Interdependence of cellular and network properties in respiratory rhythm generation
成果类型:
Article
署名作者:
Phillips, Ryan S.; Baertsch, Nathan A.
署名单位:
Seattle Children's Hospital; University of Washington; University of Washington Seattle; University of Washington; University of Washington Seattle
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-9796
DOI:
10.1073/pnas.2318757121
发表日期:
2024-05-07
关键词:
pre-botzinger complex
persistent sodium current
nonspecific cation current
prebotzinger complex
neurons
currents
na+
models
receptors
BEHAVIOR
摘要:
How breathing is generated by the preB & ouml;tzinger complex (preB & ouml;tC) remains divided between two ideological frameworks, and a persistent sodium current (I NaP ) lies at the heart of this debate. Although I NaP is widely expressed, the pacemaker hypothesis considers it essential because it endows a small subset of neurons with intrinsic bursting or pacemaker activity. In contrast, burstlet theory considers I NaP dispensable because rhythm emerges from preinspiratory spiking activity driven by feed -forward network interactions. Using computational modeling, we find that small changes in spike shape can dissociate I NaP from intrinsic bursting. Consistent with many experimental benchmarks, conditional effects on spike shape during simulated changes in oxygenation, development, extracellular potassium, and temperature alter the prevalence of intrinsic bursting and preinspiratory spiking without altering the role of I NaP . Our results support a unifying hypothesis where I NaP and excitatory network interactions, but not intrinsic bursting or preinspiratory spiking, are critical interdependent features of preB & ouml;tC rhythmogenesis.