Fish meal replacement with poultry byproduct and black soldier fly larvae proteins: effects on growth, flesh quality, bioactivity, and physiological responses of Nile tilapia

S Samar M. Aref H Heba A. Alian F Fatma M. Khodary A András Székács O Omar Saeed M Mohamed Hamdy Eid A Abdallah Elshawadfy Elwakeel M M. Alhumedi A Atef Fathy Ahmed T Tamer E. Moussa-Ayoub M Mohamed E. Salem

Abstract

Abstract The demand for fishmeal is increasing, but its supply is stagnating or even declining. There is an urgent need to find an eco-friendly and cost-effective alternative protein source. This study evaluated poultry by-product and insect meal as alternatives to fishmeal for the health performance and bioactivity of Nile tilapia. A Nile tilapia fry was divided into four groups with three replicates (No = 168). The first group was fed a basal diet containing 20% fishmeal (T FM ). The second, third, and fourth groups received a basal diet where the fishmeal was substituted with poultry by-product meal (T PM ), insect meal from Hermetia illucens (T IM ), and a mixture of poultry by-product and insect meal (T MIX ), respectively. The overall growth performance data indicated that T FM and T IM significantly achieved the highest growth rates and feed utilization ( P  < 0.05). The T IM diet significantly exhibited the highest total phenolic content, and both T IM and T FM showed superior antioxidant activity in fish muscle. There were no abnormal hematological or serum biochemical parameters observed in Nile tilapia fed insect meal and/or poultry by-product. The fish fillet samples from all groups were microbiologically safe for human consumption. Fish fed T IM displayed the lowest levels of TNF-α and the highest levels of IL-10 ( P  < 0.05). All the groups exhibited normal architecture of the internal organs. The significantly highest recorded absorption surface area was found in both T FM and T IM diets ( P  < 0.05). The NF-κB immunostaining showed no significant changes among experimental groups ( P  > 0.05). Based on this study, it can be suggested that the insect meal can be a sustainable and cost-effective substitute for conventional fishmeal in aquaculture feed formulations.

Article Details

Volume / Issue Vol. 16, Issue 1
Published March 19, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (11)

S

Samar M. Aref

H

Heba A. Alian

F

Fatma M. Khodary

A

András Székács

O

Omar Saeed

M

Mohamed Hamdy Eid

A

Abdallah Elshawadfy Elwakeel

M

M. Alhumedi

A

Atef Fathy Ahmed

T

Tamer E. Moussa-Ayoub

M

Mohamed E. Salem