Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Sphingosine 1 phosphate promotes hypertension specific memory T cell trafficking in response to repeated hypertensive challenges

View through CrossRef
We have previously shown that effector memory (TEM) cells accumulate in the bone marrow (BM) and the kidney in response to l-NAME/high salt challenge. It is not well understood if measures to block the exodus of that effector memory cells prevent redistribution of these cells and protect from hypertension-induced renal damage. We hypothesized that that effector memory cells that accumulate in the bone marrow respond to repeated salt challenges and can be reactivated and circulate to the kidney. Thus, to determine if mobilization of bone marrow that effector memory cells and secondary lymphoid organs contribute to the hypertensive response to delayed salt challenges, we employed fingolimod (FTY720), an S1PR1 functional antagonist by downregulating S1PR, which inhibits the egress of that effector memory cells used effectively in the treatment of multiple sclerosis and cardiovascular diseases. We exposed wild-type mice to the l-NAME for 2 weeks, followed by a wash-out period, a high salt diet feeding for 4 weeks, a wash-out period, and then a second high salt challenge with or without fingolimod. A striking finding is that that effector memory cell egress was dramatically attenuated from the bone marrow of mice treated with fingolimod with an associated reduction of renal that effector memory cells. Mice receiving fingolimod were protected from hypertension. We found that wild-type mice that received fingolimod during the second high salt challenge had a marked decrease in the renal damage markers. CD3+ T cell infiltration was significantly attenuated in the fingolimod-treated mice. To further examine the redistribution of bone marrow that effector memory cells in response to repeated hypertensive stimuli, we harvested the bone marrow from CD45.2 mice following the repeated high salt protocol with or without fingolimod; that effector memory cells were sorted and adoptively transferred (AT) to CD45.1 naïve recipients. Adoptively transferred that effector memory cells from mice treated with fingolimod failed to home to the bone marrow and traffic to the kidney in response to a high salt diet. We conclude that memory T cell mobilization contributes to the predisposition to hypertension and end-organ damage for prolonged periods following an initial episode of hypertension. Blocking the exodus of reactivated that effector memory cells from the bone marrow protects the kidney from hypertension-induced end-organ damage.
Title: Sphingosine 1 phosphate promotes hypertension specific memory T cell trafficking in response to repeated hypertensive challenges
Description:
We have previously shown that effector memory (TEM) cells accumulate in the bone marrow (BM) and the kidney in response to l-NAME/high salt challenge.
It is not well understood if measures to block the exodus of that effector memory cells prevent redistribution of these cells and protect from hypertension-induced renal damage.
We hypothesized that that effector memory cells that accumulate in the bone marrow respond to repeated salt challenges and can be reactivated and circulate to the kidney.
Thus, to determine if mobilization of bone marrow that effector memory cells and secondary lymphoid organs contribute to the hypertensive response to delayed salt challenges, we employed fingolimod (FTY720), an S1PR1 functional antagonist by downregulating S1PR, which inhibits the egress of that effector memory cells used effectively in the treatment of multiple sclerosis and cardiovascular diseases.
We exposed wild-type mice to the l-NAME for 2 weeks, followed by a wash-out period, a high salt diet feeding for 4 weeks, a wash-out period, and then a second high salt challenge with or without fingolimod.
A striking finding is that that effector memory cell egress was dramatically attenuated from the bone marrow of mice treated with fingolimod with an associated reduction of renal that effector memory cells.
Mice receiving fingolimod were protected from hypertension.
We found that wild-type mice that received fingolimod during the second high salt challenge had a marked decrease in the renal damage markers.
CD3+ T cell infiltration was significantly attenuated in the fingolimod-treated mice.
To further examine the redistribution of bone marrow that effector memory cells in response to repeated hypertensive stimuli, we harvested the bone marrow from CD45.
2 mice following the repeated high salt protocol with or without fingolimod; that effector memory cells were sorted and adoptively transferred (AT) to CD45.
1 naïve recipients.
Adoptively transferred that effector memory cells from mice treated with fingolimod failed to home to the bone marrow and traffic to the kidney in response to a high salt diet.
We conclude that memory T cell mobilization contributes to the predisposition to hypertension and end-organ damage for prolonged periods following an initial episode of hypertension.
Blocking the exodus of reactivated that effector memory cells from the bone marrow protects the kidney from hypertension-induced end-organ damage.

Related Results

Sphingosine Prevents Rhinoviral Infections
Sphingosine Prevents Rhinoviral Infections
Rhinoviral infections cause approximately 50% of upper respiratory tract infections and novel treatment options are urgently required. We tested the effects of 10 μM to 20 μM sphin...
Effects of Contextual Cues on False Memory: A Comparative Experimental Approach
Effects of Contextual Cues on False Memory: A Comparative Experimental Approach
Research on false memory formation using the Deese-Roediger-McDermott (DRM) paradigm has been extensively conducted in Western contexts. Yet, a significant gap remains in experimen...
Legal regulations against human trafficking
Legal regulations against human trafficking
Legislative support for combating human trafficking is represented by such documents as the UN Convention against Trafficking in Human Beings and the Exploitation of Prostitution b...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
Inhaled Sphingosine Has no Adverse Side Effects in Isolated Ventilated and Perfused Pig Lungs
Inhaled Sphingosine Has no Adverse Side Effects in Isolated Ventilated and Perfused Pig Lungs
Abstract Background: Ex-vivo lung perfusion (EVLP) systems like XVIVOâ are more and more common in the setting of lung transplantation, since marginal donor-lungs can easil...
HYPERTENSIVE CRISES: HYPERTENSIVE EMERGENCY AND CRISIS MANAGEMENT DURING ANESTHESIA
HYPERTENSIVE CRISES: HYPERTENSIVE EMERGENCY AND CRISIS MANAGEMENT DURING ANESTHESIA
Introduction: hypertensive crisis is characterized by an acute and massive increase in blood pressure. Hypertensive crises encompass several clinical situations with different seve...
GW24-e3137 The etiology investigate of hypertension incidence in children
GW24-e3137 The etiology investigate of hypertension incidence in children
Objectives Through retrospective analysis of related factors of children’s hypertension what is composed by primary hypertension and secondary hypertension diseas...
Recent advances in the role of sphingosine 1‐phosphate in cancer
Recent advances in the role of sphingosine 1‐phosphate in cancer
Sphingosine 1‐phosphate (S1P) is a bioactive lipid that binds to a family of G protein‐coupled receptors (S1P1–5) and intracellular targets, such as HDAC1/2, that are functional in...

Back to Top