only a subset of labels are shown for illustrative purposes. Scale bar = 2 mm.
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Differentiation Journal @diffjournal.bsky.social · 01/04/2026
Cagney E. Coomer et al. found Her9 is required for the migration, differentiation, and survival of neural crest cells. Learn more: doi.org/10.1016/j.diff.2026.100935
Fig. 3. Her9 mutants display pigmentation defects. A-B′) Lateral (A-B) and dorsal (A′-B′) views of melanophore patterning in WT/heterozygous and her9 mutant larvae at 6 dpf. Black arrowheads, dorsal stripe; green arrowheads, lateral stripe; blue arrowheads, ventral stripe; red arrowheads, yolk stripe; SB, swim bladder. C-D) H&E staining of WT/heterozygous and her9 mutant retina at 7 dpf; the retinal pigmented epithelium (RPE) is indicated with a white arrow. E-F′) Xanothophore (xan) and iridophore (ir) patterning in WT/heterozygous and her9 mutant larvae. Her9 mutants have reduced abundance of iridiphores (asterisks) and greater spread of xanthophores (yellow) than WT or heterozygous siblings. G-I′) Dorsal view of iridiphores and melanophores on the heads of WT/heterozygous and her9 mutant larvae.
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Differentiation Journal @diffjournal.bsky.social · 25/03/2026
Explore the special collection of papers on osteo biology—highlighting research and reviews from differentiation to regeneration—curated by Editors-in-Chief Loydie Jerome-Majewska, Crystal Rogers, and Rosa Uribe: www.sciencedirect.com/special-issue…
"Type H vessels in osteogenesis, homeostasis, and related disorders," by Xiaoru Qin et al. Fig. 1. Vascular distributions in long bones. Type H vessels are located in the metaphysis and along the periosteal and endosteal surface, whereas type L vessels are located in the diaphysis's bone marrow cavity. Secretion of PDGFA, PDGFB, TGF-β1, TGF-β3, and FGF1 from type H ECs is significantly higher than that from type L ECs. More RUNX2+ and OSX+ osteoprogenitors and osteoblasts surround type H vessels.
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Differentiation Journal @diffjournal.bsky.social · 18/03/2026
Jessica Cristina Marín-Llera et al. explored the role of CEK8 (Ephrin-A4) in early tendon differentiation in the chicken limb and its interaction with WNT/β-catenin and TGF-β pathways during tendon blastema formation. Learn more: doi.org/10.1016/j.diff.2026.100932
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Differentiation Journal @diffjournal.bsky.social · 13/03/2026
Advance research in cell differentiation, stem cells, and cancer biology. Join ISD and connect with a global community of researchers shaping the future of developmental biology. Learn more: bit.ly/3P4feq2 #joinISD #ISDmembership
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Differentiation Journal @diffjournal.bsky.social · 12/03/2026
“Development and proteome characterization of a new muscle cell line from Oreochromis niloticus (Linnaeus, 1758),” by Vijay Lakshmi Sahoo et al. Learn more: doi.org/10.1016/j.diff.2026.100934
Fig. 9. Immunofluorescence staining for MyoD at passage 15th, Scale bar: 100 μm. (A) Cells stained with MyoD (Red fluorescence); (B) Cells stained with DAPI; (C) Merged (MyoD & DAPI).
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Differentiation Journal @diffjournal.bsky.social · 09/03/2026
Deadline extended: Submit your research on splicing in development and disease to the Differentiation special issue led by Guest Editors Natoya Peart and Karine Choquet by June 30, 2026. Learn more: www.sciencedirect.com/special-issue…
Call for Papers! Submit to the Splicing in Development and Disease special issue
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Differentiation Journal @diffjournal.bsky.social · 04/03/2026
Findings from Chuanqing Mao et al. suggest that vismodegib disrupts TMJ development by inhibiting the Ihh-PTHrP signaling pathway, thereby altering angiogenesis in the condyle and ultimately impairing cartilage growth and structural integrity. Learn more: doi.org/10.1016/j.diff.2026.100933
Fig. 3. Histological analysis of TMJ in fetal mice from the experimental and control groups at postnatal weeks 1–3 using H&E and Masson's trichrome staining.
