Antihyperalgesic effect by herpes vector-mediated knockdown of NaV1.7 sodium channels after skin incision.

Neuroreport

aDepartment of Anesthesia, Perioperative and Pain Medicine, Stanford University School of Medicine, Stanford, California bDepartment of Anesthesiology, University of Erlangen, Erlangen, Germany.

Published: August 2017

Postincisional hyperalgesia and allodynia play an important role in perioperative medicine. NaV1.7 sodium channel has proven to be a key player in several pain states, including acute, inflammatory, and neuropathic pain. This study investigated the effects of silencing NaV1.7 through Herpes-based gene therapy with an antisense transcript on pain states after incision of the skin in rodents. Seventy-six Balb/C mice were subdivided into six groups and were treated with no virus, control virus, or NaV1.7 antisense vector before lateral hindpaw skin incision or sham procedure. All mice were tested for mechanical allodynia, cold allodynia, and thermal hyperalgesia. For time series analysis, a two-way analysis of variance with post-hoc Bonferroni testing was used. After incision mice developed significant hypersensitivity to mechanical, cold, and heat stimuli. The NaV1.7 antisense vector blocked the hypersensitivity to mechanical, cold, and heat stimuli that was normally observed 24 and 48 h after incision. We demonstrated that a gene therapy-based NaV1.7 knockdown affects postincisional hyperalgesia and allodynia. The data provide evidence that the incision model leads to periwound hypersensitivity after incision and that application of the NaV1.7 antisense virus prevents this sensitization. This then, in turn, provides presumptive support to the hypothesis that overexpression of the NaV1.7 channel is an important mechanism underlying hyperalgesia and allodynia following skin incision.

Download full-text PDF

Source
http://dx.doi.org/10.1097/WNR.0000000000000814DOI Listing

Publication Analysis

Top Keywords

skin incision
12
hyperalgesia allodynia
12
nav17 antisense
12
nav17
8
nav17 sodium
8
incision
8
postincisional hyperalgesia
8
pain states
8
antisense vector
8
hypersensitivity mechanical
8

Similar Publications

Objective: To compare the 3-year outcomes of the modified minimally invasive Ponto surgery (m-MIPS) to both the original MIPS (o-MIPS) and linear incision technique with soft tissue preservation (LIT-TP) for inserting bone-anchored hearing implants (BAHIs).

Study Design: Prospective study with three patient groups: m-MIPS, o-MIPS, and LIT-TP.

Setting: Tertiary referral center.

View Article and Find Full Text PDF

Bagging an Extremity for Negative-Pressure Wound Therapy: A Case Report.

Adv Skin Wound Care

January 2025

Krešimir Bulić, MD, PhD, is Professor, Department of Plastic, Reconstructive and Aesthetic Surgery, University Hospital Center Zagreb, Croatia, and Department of Surgery, University of Zagreb School of Medicine. Lucija Gatin, MD, is Resident, Department of Plastic, Reconstructive and Aesthetic Surgery, University Hospital Center Zagreb.

Negative-pressure wound therapy (NPWT) is used to promote wound closure or to prepare a wound for definite coverage. However, the anatomy of the hand makes it difficult to apply dressings that require an airtight seal. In this report, the authors describe the case of a patient with an extensive defect of his right hand and forearm who was treated with a free fibula osteocutaneous flap transfer.

View Article and Find Full Text PDF

Fungal Osteomyelitis of a Diabetic Foot Infection Caused by Trichosporon asahii: A Case Report.

Adv Skin Wound Care

January 2025

At Baylor College of Medicine, Houston, Texas, United States, Livia Frost, BS, is Medical Student, School of Medicine; Ya Xu, MD, PhD, is Assistant Professor, Department of Pathology & Immunology; and Yuriko Fukuta, MD, PhD, CWSP, is Assistant Professor, Department of Medicine, Section of Infectious Diseases.

Diabetic foot bacterial osteomyelitis is a serious infection that can lead to major amputations. However, fungal osteomyelitis in a diabetic foot ulcer is uncommon and has been underrecognized. It typically occurs in patients with underlying immunocompromised status and is associated with poor outcomes.

View Article and Find Full Text PDF

Massive Localized Lymphedema, Wound Care Without Major Surgical Excision: A Case Report.

Adv Skin Wound Care

January 2025

Danique Heuvelings, MD, is Medical Doctor and Surgical PhD Candidate, Department of Surgery, Maastricht University Medical Center, Maastricht, the Netherlands, and NUTRIM School of Nutrition and Translational Research in Metabolism, Maastricht University. Also at Department of Surgery, Maastricht University Medical Center, Jishmaël van der Horst, MD, is Clinical Specialist, and Fanny Pelzer, MD, is Wound Care Nurse. Frits Aarts, MD, PhD, is Oncological Surgeon, Department of Surgery, VieCuri Medical Centre, Venlo, the Netherlands. Sanne Engelen, MD, PhD, is Oncological Surgeon, Department of Surgery, Maastricht University Medical Center.

Massive localized lymphedema (MLL) is a benign overgrowth of lymphoproliferative tissue that is primarily observed in adults with class III obesity. Patients present with a painless mass that has usually been present for a considerable period. Consultation of a healthcare professional typically takes place when MLL-related complaints interfere with daily living.

View Article and Find Full Text PDF

Treatment of 50 Acute and Chronic Wounds of Multiple Etiologies: A Case Series Looking at Outcomes and Utility of an Extended-Wear Transforming Powder Dressing.

Adv Skin Wound Care

January 2025

In the Department of Surgery, NYU Long Island School of Medicine, Mineola, New York, Sawyer Cimaroli, MD, is Surgical Resident; Danilo Lozada, MS, is Medical Student; and James Daniels, MD, is Surgical Resident. Brian Gillette, PhD, is Research Scientist, Department of Foundation of Medicine, NYU Long Island School of Medicine and Department of Surgery, NYU Langone Hospital Long Island. Scott Gorenstein, MD, is Clinical Assistant Professor, Department of Surgery, NYU Long Island School of Medicine.

Increasing healthcare costs, limited healthcare resources, an aging population, and lifestyle-related diseases make wound management a growing clinical, social, and economic burden. This case series investigated the use of a novel, biocompatible, polymer-based transforming powder dressing (TPD) that transforms in situ to a shape-retentive wound matrix upon hydration for treating wounds of various etiologies.In this institutional review board-approved single-center retrospective case series, the researchers evaluated various acute and chronic wounds treated with TPD over a period of 2 years.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!