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A novel lymphatic pattern promotes metastasis of cervical cancer in a hypoxic tumour-associated macrophage-dependent manner

Xiao-Jing Chen; Wen-Fei Wei; Zi-Ci Wang; Nisha Wang; Chu-Hong Guo; Chen-Fei Zhou; Luo-Jiao Liang; Sha Wu; Li Liang; Wei Wang
Angiogenesis · Vol. 24, Issue 3 · pp. 549-565 · 2021

Abstract

Lymphatic remodelling in the hypoxic tumour microenvironment (TME) is critically involved in the metastasis of cervical squamous cell carcinoma (CSCC); however, its underlying mechanisms remain unclear. Here, we uncovered a novel lymphatic pattern in the hypoxic TME, wherein lymphatic vessels (LVs) are encapsulated by tumour-associated macrophages (TAMs) to form an interconnected network. We describe these aggregates as LVEM (LVs encapsulated by TAMs) considering their advantageous metastatic capacity and active involvement in early lymph node metastasis (LNM). Mechanistic investigations revealed that interleukin-10 (IL-10) derived from hypoxic TAMs adjacent to LVs was a prerequisite for lymphangiogenesis and LVEM formation through its induction of Sp1 upregulation in lymphatic endothelial cells (LECs). Interestingly, Sp1 high LECs promoted the transactivation of C–C motif chemokine ligand 1 (CCL1) to facilitate TAM and tumour cell recruitment, thereby forming a positive feedback loop to strengthen the LVEM formation. Knockdown of Sp1 or blockage of CCL1 abrogated LVEM and consequently attenuated LNM. Notably, CSCC non-LNM is largely devoid of hypoxic TAMs and the resultant LVEM, which might explain its metastatic delay. These findings identify a novel and efficient metastasis-promoting lymphatic pattern in the hypoxic TME, which might provide new targets for anti-metastasis therapy and prognostic assessment.

Bibliographic Information

JournalAngiogenesis
PublisherSpringer
Publication Date2021-08-01
Publication Year2021
Volume24
Issue3
Pages549-565
Document TypeJournal Article
eISSN1573-7209
DOI10.1007/s10456-020-09766-2

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10456
Publisher PageOpen Publisher Page
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