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Differentiation Journal @diffjournal.bsky.social · 25/02/2026
Take your research abroad with support from ISD! Apply for a 2026 ISD Researcher Travel Award and receive up to $1,000 toward travel and registration. The deadline for Round 1 applications is approaching. Submit your application by Feb 28: bit.ly/4gp0go3 #isdfunding
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Differentiation Journal @diffjournal.bsky.social · 22/01/2026
Are you ready to share your science with the world? ISD Travel Awards provide financial support to help members present their work in cell and developmental biology at major scientific meetings. Apply now to expand your reach: bit.ly/4gp0go3 The deadline is Feb 28.
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Differentiation Journal @diffjournal.bsky.social · 20/01/2026
“Odd-skipped family members have conserved roles in segmentation, appendage, excretory system and gut development in bilaterian animals,” by Vasikar Murugapoopathy et al. Read the open access Perspectives article in Differentiation: doi.org/10.1016/j.diff.2025.100930
Fig. 1. Conservation of zinc finger domains of Osr1 and Osr2 in vertebrates. (A) Amino acid sequence alignment of Osr1 using MafftWS sequence alignment reveals high conservation of the zinc finger binding domains. B) Amino acid sequence alignment of Osr2 using MafftWS sequence alignment reveals high conservation of zinc fingers 1–3 in all species. Zinc fingers 4 and 5 are only conserved in chick, mouse, and humans. Zinc finger domains 1–3 and 4–5 are indicated by red and purple bars, respectively, shown above the amino acid sequence of interest. OSR2B, the alternatively spliced protein product has only been identified in mammals and was therefore omitted from the protein conservation analysis. Conservation is depicted below the corresponding amino acid sequence.
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Differentiation Journal @diffjournal.bsky.social · 13/01/2026
Review article: Siti Nurnasihah Md Hashim et al. explored how chemical and mechanical microenvironments cooperate to guide epithelial commitment across both conventional 2D and advanced 3D culture models. Learn more: doi.org/10.1016/j.diff.2026.100931
Fig. 1. Illustration of the triad system in tissue engineering, representing the interaction between cell types, scaffolds, and external factors.
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Differentiation Journal @diffjournal.bsky.social · 10/12/2025
New to Differentiation: Explore the curated collection of 11 articles highlighting the latest key advancements and discoveries in osteo biology—from 2023 to present: www.sciencedirect.com/special-issue…
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Differentiation Journal @diffjournal.bsky.social · 04/12/2025
Parth Aphale, Himanshu Shekhar, and Shashank Dokania provide a critical appraisal of “Osteocyte-like differentiation of osteosarcoma by inorganic phosphate,” by Suzuki et al. (Differentiation, 2025, 146:100912). Read the letter to the editor to learn more: doi.org/10.1016/j.diff.2025.100915
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Differentiation Journal @diffjournal.bsky.social · 01/12/2025
Deadline approaching: Submit to the forthcoming Differentiation special issue, “Splicing in Development and Disease,” by December 30, 2025! Learn more about the scope, guest editors, and benefits of publishing in a special issue: bit.ly/4o6TAxW
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Differentiation Journal @diffjournal.bsky.social · 25/11/2025
“fam20b-dependent proteoglycans do not affect dermal bone formation and fin regeneration, but Bmp signalling promotes fin regenerate outgrowth,” by Elham Koosha et al. Read the open access article in Differentiation to learn more: doi.org/10.1016/j.diff.2025.100914
Fig. 2. Dermal bone mineralization was not generally accelerated in fam20b−/− embryos.
