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Estrogen and G Protein-Coupled Estrogen Receptor Influence the Response to Hypoxia and Respiratory Neuroplasticity
Estrogen and G Protein-Coupled Estrogen Receptor Influence the Response to Hypoxia and Res...
Estrogen and G Protein-Coupled Estrogen Receptor Influence the Response to Hypoxia and Respiratory Neuroplasticity

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자료유형  
 학위논문 서양
최종처리일시  
20260202103600
ISBN  
9798286445820
DDC  
616
저자명  
Grittner, Jessica M. L.
서명/저자  
Estrogen and G Protein-Coupled Estrogen Receptor Influence the Response to Hypoxia and Respiratory Neuroplasticity
발행사항  
[Sl] : University of Minnesota, 2025
발행사항  
Ann Arbor : ProQuest Dissertations & Theses, 2025
형태사항  
159 p
주기사항  
Source: Dissertations Abstracts International, Volume: 86-12, Section: B.
주기사항  
Advisor: Dougherty, Brenden.
학위논문주기  
Thesis (Ph.D.)--University of Minnesota, 2025.
초록/해제  
요약The importance of studying of sex as a biologic variable has garnered increasing attention, even provoking the National Institutes of Health to create a policy requiring researchers to analyze their results while using sex as a variable. This direction is a vast undertaking because there is a massive gap in the literature in the inclusion of both sexes, let alone analyzing results based on sex. Research needs to fill both gaps - to include sex as a biologic variable and to correct the historical underrepresentation of women, even via the use of female animals, in biomedical research. Specific to the study of neuroplasticity, it is clear that sex hormones are integral to the facilitation of plasticity, but there are many unknowns surrounding these mechanisms. This thesis focuses on one type of neuroplasticity: phrenic long-term facilitation (pLTF). pLTF is a type of spinal respiratory plasticity that is commonly elicited with shorts bursts of acute intermittent hypoxia (AIH). It is known that removing the gonads (GDX) in animals eliminates pLTF, and that it is restored via estrogen in both males and females. In GDX-females, pLTF can be restored with estrogen supplementation, and in GDX-males testosterone must be converted into estrogen via aromatase. Further, females also only exhibit pLTF during the proestrus phase of the estrus cycle (when circulating levels of estrogen are high), and the female mechanism for estrogen's role is nongenomic. It is also known that sex hormones are important to the response to hypoxia as a stimulus. Studies in this area have provided diverse and often conflicting data. Part of the reason for the assortment of findings is due to the wide range in the variety of stimuli, physiological variables attended to, and measurement strategies. However, it has been established that men and women have different cardiorespiratory responses to hypoxia, and those differences largely increase after women go through menopause. This thesis investigated the roles of estrogen and a single estrogen receptor to both hypoxia as a stimulus and pLTF. It was found that in females, the loss of estrogen from GDX did not impact responses to hypoxia, but that aged females had a reduced magnitude in their reaction to hypoxia. Differences in metabolism were critical to the analysis of this finding. The role of G protein-coupled estrogen receptor (GPER) in the respiratory system was investigated. A colocalization experiment demonstrated that GPER is expressed equally in male and female phrenic motor neurons (a novel finding). Using injections of a GPER antagonist versus a placebo, it was found that GPER antagonism led to a decreased magnitude in the male response to hypoxia, but not the female response. Similar to the first study, differences in metabolism were central. Lastly, injections of GPER antagonist versus a placebo did not appear to impact male or female pLTF when AIH was administered. However, females that were injected with GPER antagonist but not stimulated with AIH also demonstrated pLTF. Much remains to explore to better understand this finding, and several mechanisms are proposed to explain this result.
일반주제명  
Neurosciences
일반주제명  
Aging
일반주제명  
Physiology
일반주제명  
Endocrinology
키워드  
Acute intermittent hypoxia
키워드  
Female physiology
키워드  
Neuroplasticity
키워드  
Respiratory physiology
키워드  
Phrenic long-term facilitation
기타저자  
University of Minnesota Rehabilitation Science
기본자료저록  
Dissertations Abstracts International. 86-12B.
전자적 위치 및 접속  
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MARC

