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

Effect of glucoraphanin and sulforaphane against chemotherapy‐induced neuropathic pain: Kv7 potassium channels modulation by H2S release in vivo

View through CrossRef
The beneficial effects of isothiocyanate‐based compounds, as well as their safety, have been shown in neuropathological disorders, such as neuropathic pain. Aim of the present work was to study the efficacy of the glucosinolate glucoraphanin (GRA) and the derived isothiocyanate sulforaphane (SFN), secondary metabolites occurring exclusively in Brassicales, on chemotherapy‐induced neuropathic pain. Mice were repeatedly treated with oxaliplatin (2.4 mg kg−1 ip) for 14 days to induce neuropathic pain. GRA and SFN effects were evaluated after a single administration on Day 15 or after a daily repeated oral and subcutaneous treatment starting from the first day of oxaliplatin injection until the 14th day. Single subcutaneous and oral administrations of GRA (4.43–119.79 μmol kg−1) or SFN (1.33–13.31 μmol kg−1) reduced neuropathic pain in a dose‐dependent manner. The repeated administration of GRA and SFN (respectively 13.31 and 4.43 μmol kg−1) prevented the chemotherapy‐induced neuropathy. The co‐administration of GRA and SFN in mixture with the H2S binding molecule, haemoglobin, abolished their pain‐relieving effect, which was also reverted by pretreating the animals with the selective blocker of Kv7 potassium channels, XE991. GRA and SFN reduce neuropathic pain by releasing H2S and modulating Kv7 channels and show a protective effect on the chemotherapy‐induced neuropathy.
Title: Effect of glucoraphanin and sulforaphane against chemotherapy‐induced neuropathic pain: Kv7 potassium channels modulation by H2S release in vivo
Description:
The beneficial effects of isothiocyanate‐based compounds, as well as their safety, have been shown in neuropathological disorders, such as neuropathic pain.
Aim of the present work was to study the efficacy of the glucosinolate glucoraphanin (GRA) and the derived isothiocyanate sulforaphane (SFN), secondary metabolites occurring exclusively in Brassicales, on chemotherapy‐induced neuropathic pain.
Mice were repeatedly treated with oxaliplatin (2.
4 mg kg−1 ip) for 14 days to induce neuropathic pain.
GRA and SFN effects were evaluated after a single administration on Day 15 or after a daily repeated oral and subcutaneous treatment starting from the first day of oxaliplatin injection until the 14th day.
Single subcutaneous and oral administrations of GRA (4.
43–119.
79 μmol kg−1) or SFN (1.
33–13.
31 μmol kg−1) reduced neuropathic pain in a dose‐dependent manner.
The repeated administration of GRA and SFN (respectively 13.
31 and 4.
43 μmol kg−1) prevented the chemotherapy‐induced neuropathy.
The co‐administration of GRA and SFN in mixture with the H2S binding molecule, haemoglobin, abolished their pain‐relieving effect, which was also reverted by pretreating the animals with the selective blocker of Kv7 potassium channels, XE991.
GRA and SFN reduce neuropathic pain by releasing H2S and modulating Kv7 channels and show a protective effect on the chemotherapy‐induced neuropathy.

Related Results

Data from The Role of Lysosome-associated Membrane Protein 2 in Prostate Cancer Chemopreventive Mechanisms of Sulforaphane
Data from The Role of Lysosome-associated Membrane Protein 2 in Prostate Cancer Chemopreventive Mechanisms of Sulforaphane
<div>Abstract<p>Prostate cancer chemoprevention by sulforaphane, which is a metabolic by-product of glucoraphanin found in broccoli, in preclinical models is associated...
Alternative Chemistries for H2S Scavenging – Total Feedback
Alternative Chemistries for H2S Scavenging – Total Feedback
Abstract Hydrogen sulphide (H2S) is naturally occurring in many oil and gas production streams. H2S scavengers are used as additives to reduce the concentration of H...
Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Abstract Thoracic outlet syndrome (TOS) is a complex and often overlooked condition caused by the compression of neurovascular structures as they pass through the thoracic outlet. ...
Microwave Ablation with or Without Chemotherapy in Management of Non-Small Cell Lung Cancer: A Systematic Review
Microwave Ablation with or Without Chemotherapy in Management of Non-Small Cell Lung Cancer: A Systematic Review
Abstract Introduction  Microwave ablation (MWA) has emerged as a minimally invasive treatment for patients with inoperable non-small cell lung cancer (NSCLC). However, whether it i...
Types of Chronic Pain After Total Knee Arthroplasty and Their Relationship with Pain Intensity, Disability, and Quality of Life
Types of Chronic Pain After Total Knee Arthroplasty and Their Relationship with Pain Intensity, Disability, and Quality of Life
OBJECTIVE: To determine the prevalence of different pain mechanisms, including nociplastic pain, and to evaluate the associations of these mechanisms with pain intensity, disabilit...
Investigation of H2S Migration In Marjan Complex
Investigation of H2S Migration In Marjan Complex
Abstract Marjan complex is a large offshore oil field located in the Arabian Gulf and is composed of four fields: Marjan 1, Marjan 2, Marjan 3 and Marjan 4. Currentl...
Renal Ewing Sarcoma: A Case Report and Literature Review
Renal Ewing Sarcoma: A Case Report and Literature Review
Abstract Introduction Primary renal Ewing sarcoma is an extremely rare and aggressive tumor, representing less than 1% of all renal tumors. This case report contributes valuable in...
NLRP3 inflammasome: a key driver of neuroinflammation and a novel therapeutic target for neuropathic pain
NLRP3 inflammasome: a key driver of neuroinflammation and a novel therapeutic target for neuropathic pain
Neuropathic pain represents a serious complication arising from a spectrum of disorders that precipitate lesions within the central and peripheral nervous systems. This disabling p...

Back to Top