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Differentiation Journal @diffjournal.bsky.social · 21/11/2025
Thank you, everyone, who joined the latest “Biological Differentiation Across the Scales” virtual seminar last week with Pavani P. Perera from Misty Riddle’s lab at @unevadareno.bsky.social. Couldn’t attend the live seminar? The recording is now available online! Watch now: bit.ly/4oIeT9k 🐟
Screenshot of presentation titled "Enteric neural crest development in Astyanax mexicanus surface fish and cavefish"
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Differentiation Journal @diffjournal.bsky.social · 13/11/2025
TOMORROW: Join the Editors-in-Chief of Differentiation at 12:00 p.m. Central for a free virtual seminar with Pavani P. Perera. Registration closes 30 minutes before the event: bit.ly/4oaU71P Article: bit.ly/478UZhu
Biological Differentiation Across the Scales • November 14, 2025, at 12:00 p.m. Central • Register Now
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Crystal Rogers, PhD @rogerslabucd.bsky.social · 12/11/2025
Please join us on Friday November 14th for: Differentiation Across Scales, "Enteric neural crest development in Astyanax mexicanus surface fish and cavefish.” Our presenter will be Pavani Ponnimbaduge Perera from Misty Riddle’s lab. It’s free to register! my.isdifferentiation.org/ISD/Events/E...
my.isdifferentiation.org
Display event - Biological Differentiation Across the Scales Virtual Seminar
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Differentiation Journal @diffjournal.bsky.social · 11/11/2025
Mirco Galiè summarizes studies that support the hypothesis that the partially or fully mesenchymal phenotype might represent a general paradigm of stem cell plasticity underlying embryonic development, regenerative potential, as well as their pathological counterparts: bit.ly/3JADAW0
Fig. 2. According to the traditional concept of mesenchyme, during embryonic development, mesenchymal-like tissues form through EMT from epithelial-shaped tissues in two major steps at the early stages of gastrulation. Specifically, the primary mesenchyme originates from the epiblast to form mesoderm and primitive endoderm; this process is regarded as the prototype of EMT. Subsequently, the mesoderm reverts to an epithelial morphology to generate transient embryonic structures, including somites, which then undergo a further round of EMT to generate secondary mesenchyme. Secondary mesenchyme is considered the embryonic connective tissue and provides the precursors of the connective tissues of the adult body.
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Crystal Rogers, PhD @rogerslabucd.bsky.social · 07/11/2025
Interested in development? Cave fish? Enteric nervous system? Pretty pictures? Please join us next Friday! We are looking forward to the talk! 🤩
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Differentiation Journal @diffjournal.bsky.social · 07/11/2025
One week left to register! Join the Editors-in-Chief of Differentiation on November 14 at 12:00 p.m. Central for a virtual seminar with Pavani P. Perera on the enteric nervous system, evolution, and cave fish. Register for free: bit.ly/4oaU71P Topic: bit.ly/478UZhu
Biological Differentiation Across the Scales • November 14, 2025, at 12:00 p.m. Central • Register Now
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Differentiation Journal @diffjournal.bsky.social · 04/11/2025
Call for papers: Are you studying the role of splicing in development and how disruption of these processes leads to disease? Submit your manuscript to the “Splicing in Development and Disease” special issue by December 30, 2025! Learn more: bit.ly/4o6TAxW
September/October cover of Differentiation. Fluorescence micrograph of Drosophila melanogaster testis tip. Merged testis image displays DAPI (yellow), anti-Mettl3 (cyan) and anti-Vasa (magenta) stains. Nuclear DAPI stain in combination with antibody against m6A methyltransferase Mettl3 and germline marker Vasa, indicates localization pattern of methyltransferase in cells of the apical tip during spermatogenesis.
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Differentiation Journal @diffjournal.bsky.social · 28/10/2025
Review article: “Regenerative medicine and tissue engineering potential of mesenchymal stem cells exosomes-derived microRNAs,” by Navidreza Shayan et al. doi.org/10.1016/j.diff.2025.100911
Fig. 3. The most effective MSC exosomes-derived microRNAs applied for therapeutic approaches.
