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An extravascular fluid transport system based on structural framework of fibrous connective tissues in human body

Hongyi Li, Chongqing Yang, Yajun Yin, Fang Wang, Min Chen, Liang Xu, Naili Wang, Di Zhang, Xiaoxia Wang, Yiya Kong, Qing Li, Si Su, Yupeng Cao, Wentao Liu, Zhuo Ao, Luru Dai, Chao Ma, Lijun Shang, Dong Han, Fusui Ji, Hua Li
Key takeaways
  1. 01Connective tissue may have its own fluid transport system
  2. 02Researchers traced pathways from the thumb to the chest
  3. 03Pathways are formed by long, oriented fibrous matrices
  4. 04This system is distinct from blood or lymph vessels
  5. 05Suggests a body-wide network for interstitial fluid

A network of fibrous connective tissue may transport fluid throughout the body, distinct from the circulatory and lymphatic systems.

Abstract

Objective: Interstitial fluid in extracellular matrices may not be totally fixed but partially flow through long-distance oriented fibrous connective tissues via physical mechanisms. We hypothesized there is a long-distance interstitial fluid transport network beyond vascular circulations.

Materials and methods: We first used 20 volunteers to determine hypodermic entrant points to visualize long-distance extravascular pathway by MRI. We then investigated the extravascular pathways initiating from the point of thumb in cadavers by chest compressor. The distributions and structures of long-distance pathways from extremity ending to associated visceral structures were identified.

Results: Using fluorescent tracer, the pathways from right thumb to right atrium wall near chest were visualized in seven of 10 subjects. The cutaneous pathways were found in dermic, hypodermic and fascial tissues of hand and forearm. The perivascular pathways were along the veins of arm, axillary sheath, superior vena cava and into the superficial tissues on right atrium. Histological and micro-CT data showed these pathways were neither blood nor lymphatic vessels but long-distance oriented fibrous matrices, which contained the longitudinally assembled micro-scale fibres consistently from thumb to superficial tissues on right atrium.

Conclusions: These data revealed the structural framework of the fibrous extracellular matrices in oriented fibrous connective tissues was of the long-distance assembled fibres throughout human body. Along fibres, interstitial fluid can systemically transport by certain driving-transfer mechanisms beyond vascular circulations.

Cite this study
APA
Hongyi Li, Chongqing Yang, Yajun Yin, Fang Wang, Min Chen, Liang Xu, Naili Wang, Di Zhang, Xiaoxia Wang, Yiya Kong, Qing Li, Si Su, Yupeng Cao, Wentao Liu, Zhuo Ao, Luru Dai, Chao Ma, Lijun Shang, Dong Han, … Hua Li (2019). An extravascular fluid transport system based on structural framework of fibrous connective tissues in human body. https://fasciaresearchdatabase.com/an-extravascular-fluid-transport-system-based-on-structural-framework-of-fibrous-connective-tissues-in-human-body/
MLA
Hongyi Li, et al. "An extravascular fluid transport system based on structural framework of fibrous connective tissues in human body." 2019, https://fasciaresearchdatabase.com/an-extravascular-fluid-transport-system-based-on-structural-framework-of-fibrous-connective-tissues-in-human-body/.
Chicago
Hongyi Li et al. 2019. "An extravascular fluid transport system based on structural framework of fibrous connective tissues in human body.". https://fasciaresearchdatabase.com/an-extravascular-fluid-transport-system-based-on-structural-framework-of-fibrous-connective-tissues-in-human-body/