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Hormone-Immune Associations in Pregnant Mares, Early Diagnosis of Ascending Placentitis, and Age-Dependent Parameters of the Cytotoxic Immune Response in Foals
Hormone-Immune Associations in Pregnant Mares, Early Diagnosis of Ascending Placentitis, a...
Hormone-Immune Associations in Pregnant Mares, Early Diagnosis of Ascending Placentitis, and Age-Dependent Parameters of the Cytotoxic Immune Response in Foals

상세정보

자료유형  
 학위논문 서양
최종처리일시  
20260202104717
ISBN  
9798293826391
DDC  
636
저자명  
Soares Feijo, Lorena.
서명/저자  
Hormone-Immune Associations in Pregnant Mares, Early Diagnosis of Ascending Placentitis, and Age-Dependent Parameters of the Cytotoxic Immune Response in Foals
발행사항  
[Sl] : Cornell University, 2025
발행사항  
Ann Arbor : ProQuest Dissertations & Theses, 2025
형태사항  
256 p
주기사항  
Source: Dissertations Abstracts International, Volume: 87-03, Section: B.
주기사항  
Advisor: Felippe, Maria.
학위논문주기  
Thesis (Ph.D.)--Cornell University, 2025.
초록/해제  
요약In pregnant mares, the complex relationship between the immune and hormonal systems is crucial for maintaining pregnancy and ensuring fetal health. In high-risk pregnancies, ascending placentitis is a leading cause of late-term pregnancy loss in mares. Additionally, neonatal foals are highly vulnerable to infections by opportunistic intracellular pathogens, making an effective cytotoxic immune response essential for protection. In my first study, I investigated the dynamics of hormone-immune and hormone-hormone associations throughout normal pregnancy in mares. Blood samples were longitudinally collected from pre-ovulation to late gestation. A gestational-age-specific modulation of immune cell distribution was observed, particularly a rise in CD4 T cells and a decline in B cells at 90 days of gestation, which correlated with levels of equine chorionic gonadotropin (eCG), progesterone (P4), 5α-dihydroprogesterone (DHP), and estrone-sulfate. Later in gestation (210 days), this pattern reversed, with peak B cell distribution and a concurrent decrease in CD4 T cells. This study revealed complex hormone-immune associations, especially during early and mid-pregnancy, suggesting that a tightly regulated hormonal environment may orchestrate immune modulation to support pregnancy. In my second study, I aimed to identify blood parameters associated with early events of naturally-occurring ascending placentitis. A cohort of 24 mares (12 mares with placentitis vs 12 control mares) was evaluated through reproductive ultrasonography and serial blood sampling. Early stages of ascending placentitis did not appear to induce obvious systemic immunological or inflammatory changes, with the exception of decreased albumin levels. Interestingly, the feto-placental unit appeared to be highly responsive, as evidenced by significant hormonal alterations. Mares with placentitis showed a markedly reduced DHP/20α-DHP ratio and lower estradiol-17β concentrations. These hormonal changes, particularly when combined with reduced albumin levels, demonstrated strong predictive value for diagnosing placentitis. A follow-up analysis stratified by placentitis severity revealed additional hormonal disruptions, further reinforcing the diagnostic value of hormonal parameters, even in the absence of overt systemic inflammation. In my third study, I addressed the immune cytotoxic response in foals by investigating potential age-dependent limitations of three key immune cell types: CD8 cytotoxic T cells, T regulatory cells (Tregs), and monocyte-derived macrophages (mMOs) in neonates (4 days old), foals (35 days old), and adult horses. Neonatal and foal CD8 T cells demonstrated adult-like proliferative capacity but produced significantly lower cytokine levels. IFN-γ production was notably enhanced upon IL-12 stimulation, indicating a capacity for functional augmentation. Circulating Treg frequencies were higher in neonates and foals than adults. Additionally, mMOs from neonates and foals mounted an adult-like IFN-γ response to CpG-ODN stimulation, while failing to respond to other stimuli, including inactivated Rhodococcus equi, rotavirus, and Escherichia coli. Collectively, these studies provide novel insights into the immune and hormonal adaptations that support equine pregnancy and the developmental trajectory of neonatal immunity.
일반주제명  
Animal sciences
일반주제명  
Immunology
일반주제명  
Endocrinology
키워드  
Cytotoxic response
키워드  
Equine chorionic gonadotropin
키워드  
Hormones
키워드  
Immune system
키워드  
Inflammation
키워드  
Pregnancy
기타저자  
Cornell University Animal Science
기본자료저록  
Dissertations Abstracts International. 87-03B.
전자적 위치 및 접속  
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MARC