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Differentiation Journal @diffjournal.bsky.social · 27/10/2025
Just announced: Join the Editors-in-Chief of Differentiation and Pavani P. Perera for the upcoming "Biological Differentiation Across the Scales" virtual seminar on November 14, at 12–1:30 p.m. Central! Topic: bit.ly/478UZhu Register for free: bit.ly/4oaU71P
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Differentiation Journal @diffjournal.bsky.social · 22/10/2025
NEW: The Editors-in-Chief of Differentiation, @rogerslabucd.bsky.social, @uribelab.bsky.social, and Loydie Jerome-Majewska, have curated a special collection of papers, “Osteo biology: from differentiation to regeneration.” Explore the collection: bit.ly/3JlXEey
Fig. 3. Effects of OPG on localization of CD44, CD47, DC-STAMP, ATP6V0D2 and Connexin43 in fusing OCs and precursors. From "Exploring the impact of osteoprotegerin on osteoclast and precursor fusion: Mechanisms and modulation by ATP," by Yunwen Peng et al.
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Differentiation Journal @diffjournal.bsky.social · 21/10/2025
Yuya Suzuki et al. evaluated the ability of two types of Pi (i.e., disodium phosphate [Na2HPO4] and monosodium phosphate [NaH2PO4]) to promote the osteogenic differentiation of osteosarcoma cells. Learn more: doi.org/10.1016/j.diff.2025.100912
Fig. 6. WNT5b mediates the Pi-induced suppression of OS cells migration. (A) Transwell assay was performed to evaluate the migration ability of NOS-10 (5 days) and SJSA-1 (10 days) cells with knock-down of WNT5b by siRNAs treated with osteogenic supplement medium. The analyses were performed at 24 h after seeding the cells into the culture inserts (n = 4). Scale bar = 500 μm.
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Differentiation Journal @diffjournal.bsky.social · 26/09/2025
“Inhibition of Atg13-mediated autophagy enhances the anti-osteoclastogenic effect of sirolimus by counteracting its pro-autophagic activity,” by Tingwei Gao et al.: doi.org/10.1016/j.di...
Fig. 7. Atg13 knockdown in vivo enhanced the role of sirolimus in alleviating bone loss in OVX mice. OVX-operated female mice were treated with sirolimus (10 mg/kg, orally, 5 times/week) along with Cont-shRNA-AAVs or Atg13-shRNA-AAVs (5 × 1010 PFU/mL, marrow-cavity injection) for 45 days. (A) Representative 3D micro-CT reconstructed images of the tibiae from each group. Scale bar, 1 mm. (B) Representative H&E-stained tibial sections from each group. Scale bar, 20 μm. (C) LC3-puncta formation in bone marrow RANK+ CSF1R+ cells sorted by FACS was evaluated via immunofluorescence staining. Representative images of LC3 puncta, including single and merged fluorescence, were obtained under a fluorescent microscope. Scale bar, 25 μm.
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Differentiation Journal @diffjournal.bsky.social · 24/09/2025
📢 Deadline extended: Submit to the "Splicing in Development and Disease" special issue by December 30, 2025! Guest editors: Natoya Peart and Karine Choquet Learn more and submit: www.sciencedirect.com/special-issue…
Call for Papers! Submit to the Splicing in Development and Disease special issue! Submission deadline: December 30, 2025. Guest editors: Natoya Peart and Karine Choquet

This special issue will address and highlight current understanding and gaps in knowledge about the role of splicing both constitutive and alternative in the development and how disruption of these processes leads to disease.
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Differentiation Journal @diffjournal.bsky.social · 08/09/2025
Arne C. Lekven, Sarah Empie, and Richard Saoud review the history of Wnt1, its gene structure and regulation, expression, loss-of-function consequences, and connection to human disease. Read “One Wnt to lead them all: a Wnt1 primer” to learn more: doi.org/10.1016/j.di...
