Jeevitha Poorasamy, Uditi Gupta, Anant Kumar, Neena Sharma, Sunita Kumari, Megha Agrawal, Priyadharshini V, Suryadev Babruwahan Dudhewad
Background: The study of haematopoiesis is based on the understanding of precursor cells maturation through various lineage stages. The standard educational approach use pre-made slides and digital images due to limited availability of fresh bone marrow samples and the associated ethical constraints. Purpose: This laboratory module presents an economical teaching method by using goat (Capra aegagrus hircus) rib marrow obtained from licensed slaughterhouses to demonstrate smear preparation and Romanowsky staining for haematopoietic precursor cells identification. The experimental approach was developed as a potential practical teaching activity for first-year medical students, in accordance with Competency-Based Medical Education (CBME). Methods: Goat ribs obtained from licensed meat shop (an animal by product for meat consumption) was immediately transported to laboratory, cleaned and bone marrow was extracted followed by thick and thin smear preparation which was then fixed with chilled methanol, air dried and stained with Leishman and May-Grünwald-Giemsa (MGG) stains. The smear was examined under oil immersion microscope for identification of the blood cell lineages and determining the myeloid to erythroid ratio (M: E). Results: The method for thick and thin smear preparation consistently produced samples which contained cells with intact morphology. The precursor cells could be identified based on their characteristic morphological features, and myeloid-to-erythroid (M:E) ratio was calculated from the smears. The procedure was successfully repeated with consistent smear quality and cellular morphology, indicating that the technique is feasible and reproducible for incorporation into the proposed teaching model. New and Noteworthy The present model introduces an active, hands-on learning approach that moves beyond passive slide-based instruction by directly engaging students in laboratory preparation and microscopic analysis. It establishes a sustainable, low-cost teaching resource for Physiology laboratories while effectively bridging theoretical concepts of haematopoiesis with their clinical and morphological correlates. Importantly, the method is scalable and well suited for institutions with limited infrastructure, enabling authentic laboratory-based learning experiences without reliance on scarce human samples.