Synopsis of Social media discussions

The overall tone reflects strong interest and agreement with the publication, supported by shared hashtags and mentions of its open access and peer review status, emphasizing its importance. Words like 'investigating' and 'implications' highlight the significance placed on this research's potential to advance understanding of aging conditions.

A
Agreement
Moderate agreement

Most discussions recognize and support the significance of the research findings on telomere length and aging syndromes.

I
Interest
High level of interest

Posts show a high level of curiosity, using hashtags like #aging #research, indicating strong interest in aging studies.

E
Engagement
Moderate level of engagement

Participants mostly share enthusiasm or basic recognition of the article, with some referencing implications for aging disorders.

I
Impact
Moderate level of impact

The discussions acknowledge that this research could influence future studies or clinical approaches to aging disorders, though specifics are limited.

Social Mentions

YouTube

2 Videos

Bluesky

4 Posts

Facebook

3 Posts

Twitter

9 Posts

Instagram

5 Posts

News

2 Articles

Metrics

Video Views

80

Total Likes

18

Extended Reach

35,748

Social Features

25

Timeline: Posts about article

Top Social Media Posts

Posts referencing the article

Telomere Length and Aging Disorders in Progeroid Syndromes

Telomere Length and Aging Disorders in Progeroid Syndromes

This study investigates how telomere length varies across different progeroid syndromes, revealing significant shortening in some and stability in others, using DNA methylation methods. It enhances understanding of cellular aging in these conditions.

June 24, 2025

74 views


Telomere Length Variations in Progeroid Syndromes and Aging Disorders

Telomere Length Variations in Progeroid Syndromes and Aging Disorders

This study investigates telomere length, a marker of cellular aging, across progeroid syndromes, revealing significant shortening in some conditions. The findings enhance understanding of telomere's role in aging and rare genetic disorders.

June 15, 2025

6 views


  • Aging-US
    @AgingJrnl (Twitter)


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    August 28, 2025

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  • Aging-US
    @AgingJrnl (Twitter)

    #AgingShort:
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    August 28, 2025

  • Aging-US
    @AgingJrnl (Twitter)


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    August 28, 2025

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  • Aging-US
    @AgingJrnl (Twitter)


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    June 25, 2025

    1

  • Aging-US
    @AgingJrnl (Twitter)


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    June 25, 2025

    3

  • Aging-US
    @AgingJrnl (Twitter)

    #AgingShort:
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    June 25, 2025

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  • Aging-US
    @AgingJrnl (Twitter)


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    June 25, 2025

    3

  • Aging-US
    @aging-us.bsky.social (Bluesky)


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    June 25, 2025

  • Aging-US
    @aging-us.bsky.social (Bluesky)


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    June 25, 2025

  • Aging-US
    @aging-us.bsky.social (Bluesky)

    #AgingShort:
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    June 24, 2025

  • Reddit Journal of Science
    @rsciencejournal (Twitter)

    Investigating telomere length in progeroid syndromes: implications for aging disorders https://t.co/p2uXsGPYxa
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    June 20, 2025

  • Aging-US
    @AgingJrnl (Twitter)

    #PaperoftheDay: "Investigating telomere length in progeroid syndromes: implications for aging disorders" DOI ⬇️ https://t.co/eZ36QkoaUR #aging #research #openaccess #peerreview #journal #publishing
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    June 12, 2025

    2

  • Aging-US
    @aging-us.bsky.social (Bluesky)

    #AgingResearch: "Investigating telomere length in progeroid syndromes: implications for aging disorders" DOI ⬇️ doi.org/10.18632/aging.206255 #aging #research #openaccess #peerreview #journal #publishing
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    June 12, 2025

  • Aging (Aging-US) | #TrendingWithImpact: A new #research paper ...

    ... aging disorders.” @chls_hbku. To read the full #study, visit Volume 17, Issue 5 at Aging-US.com. https://doi.org/10.18632/aging.206255 #aging #quote ...
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    December 15, 2025

    Instagram

  • AgingShort: Abstract #video about this #research paper #published ...

    ... aging disorders." Hamad Bin Khalifa University https://doi.org/10.18632/aging.206255 #aging #telomeres #DNAMethylation #openaccess ...
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    August 28, 2025

    Facebook

  • Research: Telomere Shortening Varies in Aging Disorders | Mirage ...

    ... aging and how genetic differences influence the aging process. Read the full paper: DOI: https://doi.org/10.18632/aging.206255. /Public ...
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    June 26, 2025

    News

  • New research finds telomere shortening not consistent across ...

    ... aging and how genetic differences influence the aging process. Read the full paper: DOI: https://doi.org/10.18632/aging.206255. Corresponding ...
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    June 25, 2025

    News

  • #TrendingWithImpact: A new #research paper was #published on ...

    To read the full #study, visit Volume 17, Issue 5 at Aging-US.com. https://doi.org/10.18632/aging.206255 #aging #quote #telomeres # ...
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    June 25, 2025

    Instagram

  • #TrendingWithImpact: Figure 5 from the #researchpaper ... - Instagram

    https://doi.org/10.18632/aging.206255 #aging #figure #telomeres #DNAMethylation #oa #peerreviewed #journal #publishing #meded #trending.
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    June 25, 2025

    Instagram

  • Aging (Aging-US) | The #cover of Aging Volume 17, Issue 5, features ...

    ... aging disorders." @chls_hbku. Visit Aging-US.com to read the full #study. https://doi.org/10.18632/aging.206255 #aging #telomeres ...
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    May 31, 2025

    Instagram

  • Aging (Aging-US) | #TrendingWithImpact: Werner syndrome is a rare ...

    ... aging disorders." @chls_hbku. Visit Aging-US.com to read the full #study. https://doi.org/10.18632/aging.206255 #aging #telomeres ...
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    May 13, 2025

    Instagram

  • #PaperoftheDay: "Cysteinyl leukotriene receptor 1 modulates retinal ...

    ... aging disorders." Hamad Bin Khalifa University https://doi.org/10.18632/aging.206255 #aging #telomeres #DNAMethylation #openaccess ...
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    March 5, 2025

    Facebook

  • Aging-US - Go #behindthestudy with Nadiyeh Rouhi from the ...

    ... aging disorders." Hamad Bin Khalifa University https://doi.org/10.18632/aging.206255 #aging #telomeres #DNAMethylation #openaccess ...
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    November 11, 2024

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Abstract Synopsis

  • This study investigates how telomere length, a marker of cellular aging, varies across different progeroid syndromes—rare genetic disorders that mimic aspects of normal aging—and finds that some syndromes, like Werner Syndrome and Dyskeratosis congenita, show significant telomere shortening, while others, like Hutchinson-Gilford Progeria Syndrome, do not.
  • The research used a DNA methylation-based method to estimate telomere length from publicly available data and additional patient data, highlighting the heterogeneity among these syndromes in relation to telomere aging.
  • The results fill a gap in understanding the role of telomere attrition in progeroid conditions and suggest that more research is needed to explore how telomere shortening affects disease mechanisms and aging processes in these syndromes.]