The coordinated contractile activity of gastrointestinal smooth muscle serves as the physiological foundation for maintaining normal digestive, absorptive, and transport functions1. Its dysfunction is closely associated with various common clinical disorders, including irritable bowel syndrome2, functional dyspepsia3, and postoperative gastrointestinal motility disorders4. Elucidating the molecular and pharmacological mechanisms regulating smooth muscle activity is crucial for developing novel prokinetic or antispasmodic therapies. In this research field, the isolated organ perfusion technique serves as a classic model. It offers practical value by eliminating complex in vivo interferences such as neural, endocrine, and hemodynamic factors, thereby enabling direct and precise assessment of the effects of drugs or active substances on smooth muscle tone5,6.
Establishing stable and reliable protocols for in vitro tissue preparation and data recording is essential for obtaining reproducible, high-quality results. Existing in vitro intestinal muscle experimental methods require further optimization and standardization in several areas: standardized management of experimental animals, meticulous surgical techniques for tissue harvesting, consistent environmental control of perfusion systems, and automated data acquisition coupled with standardized analysis. For instance, perfusion fluid temperature and pH levels, mechanical damage during tissue harvesting, and tissue preload settings can all significantly impact tissue viability and introduce experimental errors. These factors compromise the reliability of results and hinder comparability across different studies7,8.
Therefore, this study aims to establish and elaborate a standardized protocol for preparing isolated duodenal smooth muscle specimens from rabbits and performing real-time tension recording. This protocol systematically describes the entire process, from experimental animal ethics and welfare, aseptic laparotomy, and precise intestinal segment isolation, to achieving environmental control, standardized tension preload settings, and high-fidelity data acquisition using an integrated horizontal constant-temperature perfusion system and a multi-channel physiological signal acquisition system. Based on this standardized technical platform, we further applied cumulative dosing methods to quantitatively evaluate the effects of Huoxiang Zhengqi Oral Liquid (HXZQ-OL), meeting the quality standards of the Chinese Pharmacopoeia (2025 edition)9, on spontaneous contractions and acetylcholine- and barium chloride-induced tetanic contractions in isolated duodenal smooth muscle. Huoxiang Zhengqi Oral Liquid (HXZQ-OL), an oral dosage form of the classic Huoxiang Zhengqi traditional Chinese medicine formula, is commonly used in China for gastrointestinal disorders, providing the rationale for evaluating its direct effects on isolated intestinal smooth muscle. This study not only provides direct experimental pharmacological evidence elucidating the gastrointestinal smooth muscle regulatory effects of HXZQ-OL, but the experimental protocol also serves as a standardized, reproducible methodological model for pharmacological screening and in vitro tissue studies of gastrointestinal smooth muscle.