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■1001  ▼aSoares  Feijo,  Lorena.▼0(orcid)0000-0002-1451-5561
■24510▼aHormone-Immune  Associations  in  Pregnant  Mares,  Early  Diagnosis  of  Ascending  Placentitis,  and  Age-Dependent  Parameters  of  the  Cytotoxic  Immune  Response  in  Foals
■260    ▼a[Sl]▼bCornell  University▼c2025
■260  1▼aAnn  Arbor▼bProQuest  Dissertations  &  Theses▼c2025
■300    ▼a256  p
■500    ▼aSource:  Dissertations  Abstracts  International,  Volume:  87-03,  Section:  B.
■500    ▼aAdvisor:  Felippe,  Maria.
■5021  ▼aThesis  (Ph.D.)--Cornell  University,  2025.
■520    ▼aIn  pregnant  mares,  the  complex  relationship  between  the  immune  and  hormonal  systems  is  crucial  for  maintaining  pregnancy  and  ensuring  fetal  health.  In  high-risk  pregnancies,  ascending  placentitis  is  a  leading  cause  of  late-term  pregnancy  loss  in  mares.  Additionally,  neonatal  foals  are  highly  vulnerable  to  infections  by  opportunistic  intracellular  pathogens,  making  an  effective  cytotoxic  immune  response  essential  for  protection.  In  my  first  study,  I  investigated  the  dynamics  of  hormone-immune  and  hormone-hormone  associations  throughout  normal  pregnancy  in  mares.  Blood  samples  were  longitudinally  collected  from  pre-ovulation  to  late  gestation.  A  gestational-age-specific  modulation  of  immune  cell  distribution  was  observed,  particularly  a  rise  in  CD4  T  cells  and  a  decline  in  B  cells  at  90  days  of  gestation,  which  correlated  with  levels  of  equine  chorionic  gonadotropin  (eCG),  progesterone  (P4),  5α-dihydroprogesterone  (DHP),  and  estrone-sulfate.  Later  in  gestation  (210  days),  this  pattern  reversed,  with  peak  B  cell  distribution  and  a  concurrent  decrease  in  CD4  T  cells.  This  study  revealed  complex  hormone-immune  associations,  especially  during  early  and  mid-pregnancy,  suggesting  that  a  tightly  regulated  hormonal  environment  may  orchestrate  immune  modulation  to  support  pregnancy.  In  my  second  study,  I  aimed  to  identify  blood  parameters  associated  with  early  events  of  naturally-occurring  ascending  placentitis.  A  cohort  of  24  mares  (12  mares  with  placentitis  vs  12  control  mares)  was  evaluated  through  reproductive  ultrasonography  and  serial  blood  sampling.  Early  stages  of  ascending  placentitis  did  not  appear  to  induce  obvious  systemic  immunological  or  inflammatory  changes,  with  the  exception  of  decreased  albumin  levels.  Interestingly,  the  feto-placental  unit  appeared  to  be  highly  responsive,  as  evidenced  by  significant  hormonal  alterations.  Mares  with  placentitis  showed  a  markedly  reduced  DHP/20α-DHP  ratio  and  lower  estradiol-17β  concentrations.  These  hormonal  changes,  particularly  when  combined  with  reduced  albumin  levels,  demonstrated  strong  predictive  value  for  diagnosing  placentitis.  A  follow-up  analysis  stratified  by  placentitis  severity  revealed  additional  hormonal  disruptions,  further  reinforcing  the  diagnostic  value  of  hormonal  parameters,  even  in  the  absence  of  overt  systemic  inflammation.  In  my  third  study,  I  addressed  the  immune  cytotoxic  response  in  foals  by  investigating  potential  age-dependent  limitations  of  three  key  immune  cell  types:  CD8  cytotoxic  T  cells,  T  regulatory  cells  (Tregs),  and  monocyte-derived  macrophages  (mMOs)  in  neonates  (4  days  old),  foals  (35  days  old),  and  adult  horses.  Neonatal  and  foal  CD8  T  cells  demonstrated  adult-like  proliferative  capacity  but  produced  significantly  lower  cytokine  levels.  IFN-γ  production  was  notably  enhanced  upon  IL-12  stimulation,  indicating  a  capacity  for  functional  augmentation.  Circulating  Treg  frequencies  were  higher  in  neonates  and  foals  than  adults.  Additionally,  mMOs  from  neonates  and  foals  mounted  an  adult-like  IFN-γ  response  to  CpG-ODN  stimulation,  while  failing  to  respond  to  other  stimuli,  including  inactivated  Rhodococcus  equi,  rotavirus,  and  Escherichia  coli.  Collectively,  these  studies  provide  novel  insights  into  the  immune  and  hormonal  adaptations  that  support  equine  pregnancy  and  the  developmental  trajectory  of  neonatal  immunity.
■590    ▼aSchool  code:  0058.
■650  4▼aAnimal  sciences
■650  4▼aImmunology
■650  4▼aEndocrinology
■653    ▼aCytotoxic  response
■653    ▼aEquine  chorionic  gonadotropin
■653    ▼aHormones
■653    ▼aImmune  system
■653    ▼aInflammation
■653    ▼aPregnancy
■690    ▼a0475
■690    ▼a0982
■690    ▼a0409
■71020▼aCornell  University▼bAnimal  Science.
■7730  ▼tDissertations  Abstracts  International▼g87-03B.
■790    ▼a0058
■791    ▼aPh.D.
■792    ▼a2025
■793    ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T17358547▼nKERIS▼z이  자료의  원문은  한국교육학술정보원에서  제공합니다.

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