<HashMap><database>biostudies-literature</database><scores/><additional><omics_type>Unknown</omics_type><volume>7</volume><submitter>Boulos S</submitter><pubmed_abstract>With an increasing worldwide demand for animal protein, insects are becoming a promising sustainable option for meat protein replacement. However, reported protein contents of insects are often overestimated when calculated as "crude protein" = 6.25 × nitrogen content (&lt;i>N&lt;/i>), compared to true protein contents quantified from the sum of amino acid (AA) residues. In this study, the main two types of usual nitrogen-to-protein conversion factors &lt;i>k&lt;/i> &lt;sub>&lt;i>p&lt;/i>&lt;/sub> and &lt;i>k&lt;/i> &lt;sub>&lt;i>A&lt;/i>&lt;/sub> were determined on the basis of true protein/total nitrogen and true protein/protein nitrogen, respectively, with focus on the three insect species legally sold on the Swiss food market. &lt;i>T. molitor&lt;/i> (mealworm larvae), &lt;i>A. domesticus&lt;/i> (house crickets), and &lt;i>L. migratoria&lt;/i> (locusts) from various breeders were analyzed for total and amide nitrogen, chitin, and AA composition. Careful control experiments of insect samples spiked with a protein standard were conducted to establish the recovery of true protein, which was with >95% excellent. Mealworms, crickets, and locusts exhibited similar AA-profiles and true protein contents of 51, 55, and 47 g/100 g (dry weight basis), respectively. Specific conversion factors &lt;i>k&lt;/i> &lt;sub>&lt;i>p&lt;/i>&lt;/sub> showed little variability between the three insect species with 5.41, 5.25, and 5.33 for mealworms, crickets, and locusts, respectively, and confirmed an average ~17% overestimation of protein contents when using 6.25 × &lt;i>N&lt;/i>. The determined average &lt;i>k&lt;/i&gt; &lt;sub>&lt;i>p&lt;/i>&lt;/sub> of 5.33 is supported by extracted literature data and is suggested for general use instead of 6.25 × &lt;i>N&lt;/i> to calculate more accurate insect protein contents, whereas the average pure protein conversion factor &lt;i>k&lt;/i> &lt;sub>&lt;i>A&lt;/i>&lt;/sub> of 5.6 is proposed for use in the case of insect protein isolates.</pubmed_abstract><journal>Frontiers in nutrition</journal><pagination>89</pagination><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-EPMC7366252</full_dataset_link><repository>biostudies-literature</repository><pubmed_title>Nitrogen-to-Protein Conversion Factors for Edible Insects on the Swiss Market: &lt;i>T. molitor, A. domesticus&lt;/i>, and &lt;i>L. migratoria&lt;/i>.</pubmed_title><pmcid>PMC7366252</pmcid><pubmed_authors>Nystrom L</pubmed_authors><pubmed_authors>Boulos S</pubmed_authors><pubmed_authors>Tannler A</pubmed_authors></additional><is_claimable>false</is_claimable><name>Nitrogen-to-Protein Conversion Factors for Edible Insects on the Swiss Market: &lt;i>T. molitor, A. domesticus&lt;/i>, and &lt;i>L. migratoria&lt;/i>.</name><description>With an increasing worldwide demand for animal protein, insects are becoming a promising sustainable option for meat protein replacement. However, reported protein contents of insects are often overestimated when calculated as "crude protein" = 6.25 × nitrogen content (&lt;i>N&lt;/i>), compared to true protein contents quantified from the sum of amino acid (AA) residues. In this study, the main two types of usual nitrogen-to-protein conversion factors &lt;i>k&lt;/i> &lt;sub>&lt;i>p&lt;/i>&lt;/sub> and &lt;i>k&lt;/i> &lt;sub>&lt;i>A&lt;/i>&lt;/sub> were determined on the basis of true protein/total nitrogen and true protein/protein nitrogen, respectively, with focus on the three insect species legally sold on the Swiss food market. &lt;i>T. molitor&lt;/i> (mealworm larvae), &lt;i>A. domesticus&lt;/i> (house crickets), and &lt;i>L. migratoria&lt;/i> (locusts) from various breeders were analyzed for total and amide nitrogen, chitin, and AA composition. Careful control experiments of insect samples spiked with a protein standard were conducted to establish the recovery of true protein, which was with >95% excellent. Mealworms, crickets, and locusts exhibited similar AA-profiles and true protein contents of 51, 55, and 47 g/100 g (dry weight basis), respectively. Specific conversion factors &lt;i>k&lt;/i> &lt;sub>&lt;i>p&lt;/i>&lt;/sub> showed little variability between the three insect species with 5.41, 5.25, and 5.33 for mealworms, crickets, and locusts, respectively, and confirmed an average ~17% overestimation of protein contents when using 6.25 × &lt;i>N&lt;/i>. The determined average &lt;i>k&lt;/i&gt; &lt;sub>&lt;i>p&lt;/i>&lt;/sub> of 5.33 is supported by extracted literature data and is suggested for general use instead of 6.25 × &lt;i>N&lt;/i> to calculate more accurate insect protein contents, whereas the average pure protein conversion factor &lt;i>k&lt;/i> &lt;sub>&lt;i>A&lt;/i>&lt;/sub> of 5.6 is proposed for use in the case of insect protein isolates.</description><dates><release>2020-01-01T00:00:00Z</release><publication>2020</publication><modification>2025-04-27T02:53:49.287Z</modification><creation>2020-11-20T09:00:14Z</creation></dates><accession>S-EPMC7366252</accession><cross_references><pubmed>32754611</pubmed><doi>10.3389/fnut.2020.00089</doi></cross_references></HashMap>