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Vertebrate development and phylogeny are intimately connected through the vertebral formula, the numerical distribution of vertebrae along the body axis into different categories such as neck and chest. A key window into this relationship is through the conserved gene clusters. gene expression boundaries align with vertebral boundaries, and their manipulation in model organisms often results in the transformation of one vertebral type into its neighbor, a homeotic transformation. If the variety in the vertebrate body plan is produced by homeotic shifts, then the number of adjacent vertebrae will be inversely related when making interspecies comparisons since the gain in one vertebra is due to the loss in its neighbor. To date, such a pattern across species consistent with homeotic transitions has only been found in the thoracolumbar vertebral count of mammals. To further investigate potential homeotic relationships in other vertebrate classes and along the entire body axis, we compiled a comprehensive dataset of complete tetrapod vertebral formulas and systematically searched for patterns by analyzing combinations of vertebrae. We uncovered mammalian homeotic patterns and found balances between distal vertebrae not anticipated by a -vertebral homeotic relationship, including one that emerged during the progression from theropods to birds. We also identified correlations between vertebral counts and intergenic distances in the gene cluster which do not align with the common picture of a colinear relationship between expression and vertebral categories. This quantitative approach revises our expectations for the diversity of a -mediated vertebrate body plan.
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http://dx.doi.org/10.1073/pnas.2411421121 | DOI Listing |
J Pain Palliat Care Pharmacother
September 2025
Spine Unit, Orthopaedic Surgery and Traumatology Department, Catholic University and Polytechnic Hospital, Valencia, Spain.
Dexmedetomidine (DEX) has been proposed as an opioid-sparing adjunct after spinal fusion, but its efficacy across age groups is unclear. We conducted a systematic review and meta-analysis following PRISMA and registered in International Prospective Register of Systematic Reviews (PROSPERO) (CRD42024531252). Twelve studies (RCTs and cohorts; n=1,644) were included.
View Article and Find Full Text PDFGlobal Spine J
September 2025
Department of Spine Surgery, Orthopaedic Research Group, Coimbatore, India.
ACS Nano
September 2025
School of Medicine, Nankai University, Tianjin 300071, China.
In situ articular cartilage (AC) regeneration is a meticulously coordinated process. Microfracture has been the most extensive clinical approach in AC repair, but it faces challenges such as matrix degradation, generation, and remodeling within a local inflammatory microenvironment. So far, it remains a challenge to establish a multistage regulatory framework for coordinating these cellular events, particularly the immune response and chondrocyte proliferation in microfracture-mediated AC repair microenvironments, which is crucial for promoting AC regeneration quality.
View Article and Find Full Text PDFCurr Microbiol
September 2025
Department of Spine Surgery, Honghui Hospital, Xi'an Jiaotong University, Xi'an, Shaanxi, China.
This review article describes recent research advances in the relationship between spinal cord injury (SCI) and the gut microbiota and each other's inflammatory response. SCI is a serious neurological disease that directly damages physiological function. Recent studies have shown that SCI significantly affected the composition and function of the gut microbiota, and even caused intestinal inflammation.
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