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■1001  ▼aGrittner,  Jessica  M.  L.
■24510▼aEstrogen  and  G  Protein-Coupled  Estrogen  Receptor  Influence  the  Response  to  Hypoxia  and  Respiratory  Neuroplasticity
■260    ▼a[Sl]▼bUniversity  of  Minnesota▼c2025
■260  1▼aAnn  Arbor▼bProQuest  Dissertations  &  Theses▼c2025
■300    ▼a159  p
■500    ▼aSource:  Dissertations  Abstracts  International,  Volume:  86-12,  Section:  B.
■500    ▼aAdvisor:  Dougherty,  Brenden.
■5021  ▼aThesis  (Ph.D.)--University  of  Minnesota,  2025.
■520    ▼aThe  importance  of  studying  of  sex  as  a  biologic  variable  has  garnered  increasing  attention,  even  provoking  the  National  Institutes  of  Health  to  create  a  policy  requiring  researchers  to  analyze  their  results  while  using  sex  as  a  variable.  This  direction  is  a  vast  undertaking  because  there  is  a  massive  gap  in  the  literature  in  the  inclusion  of  both  sexes,  let  alone  analyzing  results  based  on  sex.  Research  needs  to  fill  both  gaps  -  to  include  sex  as  a  biologic  variable  and  to  correct  the  historical  underrepresentation  of  women,  even  via  the  use  of  female  animals,  in  biomedical  research.  Specific  to  the  study  of  neuroplasticity,  it  is  clear  that  sex  hormones  are  integral  to  the  facilitation  of  plasticity,  but  there  are  many  unknowns  surrounding  these  mechanisms.  This  thesis  focuses  on  one  type  of  neuroplasticity:  phrenic  long-term  facilitation  (pLTF).  pLTF  is  a  type  of  spinal  respiratory  plasticity  that  is  commonly  elicited  with  shorts  bursts  of  acute  intermittent  hypoxia  (AIH).  It  is  known  that  removing  the  gonads  (GDX)  in  animals  eliminates  pLTF,  and  that  it  is  restored  via  estrogen  in  both  males  and  females.  In  GDX-females,  pLTF  can  be  restored  with  estrogen  supplementation,  and  in  GDX-males  testosterone  must  be  converted  into  estrogen  via  aromatase.  Further,  females  also  only  exhibit  pLTF  during  the  proestrus  phase  of  the  estrus  cycle  (when  circulating  levels  of  estrogen  are  high),  and  the  female  mechanism  for  estrogen's  role  is  nongenomic.  It  is  also  known  that  sex  hormones  are  important  to  the  response  to  hypoxia  as  a  stimulus.  Studies  in  this  area  have  provided  diverse  and  often  conflicting  data.  Part  of  the  reason  for  the  assortment  of  findings  is  due  to  the  wide  range  in  the  variety  of  stimuli,  physiological  variables  attended  to,  and  measurement  strategies.  However,  it  has  been  established  that  men  and  women  have  different  cardiorespiratory  responses  to  hypoxia,  and  those  differences  largely  increase  after  women  go  through  menopause.  This  thesis  investigated  the  roles  of  estrogen  and  a  single  estrogen  receptor  to  both  hypoxia  as  a  stimulus  and  pLTF.  It  was  found  that  in  females,  the  loss  of  estrogen  from  GDX  did  not  impact  responses  to  hypoxia,  but  that  aged  females  had  a  reduced  magnitude  in  their  reaction  to  hypoxia.  Differences  in  metabolism  were  critical  to  the  analysis  of  this  finding.  The  role  of  G  protein-coupled  estrogen  receptor  (GPER)  in  the  respiratory  system  was  investigated.  A  colocalization  experiment  demonstrated  that  GPER  is  expressed  equally  in  male  and  female  phrenic  motor  neurons  (a  novel  finding).    Using  injections  of  a  GPER  antagonist  versus  a  placebo,  it  was  found  that  GPER  antagonism  led  to  a  decreased  magnitude  in  the  male  response  to  hypoxia,  but  not  the  female  response.  Similar  to  the  first  study,  differences  in  metabolism  were  central.  Lastly,  injections  of  GPER  antagonist  versus  a  placebo  did  not  appear  to  impact  male  or  female  pLTF  when  AIH  was  administered.  However,  females  that  were  injected  with  GPER  antagonist  but  not  stimulated  with  AIH  also  demonstrated  pLTF.  Much  remains  to  explore  to  better  understand  this  finding,  and  several  mechanisms  are  proposed  to  explain  this  result.
■590    ▼aSchool  code:  0130.
■650  4▼aNeurosciences
■650  4▼aAging
■650  4▼aPhysiology
■650  4▼aEndocrinology
■653    ▼aAcute  intermittent  hypoxia
■653    ▼aFemale  physiology
■653    ▼aNeuroplasticity
■653    ▼aRespiratory  physiology
■653    ▼aPhrenic  long-term  facilitation
■690    ▼a0317
■690    ▼a0493
■690    ▼a0409
■690    ▼a0719
■71020▼aUniversity  of  Minnesota▼bRehabilitation  Science.
■7730  ▼tDissertations  Abstracts  International▼g86-12B.
■790    ▼a0130
■791    ▼aPh.D.
■792    ▼a2025
■793    ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T17357786▼nKERIS▼z이  자료의  원문은  한국교육학술정보원에서  제공합니다.

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