Summary

Apical resectie muismodel naar Early Mammalian Hart Regeneration Studie

Published: January 23, 2016
doi:

Summary

A step-by-step video protocol of apical resection is demonstrated in this study. Apical resection is a recently highlighted surgical approach in mammalian heart regeneration research. This study may promote the application of apical resection as a standard methodology in research into the mechanism underlying heart regeneration.

Abstract

Cardiovasculaire aandoeningen teistert de hele wereld als gevolg van intensieve veranderingen in levensstijl. Hart regeneratie houdt grote belofte voor de reparatie en het herstel van hartspiercellen verloren als gevolg van verwondingen en ziekte. In tegenstelling tot de robuuste cardiale regeneratie van bepaalde lagere gewervelde dieren, volwassen zoogdieren harten tonen meestal minimale capaciteit voor hart regeneratie en reparatie. Echter, recente studies leidde tot grote wetenschappelijke belangstelling met de bevinding dat, tussen postnatale dag 1-7 (P1 tot P7), de neonatale muis hart behoudt significant regeneratieve potentieel na apicale resectie (dwz, chirurgische amputatie en de blootstelling van de linker ventriculaire apex). Een belangrijke controverse over deze bevinding kan te wijten zijn aan de uiteenlopende-operatie-gerelateerde procedures die worden gebruikt bij de inspanningen om te repliceren of uit te breiden op dit belangrijke bevinding. Deze instructies dynamisch presenteren de materialen en methodologie voor apicale resectie in een muismodel. De meest opvallende stappen van deze knaagdieren Survival chirurgie betrekken onderkoeling anesthesie, thoracotomie, chirurgische amputatie van hart ventriculaire apex en hechtdraad en het herstel van de muizen. De aanpak beschreven kan de toepassing van de apicale resectie muismodel voor cardiovasculair onderzoek uit te breiden.

Introduction

Prolonged human life span leads to various aging- and lifestyle-related diseases, including heart failure, a leading cause of mortality. However, without replacement of lost or dysfunctional cardiac muscle cells, current therapeutics can only transiently improve cardiac function1, 2. Thus, it is necessary to discover and develop innovative strategies for cardiac regeneration and repair. The adult mammalian heart has limited regenerative potential. Studies from lower vertebrates, such as urodele amphibians and teleost fish, have provided unprecedented insights into the molecular and cellular mechanisms underlying heart regeneration3, 4. Recently, a neonatal mouse model of heart regeneration has emerged that might enable identification and characterization of more evolutionarily conserved pathophysiological events required for human heart regeneration5.

Apical resection refers to the surgical removal of left ventricular apex. This procedure is restricted to 1- to 7-day-old (P1 to P7) mice due to its high lethality in older mice6. The cardiac regeneration process in neonatal mice after apical resection is expected to be as follows: (I) rapid and effective formation of a hematoma to seal the apex and prevent exsanguination; (II) cardiomyocyte regeneration and restoration of systolic function5, 7. Recent work has stimulated debate on the significance and efficiency of this model8-11. Thus, it is important to present the apical resection clearly and in detail. To this end, this protocol vividly and specifically describes a video of how I did apical resection based on a previous protocol6.

Understanding the molecular mechanisms underlying cardiac regeneration is of importance for treatment of heart disease characterized by loss and/or injured cardiomyocytes, such as heart failure1, 2. Given the current and promising progress of apical resection in the research of cardiac regeneration, this study could promote the use of this technique and its uses in cardiac regeneration research.

Protocol

Alle muizen experimenten werden goedgekeurd door de Animal Care en gebruik Program aan de National Institutes of Health (NIH) met protocol nummer H0083R3. De NHLBI IACUC keurde het protocol zonder pijnstillers. 1. Onderkoeling Anesthesie in Neonatale Muizen Steriliseren sponzen en chirurgische apparatuur in een autoclaaf voor de operatie. Bereid de chirurgische materialen en schakel een hete kraal sterilisator 15-20 min vooraf aan 240 ° C bereikt tot 270 ° C. Breng all…

Representative Results

Muis pups werden gedood 1, 2, en 21 dagen na resectie apicale en hun hart werden verzameld voor H & E en Masson's Trichrome kleuring. Kleur in Masson's Trichrome kleuring geeft de afzetting van extracellulaire matrix epicardiale 5. Met succes apicale resectie wordt een bloedstolsel daadwerkelijk gevormd om de LV één dag post-apicale resectie dichten, zoals weergegeven in figuur 1A. Een geleidelijke resorptie van het bloedstolsel en vroege cardiale fibrose waarge…

Discussion

Cardiac regeneration shows potential for the treatment and prevention of heart failure1, 2. Animal models are indispensable and play a critical role in understanding how cardiac regeneration occurs3-6. Many amphibians and fish regenerate heart tissue in response to injury, providing insight into our understanding of human cardiovascular disease13, 14. In terms of evolution, however, the pathophysiology should be more conserved between a mouse model and humans. Heart regeneration in mammal…

Declarações

The authors have nothing to disclose.

Acknowledgements

De auteurs danken Drs. James Hawkins, Zu-Xi Yu en Xuan Qu van het National Heart, Lung, and Blood Institute (NHLBI) voor hun hulp met de muis chirurgie en voorbereiding en kleuring van paraffine secties. De auteurs zijn dankbaar voor de NIH Fellows Editorial Board voor redactionele ondersteuning.

Materials

Olsen-Hegar Needle Holders with Scissors,1.5mm Fine Science Tools 12002-12
Vannas Spring Scissors – 2mm Cutting Edge Fine Science Tools 15000-03 Iridectomy scissors
Hot Bead Sterilizer Fine Science Tools 18000-45
Iris Forceps, Straight, Serrated Fine Science Tools 11064-07
Iris Forceps, Curved, Serrated Fine Science Tools 11065-07
Shea Scissors – Curved/Blunt-Blunt/12cm Fine Science Tools 14105-12
Round Handled Suture Tying Forceps, Straight Fine Science Tools 18025-12
Round Handled Vannas Spring Scissors Fine Science Tools 15400-12
Magnifying Lamp Luxolamp Corp IM120 
Heating lamp Brandt Equipment llc 51152/3
6-0 Prolene sutures Ethicon 8889H
Skin glue-Vetbond Tissue Adhesive  3M  1469
Sterile Cotton Tipped Applicators Dynarex 4305
WEBCOL Alcohol Prep Pad Covidien 6818 Medium 2 PLY, 200/BOX, Satured with 70% Isopropyl Alcohol
Curity All Purpose Sponges Covidien 9024 Non-woven 4 PLY, 4"x4" (10.2cm×10.2cm)
Bench top protector sheet KIMTECH SCIENCE 7546 18" x 19.5" (45.72cm x 49.53cm) x 50
0.9% Sodium Chloride, 250ml Hospira Inc. NDC 0409-6138-22
Betadine Solution Swabsticks Purdue Products L.P. NDC 67618-153-03
Autoclave TOMY Digital Biology SX-700 HIGH-PRESSURE STEAM STERILIZER
Slide scanner HAMAMATSU NanoZoomer 2.0-RS

Referências

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Xiong, J., Hou, J. Apical Resection Mouse Model to Study Early Mammalian Heart Regeneration. J. Vis. Exp. (107), e53488, doi:10.3791/53488 (2016).

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