Chuang YuChing, Shinn Andrew P, Bron James E
Institute of Aquaculture, University of Stirling, 5F.-2, No. 196, Sec. 2, Xinglong Rd., Wenshan Dist., Taipei City, 116096, Taiwan (R.O.C.).
Institute of Aquaculture, University of Stirling, Stirling, Scotland, FK9 4LA, UK.
Parasitol Res. 2025 Jan 9;124(1):3. doi: 10.1007/s00436-024-08446-0.
This study set out to characterise the in vitro development, including musculature, of the microphallid parasite of the barnacle Semibalanus balanoides (Linnaeus, 1767), Maritrema gratiosum Nicoll, 1907 collected in Scotland. An in vitro culture model was developed to obtain ovigerous adults of M. gratiosum and their morphology was observed. Different media were tested and NCTC-109 was chosen as the best medium. The effects of different concentrations of serum upon adult longevity, size and egg production was measured. Survival for 10-days was achieved when flukes were cultured in NCTC-109 plus chicken serum and antibiotics. Forty percent chicken serum seemed to provide better results in terms of survival time and producing flukes with the largest body lengths. Both normal and abnormal eggs were observed from adults cultured in vitro. Confocal microscopy was undertaken to provide details of the development of the parasite's ultrastructure, including musculature, during the course of in vitro culture. While the musculature of M. gratiosum was similar to that of other microphallids, some additional novel structures were observed, most notably a ligament connecting pars prostatica and seminal vesicle and a racket-shaped excretory bladder. This study has provided greater insight into the biology M. gratiosum, and also developed a good in vitro model which might be applied to ecological or medical research in the future.
本研究旨在描述在苏格兰采集的藤壶龟甲藤壶(Semibalanus balanoides,林奈,1767年)的微小阴茎吸虫(Maritrema gratiosum,尼科尔,1907年)的体外发育情况,包括其肌肉组织。建立了一种体外培养模型以获得怀卵的格氏微阴茎吸虫成虫,并对其形态进行了观察。测试了不同的培养基,选择NCTC-109作为最佳培养基。测定了不同浓度血清对成虫寿命、大小和产卵量的影响。当吸虫在NCTC-109加鸡血清和抗生素中培养时,可存活10天。40%的鸡血清在存活时间和产生体长最大的吸虫方面似乎能提供更好的结果。在体外培养的成虫中观察到了正常和异常的卵。采用共聚焦显微镜观察了体外培养过程中寄生虫超微结构(包括肌肉组织)的发育细节。虽然格氏微阴茎吸虫的肌肉组织与其他微小阴茎吸虫相似,但观察到了一些额外的新结构,最显著的是连接前列腺部和精囊的韧带以及球拍状的排泄膀胱。本研究为格氏微阴茎吸虫的生物学特性提供了更深入的了解,还建立了一个良好的体外模型,未来可能应用于生态或医学研究。