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    <Identifier>25dkou268</Identifier>
    <IdentifierDoi>10.3205/25dkou268</IdentifierDoi>
    <IdentifierUrn>urn:nbn:de:0183-25dkou2686</IdentifierUrn>
    <ArticleType>Meeting Abstract</ArticleType>
    <TitleGroup>
      <Title language="en">Estrogen deficiency exacerbates traumatic heterotopic ossification in mice</Title>
    </TitleGroup>
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      <Creator>
        <PersonNames>
          <Lastname>Wang</Lastname>
          <LastnameHeading>Wang</LastnameHeading>
          <Firstname>Zheng</Firstname>
          <Initials>Z</Initials>
        </PersonNames>
        <Address>
          <Affiliation>Zhongnan Hospital of Wuhan University, Wuhan, China</Affiliation>
        </Address>
        <Creatorrole corresponding="no" presenting="yes">author</Creatorrole>
      </Creator>
      <Creator>
        <PersonNames>
          <Lastname>Yu</Lastname>
          <LastnameHeading>Yu</LastnameHeading>
          <Firstname>Aixi</Firstname>
          <Initials>A</Initials>
        </PersonNames>
        <Address>
          <Affiliation>Zhongnan Hospital of Wuhan University, Wuhan, China</Affiliation>
        </Address>
        <Creatorrole corresponding="no" presenting="no">author</Creatorrole>
      </Creator>
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          <Corporatename>German Medical Science GMS Publishing House</Corporatename>
        </Corporation>
        <Address>D&#252;sseldorf</Address>
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    <SubjectGroup>
      <SubjectheadingDDB>610</SubjectheadingDDB>
    </SubjectGroup>
    <DatePublishedList>
      <DatePublished>20251031</DatePublished>
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    <Language>engl</Language>
    <License license-type="open-access" xlink:href="http://creativecommons.org/licenses/by/4.0/">
      <AltText language="en">This is an Open Access article distributed under the terms of the Creative Commons Attribution 4.0 License.</AltText>
      <AltText language="de">Dieser Artikel ist ein Open-Access-Artikel und steht unter den Lizenzbedingungen der Creative Commons Attribution 4.0 License (Namensnennung).</AltText>
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      <Meeting>
        <MeetingId>M0634</MeetingId>
        <MeetingSequence>268</MeetingSequence>
        <MeetingCorporation>Deutsche Gesellschaft f&#252;r Orthop&#228;die und Unfallchirurgie</MeetingCorporation>
        <MeetingCorporation>Deutsche Gesellschaft f&#252;r Orthop&#228;die und Orthop&#228;dische Chirurgie</MeetingCorporation>
        <MeetingCorporation>Deutsche Gesellschaft f&#252;r Unfallchirurgie</MeetingCorporation>
        <MeetingCorporation>Berufsverband f&#252;r Orthop&#228;die und Unfallchirurgie</MeetingCorporation>
        <MeetingName></MeetingName>
        <MeetingTitle>Deutscher Kongress f&#252;r Orthop&#228;die und Unfallchirurgie (DKOU 2025)</MeetingTitle>
        <MeetingSession>Grundlagenforschung &#124; Wilhelm-Roux-Preis</MeetingSession>
        <MeetingCity>Berlin</MeetingCity>
        <MeetingDate>
          <DateFrom>20251028</DateFrom>
          <DateTo>20251031</DateTo>
        </MeetingDate>
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    <ArticleNo>AB39-4301</ArticleNo>
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      <MainHeadline>Text</MainHeadline><Pgraph><Mark1>Objectives and questions: </Mark1>Traumatic heterotopic ossification (HO) is a devastating sequela following orthopedic surgeries and traumatic injuries, but few studies have explored the effects of the estrogen-deficient state on HO formation. In this study, we investigated the impact of estrogen deficiency on ectopic cartilage and bone formation in tendon after Achilles tenotomy in an ovariectomized mouse model. </Pgraph><Pgraph><Mark1>Material and methods: </Mark1>A total of 45 female C57BL&#47;6 mice were randomly divided into three groups: sham-operated (control), estrogen depletion by ovariectomy (OVX) and OVX with 17&#946;-estradiol supplementation (OVX &#43; E2), with 15 animals in each group. One week after OVX, all mice were subjected to an Achilles tenotomy using a posterior midpoint approach to induce HO. At 1, 3 and 9 weeks after tenotomy, the left hind limbs were harvested for histology, immunohistochemistry and immunofluorescence evaluations. The volume of ectopic bone was assessed by micro-CT.</Pgraph><Pgraph><Mark1>Results: </Mark1>Female mice in the OVX group formed more ectopic cartilage at 3 weeks after tenotomy as well as ectopic bone at 9 weeks after tenotomy compared with the control group (Figure 1 <ImgLink imgNo="1" imgType="figure" />). The absence of estrogen in vivo resulted in more severe inflammatory infiltration at the injury sites in the early stages of HO, involving the recruitment of more macrophages and mast cells, as well as increasing the expressions of pro-inflammatory mediators including IL-1&#946;, IL-6 and TNF-&#945;. Moreover, local TGF-&#946;&#47;SMAD signaling pathway dysregulated after OVX, which manifested as up-regulated expressions of TGF-&#946; and pSMAD2&#47;3. Furthermore, E2 supplementation could well protect against OVX-induced HO deterioration, inhibit the inflammatory infiltration and downregulate the TGF-&#946;&#47;SMAD signaling pathway at the tenotomy sites.</Pgraph><Pgraph><Mark1>Discussion and conclusions: </Mark1>The estrogen-deficient state achieved by OVX, compared with control mice, led to increased HO formation in the Achilles tenotomy model. These findings may be attributable to the disturbance of the inflammatory response and the activation of TGF-&#946;&#47;SMAD signaling at the injury sites in the early stages of HO development.</Pgraph></TextBlock>
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          <Caption><Pgraph><Mark1>Figure 1: Estrogen deficiency promoted ectopic bone formation at 9 weeks after tenotomy.</Mark1></Pgraph></Caption>
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