Fig. 5. Osteogenesis imperfecta observed in X-rays of patients homozygous for WNT1 loss of function alleles. A) Limb fracture. B) Vertebral compression and deformation. C) Severe leg deformities.
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Differentiation Journal @diffjournal.bsky.social · 23/06/2025
Join the editors-in-chief of Differentiation on July 11 at 1:30 p.m. Central for a virtual seminar with Julie Siegenthaler on retinoic acid signaling in retina endothelial cells and early angiogenesis. 👁️🔬💉 Register for free: www.isdifferentiation.org/Events/Semin...
Biological Differentiation Across the Scales—July 11, 2025, at 1:30 p.m. Central—Retinoic acid signaliing in mouse retina endothelial cells is required for early angiogenic growth—Register Now!
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Differentiation Journal @diffjournal.bsky.social · 19/05/2025
“The primary cilia: Orchestrating cranial neural crest cell development,” by Hiroyuki Yamaguchi et al., discusses the current understanding of the role of cilia and potential mechanisms of ciliogenesis in cranial neural crest cells. Learn more: Learn more: doi.org/10.1016/j.di...
Cover of Differentiation
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Differentiation Journal @diffjournal.bsky.social · 06/05/2025
The "Biological Differentiation Across the Scales" virtual seminar series kicked off on April 28 with an insightful, engaging talk by @ecbrooks96.bsky.social. Missed it live? Watch the recording: www.isdifferentiation.org/Journal/Page... @rogerslabucd.bsky.social @uribelab.bsky.social #devbio
The ciliary protein C2cd3 is required for mandibular musculoskeletal tissue patterning. Evan C. Brooks, Ph.D. Graduate Student Alumnis, Brugmann Lab, Cinicinnati Children's Hospital Medical Center.  Currently: Postdoctoral Fellow, University of Colorado School of Dental Medicine. "Biological Differentiation Across the Scales" Seminar, April 28, 2025.
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Crystal Rogers, PhD @rogerslabucd.bsky.social · 28/03/2025
This paper is now published at @diffjournal.bsky.social! Congratulations to all the hardworking students who made it happen! Shout out to authors 1 & 2! MJ is our “axolotl whisperer” and Raneesh is our computational wizard- both DVM/PhD students @ucdavisvetmed.bsky.social! 💫 doi.org/10.1016/j.di...
sciencedirect.com
NSAID-mediated cyclooxygenase inhibition disrupts ectodermal derivative formation in axolotl embryos
Embryonic exposures to non-steroidal anti-inflammatory drugs (NSAIDs) have been linked to preterm birth, neural tube closure defects, abnormal enteric…
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Evan C. Brooks, Ph.D. @ecbrooks96.bsky.social · 17/03/2025
Excited to be the inaugural speaker for this new seminar series from @diffjournal.bsky.social. I’ll be presenting on work from my PhD thesis focused on the role of cilia in lower jaw development. Thanks to Loydie Jerome-Majewska, @rogerslabucd.bsky.social, and @uribelab.bsky.social for the invite!
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Differentiation Journal @diffjournal.bsky.social · 17/03/2025
Join us for Biological Differentiation Across the Scales, a free virtual seminar series from Differentiation. Hear from authors and the editors-in-chief as they discuss key research. Stay at the forefront of biological differentiation—register now: www.isdifferentiation.org/Events/Semin... #devbio
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Differentiation Journal @diffjournal.bsky.social · 31/01/2025
Hello everyone! Differentiation has arrived on Bluesky! We are the flagship journal for the International Society of Differentiation with EICs- Loydie Jerome-Majewska, Crystal Rogers (@rogerslabucd.bsky.social), and Rosa Uribe @uribelab.bsky.social). Please consider us when you are submitting!
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