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In This Article

  • Summary
  • Abstract
  • Introduction
  • Protocol
  • Representative Results
  • Discussion
  • Acknowledgements
  • Materials
  • References
  • Reprints and Permissions

Summary

Here, we describe a protocol to use in vivo four-dimensional ultrasound imaging and ex vivo mass spectrometry imaging to assess biomechanical and biomolecular alterations in the murine cardiovascular system. This technique is applied to analyze cardiac remodeling in surgically induced myocardial infarction and vascular changes in aging animals.

Abstract

Cardiovascular disease (CVD) is the leading cause of death in the United States. Damage in the cardiovascular system can be due to environmental exposure, trauma, drug toxicity, or numerous other factors. As a result, cardiac tissue and vasculature undergo structural changes and display diminished function. The damage and the resulting remodeling can be detected and quantified with ultrasound (US) imaging at the organ level and mass spectrometry imaging (MSI) at the molecular level. This manuscript describes an innovative methodology for studying murine cardiac pathophysiology, coupling in vivo four-dimensional (4D) ultrasound imaging and analysis with ex vivo matrix-assisted laser desorption/ionization (MADLI) MSI of the heart. 4D ultrasound can provide dynamic volumetric measurements, including radial displacement, surface area strain, and longitudinal strain throughout an entire cardiac cycle. In the vasculature, MSI and ultrasound are used to assess vessel wall compositions, hemodynamics, and vessel wall dynamics. The methodology can be tailored to study a myriad of CV diseases by adjusting functional metrics of interest and/or varying MALDI MSI protocol to target specific molecules. MALDI MSI can be used to study lipids, small metabolites, peptides, and glycans. This protocol outlines the use of MALDI MSI for untargeted lipidomic analysis and the use of ultrasound imaging for cardiovascular hemodynamics and biomechanics.

Introduction

Cardiovascular disease (CVD) is a leading cause of mortality worldwide1. Prevention and treatment of CVD require an in-depth understanding of molecular adaptations to biomechanical forces and the resulting changes in mechanical properties. Throughout the entire cardiovascular system, biomechanical forces play an important role in the function and structure of the tissue2. The mechanical properties of cardiovascular (CV) tissue are influenced by these forces, making them indicators of health and disease3,4,5....

Protocol

The described animal experiments are carried out with the University of Tennessee, Knoxville Institutional Animal Care and Use Committee approval.

1. Ultrasound imaging13

  1. Setup and animal preparation
    1. Prior to starting the experiment, check the isoflurane anesthesia level and refill if necessary. Check oxygen tank levels before turning on the gas. Weigh the charcoal and record it on the container.
    2. Set up the imaging spa.......

Representative Results

The imaging protocols described above were used for two preliminary studies: myocardial infarction (MI) remodeling and vascular aging. For the cardiac experiments, a permanent coronary artery ligation surgery was done in order to induce acute myocardial infarction18,19. 4D ultrasound and MALDI MSI were performed progressively on the same tissue, unveiling physiological and molecular changes. Representative molecular ion images in an infarcted heart are shown in <.......

Discussion

US imaging can be operator-dependent, but the use of anatomical landmarks and adequate training can limit user bias. 2D ultrasound is particularly susceptible to inter-user variability because views are angle-dependent, whereas 4DUS is less susceptible as acquisition encompasses the entire volume and is angle-independent. It was also determined that image reproducibility is easier to achieve because of the adjustable animal platform and transducer holder. US data collection should ideally be conducted by the same researc.......

Acknowledgements

Allison Jones is supported by the University of Tennessee, Mechanical, Aerospace & Biomedical Engineering Department Graduate Fellowship. Research reported in this publication (Conner Earl) was supported by the National Heart, Lung, and Blood Institute of the National Institutes of Health F30HL162452. The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health.

....

