Whatever the source is, chemistry is involved in all processes in the
discovery phase. For example, if a drug molecule has to be purified from
a natural source, e.g. a plant, processes such as extraction, isolation and
identification are used, and all these processes involve chemistry.
Similarly, in the drug development steps, especially in the pre-formulation
and formulation studies, the structures and the physical properties, e.g.
solubility and pH, of the drug molecules are exploited. Chemistry, particularly physical properties of drugs, is also important to determine storage
conditions. Drugs having an ester functionality, e.g. aspirin, could be quite
unstable in the presence of moisture, and should be kept in a dry and cool
place. The chemistry of drug molecules dictates the choice of the appropriate route of administration. When administered, the action of a drug inside
our body depends on its binding to the appropriate receptor, and its
subsequent metabolic processes, all of which involve complex enzymedriven biochemical reactions.
All drugs are chemicals, and pharmacy is a subject that deals with the
study of various aspects of drugs. Therefore, it is needless to say that to
become a good pharmacist the knowledge of the chemistry of drugs is
essential. Before moving on to the other chapters, let us try to understand
some of the fundamental chemical concepts in relation to the physical
properties of drug molecules.
1.2 Physical properties of drug molecules
1.2.1 Physical state
Drug molecules exist in various physical states, e.g. amorphous solid,
crystalline solid, hygroscopic solid, liquid or gas. The physical state of
drug molecules is an important factor in the formulation and delivery of
drugs.
1.2.2 Melting point and boiling point
The melting point (m.p.) is the temperature at which a solid becomes a
liquid, and the boiling point (b.p.) is the temperature at which the vapour
pressure of the liquid is equal to the atmospheric pressure. The boiling point
of a substance can also be defined as the temperature at which it can change
its state from a liquid to a gas throughout the bulk of the liquid at a given
pressure. For example, the melting point of water at 1 atmosphere of
pressure is 0
C (32
F, 273.15 K; this is also known as the ice point) and
the boiling point of water is 100
C.
1.2 PHYSICAL PROPERTIES OF DRUG MOLECULES
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