| Literature DB >> 35342016 |
Tejasvi Dudiki1, Daniel W Nascimento1, Lauren S Childs1, Swetha Kareti1, Charlie Androjna2, Irina Zhevlakova1, Tatiana V Byzova3.
Abstract
The cellular and molecular mechanisms of bone development and homeostasis are clinically important, but not fully understood. Mutations in integrins and Kindlin3 in humans known as Leukocyte adhesion deficiencies (LAD) cause a wide spectrum of complications, including osteopetrosis. Yet, the rarity, frequent misdiagnosis, and lethality of LAD preclude mechanistic analysis of skeletal abnormalities in these patients. Here, using inducible and constitutive tissue-specific Kindlin3 knockout (K3KO) mice, we show that the constitutive lack of embryonic-Kindlin3 in myeloid lineage cells causes growth retardation, edentulism, and skull deformity indicative of hydrocephaly. Micro-CT analysis revealed craniosynostosis, choanal stenosis, and micrognathia along with other skeletal abnormalities characteristic of osteopetrosis. A marked progression of osteosclerosis occurs in mature to middle-aged adults, resulting in the narrowing of cranial nerve foramina and bone marrow cavities of long bones. However, postnatal-Kindlin3 is less critical for bone remodeling and architecture. Thus, myeloid Kindlin3 is essential for skeletal development and its deficiency leads to autosomal recessive osteopetrosis (ARO). The study will aid in the diagnosis, management, and treatment choices for patients with LAD-III and ARO.Entities:
Keywords: Bone analysis; Computerized tomography (CT); Integrins; LAD-III; Osteopetrosis; Teeth
Mesh:
Year: 2022 PMID: 35342016 PMCID: PMC9133165 DOI: 10.1016/j.bone.2022.116397
Source DB: PubMed Journal: Bone ISSN: 1873-2763 Impact factor: 4.626