Development of CRID3-Based Anti-inflammatory Agents to Ameliorate Chronic Hypoxia-Induced Memory Impairment in Zebrafish Models.

Kalyani Soren, Rakesh K Bollikanda, Tapatee Das, Shashikant Patel, Kodi Gnaneshwari, Pankaj Malakar, Arvind Kumar, Srinivas Kantevari, Sumana Chakravarty
Author Information
  1. Kalyani Soren: Applied Biology, CSIR���Indian Institute of Chemical Technology (IICT), Hyderabad 500007, India.
  2. Rakesh K Bollikanda: Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, Uttar Pradesh, India.
  3. Tapatee Das: Applied Biology, CSIR���Indian Institute of Chemical Technology (IICT), Hyderabad 500007, India.
  4. Shashikant Patel: Applied Biology, CSIR���Indian Institute of Chemical Technology (IICT), Hyderabad 500007, India.
  5. Kodi Gnaneshwari: Applied Biology, CSIR���Indian Institute of Chemical Technology (IICT), Hyderabad 500007, India.
  6. Pankaj Malakar: Applied Biology, CSIR���Indian Institute of Chemical Technology (IICT), Hyderabad 500007, India.
  7. Arvind Kumar: CSIR���Centre for Cellular and Molecular Biology, Hyderabad 500007, India.
  8. Srinivas Kantevari: Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, Uttar Pradesh, India. ORCID
  9. Sumana Chakravarty: Applied Biology, CSIR���Indian Institute of Chemical Technology (IICT), Hyderabad 500007, India. ORCID

Abstract

Chronic hypoxic exposure triggers the onset and progression of cognitive dysfunction; however, the mechanisms underlying chronic hypoxia-induced neuroinflammation and its contribution to cognitive dysfunction remain poorly understood. Although inflammation and hypoxia are interdependent, numerous recent studies have linked the development of various human diseases to hypoxia-induced inflammation. In this study, we focused on the NLRP3 inflammasome with novel analogues of cytokine release inhibitory drug 3 (CRID3), a class of small molecule inhibitors for the NLRP3 inflammasome, to investigate their potential contribution to alleviating chronic hypoxia-induced neuroinflammation using the zebrafish model. The designed CRID3 analogues - were prepared from 2-methyl furan-3-carboxylate, following a four-step reaction sequence and fully characterized by NMR and mass spectral analysis. The administration of CRID3 analogues - led to a notable reduction in neuroinflammation and an increase in glial proliferation markers in both sexes. In addition, we investigated the potential effects of CRID3 analogues - through various behavioral tasks to assess their role in ameliorating post-hypoxic behavioral deficits and cognitive impairment. Notably, the study revealed that post-chronic hypoxia, male zebrafish exhibited significantly higher levels of inflammatory marker expression than females. Furthermore, we observed that the neurogenic response to treatment with CRID3 derivative varied depending on the sex, with females showing a sex-specific differential increase in neurogenesis compared to males. This work emphasizes the significance of considering sex differences into account in developing therapeutic strategies for neurological disorders, as shown by the sex-specific molecular and behavioral changes in zebrafish cognitive impairment and neuroinflammation.

Keywords

MeSH Term

Animals
Zebrafish
Anti-Inflammatory Agents
Memory Disorders
Hypoxia
Disease Models, Animal
Male
Female
Neuroinflammatory Diseases
Inflammation
Cognitive Dysfunction

Chemicals

Anti-Inflammatory Agents

Word Cloud

Created with Highcharts 10.0.0cognitiveneuroinflammationCRID3analoguesdysfunctionhypoxia-inducedzebrafish-behavioralsexChronicchroniccontributioninflammationhypoxiavariousstudyNLRP3inflammasomepotentialincreaseimpairmentfemalessex-specificneurogenesisdifferenceshypoxicexposuretriggersonsetprogressionhowevermechanismsunderlyingremainpoorlyunderstoodAlthoughinterdependentnumerousrecentstudieslinkeddevelopmenthumandiseasesfocusednovelcytokinereleaseinhibitorydrug3classsmallmoleculeinhibitorsinvestigatealleviatingusingmodeldesignedprepared2-methylfuran-3-carboxylatefollowingfour-stepreactionsequencefullycharacterizedNMRmassspectralanalysisadministrationlednotablereductionglialproliferationmarkerssexesadditioninvestigatedeffectstasksassessroleamelioratingpost-hypoxicdeficitsNotablyrevealedpost-chronicmaleexhibitedsignificantlyhigherlevelsinflammatorymarkerexpressionFurthermoreobservedneurogenicresponsetreatmentderivativevarieddependingshowingdifferentialcomparedmalesworkemphasizessignificanceconsideringaccountdevelopingtherapeuticstrategiesneurologicaldisordersshownmolecularchangesDevelopmentCRID3-BasedAnti-inflammatoryAgentsAmeliorateHypoxia-InducedMemoryImpairmentZebrafishModelsastrocytescyclohexylurea

Similar Articles

Cited By