9.8
생체이용률은 활성 약물 성분 또는 치료적 작용체가 대사되지 않은 상태로 전신순환에 도달하는 정도와 속도를 측정하는 중요한 약리학적 개념입니다. 이는 약물의 효능과 안전성을 결정하는 핵심 요소입니다.
생체약제학적 분류 시스템(BCS)은 약물의 용해도와 투과도를 기준으로…
생체이용률은 전신 순환계에 도달하는 변하지 않은 약물의 양을 나타냅니다.
약물은 생물약학 분류 시스템에 따라 용해도와 투과성에 따라 4가지 등급으로 분류됩니다.
약물 용해도는 pH 용해도 프로파일링 및 쉐이크 플라스크 또는 적정 방법으로 결정할 수 있습니다.
한편, 투과성 결정 방법에는 질량 균형 약동학 연구, 생체 내 장 관류 연구, 장 조직 또는 상피 세포 단층을 이용한 투과 실험이 포함됩니다.
용해도와 투과성이 낮은 일부 약물은 생체이용률이 낮아 약학적, 약동학적, 생물학적 접근으로 극복할 수 있습니다.
제약적 접근에는 약물의 화학 구조를 변경하지 않고 제형, 제조 공정 또는 물리화학적 특성을 수정하는 것이 포함됩니다.
약동학적 접근법은 전구약물 설계 또는 새로운 화학 물질 개발을 통해 약물의 화학 구조를 수정합니다.
생물학적 접근에는 경구 경로에서 비경구 경로로 전환하는 것과 같은 약물 투여 경로를 변경하는 것이 포함됩니다.
View the full transcript and gain access to JoVE Core videos
Q1: What does bioavailability measure in pharmacology?
Bioavailability measures the amount of unchanged drug reaching the systemic circulation after administration. It reflects both the extent and rate at which an active drug ingredient enters the bloodstream, remaining chemically unchanged. This metric is critical for determining a drug's efficacy and safety profile in patients.
Q2: How does the Biopharmaceutics Classification System categorize drugs?
The Biopharmaceutics Classification System categorizes drugs into four classes based on their solubility and permeability characteristics. This classification system aids in understanding drug absorption characteristics and guiding formulation strategies. Drugs with low solubility and permeability often face challenges with poor bioavailability that require targeted enhancement approaches.
Q3: What methods are used to determine drug solubility?
Drug solubility is determined using pH-solubility profiling, which examines how solubility changes with pH, and shake-flask or titration methods, which determine solubility in different solvents or at various pH levels. These techniques help predict a drug's absorption characteristics and guide formulation development strategies for improving bioavailability.
Q4: What are the main approaches to overcome poor drug bioavailability?
Three primary approaches address poor bioavailability: the pharmaceutical approach modifies formulation, manufacturing, or physicochemical properties without changing chemical structure; the pharmacokinetic approach modifies the drug's chemical structure through prodrug designs or new chemical entities; and the biological approach changes the route of administration, such as switching from oral to parenteral routes.
Q5: How is drug permeability evaluated in bioavailability studies?
Permeability is evaluated through mass-balance pharmacokinetic studies, in vivo intestinal perfusion studies, and permeation experiments using intestinal tissue or epithelial cell monolayers. These methods help predict a drug's absorption and bioavailability by assessing how effectively the drug crosses biological membranes in the gastrointestinal tract.
Q6: What is the pharmaceutical approach to enhancing bioavailability?
The pharmaceutical approach alters the drug's formulation, manufacturing process, or physicochemical properties without changing the molecular structure. This strategy can involve using solubilizers, reducing particle size, or forming amorphous solids to improve drug dissolution and absorption, thereby enhancing bioavailability without modifying the active ingredient itself.
Q7: How does the biological approach improve drug bioavailability?
The biological approach explores alternative routes of administration to bypass limitations associated with oral bioavailability. Switching from an oral to a parenteral route allows the drug to be administered directly into the systemic circulation, avoiding the gastrointestinal tract and its absorption barriers, thereby improving overall drug bioavailability and therapeutic effectiveness.