Materials

NameCompanyCatalog NumberComments
2,5-dihydroxybenzoic acid (DHB)Supelco,  >99.0% (HPLC)85707-10MG-FDHB matrix substance for MALDI-MS; https://www.sigmaaldrich.com/US/en/product/sigma/85707?cm_sp=Insite-_-wimsShippingEmailRecs_wims
EmailAPI_wimsGruCrossEntropy-_-wimsEmailAPI10-3
9-aminoacridine (9AA)Supelco,  ≥99.5% (HPLC)92817-1G9-Aminoacridine matrix substance for MALDI-MS; https://www.sigmaaldrich.com/US/en/product/sial/92817?srsltid=AfmBOooiQjQ4pWv_XxITkU
4Lkm0UnHXKekGS_
dFl7V40V9QLWoPpNLoc
Aquasonic Ultrasound GelParker LaboratoriesParker 01-02Ultrasound Gel; https://www.parkerlabs.com/products/aquasonic-100-ultrasound-transmission-gel/
Benchtop Dewar FlasksThermoScientific 4150-2000Container for liquid nitrogen; https://www.thermofisher.com/order/catalog/product/4150-4000?gclid=Cj0KCQjwpvK4BhDUARIsA
DHt9sQVc2f-NxN04Nb5Mv
F6TZ7GLHWWDEeqDYmEvtKJSQ
YHDeVgZ9qylvYaAs27EALw_wcB
&source=google_shopping&ISO_
CODE=us&LANG_CODE=en&ef_id
=Cj0KCQjwpvK4BhDUARIsADHt9
sQVc2f-NxN04Nb5MvF6TZ7GLHWWDE
eqDYmEvtKJSQYHDeVgZ9qylvYa
As27EALw_wcB:G:s&s_kwcid=AL!3652
!3!716188292869!!!g!2366243726129
!!21787513085!171591181194&ev_chn
=shop&cid=0se_gaw_30092024_
PBYTXL&source=google_shopping
&ISO_CODE=us&LANG_CODE=
en&gad_source=1
CryostatLeica BiosystemsCM Serieshttps://www.leicabiosystems.com/us/histology-equipment/cryostats/
DessicatorVWR 89054-052https://us.vwr.com/store/product/9104882/desiccator-plastic-ace-glass-incorporated
Epredia MX35 Premier Disposable Low-profile Microtome BladesFisher Scientific3052835Cryostat blade; https://www.fishersci.com/shop/products/mx35-premier-disposable-low-profile-microtome-blades/3052835
Falcon 15 mL Conical Centrifuge TubesFisher Scientific14-959-53AConical Tubes; https://www.fishersci.com/shop/products/falcon-15ml-conical-centrifuge-tubes-5/1495953A?gclid=Cj0KCQjwpvK4BhDUARIsA
DHt9sSBcy5n-lhShligJUOX5KKVGn0bt87
8AB2_muOD2PPTue1phpZgeqwa
AqgiEALw_wcB&ef_id=Cj0KCQjw
pvK4BhDUARIsADHt9sSBcy5n-lhS
hligJUOX5KKVGn0bt878AB2_muO
D2PPTue1phpZgeqwaAqgiEALw_
wcB:G:s&ppc_id=PLA_goog_20861
45674_81843405034_1495953A__
386247001345_165426395473886
37329&ev_chn=shop&s_kwcid=AL!4428!3
!386247001345!!!g!856907751004!&
gad_source=1
Flex-Tubes Microcentrifuge TubesEppendorf EP022364120Centrifuge tubes; https://www.sigmaaldrich.com/US/en/product/sigma/ep022364120?utm_source=google%2Cgoogle&utm
_medium=organicshopping%2Ccpc&utm
_campaign=21043330280&utm_
content=&gclid=Cj0KCQjwpv
K4BhDUARIsADHt9sTHRD35k
CHPtfI2A41axodnMVr6a1eBKk
zM4bSUYQAyfEKo3UgTAEQa
Ap7wEALw_wcB
Gas NitrogenAirgasN/A
Glass microscope slidesElectron Microscopy Sciences71873-02https://www.emsdiasum.com/positive-charge-microscope-slides
Liquid NitrogenAirgasN/A
Mass SpectrometerWatersSynapt G2-Sihttps://www.waters.com/waters/en_US/SYNAPT-G2-Si-Mass-Spectrometry/nav.htm?locale=en_mkcid=1000251Foodety%3C/a%3E&cid=134740653&bcid=
134528734
Matrix SprayerHTX TechnologiesM3+https://www.htximaging.com/htx-m3-sprayer
Methanol (HPLC), >99.9%Fisher Chemical A4524Methanol; https://www.fishersci.com/shop/products/methanol-hplc-fisher-chemical-9/A4524?crossRef=A4524#?keyword=A4524
Preclinical Ultrasound System FUJIFILM VisualSonicsVevo 3100https://www.visualsonics.com/product/imaging-systems/vevo-3100; Vevo F2 has replaced the Vevo 3100 in production. System includes isoflurane vaporizer and induction box. 
Reynolds WrapN/AN/AAluminum foil
Signagel  Electrode GelParker LaboratoriesParker 15-60Electrode Conducting Gel; https://www.parkerlabs.com/products/signagel-electrode-gel/
Sterile Lubricating JellyMedline MDS032273ZLubricating Gel; https://www.medline.com/ce/product/Sterile-Lubricating-Jelly/Lubricating-Jelly/Z05-PF03664?sku=MDPMDS032273H
Surgical instruments: scissors, forceps/tweezers, suturesFine Science Tools11252-00, 11050-10, 14016-14, 14084-08, 15000-08info@finescience.com
Surgical Sponges 200 Pack –Gauze Pads Non sterile -First Aid Wound Care Dressing Sponge –Woven Medical Nonstick, Non Adherent Mesh ScrubbingMedpride B08RZGQ5GWGauze; https://www.amazon.com/Medpride-Surgical-Sponges-200-Pack/dp/B08RZGQ5GW/ref=asc_df_B08RZGQ5GW/?tag=hyprod-20&linkCode=df0&h
vadid=693270340506&hvpos=
&hvnetw=g&hvrand=960915122
2290977669&hvpone=&hvptwo=
&hvqmt=&hvdev=c&hvdvcmdl=&
hvlocint=&hvlocphy=9192978&hv
targid=pla-1245491514869&psc=
1&mcid=33f4d647c88630c79116
888d565a63b0
Tissue-Plus O.C.T. Compound Fisher Scientific23-730-571OCT; https://www.fishersci.com/shop/products/tissue-plus-o-c-t-compound-2/23730571
Wood Handled Cotton Swabs and ApplicatorsFisherbrand 22-363-160Cotton swab; https://www.fishersci.com/shop/products/wood-handled-cotton-swabs-applicators-8/p-7146852

References

  1. Tsao, C. W., et al. Heart disease and stroke statistics-2022 update: A report from the American Heart Association. Circulation. 145 (8), E153-E639 (2022).
  2. Kassab, G. S. Biomechani....

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