VNN感染的石斑鱼的血细胞,基于纳米纳米基-纳米颗粒的疫苗对它们的影响

Gian Suryanatha Hartawan, Uun Yanuhar, Muhammad Musa, Heru Suryanto, Gunanti Mahasri, Apri Supii, Nico Rahman Caesar
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引用次数: 0

摘要

沧塘石斑鱼(Epinephelus sp.)是一种具有较高经济价值的鱼类,已被广泛养殖。由Betanodavirus感染引起的VNN病可导致沧塘石斑鱼的大量死亡。预防病毒性神经坏死(VNN)疾病的有效措施包括疫苗接种。本研究旨在探讨壳聚糖复合纳米颗粒重组寻常小球藻蛋白纳米疫苗对甘唐石斑鱼VNN感染后免疫应答的影响。研究分为5个处理:K+(感染VNN的沧塘石斑鱼)、K-(健康沧塘石斑鱼)、T1(健康沧塘石斑鱼注射33µl纳米疫苗,然后用VNN攻毒)、T2(健康沧塘石斑鱼注射66µl纳米疫苗,然后用VNN攻毒)和T3(健康沧塘石斑鱼注射112µl纳米疫苗,然后用VNN攻毒)。观察到的参数包括血液学、纳米疫苗相对存活率(RPS)和存活率(SR)水平。研究结果表明,与未施用纳米疫苗的治疗相比,施用纳米疫苗增加了鱼的免疫应答,如cantang石斑鱼的血液学应答、RPS和SR的增加。本研究纳米疫苗的最佳剂量为33µl。& # x0D;关键词:鱼病;纳米疫苗;病毒
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Pengaruh Nanovaksin Berbasis Nanopartikel Hybrid Chitosan Terhadap Sel Darah Ikan Kerapu Cantang Yang Diinfeksi VNN
Cantang grouper (Epinephelus sp.) is a fish with a high economic value and has been widely cultivated. VNN disase, caused by Betanodavirus infection, can lead to mass mortality of cantang grouper. Precautions considered effective in preventing Viral nervous necrosis (VNN) disease include vaccination. This study aimed to determine the effect of administering recombinant Chlorella vulgaris protein nanovaccine based on chitosan hybrid nanoparticles in increasing the immune response of cantang grouper infected with VNN. The study consisted of five treatments: K+ (cantang grouper infected with VNN), K- (healthy cantang grouper), T1 (healthy cantang grouper given 33 µl of nanovaccine and then challenged with VNN), T2 (healthy cantang grouper given 66 µl of nanovaccine and then tested with a VNN challenge), and T3 (healthy cantang grouper given 112 µl of nanovaccine and then tested with a VNN challenge). The parameters observed were haematology, nanovaccine Relative percent survival (RPS), and Survival rate (SR) levels. The study results showed that administering the nanovaccine increased the immune response of the fish, as indicated by an increase in haematology response, RPS, and SR in cantang grouper compared to the treatment without nanovaccine administration. The best dose of nanovaccine in this study is 33 µl. Keywords: fish disease, nanovaccines, virus, C. vulgaris, grouper
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