• HOME
  • NEWS
  • EXPLORE
    • CAREER
      • Companies
      • Jobs
    • EVENTS
    • iGEM
      • News
      • Team
    • PHOTOS
    • VIDEO
    • WIKI
  • BLOG
  • COMMUNITY
    • FACEBOOK
    • INSTAGRAM
    • TWITTER
Tuesday, July 28, 2026
BIOENGINEER.ORG
No Result
View All Result
  • Login
  • HOME
  • NEWS
  • EXPLORE
    • CAREER
      • Companies
      • Jobs
        • Lecturer
        • PhD Studentship
        • Postdoc
        • Research Assistant
    • EVENTS
    • iGEM
      • News
      • Team
    • PHOTOS
    • VIDEO
    • WIKI
  • BLOG
  • COMMUNITY
    • FACEBOOK
    • INSTAGRAM
    • TWITTER
  • HOME
  • NEWS
  • EXPLORE
    • CAREER
      • Companies
      • Jobs
        • Lecturer
        • PhD Studentship
        • Postdoc
        • Research Assistant
    • EVENTS
    • iGEM
      • News
      • Team
    • PHOTOS
    • VIDEO
    • WIKI
  • BLOG
  • COMMUNITY
    • FACEBOOK
    • INSTAGRAM
    • TWITTER
No Result
View All Result
Bioengineer.org
No Result
View All Result
Home NEWS Science News Biology

Nanotube Links Enable Communication Between Social Amoebae

Bioengineer by Bioengineer
July 28, 2026
in Biology
Reading Time: 2 mins read
0
Nanotube Links Enable Communication Between Social Amoebae
Share on FacebookShare on TwitterShare on LinkedinShare on RedditShare on Telegram

Social amoebae coordinate as individual cells form shifting, cooperative assemblies. New findings now suggest that this coordination is supported by more intimate physical exchange than previously thought. Researchers studying Dictyostelium discoideum report that cells can build tunneling nanotubes—thin, actin-rich bridges that directly connect neighboring cell membranes.

Using fluorescent labeling and advanced imaging, the team tracked how communication travels through these unicellular organisms. They confirmed that chemical signals can diffuse between cells and that membrane-bound vesicles also participate in cargo movement. But beyond these pathways, the study highlights an additional route: cytoplasmic material can be transferred through nanotubes that physically link distant cells.

Tunneling nanotubes (TNTs) proved capable of carrying cellular components and organelles across separation distances reaching about 100 micrometers. This is a crucial scale because it allows exchange beyond what diffusion alone would readily accomplish within relevant timeframes.

The nanotubes were not merely structural artifacts. The researchers tested whether TNTs persist under cytoskeletal stress by disrupting actin polymerization with depolymerizing agents. Remarkably, the protrusions continued to function, indicating that TNT-mediated transfer can remain operational even when the actin network is perturbed.

Their microscopy revealed multiple TNT architectures, including branching structures capable of connecting more than two cells at once. Such branching offers a plausible mechanism for routing material across a network rather than relying on simple pairwise contact.

The work also reports occasional cross-species connectivity, with nanotubes observed bridging cells from different amoeba species. This raises questions about what molecular features enable compatibility between cell types and how such bridges may influence ecological interactions.

Intercellular material transfer is a defining feature of multicellular life, where coordinated behavior depends on regulated exchange of signals and internal components. The authors propose that tunneling nanotubes could represent an evolutionary bridge from solitary unicellular signaling toward more integrated multicellularity.

Overall, the study reframes communication in early-branching eukaryotes by adding a direct, physical form of connectivity to the established chemical and vesicle-based modes. For viral-style science coverage, the headline is clear: social amoebae may be “networked” not only by messages, but by literal cellular bridges.

Subject of Research: Intercellular communication in the social amoeba Dictyostelium discoideum via tunneling nanotubes
Article Title: Nanotubes enable intercellular communication in early-branching eukaryotes
News Publication Date: 28-Jul-2026
Web References: Not provided
References: Not provided
Image Credits: Harikumar R. Suma
Keywords: tunneling nanotubes, Dictyostelium discoideum, actin, intercellular communication, cytoplasmic cargo transfer, organelles, cytoskeleton perturbation, fluorescent imaging

Tags: actin-rich membrane bridgesadvanced imaging of nanotubescytoplasmic transfer via nanotubescytoskeletal disruption effects on TNTsDictyostelium discoideum cell signalingintercellular communicationlong-distance cellular communication mechanismsnanotube architecture and branchingnon-diffusive signal transfer in amoebaeorganelle exchange in unicellular organismsrole of TNTs in cell coordinationtunneling nanotubes in social amoebae

Share12Tweet7Share2ShareShareShare1

Related Posts

AI Camera System Tracks Bumblebees, Offering Affordable Insect Monitoring

AI Camera System Tracks Bumblebees, Offering Affordable Insect Monitoring

July 28, 2026
TIE1 suppresses fertilization-independent endosperm development by recruiting PRC2

TIE1 suppresses fertilization-independent endosperm development by recruiting PRC2

July 28, 2026

Forces of Push and Pull Shape How Blood Flows Through Vessels

July 28, 2026

How the body’s natural recycling system may reduce inflammation

July 28, 2026

POPULAR NEWS

  • Methylglyoxal and acrolein disrupt arginine balance, causing hyperglycemia in male zebrafish

    29 shares
    Share 12 Tweet 7
  • Randomized Trial Finds Benefits of Exclusive Human Milk Diet in Single-Ventricle Neonates

    29 shares
    Share 12 Tweet 7
  • Biguanide derivative 4C boosts talazoparib by triggering ferroptosis in bladder cancer

    29 shares
    Share 12 Tweet 7
  • Heterointerface Engineering in Bimetallic Sulfides Cuts Polarization Loss for Better Microwave Absorption

    29 shares
    Share 12 Tweet 7

About

We bring you the latest biotechnology news from best research centers and universities around the world. Check our website.

Follow us

Recent News

Methylglyoxal and acrolein disrupt arginine balance, causing hyperglycemia in male zebrafish

Randomized Trial Finds Benefits of Exclusive Human Milk Diet in Single-Ventricle Neonates

Biguanide derivative 4C boosts talazoparib by triggering ferroptosis in bladder cancer

Subscribe to Blog via Email

Enter your email address to subscribe to this blog and receive notifications of new posts by email.

Join 85 other subscribers
  • Contact Us

Bioengineer.org © Copyright 2023 All Rights Reserved.

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In
No Result
View All Result
  • Homepages
    • Home Page 1
    • Home Page 2
  • News
  • National
  • Business
  • Health
  • Lifestyle
  • Science

Bioengineer.org © Copyright 2023 All Rights Reserved.