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1.
Reprod Biol Endocrinol ; 22(1): 55, 2024 May 14.
Article in English | MEDLINE | ID: mdl-38745305

ABSTRACT

The role of cytoplasmic fragmentation in human embryo development and reproductive potential is widely recognized, albeit without standard definition nor agreed upon implication. While fragmentation is best understood to be a natural process across species, the origin of fragmentation remains incompletely understood and likely multifactorial. Several factors including embryo culture condition, gamete quality, aneuploidy, and abnormal cytokinesis seem to have important role in the etiology of cytoplasmic fragmentation. Fragmentation reduces the volume of cytoplasm and depletes embryo of essential organelles and regulatory proteins, compromising the developmental potential of the embryo. While it has been shown that degree of fragmentation and embryo implantation potential are inversely proportional, the degree, pattern, and distribution of fragmentation as it relates to pregnancy outcome is debated in the literature. This review highlights some of the challenges in analysis of fragmentation, while revealing trends in our evolving knowledge of how fragmentation may relate to functional development of the human embryos, implantation, and pregnancy outcome.


Subject(s)
Cytoplasm , Embryonic Development , Pregnancy Outcome , Humans , Female , Pregnancy , Embryonic Development/physiology , Cytoplasm/metabolism , Cytoplasm/physiology , Embryo Implantation/physiology
4.
Gynecol Oncol Rep ; 45: 101134, 2023 Feb.
Article in English | MEDLINE | ID: mdl-36683776

ABSTRACT

Surveillance for cervical cancer recurrence after radical trachelectomy is challenging and warrants additional research to establish evidence-based screening guidelines. Papanicolaou (Pap smear) with HPV testing, physical exam, and symptom reporting remain the standard of care despite high false positive rates. In this patient with a history of early-stage cervical adenocarcinoma status post radical trachelectomy, a diagnosis of recurrence was made hysteroscopically, prompting evaluation of the utility of this technique for screening and management of patients with suspected recurrent cervical cancer after trachelectomy.

5.
Article in English | MEDLINE | ID: mdl-33831581

ABSTRACT

Chronic electrical stimulation (CES) is a well-documented method for changing mammalian muscle from more fast-twitch to slow-twitch metabolic and contractile profiles. Although both mammalian and insect muscles have many similar anatomical and physiological properties, it is unknown if CES produces similar muscle plasticity changes in insects. To test this idea, we separated Schistocerca americana grasshoppers into two groups (n = 37 to 47): one that was subjected to CES for 180 min each day for five consecutive days and one group that was not. Each group was then electrically stimulated for a single time period (0, 5, 30, 60, or 180 min) before measuring jumping muscle lactate, a characteristic of fast-twitch type fibers. At each time point, CES led to a significantly reduced jumping muscle lactate concentration. Based on similar short-term CES mammalian studies, the reduction in lactate production was most likely due to a reduced reliance on anaerobic metabolism. Thus, longer stimulation periods should result in greater aerobic enzymatic activities, altered myosin ATPase, and shift fiber types. This is the first study to use electrical stimulation to explore insect muscle plasticity and our results show that grasshopper jumping muscle responds similarly to mammalian muscle.


Subject(s)
Electric Stimulation , Grasshoppers/physiology , Muscle Fibers, Fast-Twitch/physiology , Muscle Fibers, Slow-Twitch/physiology , Anaerobiosis , Animals , Female , Lactic Acid/metabolism , Muscle Contraction/physiology , Muscle Fibers, Fast-Twitch/metabolism , Muscle Fibers, Slow-Twitch/metabolism , Myosins/metabolism , Oxygen/metabolism , Time Factors
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