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In Depth Look Into the Peer Reviewed Science of Eating Chitin in Insects - Chitin/Jab Connection
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Links from video:
A parasitological evaluation of edible insects and their role in the transmission of parasitic diseases to humans and animals
https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0219303
Chitin and Its Effects on Inflammatory and Immune Responses
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5680136/
Animal-Origin Prebiotics Based on Chitin: An Alternative for the Future? A Critical Review
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7353569/
Chitin and Chitosan: Production and Application of Versatile Biomedical Nanomaterials
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5094803/
Current trends in fungal biosynthesis of chitin and chitosan
Most of the chitin and chitosan biological properties are directly related to their physicochemical characteristics. These characteristics include degree of deacetylation, molecular mass, and the amount of moisture content (Aranaz et al. 2009). For example, chitosan-mediated inhibition of fungal and bacterial growth relies on the functional groups and molecular weight of chitosan. Two theories have been proposed for chitosan antimicrobial activity. The first theory relays on molecular weight; the smaller oligomeric chitosan can easily penetrate the cellular membrane and prevents the cell growth by inhibiting RNA transcription (Klaykruayat et al. 2010). The second relays on the polycationic nature of chitosan which changes the cellular permeability and induce the leakage of intracellular components due to interaction with anionic components of the cell membrane leading to cell death (Lim and Hudson 2004). Moreover, chitosan may disrupt the microbial cell physiological activities by absorbing the electronegative substrate, e.g., proteins, and finally death of cells (Zheng and Zhu 2003). The distribution of acetyl groups and the length of polymer chain in chitin and chitosan affect their biodegradation kinetics (Zhang and Neau 2001). It has been reported that chitosan with a high degree of deacetylation (97.5%) has a higher positive charge density compared to the moderate DD (83.7%), thus confers a stronger antibacterial activity (Kong et al. 2010).
https://bnrc.springeropen.com/articles/10.1186/s42269-019-0105-y
Novel hydrogels prepared via direct dissolution of chitin at low temperature: structure and biocompatibility
https://pubs.rsc.org/en/content/articlelanding/2011/jm/c0jm03075a
DARPA developed a hydrogel sensor which monitors blood for infections at early stages, not a microchip for COVID-19 identification or location tracker
A sensor injected under the skin, backed by DARPA, is meant to spot COVID-19 days before symptoms appear
https://www.businessinsider.com/military-sensor-skin-covid-darpa-19-2021-4?amp
Chitin, Chitosan, and Glycated Chitosan Regulate Immune Responses: The Novel Adjuvants for Cancer Vaccine
https://www.hindawi.com/journals/jir/2013/387023/
Recent advances on chitosan as an adjuvant for vaccine delivery
https://www.sciencedirect.com/science/article/abs/pii/S0141813021027598
Chitosan-Based Nanoparticles Against Viral Infections
https://www.frontiersin.org/articles/10.3389/fcimb.2021.643953/full
Non-complexed chitosan acts as an adjuvant in an influenza A virus protein vaccine
https://www.jimmunol.org/content/202/1_Supplement/139.14
Chitosan-DNA nanoparticles as non- viral vectors in gene therapy: strategies to improve transfection efficacy
https://pubmed.ncbi.nlm.nih.gov/14729076/
Drug Carrier Systems Using Chitosan for Non Parenteral Routes
https://www.intechopen.com/chapters/46134
Chitosan induces Ca2+-mediated programmed cell death in soybean cells
Category | Science & Technology |
Sensitivity | Normal - Content that is suitable for ages 16 and over |
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