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Biology subjects

Huang, R. C.

Publications and source records attributed to Huang, R. C..

2 recordsLinked to original sources

Sonic Hedgehog Is An Important Regulator Of Intervertebral Disc Homeostasis And Rejuvenation

Intervertebral disc degeneration and associated neurological symptoms constitute a global health burden, yet no cure is currently available (1,2). Each disc consists of a central nucleus pulposus, surrounded by annulus fibrosus, and end plates connecting it to the growth plates of adjacent vertebral bodies. The notochord-descendant nucleus pulposus continues to express sonic hedgehog, which regulates the proliferation and differentiation of all components of neonatal mouse discs (3-7). Sonic hedgehog expression and function decline with age and are associated with disc pathologies, including terminal differentiation of nucleus pulposus cells to chondrocyte-like phenotype (7,8). Here, we used fate-mapping and conditional genetic mouse models to test the role of sonic hedgehog in the homeostasis of aging discs. We found that loss of NP-derived Shh is sufficient to accelerate multiple features of age-associated disc degeneration, including reduced NP cell number, altered matrix turnover, and induction of inflammatory, angiogenic and neurotrophic programs. Age-related disc pathologies were more prevalent in the lumbosacral discs of mice, like in humans (8-13). Also, like mice, the expression of sonic hedgehog and its targets by human nucleus pulposus cells declines with age and pathological degeneration. Moreover, pharmacologic Hedgehog activation partially restored anabolic gene expression and reduced catabolic, inflammatory and neurotrophic mediators in degenerated human NP explants ex vivo. These findings indicate that Sonic hedgehog, a developmental signal retained in the adult NP, is functionally active and required for disc homeostasis during aging and supports activation of hedgehog signaling as a candidate disease-modifying pathway for intervertebral disc pathologies.

developmental biology↗

A search for "perio-probiotics" by longitudinal dissection of oral bacterial community shifts during the onset and resolution of gingivitis

AimTo understand the spatiotemporal dynamics of bacterial succession during gingivitis, and to identify taxa with a critical role in gum health with prognostic value. Materials and methodsLongitudinal microbiome data were collected from 15 individuals after completely discontinuing all forms of oral hygiene, and subsequently reintroducing it for three and two weeks, respectively. Sequences from the 16S rRNA V4-V5 gene region from sub- and supra-gingival plaque, saliva, and tongue sites were annotated and mapped to a reference tree of Human Oral Microbiome Database sequences. ResultsSuspending oral hygiene induced gingivitis, which was resolved after its resumption to baseline. Most significant shifts in bacterial abundance were observed in dental plaque, but not in saliva and tongue sites. During gingivitis-induction, baseline microbiota dominated by Streptococcus, was superseded by increased Prevotella, Fusobacterium, Leptotrichia, and Porphyromonas genera. Converse to its decline during disease-induction, gum health restoration was accompanied by a significant increase in streptococci. ConclusionWe present the most comprehensive, spatiotemporal map of bacterial succession during gingivitis onset and resolution. We have identified taxa with potential as probiotic candidates for gum disease (i.e., perio-probiotics), and suggest tooth-associated plaque and not saliva or tongue plaque should be used in future prognostic tests.

microbiology↗