scholarly journals Neuro-pharmacological reinstatement of ovulation and associated neurobiology in a macaque model of functional hypothalamic amenorrhoea

2020 ◽  
Author(s):  
Cynthia L Bethea ◽  
Judy L Cameron

Abstract STUDY QUESTION What is the underlying neuropathology in a cynomolgus macaque model of functional hypothalamic amenorrhoea (FHA) and can it be normalized to restore ovulation? SUMMARY ANSWER Anovulatory monkeys exhibited increased hypothalamic norepinephrine (NE), kisspeptin and gonadotropin-releasing hormone (GnRH) in the early follicular phase, but administration of the NE reuptake inhibitor (NRI), reboxetine (REB), restored ovulation during stress and normalized NE, kisspeptin and GnRH. WHAT IS KNOWN ALREADY Female cynomolgus macaques, like women, show individual reproductive sensitivity to modest psychosocial and metabolic stress. During stress, resilient females ovulate through two menstrual cycles whereas stress-sensitive (SS) macaques immediately cease ovulation. On Day 5 of a non-stressed menstrual cycle, resilient macaques have less NE synthesizing enzyme [dopamine β-hydroxylase (DBH)], kisspeptin and GnRH innervation of the medial basal hypothalamus but more endogenous serotonin than SS macaques. Stress increased DBH/NE, kisspeptin and GnRH but did not alter serotonin. STUDY DESIGN, SIZE, DURATION In a longitudinal design, 27 adult (7–13 years) female cynomolgus macaques (Macaca fascicularis) with three different levels of sensitivity to stress were monitored with daily vaginal swabs and frequent serum progesterone (P) measurements. Three 90-day experimental periods called ‘Cycle Sets’ were monitored. A Cycle Set consisted of one ovulatory menstrual cycle without stress, and two cycles, or 60 days, with modest stress. Each Cycle Set was followed by a rest period. During a Cycle Set, individuals were either untreated (placebo) or administered escitalopram (CIT) or REB. Ultimately, half of each sensitivity group was euthanized during stress with CIT or REB treatment and the hypothalamus was obtained. Neurobiological endpoints were compared between CIT and REB treatment groups in stress resilient and SS monkeys. PARTICIPANTS/MATERIALS, SETTING, METHODS The monkeys were housed at the University of Pittsburgh primate facility for the duration of the experiments. Upon euthanasia, their brains and serum samples were shipped to the Oregon National Primate Research Center. The hypothalamus was examined with immunohistochemistry for the expression of DBH (a marker for NE axons), kisspeptin and GnRH. P was measured in the serum samples by radioimmunoassay. MAIN RESULTS AND THE ROLE OF CHANCE Daily administration of REB restored ovulation in 9 of 10 SS animals during stress. Of note, REB significantly increased P secretion during stress in the most sensitive group (P = 0.032), which indicates ovulation. CIT lacked efficacy. REB significantly reduced DBH/NE, kisspeptin and GnRH axon density in the hypothalamus relative to CIT treatment (P = 0.003. 0.018 and 0.0001, respectively) on Day 5 of the menstrual cycle in resilient and sensitive groups. LARGE SCALE DATA N/A. LIMITATIONS, REASONS FOR CAUTION The US FDA has not approved REB for human use, although it is used in Europe for the treatment of depression/anxiety as EdronaxTR. Whether REB could be useful for the treatment of FHA in women has not been determined. WIDER IMPLICATIONS FOR THE FINDINGS The use of an NRI to treat FHA is a novel approach and the potential reinstatement of ovulation could be straightforward compared to current treatment protocols. The underlying neurobiology provides a compelling case for treating the origin of the pathology, i.e. elevated NE, rather than circumventing the hypothalamus altogether with gonadotropins, which have associated risks such as hyperstimulation syndrome or multiple births. STUDY FUNDING/COMPETING INTEREST(S) Portions of this study were supported by NIH grant HD062864 to C.L.B., NIH grant HD62618 to J.L.C. and C.L.B. and 1P51 OD011092 for the operation of the Oregon National Primate Research Center. There were no competing interests.

Viruses ◽  
2019 ◽  
Vol 11 (10) ◽  
pp. 971 ◽  
Author(s):  
Vorthon Sawaswong ◽  
Elizabeth Fahsbender ◽  
Eda Altan ◽  
Taratorn Kemthong ◽  
Xutao Deng ◽  
...  

Cynomolgus macaques are common across South East Asian countries including Thailand. The National Primate Research Center of Thailand, Chulalongkorn University (NPRCT-CU) captures wild-borne cynomolgus macaque for research use. Limited information is available on the enteric viruses and possible zoonotic infections into or from cynomolgus macaques. We characterized and compare the fecal virome of two populations; healthy wild-originated captive cynomolgus macaques (n = 43) reared in NPRCT-CU and healthy wild cynomolgus macaques (n = 35). Over 90% of recognized viral sequence reads amplified from feces were from bacterial viruses. Viruses from seven families of mammalian viruses were also detected (Parvoviridae, Anelloviridae, Picornaviridae, Adenoviridae, Papillomaviridae, Herpesviridae, and Caliciviridae). The genomes of a member of a new picornavirus genus we named Mafapivirus, a primate chapparvovirus, and a circular Rep-encoding single-strand (CRESS) DNA virus were also characterized. Higher abundance of CRESS DNA viruses of unknown tropism and invertebrate-tropic ambidensovirus were detected in wild versus captive macaques likely reflecting dietary differences. Short term rearing in captivity did not have a pronounced effect on the diversity of mammalian viruses of wild cynomolgus macaques. This study is the first report of the fecal virome of cynomolgus macaques, non-human primates frequently used in biomedical research and vaccination studies.


2018 ◽  
Vol 70 (7) ◽  
pp. 449-458 ◽  
Author(s):  
Rebecca A. Morgan ◽  
Julie A. Karl ◽  
Hailey E. Bussan ◽  
Katelyn E. Heimbruch ◽  
David H. O’Connor ◽  
...  

2012 ◽  
Vol 28 (3) ◽  
pp. 217 ◽  
Author(s):  
Kyoung-Min Kim ◽  
Sang-Rae Lee ◽  
Kwon-Sik Chang ◽  
Yong-Hoon Lee ◽  
Sung-Woo Kim ◽  
...  

2018 ◽  
Vol 38 (2) ◽  
pp. 115-122
Author(s):  
Sela S Mariya ◽  
Fitriya N Dewi ◽  
Villiandra Villiandra ◽  
Yasmina A Pramastri ◽  
Diah Iskandriati ◽  
...  

Background: Animal models are essential for the development and improvement of novel and effective methods for diagnostic and treatment of human diseases. Cynomolgus monkeys have been used as animal model in asthma studies wherein they exhibited different responses to allergen exposure in the airway; some were low responders while others were high responder. CCL2 is a potent chemotactic factor for monocytes and the gene expression was high in animal model of asthma. The aim of this study was to evaluate CCL2 and CCR2 expression between the low and high responders. Methods: Realtime PCR technique was used to evaluate CCL2 and CCR2 gene expression in bronchoalveolar lavage samples. The subject of this study was asthmatic cynomolgus monkeys, consisted of 4 low responders and 4 high responders. This study was held in Biotechnology Laboratory of Primate Research Center LPPM IPB on October 2016- January 2017. Results: CCL2 and CCR2 expression in low responders were higher than those in high responders at 24hours post airway challenge. Conclusion: CCL2 may potentially be developed as target for therapy or a genetic marker for asthma responsiveness in individuals. (J Respir Indo 2018; 38(2): 115-22)


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